A novel design of charge controller for a standalone solar photovoltaic system

M. Subashini, M. Ramaswamy
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引用次数: 12

Abstract

The paper presents the design of a charge controller for a standalone photovoltaic (PV) system. It comprises of a battery to store the energy for eliminating intermittency in the electricity supply, a boost converter solely operated to achieve MPPT and a bidirectional buck-boost DC-DC converter for intriguing the philosophy of charge control. The charge control algorithm envisages controlling the charging and discharging action in all the three operating zones of the battery. The perspective owes to reduce the overall system cost through the use of a novel battery charging management technique and accomplish greater battery charge levels for increasing its life expectancy. The scheme evaluates the potential of the intended method using simulation analyses from a 250W solar panel allowed to charge a 12V, 100AH battery. The results reveal a balanced energy stream out of the PV module directed towards battery as well as the load in addition to ensuring the optimal use of the PV power.
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一种新的独立太阳能光伏系统充电控制器设计
介绍了一种独立光伏系统的充电控制器设计。它包括一个电池,用于存储能量以消除电力供应中的间歇性,一个升压转换器,用于实现MPPT,以及一个双向降压-升压DC-DC转换器,用于探索电荷控制的原理。充电控制算法设想控制电池三个工作区域的充放电动作。通过使用一种新颖的电池充电管理技术来降低整体系统成本,并实现更高的电池充电水平,以延长其预期寿命。该方案使用250W太阳能电池板对12V, 100AH的电池进行模拟分析,以评估预期方法的潜力。结果显示,除了确保光伏功率的最佳使用外,光伏模块的能量流也均衡地流向电池和负载。
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