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Experimental Load Emulation for Multi-Evaporator Air Conditioning and Refrigeration Systems

机译:多蒸发器空调和制冷系统的实验负载模拟

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This paper presents the development of a multi-evaporator load emulation unit (ME-LEU) for air conditioning and refrigeration (AC&R) systems. Through a combination of on-line real-time modeling and hardware actuation, LEUs are able to mimic the dynamics of a variety of cooling loads. A virtual container model simulates the thermal dynamics of the cooled space and determines the appropriate return air temperature to the evaporator for a given application. The LEU uses an actuated slide to mix warm return air with colder supply air to track the desired return air temperature from the model. Depending on the physical design of the LEU, control of the return air temperature may become difficult due to non-monotonic and nonlinear dynamics. The presented LEU design achieves monotonic and nearly linear dynamics between the actuation mechanism and the return air temperature, allowing for a simple yet robust controller to be designed for the system. The experimental implementation of the ME-LEU on a dual evaporator AC&R system permits independent loading of each evaporator, thereby increasing the emulation capabilities to a larger set of real world systems.
机译:本文介绍了用于空调和制冷(AC&R)系统的多蒸发器负载模拟单元(ME-LEU)的开发。通过在线实时建模和硬件驱动的结合,LEU能够模拟各种冷却负荷的动态变化。一个虚拟的容器模型可以模拟冷却空间的热力学,并确定给定应用程序向蒸发器返回的合适空气温度。 LEU使用致动的滑块将温暖的回风与较冷的送风混合,以跟踪模型所需的回风温度。根据LEU的物理设计,由于非单调和非线性动力学,控制回风温度可能会变得困难。提出的LEU设计实现了致动机构和回风温度之间的单调和近乎线性的动态变化,从而为该系统设计了一个简单而坚固的控制器。 ME-LEU在双蒸发器AC&R系统上的实验实现允许每个蒸发器独立加载,从而将仿真能力提高到更大范围的真实系统。

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