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Model-free control and staging for real-time energy efficient operation of a variable refrigerant flow system with multiple outdoor units

机译:无模型节能运行的无模型控制和具有多个户外单位的可变制冷剂流量系统的暂存

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摘要

This paper presents a model-free control and automatic staging strategy for the operation of a variable refrigerant flow system with multiple outdoor units, which maximizes energy efficiency in real time and handles the outdoor-unit operation during load changes. An extremum seeking controller is used to minimize the total power consumption in real time while the thermal load is regulated with inner loop controllers. Minimization of power with extremum seeking control leads naturally to manipulated input behavior that can be utilized to develop control logic for two aspects of multi-outdoor-unit operation in model-free manner: (1) automatically stage off the outdoor unit with least efficient compressor, and (2) automatically switch the operation of outdoorunit heat exchanger between the evaporating and condensing mode for simultaneous heating and cooling. As the extremum seeking controller can drive the least-efficient compressor to a lower capacity, the outdoor unit with the least efficient compressor can thus be identified and turned off in a model-free manner under a decreasing load. Under simultaneous heating and cooling operation, the fan speed of the least efficient outdoor-unit heat exchanger will be lower than all other outdoor units, which indicates that the heat exchanger can be switched between operation as a condenser and evaporator to achieve thermal balance for higher efficiency. The proposed strategy is evaluated using a Modelica model of a variable-refrigerant-flow system that consists of three outdoor units and 12 indoor units. The effectiveness of the proposed framework is validated with the simulation study.
机译:本文介绍了一种无模型控制和自动分期策略,用于多个室外单位的可变制冷剂流量系统的操作,该系统实时地最大限度地提高能量效率,并在负载变化期间处理室外单元操作。极值寻找控制器用于在用内环控制器调节热负荷时实时最小化总功耗。最小化Extremum寻求控制的功率自然地引导到可操作的输入行为,该行为可用于以无模型方式开发多室内单位操作的两个方面的控制逻辑:(1)自动关闭室外单元,具有最低有效的压缩机(2)在蒸发和冷凝模式之间自动切换室外换热器的操作以进行同时加热和冷却。由于极值寻找控制器可以将最低有效的压缩机驱动到较低的容量,因此可以在减小负载下以无模型的方式识别和关闭具有最低高效压缩机的室外单元。在同时加热和冷却操作下,最低高效的室外单元热交换器的风扇速度将低于所有其他室外单元,这表明热交换器可以作为冷凝器和蒸发器之间的操作切换,以实现更高的热平衡效率。使用由三个室外单位和12个室内单元组成的可变制冷剂 - 流动系统的模型模型来评估所提出的策略。拟议框架的有效性验证了模拟研究。

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