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Effect of minimizing input capacitance in VSI-based renewable energy source converters

机译:在基于VSI的可再生能源转换器中最小化输入电容的影响

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Most of single or three-phase converters used in interfacing renewable energy sources (RES) to the power grid originate from VSI-based topologies. A common practice is to connect a capacitor between the RES and the VSI switch matrix to filter the pulsating current drawn by the converter. When a converter is supplied by a RES, one is usually interested in controlling the converter input voltage for maximal power transfer. The VSI incorporates a RHP-zero in its control-to-output transfer function when the operating point is moved from the constant voltage to constant current region of the source. The frequency of the zero can be given based on the input capacitance, voltage and current. The RHP-zero will turn into a RHP-pole in the input voltage control loop, which leads to constraints between the capacitor sizing and control system design. This paper gives scientific insight into the capacitor sizing and control design, of which the latter is often ignored in the analyses but is an essential part of interfacing RES into the grid.
机译:用于将可再生能源(RES)连接到电网的大多数单相或三相转换器都源自基于VSI的拓扑。通常的做法是在RES和VSI开关矩阵之间连接一个电容器,以过滤转换器吸收的脉动电流。当采用RES供电的转换器时,通常希望控制转换器的输入电压以实现最大功率传输。当工作点从电源的恒定电压移至恒定电流区域时,VSI在其控制输出传递函数中包含RHP-零。零频率可以根据输入电容,电压和电流给出。 RHP-零将在输入电压控制环路中变成RHP极点,从而导致电容器尺寸与控制系统设计之间的约束。本文对电容器的尺寸和控制设计提供了科学的见解,其中电容器的尺寸和控制设计在分析中经常被忽略,但这是将RES连接到电网中的重要组成部分。

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