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Smart grid technologies for reactive power compensation in motor start applications

机译:智能电网技术,用于电动机启动应用中的无功功率补偿

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Several major power outages have been attributed to insufficient voltage support and subsequent voltage collapse. Accordingly, reactive power management has gain increased attention for reliability maintenance of both transmission and distribution systems. In particular, motor starting applications draw a large amount of reactive power and contribute to system degradation, particularly in a weak area. Consequently, this paper investigates smart grid technologies for reactive power compensation for motor starting applications in order to provide the necessary voltage support, reduce the inrush current, and decrease the motor starting time. The two dynamic VAR devices that are proposed are the Static Compensator (STATCOM) and Static Synchronous Series Compensator (SSSC). Detailed mathematical models are developed for these devices as well as the proposed control logic. Simulation results for STATCOM and SSSC-based compensators are provided to verify the accuracy of the developed models and control logic and observe the effectiveness of the dynamic VAR devices.
机译:几次重大停电是由于电压支持不足和随后的电压崩溃所致。因此,无功功率管理引起了对输配电系统的可靠性维护的越来越多的关注。特别是,电动机启动应用会汲取大量无功功率,并导致系统性能下降,特别是在较弱的区域。因此,本文研究了用于电网启动应用的无功功率补偿的智能电网技术,以提供必要的电压支持,减少浪涌电流并缩短电机启动时间。提出的两个动态VAR设备是静态补偿器(STATCOM)和静态同步串联补偿器(SSSC)。针对这些设备以及拟议的控制逻辑,开发了详细的数学模型。提供了基于STATCOM和基于SSSC的补偿器的仿真结果,以验证所开发模型和控制逻辑的准确性,并观察动态VAR设备的有效性。

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