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首页> 外文期刊>IEEE Transactions on Power Delivery >Distributed generation as Voltage support for single wire Earth return systems
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Distributed generation as Voltage support for single wire Earth return systems

机译:分布式发电作为单线接地回路系统的电压支持

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Key issues for distributed generation (DG) inclusion in a distribution system include operation, control, protection, harmonics, and transients. This paper analyzes two of the main issues: operation and control for DG installation. Inclusion of DG in distribution networks has the potential to adversely affect the control of voltage. Both DG and tap changers aim to improve voltage profile of the network, and hence they can interact causing unstable operation or increased losses. Simulations show that a fast responding DG with appropriate voltage references is capable of reduction of such problems in the network. A DG control model is developed based on voltage sensitivity of lines and evaluated on a single wire earth return (SWER) system. An investigation of voltage interaction between DG controllers is conducted and interaction-index is developed to predict the degree of interaction. From the simulation it is found that the best power factor for DG injection to achieve voltage correction becomes higher for high resistance lines. A drastic reduction in power losses can be achieved in SWER systems if DG is installed. Multiple DG can aid voltage profile of feeder and should provide higher reliability. Setting the voltage references of separate DGs can provide a graduated response to voltage correction.
机译:包含在配电系统中的分布式发电(DG)的关键问题包括运行,控制,保护,谐波和瞬变。本文分析了两个主要问题:DG安装的操作和控制。将DG包含在配电网络中可能会对电压的控制产生不利影响。 DG和分接开关都旨在改善网络的电压曲线,因此它们可能相互作用,从而导致运行不稳定或损耗增加。仿真表明,具有适当参考电压的快速响应DG能够减少网络中的此类问题。基于线路的电压灵敏度开发了DG控制模型,并在单线接地回路(SWER)系统上进行了评估。对DG控制器之间的电压相互作用进行了研究,并开发了相互作用指数来预测相互作用的程度。从仿真中发现,对于高电阻线路,DG注入实现电压校正的最佳功率因数变得更高。如果安装了DG,则可以大大降低SWER系统的功率损耗。多个DG可以改善馈线的电压分布,并应提供更高的可靠性。设置单独的DG的参考电压可以提供对电压校正的分级响应。

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