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# Copyright (c) Quectel Wireless Solution, Co., Ltd.All Rights Reserved.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
import utime
from misc import Power, ADC
from machine import Pin, ExtInt
from usr.modules.logging import getLogger
log = getLogger(__name__)
BATTERY_OCV_TABLE = {
"nix_coy_mnzo2": {
55: {
4152: 100, 4083: 95, 4023: 90, 3967: 85, 3915: 80, 3864: 75, 3816: 70, 3773: 65, 3737: 60, 3685: 55,
3656: 50, 3638: 45, 3625: 40, 3612: 35, 3596: 30, 3564: 25, 3534: 20, 3492: 15, 3457: 10, 3410: 5, 3380: 0,
},
20: {
4143: 100, 4079: 95, 4023: 90, 3972: 85, 3923: 80, 3876: 75, 3831: 70, 3790: 65, 3754: 60, 3720: 55,
3680: 50, 3652: 45, 3634: 40, 3621: 35, 3608: 30, 3595: 25, 3579: 20, 3548: 15, 3511: 10, 3468: 5, 3430: 0,
},
0: {
4147: 100, 4089: 95, 4038: 90, 3990: 85, 3944: 80, 3899: 75, 3853: 70, 3811: 65, 3774: 60, 3741: 55,
3708: 50, 3675: 45, 3651: 40, 3633: 35, 3620: 30, 3608: 25, 3597: 20, 3585: 15, 3571: 10, 3550: 5, 3500: 0,
},
},
}
class Battery(object):
"""This class is for battery info.
This class can get battery voltage and energy.
if adc_args is not None, use cbc to read battery
Args:
adc_args(tuple): (adc_num, adc_period, factor)
adc_num: ADC channel num
adc_period: Cyclic read ADC cycle period
factor: calculation coefficient
chrg_gpion(int): CHRG GPIOn
stdby_gpion(int): STDBY GPIOn
battery_ocv(str): Battery OCV name
"""
def __init__(self, adc_args=None, chrg_gpion=None, stdby_gpion=None, battery_ocv="nix_coy_mnzo2"):
self.__energy = 100
self.__temp = 20
# ADC params
self.__adc = None
if adc_args:
self.__adc_num, self.__adc_period, self.__factor = adc_args
if not isinstance(self.__adc_num, int):
raise TypeError("adc_args adc_num is not int number.")
if not isinstance(self.__adc_period, int):
raise TypeError("adc_args adc_period is not int number.")
if not isinstance(self.__factor, float):
raise TypeError("adc_args factor is not int float.")
self.__adc = ADC()
# Charge params
self.__charge_callback = None
self.__charge_status = None
self.__chrg_gpion = chrg_gpion
self.__stdby_gpion = stdby_gpion
self.__chrg_gpio = None
self.__stdby_gpio = None
self.__chrg_exint = None
self.__stdby_exint = None
if self.__chrg_gpion is not None and self.__stdby_gpion is not None:
self.__init_charge()
if not BATTERY_OCV_TABLE.get(battery_ocv):
raise TypeError("Battery OCV %s is not support." % battery_ocv)
self.__battery_ocv = battery_ocv
def __chrg_callback(self, args):
"""Charge status change callback"""
self.__update_charge_status()
if self.__charge_callback is not None:
self.__charge_callback(self.__charge_status)
def __stdby_callback(self, args):
"""Charge status change callback"""
self.__update_charge_status()
if self.__charge_callback is not None:
self.__charge_callback(self.__charge_status)
def __update_charge_status(self):
"""Update Charge status by gpio status"""
chrg_level = self.__chrg_gpio.read()
stdby_level = self.__stdby_gpio.read()
if chrg_level == 1 and stdby_level == 1:
self.__charge_status = 0
elif chrg_level == 0 and stdby_level == 1:
self.__charge_status = 1
elif chrg_level == 1 and stdby_level == 0:
self.__charge_status = 2
else:
raise TypeError("CHRG and STDBY cannot be 0 at the same time!")
def __init_charge(self):
"""Init charge Pin and ExtInt"""
self.__chrg_gpio = Pin(self.__chrg_gpion, Pin.IN, Pin.PULL_DISABLE)
self.__stdby_gpio = Pin(self.__stdby_gpion, Pin.IN, Pin.PULL_DISABLE)
self.__chrg_exint = ExtInt(self.__chrg_gpion, ExtInt.IRQ_RISING_FALLING, ExtInt.PULL_PU, self.__chrg_callback)
self.__stdby_exint = ExtInt(self.__stdby_gpion, ExtInt.IRQ_RISING_FALLING, ExtInt.PULL_PU, self.__stdby_callback)
self.__chrg_exint.enable()
self.__stdby_exint.enable()
self.__update_charge_status()
def __get_soc_from_dict(self, key, volt_arg):
"""Get battery energy from map"""
if BATTERY_OCV_TABLE[self.__battery_ocv].get(key):
volts = sorted(BATTERY_OCV_TABLE[self.__battery_ocv][key].keys(), reverse=True)
pre_volt = 0
volt_not_under = 0 # Determine whether the voltage is lower than the minimum voltage value of soc.
for volt in volts:
if volt_arg > volt:
volt_not_under = 1
soc1 = BATTERY_OCV_TABLE[self.__battery_ocv][key].get(volt, 0)
soc2 = BATTERY_OCV_TABLE[self.__battery_ocv][key].get(pre_volt, 0)
break
else:
pre_volt = volt
if pre_volt == 0: # Input Voltarg > Highest Voltarg
return soc1
elif volt_not_under == 0:
return 0
else:
return soc2 - (soc2 - soc1) * (pre_volt - volt_arg) // (pre_volt - volt)
def __get_soc(self, temp, volt_arg):
"""Get battery energy by temperature and voltage"""
if temp > 30:
return self.__get_soc_from_dict(55, volt_arg)
elif temp < 10:
return self.__get_soc_from_dict(0, volt_arg)
else:
return self.__get_soc_from_dict(20, volt_arg)
def __get_power_vbatt(self):
"""Get vbatt from power"""
return int(sum([Power.getVbatt() for i in range(100)]) / 100)
def __get_adc_vbatt(self):
"""Get vbatt from adc"""
self.__adc.open()
utime.sleep_ms(self.__adc_period)
adc_list = list()
for i in range(self.__adc_period):
adc_list.append(self.__adc.read(self.__adc_num))
utime.sleep_ms(self.__adc_period)
adc_list.remove(min(adc_list))
adc_list.remove(max(adc_list))
adc_value = int(sum(adc_list) / len(adc_list))
self.__adc.close()
vbatt_value = adc_value * (self.__factor + 1)
return vbatt_value
def set_temp(self, temp):
"""Set now temperature."""
if isinstance(temp, int) or isinstance(temp, float):
self.__temp = temp
return True
return False
def set_charge_callback(self, charge_callback):
"""Set charge status change callback"""
if self.__chrg_gpion is not None and self.__stdby_gpion is not None:
if callable(charge_callback):
self.__charge_callback = charge_callback
return True
return False
@property
def voltage(self):
"""Get battery voltage"""
if self.__adc is None:
return self.__get_power_vbatt()
else:
return self.__get_adc_vbatt()
@property
def energy(self):
"""Get battery energy"""
self.__energy = self.__get_soc(self.__temp, self.voltage)
return self.__energy
@property
def charge_status(self):
"""Get charge status
Returns:
0 - Not charged
1 - Charging
2 - Finished charging
"""
self.__update_charge_status()
return self.__charge_status
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