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An adaptive voltage-regulation control strategy of an electric spring based on output current feedback

机译:基于输出电流反馈的电弹簧的自适应电压调节控制策略

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摘要

With the increasing penetration of distributed generation (DG) in power systems, the voltage instability problem of power systems is receiving a great deal of attention. As new power electronics equipment, an electric spring (ES) can effectively restrain the bus voltage fluctuation caused by DG, and in addition achieve the new control paradigm of load demand following power generation. In this article, an adaptive voltage-regulation control strategy of ES is proposed, in which the proportional integral (PI) postgain changes dynamically according to the real-time output current of the ES. The simulation results show that, when the proposed control strategy is applied, bus voltage can still be stabilized effectively by the ES under the condition that noncritical loads change. The proposed control strategy brings the adaptive voltage-regulation capability of the ES, and therefore, it can be in series with multiple noncritical loads reliably and safely, and accordingly the costs can be greatly reduced. (c) 2018 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:随着电力系统中分布式发电(DG)的渗透不断增加,电力系统的电压不稳定性问题正在引起广泛关注。作为新的电力电子设备,电动弹簧(ES)可以有效限制由DG引起的总线电压波动,此外,发电后实现了新的负载需求控制范围。在本文中,提出了ES的自适应电压调节策略,其中比例积分(PI)后生成后根据ES的实时输出电流动态变化。仿真结果表明,在采用提出的控制策略时,在非关键载荷变化的条件下,ES仍可以有效地稳定总线电压。拟议的控制策略带来了ES的自适应电压调节能力,因此,它可以可靠,安全地串联以多种非关键载荷,因此可以大大降低成本。 (c)2018年日本电气工程师研究所。由John Wiley&Sons,Inc。出版

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