Functional emp vues. Need to update 1,2.
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265
_data/emp-vue2-3.yaml
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265
_data/emp-vue2-3.yaml
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substitutions:
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device_name: emp-vue2-3
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dn: emp-vue2-3
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friendly_name: Emporia Vue2 3
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cir01name: Bed4
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cir01phase: phase_a
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cir01mult: "1"
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cir02name: Bed2,3
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cir02phase: phase_b
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cir02mult: "1"
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cir03name: Kit-Lights
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cir03phase: phase_a
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cir03mult: "1"
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cir04name: Family-Rm
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cir04phase: phase_b
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cir04mult: "1"
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cir05name: 3rd-Floor
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cir05phase: phase_a
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cir05mult: "1"
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cir06name: MBR-Server
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cir06phase: phase_b
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cir06mult: "1"
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cir07name: Fire
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cir07phase: phase_b
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cir07mult: "1"
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cir08name: MBR-Bath
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cir08phase: phase_a
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cir08mult: "1"
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cir09name: Gar-Lights
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cir09phase: phase_b
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cir09mult: "1"
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cir10name: Sec-Bath-Lights
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cir10phase: phase_a
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cir10mult: "1"
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cir11name: Current-Monitor
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cir11phase: phase_b
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cir11mult: "1"
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cir12name: Current-Monitor
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cir12phase: phase_a
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cir12mult: "1"
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cir13name: None
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cir13phase: phase_b
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cir13mult: "1"
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cir14name: None
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cir14phase: phase_a
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cir14mult: "1"
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cir15name: None
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cir15phase: phase_b
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cir15mult: "1"
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cir16name: None
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cir16phase: phase_a
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cir16mult: "1"
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<<: !include .wifi-oss.yaml
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esphome:
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name: ${device_name}
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friendly_name: ${friendly_name}
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external_components:
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- source: github://emporia-vue-local/esphome@dev
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components:
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- emporia_vue
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esp32:
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board: esp32dev
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framework:
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type: esp-idf
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version: recommended
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# Enable Home Assistant API
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api:
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# encryption:
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# Encryption key is generated by the new device wizard.
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# key: "<generated_key_from_new_device_wizard>"
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services:
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- service: play_rtttl
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variables:
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song_str: string
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then:
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- rtttl.play:
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rtttl: !lambda 'return song_str;'
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ota:
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# Create a secure password for pushing OTA updates.
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# password: "<secure_password>"
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# Enable logging
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logger:
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preferences:
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# the default of 1min is far too short--flash chip is rated
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# for approx 100k writes.
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flash_write_interval: "48h"
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output:
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- platform: ledc
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pin: GPIO12
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id: buzzer
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- platform: gpio
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pin: GPIO27
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id: buzzer_gnd
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rtttl:
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output: buzzer
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on_finished_playback:
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- logger.log: 'Song ended!'
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button:
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- platform: template
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name: "Two Beeps"
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on_press:
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- rtttl.play: "two short:d=4,o=5,b=100:16e6,16e6"
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light:
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- platform: status_led
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name: "D3_LED"
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pin: 23
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restore_mode: ALWAYS_ON
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entity_category: config
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i2c:
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sda: 21
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scl: 22
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scan: false
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frequency: 200kHz # recommended range is 50-200kHz
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id: i2c_a
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time:
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- platform: sntp
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id: my_time
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# these are called references in YAML. They allow you to reuse
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# this configuration in each sensor, while only defining it once
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.defaultfilters:
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- &moving_avg
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# we capture a new sample every 0.24 seconds, so the time can
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# be calculated from the number of samples as n * 0.24.
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sliding_window_moving_average:
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# we average over the past 2.88 seconds
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window_size: 12
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# we push a new value every 1.44 seconds
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send_every: 6
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- &invert
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# invert and filter out any values below 0.
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lambda: 'return max(-x, 0.0f);'
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- &pos
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# filter out any values below 0.
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lambda: 'return max(x, 0.0f);'
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- &abs
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# take the absolute value of the value
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lambda: 'return abs(x);'
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sensor:
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- platform: emporia_vue
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i2c_id: i2c_a
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phases:
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- id: phase_a # Verify that this specific phase/leg is connected to correct input wire color on device listed below
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input: BLACK # Vue device wire color
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calibration: 0.022 # 0.022 is used as the default as starting point but may need adjusted to ensure accuracy
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# To calculate new calibration value use the formula <in-use calibration value> * <accurate voltage> / <reporting voltage>
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voltage:
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name: "Phase A Voltage"
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filters: [*moving_avg, *pos]
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frequency:
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name: "Phase A Frequency"
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filters: [*moving_avg, *pos]
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- id: phase_b # Verify that this specific phase/leg is connected to correct input wire color on device listed below
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input: RED # Vue device wire color
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calibration: 0.022 # 0.022 is used as the default as starting point but may need adjusted to ensure accuracy
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# To calculate new calibration value use the formula <in-use calibration value> * <accurate voltage> / <reporting voltage>
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voltage:
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name: "Phase B Voltage"
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filters: [*moving_avg, *pos]
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phase_angle:
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name: "Phase B Phase Angle"
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filters: [*moving_avg, *pos]
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ct_clamps:
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- phase_id: phase_a
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input: "A" # Verify the CT going to this device input also matches the phase/leg
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power:
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name: "Phase A Power"
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id: phase_a_power
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filters: [*moving_avg, *pos]
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- phase_id: phase_b
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input: "B" # Verify the CT going to this device input also matches the phase/leg
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power:
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name: "Phase B Power"
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id: phase_b_power
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filters: [*moving_avg, *pos]
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# Pay close attention to set the phase_id for each breaker by matching it to the phase/leg it connects to in the panel
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- { phase_id: "${cir01phase}", input: "1", power: { name: "${cir01name} Power", id: cir01, filters: [ *moving_avg, *pos, multiply: "${cir01mult}" ] } }
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- { phase_id: "${cir02phase}", input: "2", power: { name: "${cir02name} Power", id: cir02, filters: [ *moving_avg, *pos, multiply: "${cir02mult}" ] } }
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- { phase_id: "${cir03phase}", input: "3", power: { name: "${cir03name} Power", id: cir03, filters: [ *moving_avg, *pos, multiply: "${cir03mult}" ] } }
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- { phase_id: "${cir04phase}", input: "4", power: { name: "${cir04name} Power", id: cir04, filters: [ *moving_avg, *pos, multiply: "${cir04mult}" ] } }
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- { phase_id: "${cir05phase}", input: "5", power: { name: "${cir05name} Power", id: cir05, filters: [ *moving_avg, *pos, multiply: "${cir05mult}" ] } }
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- { phase_id: "${cir06phase}", input: "6", power: { name: "${cir06name} Power", id: cir06, filters: [ *moving_avg, *pos, multiply: "${cir06mult}" ] } }
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- { phase_id: "${cir07phase}", input: "7", power: { name: "${cir07name} Power", id: cir07, filters: [ *moving_avg, *pos, multiply: "${cir07mult}" ] } }
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- { phase_id: "${cir08phase}", input: "8", power: { name: "${cir08name} Power", id: cir08, filters: [ *moving_avg, *pos, multiply: "${cir08mult}" ] } }
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- { phase_id: "${cir09phase}", input: "9", power: { name: "${cir09name} Power", id: cir09, filters: [ *moving_avg, *pos, multiply: "${cir09mult}" ] } }
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- { phase_id: "${cir10phase}", input: "10", power: { name: "${cir10name} Power", id: cir10, filters: [ *moving_avg, *pos, multiply: "${cir10mult}" ] } }
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- { phase_id: "${cir11phase}", input: "11", power: { name: "${cir11name} Power", id: cir11, filters: [ *moving_avg, *pos, multiply: "${cir11mult}" ] } }
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- { phase_id: "${cir12phase}", input: "12", power: { name: "${cir12name} Power", id: cir12, filters: [ *moving_avg, *pos, multiply: "${cir12mult}" ] } }
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- { phase_id: "${cir13phase}", input: "13", power: { name: "${cir13name} Power", id: cir13, filters: [ *moving_avg, *pos, multiply: "${cir13mult}" ] } }
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- { phase_id: "${cir14phase}", input: "14", power: { name: "${cir14name} Power", id: cir14, filters: [ *moving_avg, *pos, multiply: "${cir14mult}" ] } }
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- { phase_id: "${cir15phase}", input: "15", power: { name: "${cir15name} Power", id: cir15, filters: [ *moving_avg, *pos, multiply: "${cir15mult}" ] } }
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- { phase_id: "${cir16phase}", input: "16", power: { name: "${cir16name} Power", id: cir16, filters: [ *moving_avg, *pos, multiply: "${cir16mult}" ] } }
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- platform: template
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name: "Total Power"
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lambda: return id(phase_a_power).state + id(phase_b_power).state;
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update_interval: 2.88s
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id: total_power
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device_class: power
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state_class: measurement
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unit_of_measurement: "W"
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- platform: total_daily_energy
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name: "Total Daily Energy"
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power_id: total_power
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accuracy_decimals: 0
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- platform: template
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name: "Balance Power"
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lambda: !lambda |-
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return max(0.0f, id(total_power).state -
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id(cir01).state -
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id(cir02).state -
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id(cir03).state -
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id(cir04).state -
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id(cir05).state -
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id(cir06).state -
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id(cir07).state -
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id(cir08).state -
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id(cir09).state -
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id(cir10).state -
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id(cir11).state -
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id(cir12).state -
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id(cir13).state -
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id(cir14).state -
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id(cir15).state -
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id(cir16).state);
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update_interval: 2.88s
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id: balance_power
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device_class: power
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state_class: measurement
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unit_of_measurement: "W"
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- platform: total_daily_energy
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name: "Balance Daily Energy"
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power_id: balance_power
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accuracy_decimals: 0
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- { power_id: cir01, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir01name} Daily Energy" }
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- { power_id: cir02, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir02name} Daily Energy" }
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- { power_id: cir03, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir03name} Daily Energy" }
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- { power_id: cir04, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir04name} Daily Energy" }
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- { power_id: cir05, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir05name} Daily Energy" }
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- { power_id: cir06, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir06name} Daily Energy" }
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- { power_id: cir07, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir07name} Daily Energy" }
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- { power_id: cir08, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir08name} Daily Energy" }
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- { power_id: cir09, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir09name} Daily Energy" }
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- { power_id: cir10, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir10name} Daily Energy" }
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- { power_id: cir11, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir11name} Daily Energy" }
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- { power_id: cir12, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir12name} Daily Energy" }
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- { power_id: cir13, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir13name} Daily Energy" }
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- { power_id: cir14, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir14name} Daily Energy" }
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- { power_id: cir15, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir15name} Daily Energy" }
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- { power_id: cir16, platform: total_daily_energy, accuracy_decimals: 0, name: "${cir16name} Daily Energy" }
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