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Mitigation of Negative Impacts of Distributed Generation on LV Distribution Networks through Microgrid Management Systems

机译:通过微电网管理系统减轻了LV分配网络的分布式发电的负面影响

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Renewable based distributed generation (DG) particularly in low voltage (LV) distribution networks may cause voltage limit violations, line overloads and increase in network losses. Siting and sizing of DG penetrations are generally done according to the worst case scenarios. However, since these cases occur rarely in long term operation, a realistic design enables more DG penetration. There are numerous conventional methods, each having several benefits and drawbacks. Local energy management systems can also be part of the solution. This study investigates the negative steady state operational impacts of DG on LV distribution networks and proposes a microgrid management approach to mitigate those impacts. A field data-based virtual test bed is used to simulate undervoltage and overvoltage issues and a microgrid energy management approach is developed and tested to minimize the negative impacts on the network. Moreover, Digital Audio Broadcasting (DAB) as data transmission means in microgrids, is discussed as an adaptable communication solution for its real-world implementation.
机译:可再生基于的分布式发电(DG)特别是低电压(LV)分配网络可能导致电压限制违规,线路过载和网络损耗的增加。根据最坏的情况,通常会根据最坏的情况进行DG Penetrations的选址和尺寸。然而,由于这些情况很少发生在长期运行中,因此逼真的设计能够更加DG渗透。有许多传统方法,每个方法具有多种益处和缺点。本地能源管理系统也可以是解决方案的一部分。本研究调查了DG对LV分配网络的负稳态运行影响,提出了一种减轻这些影响的微电网管理方法。基于现场数据的虚拟测试床用于模拟欠压和过压问题,开发和测试微电网能源管理方法,以最大限度地减少对网络的负面影响。此外,数字音频广播(DAB)作为微电网中的数据传输装置,被讨论为其真实世界实现的适应性通信解决方案。

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