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首页> 外文期刊>International journal of electrical power and energy systems >Rolling horizon control architecture for distributed agents of thermostatically controlled loads enabling long-term grid-level ancillary services
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Rolling horizon control architecture for distributed agents of thermostatically controlled loads enabling long-term grid-level ancillary services

机译:用于恒温控制负载的分布式代理的滚动地平线控制架构,可实现长期电网级辅助服务

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摘要

This paper proposes novel modeling and control frameworks to evaluate the underlying capability of Thermostatically Controlled Loads (TCLs). The modeling architecture is based on distributed agents responsible for monitoring and controlling a small group of TCLs. Agents are mathematically formulated as a tracking problem in a mixed-integer linear programming format. Control actions are obtained by solving the agents sequentially in a rolling horizon control architecture. A step required to avoid the curse of dimensionality dictated by the number of devices and the duration of the planning horizon. The proposed architectures provide more practical evaluations in quantifying TCLs' capability. In essence, individual devices are described by distinct parameters and different operating conditions imitating real-life devices found in actual distribution systems. In contrast to aggregate models developed in the literature, this work inherently allows devices' heterogeneity, captures the outside temperature variations, and provides control access for both set-points and devices' status.In this paper, the scope of TCLs evaluation is providing long-term services such as load-shifting and sustained load-reductions. Simulation results have shown that 1000 heterogeneous TCLs represented by air-conditioners are able to achieve both services. However, consequences on customers' comfort are expected proportional to the extracted service. For instance, a sustained average power reduction of 319 KW causes an average set-point increase of 3.8 degrees F.
机译:本文提出了新颖的建模和控制框架,以评估恒温控制负载(TCLS)的基础能力。建模架构基于负责监控和控制一小组TCLS的分布式代理。代理以混合整数线性编程格式为数学制定为跟踪问题。通过在滚动地平线控制架构中顺序地求解代理来获得控制动作。需要避免由设备数量和规划地平线的持续时间决定的维度诅咒所需的步骤。拟议的架构在量化TCLS的能力方面提供了更实际的评估。实质上,各个设备通过不同的参数和模仿实际分配系统中的实际设备的不同的操作条件来描述。与文献中开发的聚合模型相比,这项工作本身允许设备的异构性,捕获外部温度变化,并为设定点和设备的状态提供控制访问。在本文中,TCLS评估的范围提供了很长的范围-Term服务,如加载换档和持续的负载减少。仿真结果表明,由空调代表的1000个异构TCL能够实现这两种服务。但是,对客户舒适的后果预计会与提取的服务成比例。例如,319 kW的持续平均功率降低导致平均设定点增加3.8度F.

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