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Implementing a DC UPS with Battery’s State of Charge Estimation Based on Coulomb-Counting Method

机译:基于库仑计数方法实现具有电池电量估计状态的DC UPS

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Embedded applications with requirement of portability need rechargeable battery. A novel DC Uninterruptible Power Supply (UPS) system with battery charging and battery's State of Charge (SOC) monitoring system has been proposed in this paper. DC UPS systems are evolved in recent times due to requirement of fewer power conversion stages as compared to traditional UPS. This paper describes the DC UPS circuit which transits instantly and automatically from external power supply to battery source and vice versa when external power supply is removed and applied respectively. Modes of operation of DC UPS are explained in this paper. Proposed circuit uses rechargeable battery and thus, a battery charging circuit and battery's SOC estimation circuit are part of the proposed circuit. Battery's SOC is estimated by Coulomb counter method. Charging circuit diagram and designing of its components are explained. SOC estimation is based on integrating current through the battery, which is done by coulomb counter - LTC4150 which is interfaced with a micro-controller. Initial SOC estimation is one of the important tasks while implementing coulomb counter method. It is estimated by measuring Open Circuit Voltage (OCV) of battery and mapping it to get corresponding initial SOC. Proposed circuit is designed in such a way that, if battery voltage reduces to 3.3V while discharging, circuit disconnects battery from system till external supply is available to charge the battery. Microcontroller is programmed to calculate and display Initial SOC, SOC, and battery voltage on serial monitor.
机译:具有可移植性要求的嵌入式应用需要可充电电池。本文已经提出了一种新的DC不间断电源(UPS)电池电量和电池充电状态(SOC)监测系统。由于与传统UPS相比,由于要求更少的电源转换阶段,DC UPS系统在近期演变。本文介绍了直接且自动从外部电源转换到电池源的DC UPS电路,并分别施加外部电源时反之亦然。本文解释了DC UPS的操作模式。所提出的电路使用可充电电池,因此,电池充电电路和电池的SOC估计电路是所提出的电路的一部分。电池的SOC由Coulomb计数器方法估算。解释了充电电路图和其组件的设计。 SOC估计基于通过电池积分电流,由Coulomb计数器 - LTC4150与微控制器接口的Coulomb计数器-LTC4150进行。初始SOC估计是实现库仑计数器方法时的重要任务之一。通过测量电池的开路电压(OCV)并将其映射以获得相应的初始SoC来估计。提出的电路采用这种方式设计,如果电池电压降至3.3V,在放电时,电路断开电池从系统连接到外部电源可用于为电池充电。微控制器被编程为在串行监视器上计算和显示初始SOC,SOC和电池电压。

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