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Plug-and-play realization of the virtual infinite capacitor

机译:虚拟无限电容器的即插即用实现

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We propose a plug-and-play realization of the virtual infinite capacitor (VIC), which is an electronic circuit recently proposed in the literature for DC voltage filtering. The VIC is meant to replace large, expensive and unreliable electrolytic capacitors, and is mainly intended for applications where random fluctuations of the DC bus voltage may occur (i.e., the VIC is not tuned to one particular ripple frequerncy). Connecting a VIC into a larger circuit, such as a power supply based on a power factor compensator (PFC) is relatively complicated, because the VIC charge controller needs access to the voltage control loop of the power source (e.g., the PFC). The plug-and-play realization of the VIC, proposed in this paper, can be connected directly to the DC bus like a usual filtering capacitor, no extra connections are needed. This is achieved by automatically adjusting the reference voltage of the VIC so that it will be equal to the equilibrium voltage of the DC bus (i.e., the constant DC bus voltage at which current supply and current demand are equal). We investigate carefully the output impedance of the plug-and-play VIC. This impedance must behave like a relatively small capacitor both at very low and at very high frequencies, but must be very small (ideally, zero) at an intermediate range of frequencies (the range where the ripple is expected). For the stability of complex interconnected systems, it is recommended that the output impedance of the plug-and-play VIC should be positive-real. We discuss how to achieve these properties by very careful choice of controllers and filters. The results are tested by simulation and experiment using a 300V demo system with a 270W load.
机译:我们提出了虚拟无限电容器(VIC)的即插即用实现,这是最近在文献中提出的用于DC电压滤波的电子电路。 VIC旨在替代大型,昂贵且不可靠的电解电容器,并且主要用于可能发生直流母线电压随机波动的应用(即,VIC并未调整为一个特定的纹波频率)。将VIC连接到较大的电路(例如基于功率因数补偿器(PFC)的电源)相对复杂,因为VIC充电控制器需要访问电源(例如PFC)的电压控制回路。本文提出的VIC的即插即用实现可以像通常的滤波电容器一样直接连接到DC总线,不需要额外的连接。这是通过自动调整VIC的参考电压来实现的,使其等于DC总线的平衡电压(即,在恒定的DC总线电压下,电流供应和电流需求相等)。我们仔细研究了即插即用VIC的输出阻抗。在非常低的频率和非常高的频率下,该阻抗的表现都必须像一个相对较小的电容器,但在中间频率范围(预期纹波的范围)内,该阻抗必须非常小(理想情况下为零)。为确保复杂互连系统的稳定性,建议即插即用VIC的输出阻抗应为正实数。我们讨论如何通过非常小心地选择控制器和过滤器来实现这些属性。使用负载为270W的300V演示系统,通过仿真和实验来测试结果。

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