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A bi-level voltage control scheme of power systems via automatic zone partitioning

机译:通过自动区域划分的电力系统双层电压控制方案

摘要

Future power systems should effectively provide a continuous and rapid closed-loop control of system voltage over a broad range of temporal and spatial horizons, and for large deviations from the normal operation. A two-stage voltage control strategy is presented in this paper to reset the reference voltage values ofAVRs ofsynchronous generators, in a coordinated manner, to enhance the voltage profile on a system-wide basis. The power system is partitioned, automatically, into distinct voltage zones of closely coupled buses based on the concept of electrical distance. A pilot bus is then identified in each voltage zone that represents the most sensitive bus, in that zone, for the change ofsystem operating conditions. A distributed control law is developed to control the voltage magnitudes at these pilot buses. The main feature of the developed control is that it abrogates the need for tertiary higher control level, allowing direct interaction between the zone controller and the AVRs in their respective zones. The proposed voltage control scheme is implemented on the IEEE 118 bus under practical system conditions and results are presented
机译:未来的电力系统应在大范围的时间和空间范围内有效地对系统电压进行连续,快速的闭环控制,并且应与正常运行有较大的偏差。本文提出了一种两阶段的电压控制策略,以协调的方式重置同步发电机的AVR的参考电压值,以在整个系统范围内增强电压曲线。根据电气距离的概念,电力系统自动划分为紧密耦合的母线的不同电压区域。然后在每个电压区域中识别出一个引导总线,该电压代表该区域中最敏感的总线,用于更改系统工作条件。制定了分布式控制法则来控制这些先导总线上的电压大小。所开发控件的主要特征在于它消除了对更高级别的第三级控件的需求,从而允许区域控制器与各自区域中的AVR之间直接交互。提出的电压控制方案在实际系统条件下在IEEE 118总线上实现,并给出了结果

著录项

  • 作者

    Shaaban Mohamed;

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  • 年度 2011
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