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A novel tuning method for advanced line drop compensator and its application to response coordination of distributed generation with voltage regulating devices

机译:一种新型调整方法,用于高级线路液滴补偿器及其在电压调节装置响应分布式发电的应用中的应用

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Nowadays, integration of small-scale electricity generators, known as Distributed Generation (DG), into distribution networks has become increasingly popular. This tendency together with the falling price of DG units has a great potential in giving the DG a better chance to participate in voltage regulation process, in parallel with other regulating devices already available in the distribution systems. The voltage control issue turns out to be a very challenging problem for distribution engineers, since existing control coordination schemes need to be reconsidered to take into account the DG operation. In this paper, a control coordination approach is proposed, which is able to utilize the ability of the DG as a voltage regulator, and at the same time minimize the interaction of DG with another DG or other active devices, such as On-load Tap Changing Transformer (OLTC). The proposed technique has been developed based on the concepts of protection principles (magnitude grading and time grading) for response coordination of DG and other regulating devices and uses Advanced Line Drop Compensators (ALDCs) for implementation. A distribution feeder with tap changing transformer and DG units has been extracted from a practical system to test the proposed control technique. The results show that the proposed method provides an effective solution for coordination of DG with another DG or voltage regulating devices and the integration of protection principles has considerably reduced the control interaction to achieve the desired voltage correction.
机译:如今,小型发电机的整合,称为分布式发电(DG),分配网络已经变得越来越受欢迎。这种趋势与DG单位的下降价格具有极大的潜力,使DG更好地参与电压调节过程,与分配系统中已有的其他调节装置并行。电压控制问题成为分销工程师的一个非常具有挑战性的问题,因为需要重新考虑现有的控制协调方案来考虑DG操作。在本文中,提出了一种控制协调方法,其能够利用DG作为电压调节器的能力,同时最大限度地减少DG与另一个DG或其他有源器件的交互,例如负载载点改变变压器(OLTC)。该提出的技术是基于DG和其他调节装置响应协调的保护原理(幅度分级和时间分级)的概念而开发的,并使用高级线路丢弃补偿器(ALDC)来实现。具有抽头更换变压器和DG单元的分配送料器已从实用系统中提取,以测试所提出的控制技术。结果表明,该方法提供了一种有效的DG与另一个DG或电压调节装置协调的有效解决方案,并且保护原理的集成具有显着降低了控制相互作用以实现所需的电压校正。

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