基于改进状态空间的温控负载聚合建模及功率特性分析

Xun Zhong, Zhenshu Wang, Wei Xu, Jingyu Sun
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引用次数: 0

摘要

空调负荷作为一种重要的需求响应资源,可以实现系统控制信号的快速响应。反过来,它在削峰或填谷和抑制新能源波动方面起着重要作用。建立一个能够描述负荷群聚集特性的模型对电网调度具有重要意义。本文通过蒙特卡罗模拟建立了精确的聚合模型。然后,针对现有状态空间聚合模型精度低的问题,提出了一种改进的状态空间聚合控制模型,有效地提高了仿真精度。仿真结果验证了空调负荷提供备用容量的可行性和改进状态空间模型的有效性。最后,分析了不同控制策略对聚合功率的影响,通过群控有效解决了温度设定值变化时的“冲击功率”现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aggregation Modeling and Power Characteristics Analysis of Temperature Controlled Load Based on Improved State Space
As an important demand response resource, the air conditioning load can realize the rapid response of the system control signal. In turn, it plays an important role in peak-shaving or valley-filling and suppressing new energy fluctuations. It is of great significance for power grid dispatching to establish a model which can describe the characteristics of load group aggregation. In this paper, an accurate polymerization model is established by Monte Carlo simulation. Then, aiming at the problem of low precision of the existing state space aggregation model, an improved state space aggregation control model is proposed to effectively improve the simulation accuracy. The simulation results verify the feasibility of air conditioning load to provide reserve capacity and the validity of the improved state space model. Finally, the influence of different control strategies on the aggregated power is analyzed, and the phenomenon of “shock power” when the temperature setting value is changed is effectively solved by group control.
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