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Electric water heaters control strategy for providing regulation services and load leveling in electric power systems

机译:用于在电力系统中提供调节服务和负载均衡的电热水器控制策略

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To address variation in renewable power generation and electricity demand, this paper presents a new control strategy of thermal loads. Electric water heaters decrease or increase their power consumption for up and down regulations associated to wind power output. The control technique determines the current regulation level that represents the active position of the aggregate with respect to time dependent regulation capacity. Using the temperatures distribution of the loads, the control technique calculates a reference temperature that corresponds to regulation signal. The temperatures distribution can be obtained by real time data made possible by advanced metering and communication technologies or it can be estimated using probabilistic approaches. Loads with temperatures situated in the same temperature range consume the same amount of power by modulating their electricity demand using voltage controller. The results show how the power consumption of aggregated loads follows regulation signals by slightly varying the reference temperature. Higher reference temperature variation allows lowering peak demand while offering minute-to-minute regulations. Also, the results show the evolution of the current regulation level that represents the active position of the aggregate with respect to time dependent regulation capacity.
机译:为了解决可再生能源发电和电力需求的变化,本文提出了一种新的热负荷控制策略。对于与风能输出相关的上下调节,电热水器会降低或增加其功耗。该控制技术确定当前调节水平,该水平表示相对于时间相关的调节能力的骨料的有效位置。利用负载的温度分布,控制技术可以计算出与调节信号相对应的参考温度。温度分布可以通过先进的计量和通讯技术获得的实时数据来获得,也可以使用概率方法进行估算。温度在相同温度范围内的负载通过使用电压控制器调节其电力需求消耗相同数量的功率。结果表明,通过稍微改变参考温度,聚集负载的功耗如何遵循调节信号。更高的参考温度变化可以降低峰值需求,同时提供分钟到分钟的规定。同样,结果显示了当前调节水平的演变,该水平代表了集合体相对于时间依赖的调节能力的有效位置。

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