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Characterisation of flicker emission and propagation in distribution networks with bi-directional power flows

机译:具有双向潮流的配电网中闪烁发射和传播的特性

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摘要

With the increasing penetration levels of intermittent and fluctuating energy sources such as wind generating systems in the electricity grid, resulting voltage fluctuations and flicker can be expected to become an important power quality considerations. Due to significant bidirectional power flows resulting from large renewable power generation systems connected to downstream, voltage fluctuations may propagate from downstream to upstream. The work presented in this paper investigates and characterises flicker emission and propagation resulting from fluctuating generating sources connected to a distribution network. Mathematical models are developed for flicker emission under different generator control strategies and flicker propagation to upstream network. These emission and propagation characteristics are investigated and verified using a test network comprised of a wind farm. The study has revealed that flicker emission characteristics are influenced in a detrimental manner by the reactive power control strategy of the generator and the flicker attenuation characteristics are influenced by the various load types connected to the distribution feeder.
机译:随着间歇性和波动性能源(例如电网中的风力发电系统)的渗透水平不断提高,预期产生的电压波动和闪烁将成为重要的电能质量考虑因素。由于连接到下游的大型可再生能源发电系统产生了巨大的双向潮流,因此电压波动可能会从下游传播到上游。本文介绍的工作调查并描述了由于与配电网相连的发电源波动而引起的闪烁发射和传播。针对不同发电机控制策略下的闪烁发射以及闪烁向上游网络的传播,开发了数学模型。使用由风电场组成的测试网络对这些辐射和传播特性进行了调查和验证。研究表明,闪变发射特性受到发电机无功功率控制策略的有害影响,而闪变衰减特性则受连接到配电馈线的各种负载类型的影响。

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