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Minimizing the effects of shadowing in a PV module by means of active voltage sharing

机译:通过有效的电压共享将光伏组件中的阴影影响最小化

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Negative effects in a two-section-module PV system due to shadowing are minimized by using active voltage sharing of section voltages. Instead of conventional bypass diodes, a bidirectional buck-boost-type circuit with current control guarantees equal section voltages yielding a unique maximum power point for the global system. Connecting an external maximum point power tracking (MPPT) converter results in bigger power extraction than the one obtained with the bypass diodes case, the improvement being in some cases up to 40%. Also, voltage values corresponding to the maximum power point (MPP) are less scattered than in the bypass diode solution, this facilitating the MPPT converter operation. To improve the efficiency, the current control strategy permits to identify the conditions to disconnect the bypass. PSIM simulations verify the theoretical predictions of the proposed technique.
机译:通过使用分段电压的有源电压共享,可以将由阴影引起的两段式模块光伏系统中的负面影响降至最低。具有电流控制功能的双向降压-升压型电路代替了传统的旁路二极管,可确保相等的截面电压,从而为全球系统提供独特的最大功率点。与使用旁路二极管的情况相比,连接外部最大点功率跟踪(MPPT)转换器可产生更大的功率提取,在某些情况下可提高40%。此外,与最大功率点(MPP)对应的电压值的分散程度要比旁路二极管解决方案小,这有助于MPPT转换器的工作。为了提高效率,当前的控制策略允许确定断开旁路的条件。 PSIM仿真验证了所提出技术的理论预测。

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