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Voltage Responsive Distribution Networks: Comparing Autonomous and Centralized Solutions

机译:电压响应配电网:比较自治解决方案和集中解决方案

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摘要

Power system voltage control has traditionally been the responsibility of transmission-connected reactive power resources. Accordingly, high penetration levels of distributed generation present new challenges for reactive power management. Simply stipulating voltage control operation for distributed generators will not generally deliver voltage-responsive reactive power flows at the transmission system level, due mainly to the voltage-isolating effects of tap-changing bulk supply transformers. Additionally, the resistance of distribution system conductors establishes an unhelpful interaction between active power flows and voltage magnitudes. This work uses optimal power flow techniques to explore two ways to overcome these challenges. Most innovatively, a methodology is presented to optimally select static voltage control settings for distributed generators and transformers, such that they will provide an autonomous voltage-responsive behavior without supervisory control systems. In this scheme, distributed generators are exposed to transmission voltage fluctuations as far as is feasible, by blocking the tapping of the bulk supply transformer when operating within an optimally-determined range of transmission voltages. Comparatively, an active control scheme is presented, where reactive power and tap positions are dispatched period-to-period to support the transmission system voltage. Comparing these approaches suggests the level of smart-grids investment required to effectively harness the reactive power available from distributed generation.
机译:传统上,电力系统电压控制是与传输连接的无功功率资源的责任。因此,分布式发电的高渗透水平对无功功率管理提出了新的挑战。简单地规定分布式发电机的电压控制操作通常不会在传输系统级别上提供电压响应无功功率流,这主要是由于分接变换大容量供电变压器的电压隔离效应。此外,配电系统导体的电阻在有功功率流和电压幅度之间建立了无用的相互作用。这项工作使用最佳的潮流技术来探索克服这些挑战的两种方法。最具创新性的是,提出了一种方法,可以为分布式发电机和变压器最佳地选择静态电压控制设置,从而使它们无需监督控制系统即可提供自主的电压响应行为。在该方案中,当在最佳确定的传输电压范围内运行时,通过阻止散装电源变压器的抽头,分布式发电机将尽可能承受传输电压波动。比较而言,提出了一种主动控制方案,其中无功功率和抽头位置会定期分配以支持传输系统电压。比较这些方法表明,有效利用分布式发电的无功功率所需的智能电网投资水平。

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