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Solar Power Based Intelligent Battery Charging System Compatible with Existing Home Inverters

机译:兼容现有家用逆变器的基于太阳能的智能电池充电系统

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PV modules are increasingly used in battery charging applications in home inverter systems due to the power crisis faced in developing countries. This work aims at maximizing the use of solar energy by charging the battery as well as by supplying it to the loads when in excess. This system is implemented using two subsystems namely a charge controller and a Power Flow Management System(PMS). The charge controller is used to control the power flow from the PV module to the battery by operating in two modes. The Maximum Power Point Tracking mode(MPPT) extracts maximum power from PV panels and the Voltage Control Mode prevents overcharging of the battery. A 160W prototype of the charge controller is simulated in MATLAB/Simulink environment and is implemented in hardware. The operation of the controller in the two modes is verified and the relevant results are presented. A PV system implemented in houses involves various power sources and sinks. A control strategy is formulated in the PMS to balance the power flow among these elements using State of charge (SoC) of the battery as the criterion. The SoC is determined using coulometric measurements and is periodically recalibrated using Open Circuit Voltage method. The PMS is implemented and verified using experimental results and the energy savings are presented.
机译:由于发展中国家面临的电力危机,光伏模块越来越多地用于家庭逆变器系统的电池充电应用中。这项工作旨在通过给电池充电以及在过量时将其提供给负载来最大程度地利用太阳能。该系统使用两个子系统来实现,即充电控制器和功率流管理系统(PMS)。充电控制器用于通过两种模式操作来控制从PV模块到电池的功率流。最大功率点跟踪模式(MPPT)可从光伏面板中提取最大功率,电压控制模式可防止电池过度充电。在MATLAB / Simulink环境中模拟了160W充电控制器的原型,并在硬件中实现。验证了控制器在两种模式下的操作,并给出了相关结果。在房屋中实施的光伏系统涉及各种电源和接收器。在PMS中制定了一种控制策略,以电池的荷电状态(SoC)为标准来平衡这些元素之间的功率流。 SoC是使用电量测量法确定的,并使用开路电压方法定期进行重新校准。使用实验结果实施并验证了PMS,并提出了节能效果。

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