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Integrating LV Network Models and Load-Flow Calculations into Smart Grid Planning

机译:将LV网络模型与负载流计算集成到智能电网规划中

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Increasing energy prices and the greenhouse effect demand a more efficient supply of energy. More residents start to install their own energy generation sources such as photovoltaic cells. The introduction of distributed generation in the low-voltage network can have effects that were unexpected when the network was designed and could lead to a bad power quality. These developments ask for better insight in the effects of a planning for a fleet of households in a network. This paper presents the results of adding network models to planning strategies. Forward-backward load-flow calculations for a three phase low-voltage network are implemented to simulate the network. The results from load-flow calculations are used as feedback for demand side management. The results in this paper show that the implementation is both fast and accurate enough for integration purposes. Combining load-flow feedback and demand side management leads to improved worst-case voltage levels and cable usage whilst peak-shaving optimization performance does not degrade significantly. These results indicate that load-flow calculations should be integrated with demand side management methodologies to evaluate whether networks support the effects of steering production and consumption. More sophisticated integration of network models are left for future work.
机译:越来越高的能源价格和温室效应需要更有效的能量供应。更多居民开始安装自己的能量产生源,例如光伏电池。低压网络中的分布式发电引入可能具有在设计网络时出乎意料的效果,并且可能导致功率质量不佳。这些发展要求更好地洞察计划在网络中陆队的规划影响。本文介绍了向规划策略添加网络模型的结果。实现三相低压网络的前向后负载流计算以模拟网络。负载流计算的结果用作需求侧管理的反馈。本文的结果表明,该实施既足够快,准确地用于集成目的。结合负载流反馈和需求侧管理导致改善最坏情况的电压电平和电缆使用,而峰剃可优化性能不会显着降低。这些结果表明,负载流量计算应与需求侧管理方法集成,以评估网络是否支持转向生产和消费的影响。更复杂的网络模型集成留给未来的工作。

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