weather station esphome updates

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2024-06-02 18:49:57 +12:00
parent 9467d25271
commit 29c092232b
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# https://digiblur.com/2023/05/24/esphome-mmwave-presence-how-to-guide/
substitutions:
name: esp-mmwave-office-7776ec
friendly_name: esp-mmwave-office
update_time: 30s
esphome:
name: ${name}
friendly_name: ${friendly_name}
name_add_mac_suffix: false
#project:
#name: esphome.web
#version: '1.0'
on_boot: #LD1125H Initial Setting
priority: -200
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",id(LD1125H_mth1).state) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",id(LD1125H_mth2).state) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",id(LD1125H_mth3).state) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",id(LD1125H_rmax).state) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
#############################################
# ESPHome Logging Enable
#############################################
# NOTE: Baudrate set to 0 as we are using the UART with PZEM
logger:
level: INFO #You Can Use "INFO" Level
baud_rate: 0
#############################################
# Enable the Home Assistant API
#############################################
api:
#encryption:
# key: !secret esp-mainovenmonitor_api_key
#############################################
# Enable Over the Air Update Capability
# Safe mode will detect boot loops
#############################################
ota:
# safe_mode: true
# password: !secret esp-mainovenmonitor_ota_pass
#############################################
# Use Wifi
#############################################
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
power_save_mode: LIGHT
# Details for fallback hotspot (captive portal)
# in case wifi connection fails
ap:
ssid: "MMwave Office Fallback Hotspot"
password: !secret fallback_ap_password
# manual_ip:
# static_ip: 192.168.x.x
# gateway: 192.168.X.x
# subnet: 255.255.255.0
# Allow provisioning Wi-Fi via serial
#improv_serial:
#############################################
# Fallback captive portal
#############################################
# In combination with the `ap` this allows the user
# to provision wifi credentials to the device via WiFi AP.
captive_portal:
#dashboard_import:
# package_import_url: github://esphome/example-configs/esphome-web/esp32.yaml@main
# import_full_config: true
# Sets up Bluetooth LE (Only on ESP32) to allow the user
# to provision wifi credentials to the device.
##esp32_improv:
## authorizer: none
#############################################
# Web Portal for display and monitoring
#############################################
#web_server:
# port: 80
# auth:
# username: !secret web_server_username
# password: !secret web_server_password
i2c:
sda: GPIO19
scl: GPIO21
scan: True
#esp32:
# board: esp32dev
# framework:
# type: arduino
esp32:
board: nodemcu-32s
framework:
type: esp-idf #Suggest Use ESP-IDF Framework, or Plug Out the UART Cable Might Cause ESP32 Hang.
external_components:
- source:
type: git
url: https://github.com/ssieb/custom_components #Thanks for @ssieb components.
components: [ serial ]
uart:
id: LD1125H_UART_BUS
rx_pin: GPIO16 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
tx_pin: GPIO17 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# rx_pin: GPIO1 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# tx_pin: GPIO0 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
baud_rate: 115200
data_bits: 8
stop_bits: 1
parity: NONE
# debug:
# direction: BOTH
# dummy_receiver: false
# after:
# delimiter: "\n"
# sequence:
# - lambda: UARTDebug::log_string(direction, bytes);
globals:
- id: LD1125H_Last_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Last_Mov_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Clearence_Status
type: bool
restore_value: no
initial_value: "false"
status_led:
pin:
number: GPIO2 #ESP32 OnBroad LED
inverted: false
#web_server: #Avoid Using Web Server To Prevent Hang
# port: 80
interval:
- interval: 1s #Clearance Scan Time
setup_priority: -200
then:
lambda: |-
if ((time(NULL)-id(LD1125H_Last_Time))>id(LD1125H_Clear_Time).state) {
if ((id(LD1125H_Clearence_Status) == false) || (id(LD1125H_Occupancy).state != "Clearance")) {
id(LD1125H_Occupancy).publish_state("Clearance");
id(LD1125H_Clearence_Status) = true;
}
if (id(LD1125H_MovOcc_Binary).state == true) {
id(LD1125H_MovOcc_Binary).publish_state(false);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
number:
- platform: template
name: ${upper_devicename} LD1125H mth1 #mth1 is 0~2.8m Sensitivity.
id: LD1125H_mth1
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "60.0" #Default mth1 Setting
min_value: 10.0
max_value: 600.0
step: 5.0
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- platform: template
name: ${upper_devicename} LD1125H mth2 #mth2 is 2.8~8m Sensitivity.
id: LD1125H_mth2
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "30" #Default mth2 Setting
min_value: 5
max_value: 300
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- platform: template
name: ${upper_devicename} LD1125H mth3 #mth3 is above 8m Sensitivity.
id: LD1125H_mth3
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "20" #Default mth3 Setting
min_value: 5
max_value: 200
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- platform: template
name: ${upper_devicename} LD1125H rmax #rmax is max detection distance.
id: LD1125H_rmax
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "8" #Default rmax Setting
min_value: 0.4
max_value: 12
step: 0.1
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",x) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
- platform: template
name: ${upper_devicename} LD1125H Clearence Time
id: LD1125H_Clear_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "5" #LD1125H Mov/Occ > Clearence Time Here
min_value: 0.5
max_value: 20
step: 0.5
- platform: template
name: ${upper_devicename} LD1125H Movement Time
id: LD1125H_Mov_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "1" #LD1125H Mov > Occ Time Here
min_value: 0.5
max_value: 10
step: 0.5
sensor:
- platform: bme280_i2c
temperature:
name: ${upper_devicename} BME280 Temp
accuracy_decimals: 1
oversampling: 2x
pressure:
name: ${upper_devicename} BME280 Pressure
oversampling: 2x
humidity:
name: ${upper_devicename} BME280 Humidity
accuracy_decimals: 1
oversampling: 2x
address: 0x76
update_interval: ${update_time}
# - platform: aht10
# temperature:
# accuracy_decimals: 2
# name: ${upper_devicename} AHT21 Temp
# humidity:
# accuracy_decimals: 2
# name: ${upper_devicename} AHT21 Humidity
# update_interval: ${update_time}
# - platform: wifi_signal
# name: ${upper_devicename} WiFi Signal
# update_interval: 60s
- platform: uptime
name: ${upper_devicename} Uptime
- platform: template
name: ${upper_devicename} LD1125H Distance
id: LD1125H_Distance
icon: "mdi:signal-distance-variant"
unit_of_measurement: "m"
accuracy_decimals: 2
filters: # Use Fliter To Debounce
- sliding_window_moving_average:
window_size: 8
send_every: 2
- heartbeat: 0.2s
text_sensor:
- platform: serial
uart_id: LD1125H_UART_BUS
name: ${upper_devicename} LD1125H UART Text
id: LD1125H_UART_Text
icon: "mdi:format-text"
internal: True #If Don't Want to See UART Receive Data, Set To True
on_value:
lambda: |-
if (id(LD1125H_UART_Text).state.substr(0,3) == "occ") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
if ((time(NULL)-id(LD1125H_Last_Mov_Time))>id(LD1125H_Mov_Time).state) {
id(LD1125H_Occupancy).publish_state("Occupancy");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
else if (id(LD1125H_UART_Text).state.substr(0,3) == "mov") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
id(LD1125H_Occupancy).publish_state("Movement");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == false) {
id(LD1125H_Mov_Binary).publish_state(true);
}
id(LD1125H_Last_Mov_Time) = time(NULL);
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
- platform: template
name: ${upper_devicename} LD1125H Occupancy Status
id: LD1125H_Occupancy
icon: "mdi:motion-sensor"
binary_sensor:
- platform: status
name: ${upper_devicename} Status
- platform: template
name: ${upper_devicename} LD1125H Occupancy or Movement
id: LD1125H_MovOcc_Binary
device_class: occupancy
- platform: template
name: ${upper_devicename} LD1125H Movement
id: LD1125H_Mov_Binary
device_class: motion

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esphome:
name: esp-mmwave-office
friendly_name: esp-mmwave-office
esp32:
board: esp32dev
framework:
type: arduino
# Enable logging
logger:
# Enable Home Assistant API
api:
encryption:
key: "KbgRoOmslFkhfRnWgr3RKK6P3Ed3dhHJ+l9FVYZX8lo="
ota:
password: "b3a0a1de8ea89ebf360fbeac40af7a0a"
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
# Enable fallback hotspot (captive portal) in case wifi connection fails
ap:
ssid: "Esp-Mmwave-Office"
password: "EsNR8kqAOUu8"
captive_portal:

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#############################################
# Variable Substitutions
#############################################
substitutions:
devicename: "esp-mmwaveoffice-7776ec"
friendly_name: "Office Occupancy"
mqtt_topic: "esphome"
update_time: 30s #for temp sensors etc
#############################################
# ESPHome
# https://esphome.io/components/esphome.html
#############################################
esphome:
name: ${devicename}
comment: D1 Mini ESP32 with mmWave and environment sensors for main office #appears on the esphome page in HA
on_boot: #LD1125H Initial Setting
priority: -200
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",id(LD1125H_mth1).state) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",id(LD1125H_mth2).state) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",id(LD1125H_mth3).state) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",id(LD1125H_rmax).state) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
#############################################
# ESP Platform and Framework
# https://esphome.io/components/esp32.html
#############################################
esp32:
board: nodemcu-32s
framework:
type: arduino
#type: esp-idf #Suggested Use ESP-IDF Framework, or Plug Out the UART Cable Might Cause ESP32 Hang.
version: recommended #recommended, latest or dev
#############################################
# i2s bus
# https://esphome.io/components/i2c.html
#############################################
i2c:
sda: GPIO19
scl: GPIO21
scan: True
frequency: 100kHz #10, 50, 100, 200, 800 are possible settings, 100kHz was reliable for me
#############################################
# ESPHome external or custom components to use
# https://esphome.io/components/external_components.html
#############################################
external_components:
- source:
type: git
url: https://github.com/ssieb/custom_components #Thanks for @ssieb components.
components: [ serial ] #text_sensor that reads lines for a uart. Also, a sensor that reads single values from the uart.
#############################################
# ESPHome Logging Enable
# https://esphome.io/components/logger.html
#############################################
logger:
level: INFO #INFO Level suggested, or DEBUG for testing
baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#############################################
# Enable the Home Assistant API
# https://esphome.io/components/api.html
#############################################
api:
encryption:
key: !secret esp-mmwaveoffice_api_key
#############################################
# Enable Over the Air Update Capability
# Safe mode will detect boot loops
# https://esphome.io/components/ota.html?highlight=ota
#############################################
ota:
safe_mode: true
password: !secret esp-mmwaveoffice_ota_pass
#############################################
# Wifi Settings
# https://esphome.io/components/wifi.html
#############################################
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
#power_save_mode: LIGHT #https://esphome.io/components/wifi.html#wifi-power-save-mode
#manual_ip:
#static_ip: 192.168.x.x
#gateway: 192.168.X.x
#subnet: 255.255.255.0
#ap: #Details for fallback hotspot (captive portal) in case wifi connection fails
#ssid: "? Fallback Hotspot"
#password: !secret fallback_ap_password
#############################################
# Web Portal for display and monitoring
# Turning this off is probably a good idea to save resources.
# https://esphome.io/components/web_server.html
#############################################
web_server:
port: 80
# username: !secret web_server_username
# password: !secret web_server_password
#############################################
# MQTT Monitoring
# https://esphome.io/components/mqtt.html?highlight=mqtt
# MUST also have api enabled if you enable MQTT
#############################################
mqtt:
broker: !secret mqtt_server
topic_prefix: ${mqtt_topic}/${devicename}
username: !secret mqtt_username
password: !secret mqtt_password
#############################################
# UART Serial
# hardware on EPS32, but software, and can be glitchy on ESP8266
# https://esphome.io/components/uart.html?highlight=uart
#############################################
uart:
id: LD1125H_UART_BUS
rx_pin: GPIO16 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
tx_pin: GPIO17 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# rx_pin: GPIO1 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# tx_pin: GPIO0 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
baud_rate: 115200
data_bits: 8
stop_bits: 1
parity: NONE
# debug:
# direction: BOTH
# dummy_receiver: false
# after:
# delimiter: "\n"
# sequence:
# - lambda: UARTDebug::log_string(direction, bytes);
#############################################
# Global Variables for use in automations etc
# https://esphome.io/guides/automations.html?highlight=globals#global-variables
#############################################
globals:
- id: LD1125H_Last_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Last_Mov_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Clearence_Status
type: bool
restore_value: no
initial_value: "false"
#############################################
# General esp status LED
# https://esphome.io/components/status_led.html
#############################################
status_led:
pin:
number: GPIO2 #ESP32 Onboard LED
inverted: false
#############################################
# Interval Automations
# https://esphome.io/guides/automations.html
#############################################
interval:
- interval: 1s #Clearance Scan Time
setup_priority: -200
then:
lambda: |-
if ((time(NULL)-id(LD1125H_Last_Time))>id(LD1125H_Clear_Time).state) {
if ((id(LD1125H_Clearence_Status) == false) || (id(LD1125H_Occupancy).state != "Clearance")) {
id(LD1125H_Occupancy).publish_state("Clearance");
id(LD1125H_Clearence_Status) = true;
}
if (id(LD1125H_MovOcc_Binary).state == true) {
id(LD1125H_MovOcc_Binary).publish_state(false);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
#############################################
# Number Sensors (custom component)
# refer https://github.com/ssieb/esphome_components/tree/master/components/serial
#############################################
number:
- platform: template
name: ${friendly_name} LD1125H mth1 #mth1 is 0~2.8m Sensitivity.
id: LD1125H_mth1
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "60.0" #Default mth1 Setting
min_value: 10.0
max_value: 600.0
step: 5.0
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- platform: template
name: ${friendly_name} LD1125H mth2 #mth2 is 2.8~8m Sensitivity.
id: LD1125H_mth2
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "30" #Default mth2 Setting
min_value: 5
max_value: 300
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- platform: template
name: ${friendly_name} LD1125H mth3 #mth3 is above 8m Sensitivity.
id: LD1125H_mth3
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "20" #Default mth3 Setting
min_value: 5
max_value: 200
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- platform: template
name: ${friendly_name} LD1125H rmax #rmax is max detection distance.
id: LD1125H_rmax
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "8" #Default rmax Setting
min_value: 0.4
max_value: 12
step: 0.1
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",x) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
- platform: template
name: ${friendly_name} LD1125H Clearence Time
id: LD1125H_Clear_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "5" #LD1125H Mov/Occ > Clearence Time Here
min_value: 0.5
max_value: 20
step: 0.5
- platform: template
name: ${friendly_name} LD1125H Movement Time
id: LD1125H_Mov_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "1" #LD1125H Mov > Occ Time Here
min_value: 0.5
max_value: 10
step: 0.5
#############################################
# General Sensors
# https://esphome.io/components/sensor/index.html
#############################################
sensor:
- platform: bme280_i2c
temperature:
name: ${friendly_name} BME280 Temp
accuracy_decimals: 1
oversampling: 2x
pressure:
name: ${friendly_name} BME280 Pressure
oversampling: 2x
humidity:
name: ${friendly_name} BME280 Humidity
accuracy_decimals: 1
oversampling: 2x
address: 0x76
update_interval: ${update_time}
- platform: uptime
name: ${friendly_name} Uptime
- platform: template
name: ${friendly_name} LD1125H Distance
id: LD1125H_Distance
icon: "mdi:signal-distance-variant"
unit_of_measurement: "m"
accuracy_decimals: 2
filters: # Use Fliter To Debounce
- sliding_window_moving_average:
window_size: 8
send_every: 2
- heartbeat: 0.2s
#############################################
# Text Sensors (custom component)
# refer https://github.com/ssieb/esphome_components/tree/master/components/serial
#############################################
text_sensor:
- platform: serial
uart_id: LD1125H_UART_BUS
name: ${friendly_name} LD1125H UART Text
id: LD1125H_UART_Text
icon: "mdi:format-text"
internal: True #If Don't Want to See UART Receive Data, Set To True
on_value:
lambda: |-
if (id(LD1125H_UART_Text).state.substr(0,3) == "occ") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
if ((time(NULL)-id(LD1125H_Last_Mov_Time))>id(LD1125H_Mov_Time).state) {
id(LD1125H_Occupancy).publish_state("Occupancy");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
else if (id(LD1125H_UART_Text).state.substr(0,3) == "mov") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
id(LD1125H_Occupancy).publish_state("Movement");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == false) {
id(LD1125H_Mov_Binary).publish_state(true);
}
id(LD1125H_Last_Mov_Time) = time(NULL);
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
- platform: template
name: ${friendly_name} LD1125H Occupancy Status
id: LD1125H_Occupancy
icon: "mdi:motion-sensor"
#############################################
# Binary Sensors
# https://esphome.io/components/binary_sensor/index.html
#############################################
binary_sensor:
- platform: status
name: ${friendly_name} Status
- platform: template
name: ${friendly_name} LD1125H Occupancy or Movement
id: LD1125H_MovOcc_Binary
device_class: occupancy
- platform: template
name: ${friendly_name} LD1125H Movement
id: LD1125H_Mov_Binary
device_class: motion

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@@ -1,404 +0,0 @@
#############################################
#############################################
# HiLink LD2410 mmWave sensor, with BME280 Temp/Hum/Pres Sensor on an ESP32
# https://github.com/patrick3399/Hi-Link_mmWave_Radar_ESPHome/tree/main
# https://github.com/patrick3399/Hi-Link_mmWave_Radar_ESPHome/blob/main/LD1125H/ESP32-LD1125H-Complete.yaml
#
# https://esphome.io/components/sensor/ld2410.html
# https://www.simplysmart.house/blog/presence-detection-ld2410-home-assistant
#
#############################################
#############################################
#############################################
# Variable Substitutions
#############################################
substitutions:
devicename: "esp-occupancystair"
friendly_name: "Stair Occupancy"
description_comment: "D1 Mini ESP32 with LD2410 mmWave for internal stairwell and environment sensors for under house"
api_key: !secret esp-occupancystair_api_key #unfortunately you can't use substitutions in secrets names
ota_pass: !secret esp-occupancystair_ota_pass #unfortunately you can't use substitutions in secrets names
mqtt_topic: "esphome" #main topic for the mqtt server, call it what you like
update_time: 30s #update time for for temp sensors etc
#############################################
# ESPHome
# https://esphome.io/components/esphome.html
#############################################
esphome:
name: ${devicename}
comment: ${description_comment} #appears on the esphome page in HA
#on_boot: #Initial Setting, will remember previous values (if set)
#priority: -200
#then:
#############################################
# ESP Platform and Framework
# https://esphome.io/components/esp32.html
#############################################
esp32:
board: esp32dev
framework:
#type: arduino
type: esp-idf #Suggested Use ESP-IDF Framework, or Plug Out the UART Cable Might Cause ESP32 Hang.
version: recommended #recommended, latest or dev
#############################################
# i2s bus
# https://esphome.io/components/i2c.html
#############################################
i2c:
sda: GPIO19
scl: GPIO21
scan: True
frequency: 100kHz #10, 50, 100, 200, 800 are possible settings, 100kHz was reliable for me
#############################################
# ESPHome Logging Enable
# https://esphome.io/components/logger.html
#############################################
logger:
level: INFO #INFO Level suggested, or DEBUG for testing
baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#############################################
# Enable the Home Assistant API
# https://esphome.io/components/api.html
#############################################
api:
encryption:
key: ${api_key}
#############################################
# Enable Over the Air Update Capability
# https://esphome.io/components/ota.html?highlight=ota
#############################################
ota:
safe_mode: true #Safe mode will detect boot loops
password: ${ota_pass}
#############################################
# Wifi Settings
# https://esphome.io/components/wifi.html
#############################################
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
#power_save_mode: LIGHT #https://esphome.io/components/wifi.html#wifi-power-save-mode
#manual_ip: #optional static IP address
#static_ip: 192.168.x.x
#gateway: 192.168.X.x
#subnet: 255.255.255.0
ap: #Details for fallback hotspot (captive portal) in case wifi connection fails https://esphome.io/components/wifi.html#access-point-mode
ssid: $devicename fallback AP
password: !secret fallback_ap_password
ap_timeout: 5min #default is 1min
#############################################
# Web Portal for display and monitoring
# Turning this off is probably a good idea to save resources.
# https://esphome.io/components/web_server.html
#############################################
web_server:
port: 80
# username: !secret web_server_username #probably a good idea to secure it
# password: !secret web_server_password
#############################################
# MQTT Monitoring
# https://esphome.io/components/mqtt.html?highlight=mqtt
# MUST also have api enabled if you enable MQTT
#############################################
mqtt:
broker: !secret mqtt_server
topic_prefix: ${mqtt_topic}/${devicename}
username: !secret mqtt_username
password: !secret mqtt_password
#############################################
# Bluetooth
# https://esphome.io/components/bluetooth_proxy.html
# https://esphome.io/components/esp32_ble_tracker.html
# Remember that this takes a LOT of processing. On the
# ESP32, enable the IDF framework, and disable the
# Web server component. Changing to the IDF framework
# needs to be via cable not OTA to change the
# partition setup.
#############################################
#bluetooth_proxy:
#esp32_ble_tracker:
#############################################
# UART Serial
# hardware on EPS32, but software, and can be glitchy on ESP8266
# https://esphome.io/components/uart.html?highlight=uart
#############################################
uart:
id: ld2410_uart
rx_pin: GPIO16 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
tx_pin: GPIO17 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# rx_pin: GPIO1 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# tx_pin: GPIO0 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
baud_rate: 256000 # default for LD2410 is 25600, 8, 0, NONE
data_bits: 8
stop_bits: 1
parity: NONE
# debug:
# direction: BOTH
# dummy_receiver: false
# after:
# delimiter: "\n"
# sequence:
# - lambda: UARTDebug::log_string(direction, bytes);
#############################################
# General esp status LED
# https://esphome.io/components/status_led.html
#############################################
status_led:
pin:
number: GPIO2 #ESP32 Onboard LED
ignore_strapping_warning: True #https://esphome.io/guides/faq.html#why-am-i-getting-a-warning-about-strapping-pins
inverted: false
#############################################
# LD2410 Sensors
# https://esphome.io/components/sensor/ld2410.html
# https://www.hlktech.net/index.php?id=988
#############################################
ld2410:
uart_id: ld2410_uart
#uart_id (Optional, ID): Manually specify the ID of the UART Component if you want to use multiple UART buses.
#throttle (Optional, int): Time in milliseconds to control the rate of data updates. Defaults to 1000ms.
#id (Optional, ID): Manually specify the ID for this LD2410 Sensor component if you need multiple components.
# light (Optional, int): When in engineering mode, indicates the light sensitivity, otherwise unknown. Value between 0 and 255 inclusive. Though it seems that the value 85 is the lowest value at complete darkness. All options from Sensor.
# moving_distance (Optional, int): Distance in cm of detected moving target. All options from Sensor.
# still_distance (Optional, int): Distance in cm of detected still target. All options from Sensor.
# moving_energy (Optional, int): Energy for moving target. Value between 0 and 100 inclusive. All options from Sensor.
# still_energy (Optional, int): Energy for still target. Value between 0 and 100 inclusive. All options from Sensor.
# detection_distance (Optional, int): Distance in cm of target. All options from Sensor.
# gX (Optional): Energies for the Xth gate (X => 0 to 8).
# move_energy (Optional, int): When in engineering mode, the move energy of the gate, otherwise unknown. Value between 0 and 100 inclusive. All options from Sensor.
#still_energy (Optional, int): When in engineering mode, the still energy of the gate, otherwise unknown. Value between 0 and 100 inclusive. All options from Sensor.
#ld2410_id (Optional, ID): Manually specify the ID for the LD2410 Sensor component if you are using multiple components.
#The ld2410 number values for setting thresholds
# timeout: 5s
# max_move_distance: 2.25m
# max_still_distance: 2.25m
# g0_move_threshold: 40 # 0m / 0'
# g0_still_threshold: 10 # 0m / 0'
# g1_move_threshold: 40 # 0 - 0.75m / 0 - 2.46'
# g1_still_threshold: 10 # 0 - 0.75m / 0 - 2.46'
# g2_move_threshold: 40 # 0.75 - 1.5m / 2.46' - 4.92'
# g2_still_threshold: 10 # 0.75 - 1.5m / 2.46' - 4.92'
# g3_move_threshold: 40 # 1.5 - 2.25m / 4.92' - 7.38'
# g3_still_threshold: 10 # 1.5 - 2.25m / 4.92' - 7.38'
# g4_move_threshold: 40 # 2.25 - 3m' / 7.38' - 9.84'
# g4_still_threshold: 40 # 2.25 - 3m' / 7.38' - 9.84'
# g5_move_threshold: 40 # 3 - 3.75 / 9.84' - 12.30'
# g5_still_threshold: 40 # 3 - 3.75 / 9.84' - 12.30'
# g6_move_threshold: 30 # 3.75 - 4.5m / 12.30' - 14.76'
# g6_still_threshold: 15 # 3.75 - 4.5m / 12.30' - 14.76'
# g7_move_threshold: 30 # 4.5 - 5.25m / 14.76' - 17.22'
# g7_still_threshold: 15 # 4.5 - 5.25m / 14.76' - 17.22'
# g8_move_threshold: 30 # 5.25 - 6m / 17.22' - 19.68'
# g8_still_threshold: 15 # 5.25 - 6m / 17.22' - 19.68'
number:
- platform: ld2410
timeout:
name: Timeout
light_threshold:
name: Light Threshold
max_move_distance_gate:
name: Max Move Distance Gate
max_still_distance_gate:
name: Max Still Distance Gate
g0:
move_threshold:
name: g0 move threshold
still_threshold:
name: g0 still threshold
g1:
move_threshold:
name: g1 move threshold
still_threshold:
name: g1 still threshold
g2:
move_threshold:
name: g2 move threshold
still_threshold:
name: g2 still threshold
g3:
move_threshold:
name: g3 move threshold
still_threshold:
name: g3 still threshold
g4:
move_threshold:
name: g4 move threshold
still_threshold:
name: g4 still threshold
g5:
move_threshold:
name: g5 move threshold
still_threshold:
name: g5 still threshold
g6:
move_threshold:
name: g6 move threshold
still_threshold:
name: g6 still threshold
g7:
move_threshold:
name: g7 move threshold
still_threshold:
name: g7 still threshold
g8:
move_threshold:
name: g8 move threshold
still_threshold:
name: g8 still threshold
#The ld2410 select allows you to control your LD2410 Sensor.
#distance_resolution (Optional): Control the gates distance resolution. Can be 0.75m or 0.2m. Defaults to 0.75m. All options from Select.
#baud_rate (Optional): Control the serial port baud rate. Defaults to 256000. Once changed, all sensors will stop working until a fresh install with an updated UART Component configuration. All options from Select.
#light_function (Optional): If set, will affect the OUT pin value, based on light threshold. Can be off, low or above. Defaults to off. All options from Select.
#out_pin_level (Optional): Control OUT pin away value. Can be low or high. Defaults to low. All options from Select.
#ld2410_id (Optional, ID): Manually specify the ID for the LD2410 Sensor component if you are using multiple components.
select:
- platform: ld2410
distance_resolution:
name: "distance resolution"
baud_rate:
name: "baud rate"
light_function:
name: light function
out_pin_level:
name: out pin level
#############################################
# General Sensors
# https://esphome.io/components/sensor/index.html
#############################################
sensor:
- platform: bme280_i2c
temperature:
name: ${friendly_name} BME280 Temp
accuracy_decimals: 1
oversampling: 2x
pressure:
name: ${friendly_name} BME280 Pressure
oversampling: 2x
humidity:
name: ${friendly_name} BME280 Humidity
accuracy_decimals: 1
oversampling: 2x
address: 0x76
update_interval: ${update_time}
- platform: uptime
name: ${friendly_name} Uptime
#The ld2410 sensor values
- platform: ld2410
light:
name: Light
moving_distance:
name : Moving Distance
still_distance:
name: Still Distance
moving_energy:
name: Move Energy
still_energy:
name: Still Energy
detection_distance:
name: Detection Distance
g0:
move_energy:
name: g0 move energy
still_energy:
name: g0 still energy
g1:
move_energy:
name: g1 move energy
still_energy:
name: g1 still energy
g2:
move_energy:
name: g2 move energy
still_energy:
name: g2 still energy
g3:
move_energy:
name: g3 move energy
still_energy:
name: g3 still energy
g4:
move_energy:
name: g4 move energy
still_energy:
name: g4 still energy
g5:
move_energy:
name: g5 move energy
still_energy:
name: g5 still energy
g6:
move_energy:
name: g6 move energy
still_energy:
name: g6 still energy
g7:
move_energy:
name: g7 move energy
still_energy:
name: g7 still energy
g8:
move_energy:
name: g8 move energy
still_energy:
name: g8 still energy
# The ld2410 switch allows you to control your LD2410 Sensor.
switch:
- platform: ld2410
engineering_mode:
name: "Engineering Mode"
bluetooth:
name: "Control Bluetooth"
#The ld2410 binary sensors to get presence notification
binary_sensor:
- platform: ld2410
has_target:
name: Presence
has_moving_target:
name: Moving Target
has_still_target:
name: Still Target
out_pin_presence_status:
name: Out Pin Presence Status
#The ld2410 button allows resetting
button:
- platform: ld2410
factory_reset:
name: "Factory reset"
restart:
name: "Restart"
query_params:
name: Query Parameters
#The ld2410 text sensor allows you to get information about your LD2410 Sensor.
text_sensor:
- platform: ld2410
version:
name: "Firmware Version"
mac_address:
name: "MAC Address"

View File

@@ -1,31 +0,0 @@
esphome:
name: esp-occupancystairs
friendly_name: esp-occupancystairs
esp32:
board: esp32dev
framework:
type: arduino
# Enable logging
logger:
# Enable Home Assistant API
api:
encryption:
key: "SjiVZdG8rekBlk9bEZIE8+cIhvs6Dodj9GuFLFpJypk="
ota:
password: "2b76bfe3274afc8b17020059fec18c96"
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
# Enable fallback hotspot (captive portal) in case wifi connection fails
ap:
ssid: "Esp-Occupancystairs"
password: "zfhq7q6HYG2J"
captive_portal:

View File

@@ -1,393 +0,0 @@
#############################################
# Variable Substitutions
#############################################
substitutions:
devicename: "esphome-web-7776ec"
friendly_name: "esp-web-7776ec"
upper_devicename: "esp-web-7776ec"
mqtt_topic: "esphome"
update_time: 30s #for temp sensors etc
#############################################
# ESPHome
# https://esphome.io/components/esphome.html#esphome-core-configuration
#############################################
esphome:
name: ${devicename}
comment: D1 Mini ESP32 with mmWave and environment sensors for main office #appears on the esphome page in HA
on_boot: #LD1125H Initial Setting
priority: -200
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",id(LD1125H_mth1).state) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",id(LD1125H_mth2).state) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",id(LD1125H_mth3).state) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",id(LD1125H_rmax).state) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
#############################################
# ESP Platform and Framework
# https://esphome.io/components/esp32.html
#############################################
esp32:
board: nodemcu-32s
framework:
type: arduino
#type: esp-idf #Suggested Use ESP-IDF Framework, or Plug Out the UART Cable Might Cause ESP32 Hang.
version: recommended #recommended, latest or dev
#############################################
# i2s bus
# https://esphome.io/components/i2c.html
#############################################
i2c:
sda: GPIO19
scl: GPIO21
scan: True
frequency: 100kHz #10, 50, 100, 200, 800 are possible settings, 100kHz was reliable for me
#############################################
# ESPHome external or custom components to use
#############################################
external_components:
- source:
type: git
url: https://github.com/ssieb/custom_components #Thanks for @ssieb components.
components: [ serial ] #text_sensor that reads lines for a uart. Also, a sensor that reads single values from the uart.
#############################################
# ESPHome Logging Enable
#############################################
logger:
level: INFO #INFO Level suggested, or DEBUG for testing
baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#############################################
# Enable the Home Assistant API
#############################################
api:
#encryption:
#key: !secret esp-?_api_key
#############################################
# Enable Over the Air Update Capability
# Safe mode will detect boot loops
#############################################
ota:
safe_mode: true
password: !secret esp-mmwaveoffice_ota_pass
#############################################
# Wifi Settings
#############################################
wifi:
ssid: !secret wifi_ssid
password: !secret wifi_password
#power_save_mode: LIGHT #https://esphome.io/components/wifi.html#wifi-power-save-mode
#manual_ip:
#static_ip: 192.168.x.x
#gateway: 192.168.X.x
#subnet: 255.255.255.0
#ap: #Details for fallback hotspot (captive portal) in case wifi connection fails
#ssid: "? Fallback Hotspot"
#password: !secret fallback_ap_password
#############################################
# Web Portal for display and monitoring
# Turning this off is probably a good idea to save resources.
#############################################
web_server:
port: 80
# username: !secret web_server_username
# password: !secret web_server_password
#############################################
# MQTT Monitoring
#############################################
mqtt:
broker: !secret mqtt_server
topic_prefix: ${mqtt_topic}/${devicename}
username: !secret mqtt_username
password: !secret mqtt_password
#############################################
#############################################
# MAIN SENSORS
#############################################
#############################################
uart:
id: LD1125H_UART_BUS
rx_pin: GPIO16 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
tx_pin: GPIO17 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# rx_pin: GPIO1 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
# tx_pin: GPIO0 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
baud_rate: 115200
data_bits: 8
stop_bits: 1
parity: NONE
# debug:
# direction: BOTH
# dummy_receiver: false
# after:
# delimiter: "\n"
# sequence:
# - lambda: UARTDebug::log_string(direction, bytes);
#############################################
# Global Variables for use in templates etc
#############################################
globals:
- id: LD1125H_Last_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Last_Mov_Time
type: time_t
restore_value: no
initial_value: time(NULL)
- id: LD1125H_Clearence_Status
type: bool
restore_value: no
initial_value: "false"
#############################################
# General esp status LED
#############################################
status_led:
pin:
number: GPIO2 #ESP32 OnBroad LED
inverted: false
#############################################
# Interval Automations
# https://esphome.io/guides/automations.html#interval-component
#############################################
interval:
- interval: 1s #Clearance Scan Time
setup_priority: -200
then:
lambda: |-
if ((time(NULL)-id(LD1125H_Last_Time))>id(LD1125H_Clear_Time).state) {
if ((id(LD1125H_Clearence_Status) == false) || (id(LD1125H_Occupancy).state != "Clearance")) {
id(LD1125H_Occupancy).publish_state("Clearance");
id(LD1125H_Clearence_Status) = true;
}
if (id(LD1125H_MovOcc_Binary).state == true) {
id(LD1125H_MovOcc_Binary).publish_state(false);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
#############################################
# Number Sensors (custom component)
# refer https://github.com/ssieb/esphome_components/tree/master/components/serial
#############################################
number:
- platform: template
name: ${upper_devicename} LD1125H mth1 #mth1 is 0~2.8m Sensitivity.
id: LD1125H_mth1
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "60.0" #Default mth1 Setting
min_value: 10.0
max_value: 600.0
step: 5.0
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th1st = "mth1=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th1st.begin(), th1st.end());
- platform: template
name: ${upper_devicename} LD1125H mth2 #mth2 is 2.8~8m Sensitivity.
id: LD1125H_mth2
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "30" #Default mth2 Setting
min_value: 5
max_value: 300
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th2st = "mth2=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th2st.begin(), th2st.end());
- platform: template
name: ${upper_devicename} LD1125H mth3 #mth3 is above 8m Sensitivity.
id: LD1125H_mth3
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "20" #Default mth3 Setting
min_value: 5
max_value: 200
step: 5
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string th3st = "mth3=" + str_sprintf("%.0f",x) +"\r\n";
return std::vector<uint8_t>(th3st.begin(), th3st.end());
- platform: template
name: ${upper_devicename} LD1125H rmax #rmax is max detection distance.
id: LD1125H_rmax
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "8" #Default rmax Setting
min_value: 0.4
max_value: 12
step: 0.1
set_action:
then:
- uart.write:
id: LD1125H_UART_BUS
data: !lambda |-
std::string rmaxst = "rmax=" + str_sprintf("%.1f",x) +"\r\n";
return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
- platform: template
name: ${upper_devicename} LD1125H Clearence Time
id: LD1125H_Clear_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "5" #LD1125H Mov/Occ > Clearence Time Here
min_value: 0.5
max_value: 20
step: 0.5
- platform: template
name: ${upper_devicename} LD1125H Movement Time
id: LD1125H_Mov_Time
icon: "mdi:cogs"
optimistic: true
restore_value: true #If you don't want to store the setting at ESP, set it to false.
initial_value: "1" #LD1125H Mov > Occ Time Here
min_value: 0.5
max_value: 10
step: 0.5
#############################################
# General Sensors
# https://esphome.io/components/sensor/index.html
#############################################
sensor:
- platform: bme280_i2c
temperature:
name: ${upper_devicename} BME280 Temp
accuracy_decimals: 1
oversampling: 2x
pressure:
name: ${upper_devicename} BME280 Pressure
oversampling: 2x
humidity:
name: ${upper_devicename} BME280 Humidity
accuracy_decimals: 1
oversampling: 2x
address: 0x76
update_interval: ${update_time}
- platform: uptime
name: ${upper_devicename} Uptime
- platform: template
name: ${upper_devicename} LD1125H Distance
id: LD1125H_Distance
icon: "mdi:signal-distance-variant"
unit_of_measurement: "m"
accuracy_decimals: 2
filters: # Use Fliter To Debounce
- sliding_window_moving_average:
window_size: 8
send_every: 2
- heartbeat: 0.2s
#############################################
# Text Sensors (custom component)
# refer https://github.com/ssieb/esphome_components/tree/master/components/serial
#############################################
text_sensor:
- platform: serial
uart_id: LD1125H_UART_BUS
name: ${upper_devicename} LD1125H UART Text
id: LD1125H_UART_Text
icon: "mdi:format-text"
internal: True #If Don't Want to See UART Receive Data, Set To True
on_value:
lambda: |-
if (id(LD1125H_UART_Text).state.substr(0,3) == "occ") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
if ((time(NULL)-id(LD1125H_Last_Mov_Time))>id(LD1125H_Mov_Time).state) {
id(LD1125H_Occupancy).publish_state("Occupancy");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == true) {
id(LD1125H_Mov_Binary).publish_state(false);
}
}
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
else if (id(LD1125H_UART_Text).state.substr(0,3) == "mov") {
id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
id(LD1125H_Occupancy).publish_state("Movement");
if (id(LD1125H_MovOcc_Binary).state == false) {
id(LD1125H_MovOcc_Binary).publish_state(true);
}
if (id(LD1125H_Mov_Binary).state == false) {
id(LD1125H_Mov_Binary).publish_state(true);
}
id(LD1125H_Last_Mov_Time) = time(NULL);
id(LD1125H_Last_Time) = time(NULL);
if (id(LD1125H_Clearence_Status) == true) {
id(LD1125H_Clearence_Status) = false;
}
}
- platform: template
name: ${upper_devicename} LD1125H Occupancy Status
id: LD1125H_Occupancy
icon: "mdi:motion-sensor"
#############################################
# Binary Sensors
# https://esphome.io/components/binary_sensor/index.html
#############################################
binary_sensor:
- platform: status
name: ${upper_devicename} Status
- platform: template
name: ${upper_devicename} LD1125H Occupancy or Movement
id: LD1125H_MovOcc_Binary
device_class: occupancy
- platform: template
name: ${upper_devicename} LD1125H Movement
id: LD1125H_Mov_Binary
device_class: motion