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Experimental Verification of Internal Parameter in Magnetically Coupled Boost Used as PV Optimizer in Parallel Association

机译:磁耦合升压中的实验验证用作PV优化器在并行关联中

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This paper presents results of experiments aimed to verify a formula able to compute duty cycle in the case of pulse width modulation control for a DC-DC converter designed and realized in laboratory. This converter, called Magnetically Coupled Boost (MCB) is sized to step up only one photovoltaic module voltage to supply directly grid inverters. Duty cycle formula will be checked in a first time by identifying internal parameter, auto-transformer ratio, and in a second time by checking stability of operating point on the side of photovoltaic module. Thinking on nature of generator source and load connected to converter leads to imagine additional experiments to decide if auto-transformer ratio parameter could be used with fixed value or on the contrary with adaptive value. Effects of load variations on converter behavior or impact of possible shading on photovoltaic module are also mentioned, with aim to design robust control laws, in the case of parallel association, designed to compensate unwanted effects due to output voltage coupling.
机译:本文提出了实验的结果,旨在验证能够在实验室设计和实现的DC-DC转换器的脉冲宽度调制控制的情况下能够计算占空比的配方。该转换器称为磁耦合升压(MCB)的尺寸仅限于仅介入一个光伏模块电压以直接提供电网逆变器。通过识别内部参数,自动变压器比率,通过检查光伏模块侧面的操作点的稳定性,首次通过识别内部参数,自动变压器比和第二次检查占空比公式。关于发电机源的性质和连接到转换器的负载的思考导致额外的实验来确定自动变压器比参数是否可以与固定值或相反的自适应值一起使用。还提到了负载变化对电压模块可能着色的影响的影响,其目的是在并行关联的情况下设计鲁棒控制定律,旨在补偿由于输出电压耦合引起的不希望的效果。

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