Dynamic Demand Response against Predictable Sudden Load Changes

Zhidong Ding, Yaping Li, Kaifeng Zhang
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Abstract

Sudden load changes will adversely affect the active balance power grid, they have a great influence on the load, transmission line, and generator set. Some load changes are remarkably predictable, such as the load changes due to peak and valley electricity prices. Because of the fast adjustment of dynamic demand response and the large number of users willing to participate in demand response, dynamic demand response can be used to slow down the degree of sudden load changes. To mitigate the impact of predictable load changes, this paper proposes a new solution by using dynamic demand resources. First, predictable load changes that relate to electricity prices are established based on actual historical data. The impact of the sudden load changes on the local distribution network is also analyzed. Then, a response mechanism for dynamic demand response is proposed. Finally, a function that takes into account the benefits of the power grid, the dynamic demand response subsidy and the slope of the daily load curve is given, and then an optimization model is established according to the constraints of the power grid itself, and the output of the dynamic demand response is given using genetic algorithms. The simulation results prove that the proposed response mechanism can effectively solve the predictable sudden load changes caused by electricity prices.
针对可预测的突然负荷变化的动态需求响应
负荷的突然变化会对有功平衡电网产生不利影响,对负荷、输电线路和发电机组都有很大的影响。有些负荷变化是非常可预测的,例如由于峰谷电价引起的负荷变化。由于动态需求响应的调整速度快,且有大量用户愿意参与需求响应,因此可以利用动态需求响应来减缓负荷突然变化的程度。为了减轻可预测负荷变化的影响,本文提出了一种利用动态需求资源的解决方案。首先,与电价相关的可预测负荷变化是基于实际历史数据建立的。分析了负荷突变对配电网的影响。在此基础上,提出了动态需求响应的响应机制。最后,给出了考虑电网效益、动态需求响应补贴和日负荷曲线斜率的函数,并根据电网自身约束建立了优化模型,利用遗传算法给出了动态需求响应的输出。仿真结果表明,所提出的响应机制能够有效地解决可预测的电价引起的负荷突变问题。
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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