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Design Considerations of a Centralized Load Controller Using Thermostatically Controlled Appliances for Continuous Regulation Reserves

机译:使用恒温控制设备进行连续调节储备的集中负载控制器的设计注意事项

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This paper presents design considerations for a centralized load controller to control thermostatically controlled appliances (TCAs) for continuous regulation reserves (CRRs). The controller logics for setting up the baseline load, generating priority lists, issuing dispatch commands, and tuning the simplified forecaster model using measurement data are described. To study the impacts of different control parameter settings on control performance and device lifetimes, a system consisting of 1000 heating, ventilating, and air-conditioning (HVAC) units in their heating modes is modeled to provide a $pm {1}mathchar"702D{rm MW}$ CRR 24 hours a day. Four cases are modeled to evaluate the impact of forecasting errors, minimum HVAC turn-off times, response delays, and consumer overrides. The results demonstrate that a centralized TCA load controller can provide robust, good quality CRRs with reduced communication needs for the two-way communication network and inexpensive load control devices. Most importantly, because the controller precisely controls the aggregated HVAC load shapes while maintaining load diversity, the controllable and measurable load services that it provides can be used for many other demand response applications, such as peak shaving, load shifting, and arbitrage.
机译:本文介绍了集中负载控制器的设计注意事项,该负载控制器可控制恒温控制设备(TCA)以获得连续调节储备(CRR)。描述了用于设置基准负载,生成优先级列表,发出调度命令以及使用测量数据调整简化的预测器模型的控制器逻辑。为了研究不同控制参数设置对控制性能和设备寿命的影响,对由1000个加热,通风和空调(HVAC)单元在其加热模式下组成的系统进行了建模,以提供 $ pm {1} mathchar“ 702D {rm MW} $ 每天24小时CRR。以四种情况为模型,以评估预测误差,最小HVAC转向的影响结果表明,集中式TCA负载控制器可以提供健壮,高质量的CRR,从而减少双向通信网络和廉价负载控制设备的通信需求。它可以精确地控制合计的HVAC负载形状,同时保持负载的多样性,它提供的可控和可测量的负载服务可用于许多其他需求响应应用程序,例如削峰,负载转移和套利。

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