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Residential load modeling of price-based demand response for network impact studies

机译:基于价格的需求响应的住宅载荷建模

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This paper presents a comprehensive low-voltage residential load model of price-based demand response (DR). High-resolution load models are developed by combing Monte Carlo Markov chain bottom-up demand models, hot water demand models, discrete state space representation of thermal appliances, and composite time-variant electrical load models. Price-based DR is then modeled through control algorithms for thermostatically controlled loads, optimal scheduling of wet appliances, and price elasticity matrices for representing the inherent elastic response of the consumer. The developed model is used in a case study to examine the potential distribution network impacts of the introduction of dynamic pricing schemes. The effects of cold load pick-up, rebound peaks, decrease in electrical and demand diversity, and impacts on loading and voltage are presented.
机译:本文介绍了基于价格的需求响应(DR)的全面低压住宅载荷模型。高分辨率负荷模型是通过梳理Monte Carlo Markov链的自下而上需求模型,热水需求模型,热电设备的离散状态空间表示以及复合时间变体电荷模型。然后通过控制算法建模基于价格的DR,用于恒温控制负载,湿式设备的最佳调度以及用于代表消费者固有的弹性响应的价格弹性矩阵。开发模型用于案例研究,以检查动态定价方案引入的潜在分布网络影响。呈现了冷载接收,反弹峰值,电气和需求分集减少的影响,以及对装载和电压的影响。

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