Voltage limitation by autonomous reactive power control of grid connected photovoltaic inverters

G. Kerber, R. Witzmann, Hannes Sappl
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引用次数: 74

Abstract

The increasing decentralized power generation in the public low voltage grid may lead to a reversed load flow. The common assumption that the highest voltage in a low voltage grid is on the transformer busbar is then no longer appropriate. Therefore the risk of overvoltages rises significantly. A highly effective way to keep the voltage within the allowed bandwidth is to utilize the ability of modern voltage source converters (VSC) to provide or absorb reactive power while feeding active power into the network (4-quadrant operation). With a reactive power consumption while active power is fed in the voltage rise can be limited. For practical use a grid adaptive reactive power control system which works without manual set up or communication requirements is desirable. Therefore an exemplary adaptive control system was designed, modeled in a load flow simulation program and tested on different low voltage (LV) grid models for network classes prone to voltage problems. The results show that simple parameter sets can be found which will work on most grid infrastructures without further adjustment. But they also show the problems to keep the voltage within the limits without decreasing the maximum grid transport capacity by consuming innecessary reactive power.
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并网光伏逆变器自主无功控制电压限制
公共低压电网分散式发电的增加可能导致负荷潮流的反向。低压电网中最高电压在变压器母线上的常见假设不再合适。因此,过电压的风险显著增加。将电压保持在允许的带宽内的一个非常有效的方法是利用现代电压源转换器(VSC)的能力,在向网络馈送有功功率的同时提供或吸收无功功率(四象限操作)。与无功功率消耗,而有功功率在电压上升可以被限制。在实际应用中,电网自适应无功控制系统不需要人工设置或通信要求。因此,设计了一个示例性的自适应控制系统,在负荷流仿真程序中建模,并在不同的低压(LV)电网模型上对容易出现电压问题的网络类别进行了测试。结果表明,可以找到适用于大多数电网基础设施的简单参数集,而无需进一步调整。但它们也显示了在不消耗不必要的无功功率而降低最大电网传输能力的情况下保持电压在限制范围内的问题。
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