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Novel High-Performance Stand-Alone Solar PV System With High-Gain High-Efficiency DC–DC Converter Power Stages

机译:具有高增益高效DC-DC转换器功率级的新型高性能独立式太阳能光伏系统

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摘要

This paper proposes a novel 3 stand-alone solar photovoltaic (PV) system configuration that uses high-gain high-efficiency dc–dc converters both in the forward power stage and the bidirectional battery interface. The high-voltage-gain converters enable the use of low-voltage PV and battery sources. This results in minimization of partial shading and parasitic capacitance effects on the PV source. Series connection of a large number of battery modules is obviated, preventing the overcharging and deep discharging issues that reduce the battery life. In addition, the proposed configuration facilitates “required power tracking (RPT)” of the PV source as per the load requirements, eliminating the use of expensive and “difficult to manage” dump loads. High-performance inverter operation is achieved through to reference frame transformation, which helps in generating precise information about the load's active power component for RPT, regulation of ac output voltage, and minimization of control complexity. Inverter output voltage is regulated by controlling the modulation index of sinusoidal pulsewidth modulation, resulting in a stable and reliable system operation. The active power demand is controlled by regulating the dc link voltage. All the analytical, simulation, and experimental results of this work are presented.
机译:本文提出了一种新颖的3个独立的太阳能光伏(PV)系统配置,该配置在前向功率级和双向电池接口中均使用高增益高效DC-DC转换器。高压增益转换器允许使用低压PV和电池电源。这样可将对PV源的部分阴影和寄生电容影响降至最低。避免了许多电池模块的串联连接,避免了过度充电和深度放电的问题,从而缩短了电池寿命。此外,根据负载要求,建议的配置有助于实现PV电源的“所需功率跟踪(RPT)”,从而避免了使用昂贵且“难以管理”的卸货负载。通过参考帧转换可以实现高性能的逆变器操作,这有助于生成有关负载的RPT有功功率分量,交流输出电压调节以及控制复杂度最小化的精确信息。通过控制正弦脉冲宽度调制的调制指数来调节逆变器输出电压,从而使系统运行稳定可靠。有功功率需求通过调节直流链路电压来控制。介绍了这项工作的所有分析,模拟和实验结果。

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