Realising the potential of smart grids in LV networks. Part 2: Microgeneration

A. Collin, I. Hernando‐Gil, J. Acosta, Irinel-Sorin Ilie, S. Djokic
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引用次数: 20

Abstract

This paper, which is the second part of a two-part series, considers the influence of microgeneration technologies on the overall network performance and quality of supply of low-voltage residential customers in future “smart grids”. The paper uses the network models and demand-side management (DSM) scenarios developed in the Part 1 paper to further assess changes in active/reactive power flows, system losses, voltage profiles and harmonic emissions due to the combined effects of implementing microgeneration, energy storage and DSM.
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实现智能电网在低压电网中的潜力。第二部分:微代
本文是由两部分组成的系列文章的第二部分,考虑了微型发电技术对未来“智能电网”中低压住宅用户的整体网络性能和供电质量的影响。本文使用第1部分中开发的网络模型和需求侧管理(DSM)场景来进一步评估由于实施微型发电、储能和DSM的综合影响而导致的有功/无功潮流、系统损耗、电压分布和谐波排放的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Power quality assessment of the Bogotá distribution network focused on voltage sag analysis Increasing security of supply by the use of a Local Power Controller during large system disturbances Realising the potential of smart grids in LV networks. Part 2: Microgeneration Multi-scale dynamic modeling to maximize demand side management Optimal fault location in distribution systems using distributed disturbance recordings
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