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Current Sensorless Equalization Strategy for a Single-Switch Voltage Equalizer Using Multistacked Buck–Boost Converters for Photovoltaic Modules Under Partial Shading

机译:在部分阴影下使用光伏模块的多堆叠降压-升压转换器的单开关电压均衡器的无传感器电流均衡策略

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摘要

Differential power processing converters and voltage equalizers have been proposed and used for photovoltaic strings comprising multiple modules/substrings connected in series in order to preclude negative influences of partial shading. The single-switch voltage equalizer using multistacked buck-boost converters can significantly reduce the necessary switch count compared to that of conventional topologies, achieving simplified circuitry. However, multiple current sensors are necessary for this single-switch equalizer to effectively perform equalization. In this paper, a current sensorless equalization technique (ΔV-controlled equalization) is presented. The equalization strategy using the ΔV-controlled equalization is explained and discussed on the basis of comparison with current-controlled equalization strategies. Experimental equalization tests emulating partial-shading conditions were performed using the single-switch equalizer employing the ΔV -controlled equalization. Negative impacts of partial shading were successfully precluded, demonstrating the efficacy of the proposed ΔV-controlled equalization strategy.
机译:已经提出了差分功率处理转换器和电压均衡器,并将其用于包括串联连接的多个模块/子串的光伏串,以防止部分阴影的负面影响。与传统拓扑相比,使用多层堆叠降压-升压转换器的单开关电压均衡器可以显着减少所需的开关数量,从而简化了电路。然而,多个电流传感器对于该单开关均衡器有效地执行均衡是必需的。本文提出了一种电流无传感器均衡技术(ΔV控制的均衡)。在与电流控制均衡策略进行比较的基础上,对使用ΔV控制均衡的均衡策略进行了说明和讨论。使用采用ΔV控制的均衡的单开关均衡器进行了模拟局部遮光条件的实验均衡测试。成功排除了部分阴影的负面影响,证明了建议的ΔV控制均衡策略的功效。

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