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Optimization of time-sharing output Maximum Current Tracking (MCT) strategy in subpanel level Distributed Maximum Power Point Tracking (DMPPT) application

机译:分面板级分布式最大功率点跟踪(DMPPT)应用中分时输出最大电流跟踪(MCT)策略的优化

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Distributed Maximum Power Point Tracking (DMPPT) has been revealed to be a technique increasing the efficiency and reliability of Photovoltaic (PV) systems in mismatch conditions. To further recover mismatch power loss inside PV panels, subpanel realization of DMPPT solution is developed as an improved penetration of DMPPT concept. This paper proposes a double loop control based subpanel level DMPPT system with a self-adjusted time-sharing Maximum Current Tracking (MCT) algorithm which detects the output current of series connected DC-DC converters. The proposal can always guarantee that all PV units output its individual maximum power regardless of irradiance cases with a greatly reduction of components such as control IC and sensors. Comparing with current commercial panel level solutions, common subpanel level mismatch power loss inside a PV panel can be totally recovered with single current sensor and control IC. The proposal of this paper can be utilized for further integration of PV optimizer.
机译:分布式最大功率点跟踪(DMPPT)已被证明是一种在不匹配条件下提高光伏(PV)系统效率和可靠性的技术。为了进一步恢复光伏面板内部的失配功率损耗,开发了DMPPT解决方案的子面板,以提高DMPPT概念的渗透性。本文提出了一种基于双回路控制的子面板级DMPPT系统,该系统具有自调整的分时最大电流跟踪(MCT)算法,该算法可检测串联DC-DC转换器的输出电流。该提议始终可以保证所有PV单元输出其各自的最大功率,而不管辐照情况如何,并且大大减少了控制IC和传感器等组件的数量。与当前的商用面板级解决方案相比,PV面板内部常见的子面板级失配功率损耗可以通过单个电流传感器和控制IC完全恢复。本文的建议可用于进一步整合光伏优化器。

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