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v0.1
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c332701357
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7
Dockerfile
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7
Dockerfile
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@@ -0,0 +1,7 @@
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FROM python:3.13-slim
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RUN useradd --create-home --shell /bin/bash solarcontrol
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WORKDIR /script
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COPY solarcontrol.py ./
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RUN pip install --upgrade pip && pip3 install --no-cache-dir paho-mqtt python-dotenv requests
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USER solarcontrol
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ENTRYPOINT ["/usr/bin/python3", "solarcontrol.py"]
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38
README.md
38
README.md
@@ -1,3 +1,39 @@
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# SolarControl
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Enforce a zero export (or whatever consumption you like) policy with an OpenDTU-controlled inverter and energy data from MQTT
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Enforce a zero export (or whatever consumption you like) policy with an OpenDTU-controlled inverter and energy data from MQTT
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## Configuring and usage
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### Docker
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Todo
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### Bare-bone
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The script can be configured using the .env file where you can adjust it (hopefully perfect) to your needs. After that, just run the script:
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```bash
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python3 lge320reader.py
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```
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Please note: the .env file needs to be in the same folder or any other folder higher up in the directory structure as the script (more specifically, the WORKDIR). It is just a help, actually, the script searches for specific variables in its environment variables. It only loads the .env file so that you do not need to `export` all the files before running (see https://pypi.org/project/python-dotenv/ for more details). This also means that when using it in docker, you can set the docker containers environment file to that .env file and it will be accepted too.
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## Building docker
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To build the image for docker, simply use the following commands:
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```bash
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docker login # login to docker hub
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docker buildx create --name buildx-multi-arch
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docker buildx use buildx-multi-arch
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docker buildx build --no-cache --platform linux/amd64,linux/386,linux/arm/v5,linux/arm/v7,linux/arm64/v8,linux/ppc64le,linux/s390x -t bluefox42/solarcontrol:<TAGNAME> . --push
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```
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## License
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This project is licensed under the terms of the GNU General Public License v3.0 or later, see [COPYING](COPYING).
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@@ -1,5 +1,6 @@
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#!/usr/bin/python3
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import paho.mqtt.client as mqtt
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import os
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from dotenv import load_dotenv
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@@ -7,8 +8,23 @@ from time import time, sleep
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import json
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from threading import Thread
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import requests
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import urllib3 # only for exception handling
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import math
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# let's get colorful!
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class bcolors:
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HEADER = '\033[95m'
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OKBLUE = '\033[94m'
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OKCYAN = '\033[96m'
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OKGREEN = '\033[92m'
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WARNING = '\033[93m'
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FAIL = '\033[91m'
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ENDC = '\033[0m'
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BOLD = '\033[1m'
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UNDERLINE = '\033[4m'
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# get env vars
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load_dotenv()
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mq_broker = os.getenv('MQBROKER', None)
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@@ -45,11 +61,11 @@ powers = {"total": None, "total_house": None, "total_solar": None, "timestamp":
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# define mqtt callbacks
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def on_connect(client, userdata, flags, reason_code, properties):
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print(f"Connected with result code {reason_code}")
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print(f"{bcolors.OKGREEN}Connected with result code {bcolors.ENDC}{reason_code}")
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client.subscribe("lge320/#")
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client.subscribe("solar/ac/#")
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def on_message(client, userdata, msg):
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#print(f"{msg.topic}: {msg.payload}")
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#print(f"{msg.topic}: {msg.payload}") # just for debug / development reasons
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if msg.topic == mq_topic_p_house:
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powers_raw["house_ts"] = time()
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powers_raw["house"] = math.floor(((powers_raw["house"] + float(json.loads(msg.payload)["total_act_power"])) / 2)*10)/10
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@@ -73,7 +89,7 @@ def threaded_current_power_calculation():
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while last_powers == powers_raw:
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sleep(0.2)
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if abs(powers_raw["solar_ts"] - powers_raw["house_ts"]) < maximum_data_ts_deviation and powers_raw["solar"] != None and powers_raw["house"] != None:
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print(f"Current total P: {powers_raw['solar'] + powers_raw['house']} | Solar P: {powers_raw['solar']} | House P: {powers_raw['house']}")
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print(f"{bcolors.OKCYAN}Current total P: {bcolors.BOLD}{(powers_raw['solar'] + powers_raw['house']):.2f}{bcolors.ENDC} | {bcolors.WARNING}Solar P: {bcolors.BOLD}{powers_raw['solar']:.2f}{bcolors.ENDC} | {bcolors.OKBLUE}House P: {bcolors.BOLD}{powers_raw['house']:.2f}{bcolors.ENDC}")
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powers["total"] = powers_raw["solar"] + powers_raw["house"]
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powers["total_house"] = powers_raw["house"]
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powers["total_solar"] = powers_raw["solar"]
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@@ -87,12 +103,17 @@ def threaded_solar_power_limit_setting():
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last_time = time()
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while True:
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# Get current openDTU current limit status
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status = requests.get(opendtu_address.strip("/") + "/api/limit/status", auth=(opendtu_user, opendtu_pwd)).json().copy()
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try:
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status = requests.get(opendtu_address.strip("/") + "/api/limit/status", auth=(opendtu_user, opendtu_pwd)).json().copy()
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except (requests.exceptions.RequestException, urllib3.exceptions.HTTPError) as e:
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print(f"{bcolors.ERROR}Some error occured while trying to reach out to OpenDTU to get latest data about the inverter limit status. Skipping for now.{bcolors.ENDC}\n==== START OF EXCEPTION ====\n{e}\n==== END OF EXCEPTION ====")
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sleep(0.2) # wait some time (to avaid cpu overload on continuous unavailability of the service)
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continue # skip this loop pass
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while(time() - powers["timestamp"] > 1): # wait until recent data is available
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sleep(0.2)
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if status[opendtu_inverter_sn]["limit_set_status"] == "Ok" and powers["total"] != None:
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if status[opendtu_inverter_sn]["limit_set_status"] == "Ok" and powers["total"] != None and status[opendtu_inverter_sn]["max_power"] != 0:
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# calculate percentage to set the limit to
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new_ideal_limit = math.floor(((powers["total"]-power_target) / status[opendtu_inverter_sn]["max_power"]) * limit_correction_factor * 1000)/10 # * 100 because its a percentage
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if new_ideal_limit > power_target_max: new_ideal_limit = power_target_max
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@@ -112,17 +133,29 @@ def threaded_solar_power_limit_setting():
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if new_dampened_limit > power_target_max: new_dampened_limit = power_target_max
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if new_dampened_limit < power_target_min: new_dampened_limit = power_target_min
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if not dry_run:
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request_failed = False
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data_to_send = 'data={"serial":"'+opendtu_inverter_sn+'","limit_type":'+str(power_limit_type)+',"limit_value":'+str(new_dampened_limit)+'}'
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r = requests.post(opendtu_address.strip("/") + "/api/limit/config", data=data_to_send, headers={'Content-Type':'text/plain'}, auth=(opendtu_user, opendtu_pwd))
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print("Setting new limit over the API: " + str(new_dampened_limit) + f"% (previously: {cur_limit}% | currently targeting: {new_ideal_limit}%)... ", end="")
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#print(f"Current limit: {cur_limit}, new ideal limit: {new_ideal_limit}, new dampened limit: {new_dampened_limit}")
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if json.loads(r.text)["type"] == "success":
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print("Success!")
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else:
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print(f"Unsuccessful :( Code: {json.loads(r.text)['code']} ({json.loads(r.text)['type']})")
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print(r.text) # keep and uncomment for debug reasons
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print(f"Setting new limit via the API: {bcolors.OKBLUE}{bcolors.BOLD}{str(new_dampened_limit)}%{bcolors.ENDC} ({bcolors.OKGREEN}previously: {bcolors.BOLD}{cur_limit}%{bcolors.ENDC} | {bcolors.WARNING}currently targeting: {bcolors.BOLD}{new_ideal_limit}%{bcolors.ENDC})... ", end="")
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try:
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r = requests.post(opendtu_address.strip("/") + "/api/limit/config", data=data_to_send, headers={'Content-Type':'text/plain'}, auth=(opendtu_user, opendtu_pwd))
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except BaseException as e:
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request_failed = True
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if request_failed:
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print(f"{bcolors.FAIL}Unsuccessful :( The http request failed somehow. Printing traceback.{bcolors.ENDC}\n{e}")
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else:
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if "type" in json.loads(r.text).keys() and "code" in json.loads(r.text).keys():
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if json.loads(r.text)["type"] == "success":
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print(f"{bcolors.OKGREEN}Success!{bcolors.ENDC}")
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else:
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print(f"{bcolors.FAIL}Unsuccessful :( Code: {bcolors.BOLD}{json.loads(r.text)['code']} ({json.loads(r.text)['type']}){bcolors.ENDC}")
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print(r.text) # keep and uncomment for debug reasons
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else:
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print(f"{bcolors.FAIL}Failed. Got some weird response from OpenDTU while trying to set the new limit. Maybe the OpenDTU API has changed?{bcolors.ENDC}\nOpenDTUs response: (needs to be in JSON and contain the keys 'code' and 'type')\n{r.text}")
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else:
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print("Now the new limit would be set over the API (but DRY_RUN is either not specified or True): " + str(new_limit) + "%")
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print(f"{bcolors.WARNING}Now the new limit would be set via the API (but DRY_RUN is either not specified or True): {str(new_limit)}%")
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elif status[opendtu_inverter_sn]["max_power"] == 0:
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print(f"{bcolors.ERROR}OpenDTU is reporting strange values for the inverter's maximum power output. Skipping it for now.{bcolors.ENDC}")
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while (time() - last_time) < limit_update_interval:
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Reference in New Issue
Block a user