Design, Control and Analysis of Bi-directional DC-DC Converter with Battery Management System for Low Voltage Applications

N. Swain, Nivedita Pati, P. Kar
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Abstract

A Nanogrid is a model version of a smart grid with the ability to function as separate power generator. This feature allows for this grid to power single loads and apply for special applications. The DC Nanogrid comprises of a bi-directional converters along with Battery Management system (BMS). It draws powers from the grid in the absence of renewable energy sources and BMS to meet the load demand. The BMS generally uses bidirectional DC-DC converter for charging and discharging of the battery at regular interval. In this work detailed analysis of bidirectional DC-DC converter is presented and the simulation has been carried out using MATLAB. PI controller is designed and PWM scheme is planned, from step down to step up and step up to step down mode automatically based on source voltage. The constructed control logic offers bidirectional voltage regulation. The battery charging and discharging characteristics are realized.
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低压用双向DC-DC变换器电池管理系统的设计、控制与分析
纳米电网是智能电网的模型版本,具有独立发电机的功能。该特性允许该电网为单个负载供电,并适用于特殊应用。直流纳米电网由一个双向转换器和电池管理系统(BMS)组成。在没有可再生能源和BMS的情况下,它从电网中获取电力来满足负荷需求。BMS一般采用双向DC-DC变换器,定期对电池进行充放电。本文对双向DC-DC变换器进行了详细的分析,并利用MATLAB进行了仿真。设计了PI控制器,并规划了PWM方案,实现了基于源电压自动从降压到升压、升压到降压模式。构造的控制逻辑提供双向电压调节。实现了电池的充放电特性。
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