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Small-disturbance voltage stability of OLTC decentralized reactive power droop control

机译:OLTC的小扰动电压稳定性和分散式无功功率下降控制

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Increasing installation of decentralized generators in distribution grids can cause critical grid states. In case of critical nodal voltages on-load tap-changers (OLTC) and reactive power control based on nodal voltage, Q(V), are regarded as comparably cheap solutions to delay or even to replace distribution grid reinforcement. Since both control schemes are based on nodal voltages and usually share no communication infrastructure, local oscillations between controllers are possible. This publication investigates small-disturbance voltage stability and potential local plant control oscillations of OLTC and multiple Q(V) in a rural low voltage feeder via dynamic RMS analysis.
机译:在配电网中越来越多地安装分散式发电机可能会导致严重的电网状态。在临界节点电压的情况下,有载分接开关(OLTC)和基于节点电压Q(V)的无功功率控制被认为是相当便宜的解决方案,可以延迟甚至取代配电网的加固。由于这两种控制方案都基于节点电压,并且通常不共享任何通信基础结构,因此控制器之间的局部振荡是可能的。该出版物通过动态RMS分析研究了农村低压馈线中OLTC和多个Q(V)的小扰动电压稳定性和潜在的本地工厂控制振荡。

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