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Control Strategy of Constant-Speed Air-Conditioners Based on Virtual State of Charging Priority

机译:基于充电优先级的虚拟状态的恒速空调控制策略

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As typical thermostatically controlled loads (TCL) driven by constant-speed compressor, constant-speed air-conditioners play important roles in demand-side response for their abilities of energy conversion and storage. Their great potential for load regulation can be incorporated into power system scheduling through demand response. In view of their operating characteristics, a virtual energy storage (VES) model of thermostatically controlled loads with electrical and thermal parameters is established. This model is discretized and linearized to simplify calculation. By analyzing the control function and constraints of the VES model, the control strategy of VES of constant-speed air-conditioners load with virtual charging state priority is proposed. Example analysis shows that this strategy can solve and alleviate power shortage problem of the system by participating in demand response, which provides methodological support for constant-speed compressor temperature-control load to participate in the system operation.
机译:作为由恒速压缩机驱动的典型恒温控制负载(TCL),恒速空调在需求侧响应中起重要作用,以实现能量转换和存储能力。它们的负载调节潜力可以通过需求响应结合到电力系统调度中。鉴于其操作特性,建立了具有电气和热参数的恒温控制负载的虚拟能量存储(VES)模型。该模型是离散化和线性化以简化计算。通过分析VES模型的控制功能和约束,提出了具有虚拟充电状态优先级的恒速空调负载的VES的控制策略。示例性分析表明,该策略可以通过参与需求响应来解决和减轻系统的短缺问题,这为恒速压缩机温度控制负载提供了方法的方法支持,以参与系统操作。

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