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A Generalized Controller for Electric-Spring-Based Smart Load With Both Active and Reactive Power Compensation

机译:具有主动和无功补偿的电动弹簧智能负载的广义控制器

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摘要

With the electric spring (ES) being practically evaluated by utility companies in power grids, there is a need to explore its practical implementation aspects of general applications. In this paper, we propose three interior angle control principles for the ES. Systematic analysis and comparative study show that these three control principles lead to different smart load (SL) performance. The operating characteristic curves and distinctive features/advantages of the SL using these three control methods are analyzed and explained. A generalized controller structure suitable for the implementations of all these three angle control schemes is presented. It is practically shown that the same controller structure can be programmed to implement these three angle control strategies. This outcome is the first step to realize a programmable ES-based SL for providing multiple functions.
机译:随着电动弹簧(ES)实际上由电网的公用事业公司评估,需要探索其普通应用的实际实现方面。在本文中,我们为ES提出了三个内部角度控制原理。系统分析和比较研究表明,这三项控制原理导致不同的智能负载(SL)性能。分析并解释了使用这三种控制方法的操作特性曲线和SL的独特特征/优点。呈现了适用于所有这三个角度控制方案的实现的广义控制器结构。实际上,可以编程相同的控制器结构以实现这三个角度控制策略。该结果是实现用于提供多种功能的可编程ES的SL的第一步。

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