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Voltage-based droop control of renewables to avoid on-off oscillations caused by overvoltages

机译:基于电压的可再生能量下垂控制,以避免由过电压引起的开关振荡

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摘要

To achieve the environmental goals set by many governments, an increasing amount of renewable energy, often delivered by distributed-generation (DG) units, is injected into the electrical power system. Despite the many advantages of DG, this can lead to voltage problems, especially in times of a high local generation and a low local load. The traditional solution is to invest in more and stronger lines, which could lead to massive investments to cope with the huge rise of DG connection. Another common solution is to include hard curtailment; thus, ON-OFF control of DG units. However, hard curtailment potentially leads to ON-OFF oscillations of DG and a high loss of the available renewable energy as storage is often not economically viable. To cope with these issues, applying a grid-forming control in grid-connected DG units is studied in this paper. The voltage-based droop control that was originally developed for power sharing in islanded microgrids, enables an effective way for soft curtailment without communication. The power changes of the renewable energy sources are delayed to more extreme voltages compared to those of the dispatchable units. This restricts the renewable energy loss and avoids ON-OFF oscillations.
机译:为了实现许多政府设定的环境目标,通常通过分布式发电(DG)单元提供的越来越多的可再生能源被注入到电力系统中。尽管DG具有许多优点,但是这可能会导致电压问题,特别是在本地发电量较高且本地负载较低的情况下。传统的解决方案是投资更多和更强大的线路,这可能导致大量投资来应对DG连接的巨大兴起。另一个常见的解决方案是硬性削减。因此,可以控制DG单元。然而,由于存储通常在经济上不可行,因此,硬性削减可能会导致DG的开关振荡以及可用可再生能源的大量损失。为了解决这些问题,本文研究了在并网的DG单元中应用网格形成控制。基于电压的下垂控制最初是为孤岛微电网中的功率共享而开发的,它是一种无需通信即可进行软限流的有效方法。与可调度单元相比,可再生能源的功率变化被延迟到更高的极限电压。这限制了可再生能源的损失,并避免了开关振荡。

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