2 heat pump water heater system"> Real-time minimization of power consumption for air-source transcritical CO <ce:inf loc='post'>2</ce:inf> heat pump water heater system
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Real-time minimization of power consumption for air-source transcritical CO 2 heat pump water heater system

机译:空气源跨临界CO 2 热泵热水器系统

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Highlights?Real-time power optimization for CO2heat pump water heater is introduced.?The control output is power consumption not the system COP.?The mathematical validation and proof is provided.?Simulation results demonstrate the reliability and applicability.?The proposed approach is model free, which is beneficial for practice.AbstractBased on Extremum Seeking Control, a real-time optimization strategy is proposed for minimizing the power consumption of a transcritical CO2heat pump system. An analytical framework is established to justify the equivalence between power minimization and the maximization of coefficient of performance. As compared to the COP feedback, power feedback based control avoids the need for several sensors beyond the simple and reliable power measurement. The proposed ESC scheme is based on three measurements of power consumption, high-pressure and gas cooler outlet water temperature. Simulations are conducted for several scenarios: a fixed operation condition, change of ambient condition and realistic ambient temperature condition. For all simulation cases, the water inlet temperature is fixed at 12?°C, while the water outlet temperature is set as 60?°C. Simulation results show that ESC is able to search and even track both fixed and slowly varying optimum discharge pressure without need for system model.]]>
机译:<![cdata [ 亮点 CO 2 介绍热泵热水器。 控制输出是电源消耗不是系统警察。 < CE:标签>? 提供了数学验证和证明。 仿真结果展示可靠性和应用程序ty。 所提出的方法是自由模式,这是有益的实践。 抽象 基于极值寻求控制,提出了一种最小化功率的实时优化策略消耗跨临界CO 2 热泵系统。建立一个分析框架,以证明功率最小化与性能系数的最大化之间的等价。与COP反馈相比,基于电源反馈的控制避免了对超出简单且可靠的功率测量的多个传感器的需求。所提出的ESC方案基于功耗,高压和气体冷却器出口水温的三次测量。仿真进行了多种情况:固定运行条件,环境条件的变化和现实的环境温度条件。对于所有模拟案例,进水温度固定在12℃,而出水温度设定为60Ω·℃。仿真结果表明,ESC能够在不需要系统模型的情况下搜索甚至追踪固定和缓慢变化的最佳放电压力。 ]] >

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