一种电磁稳压器方案贯穿于串联补偿的注入:物理概念与计算分析

F. P. Santilio, J. Oliveira, T. V. Silva, A. Oliveira
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引用次数: 2

摘要

与短时间或长时间电压变化有关的电能质量问题需要特殊的设备,如众所周知的动态电压调节器,根据电能机构的规定,在共耦合点(PCC)提供可接受的电压供应。为使电磁装置在电压控制方面满足上述要求,提出了一种电压补偿装置的概念,并对该装置在电压突变时的性能进行了建模、仿真和计算扰动分析。这可以突出在调节短电压和长电压发生的建议效率。该设备在这里被称为电磁电压补偿器(EVC),它将电磁结构与开关模块相结合。该设备已在ATPDraw MODELS平台上实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An electromagnetic voltage regulator proposal throughout the injection of series compensation: Physical conception and computational analysis
Power quality problems related to short or long time voltage variation requires special equipment such as the well-known dynamic voltage regulators to provide acceptable voltage supply at the point of common coupling (PCC) in accordance with the electrical energy agencies regulations. Focusing at achieving an electromagnetic device that would fulfill the above requirements as far as voltage control is concerned a conception of a voltage compensation unit throughout the insertion of series voltages reinforce with the feeder is presented, modeled, simulated and computational disturbance analysis are carried out aiming at investigation the device performance at sudden voltage variation. This allows highlighting the proposal efficiency at regulating both short and long voltage occurrences. This equipment has been here denominated by Electromagnetic Voltage Compensator (EVC) and it combines an electromagnetic structure with a switching module. The proposed equipment has been implemented in the ATPDraw MODELS platform.
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