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@ -17,6 +17,10 @@ This is a standard config for the a3pool. Nothing special by far with 2 temp sen
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The temperature sensors have the `pool_temperature` and `solar_temperature` and will show report the pool temperature and solar temperature respectively every 10 seconds.
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There is also one switch that is designed to turn the pump on and off. This works by giving an 500ms long impulse that should turn the pump on/off and sensing on a GPIO ping whenever the pump is currently on/off. This switch carries the name of `pump`. I know HOW CREATIVE...
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It also has the possibility of having it's own clock.
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Simply adjust the time using the `start_h`, `start_m` as well as `end_h`, `end_m` and enable the `control` switch to ensure the automatic control in on. The button `sync_to_clock`is used to sync the system back to the clock without having to know/care about on/off times, simply press the button and it should switch to on/off if it should be on/off respectively.
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**HOWEVER: If the pump is set to off or to the physical clock with physical switch in the garage this will not work!** It will still report it's state correclty however.
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There is an other switch that does not have any functionality yet but it's `automate_control` if anyone wants to know.
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99
a3pool.yaml
99
a3pool.yaml
@ -32,6 +32,81 @@ binary_sensor:
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pullup: true
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id: pump_state
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number:
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- platform: template
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name: "Start Hour"
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id: start_h
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optimistic: true
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min_value: 0
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max_value: 23
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restore_value: true
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initial_value: 8
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mode: box
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step: 1
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- platform: template
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name: "Start Minute"
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id: start_m
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optimistic: true
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min_value: 0
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max_value: 59
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initial_value: 0
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restore_value: true
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mode: box
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step: 1
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- platform: template
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name: "End Hour"
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id: end_h
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optimistic: true
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min_value: 0
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max_value: 23
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restore_value: true
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initial_value: 20
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mode: box
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step: 1
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- platform: template
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name: "End Minute"
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id: end_m
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optimistic: true
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min_value: 0
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max_value: 59
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restore_value: true
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initial_value: 0
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mode: box
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step: 1
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button:
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- platform: template
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name: "Sync To Clock"
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on_press:
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then:
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- lambda: |-
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int startMins = (int) (id(start_h).state * 60) + id(start_m).state;
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int endMins = (int) (id(end_h).state * 60) + id(end_m).state;
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int nowMins = (id(a3poolTime).now().hour * 60) + id(a3poolTime).now().minute;
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if(!id(control).state){
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// Make sure wierd error or whatever
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return;
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}
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if(startMins < endMins){
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if(startMins < nowMins && nowMins < endMins){
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id(pump).turn_on();
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}
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else{
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id(pump).turn_off();
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}
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}
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else if(startMins > endMins){
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if(endMins < nowMins && nowMins < startMins){
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id(pump).turn_off();
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}
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else{
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id(pump).turn_on();
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}
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}
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switch:
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- platform: gpio
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pin: 5
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@ -41,12 +116,14 @@ switch:
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- switch.turn_off: relay
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- platform: template
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name: "Automate Control"
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id: control
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optimistic: true
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restore_state: true
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- platform: template
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optimistic: false
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name: pump
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id: pump
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lambda: |-
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if (id(pump_state).state) {
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return true;
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@ -70,6 +147,28 @@ switch:
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- delay: 500ms
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- switch.turn_off: relay
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time:
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timezone: "Europe/Vienna"
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id: a3poolTime
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platform: sntp
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on_time:
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- seconds: 0
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months: 4-10
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then:
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- if:
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condition:
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lambda: 'return id(a3poolTime).now().hour == (int) id(start_h).state && id(a3poolTime).now().minute == (int) id(start_m).state && id(control).state;'
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then:
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- switch.turn_on: pump
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- seconds: 0
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months: 4-10
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then:
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- if:
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condition:
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lambda: 'return id(a3poolTime).now().hour == (int) id(end_h).state && id(a3poolTime).now().minute == (int) id(end_m).state && id(control).state;'
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then:
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- switch.turn_off: pump
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dallas:
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- pin: D4
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update_interval: 10s
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