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The intermediate temperature optimization for cascade refrigeration system and air source heat pump via extreme seeking control

机译:通过极端寻求控制级联制冷系统和空气源热泵中间温度优化

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摘要

The cascade refrigeration system and cascade air source heat pump have both been a well-known advanced technology for providing cooling and heating under certain circumstances. The intermediate temperature has been proven as a key factor in affecting the operating performance for both the refrigeration and heat pump system. However, the optimal intermediate temperature varies along with the change of the ambient temperature, cooling/heating demand. So achieving the real-time optimal intermediate temperature in a realistic operating circumstance is critical for improving the performance of cascade refrigeration or heat pump system. In this paper, the extreme seeking control strategy is proposed to optimize the coefficient of performance via seeking the real-time optimal intermediate temperature. A cascade refrigeration system model and a cascade air source heat pump water heater model are built based on Modelica, and the ASHP water heater model is validated by experimental data. The simulations are conducted under fixed and variable operating conditions to validate the effectiveness of the proposed strategy. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:级联制冷系统和级联空气源热泵都是一种公知的先进技术,可在某些情况下提供冷却和加热。中间温度已被证明是影响制冷和热泵系统的操作性能的关键因素。然而,随着环境温度的变化,冷却/加热需求而变化,最佳中间温度随之而变化。因此,在实际操作环境中实现实时最佳中间温度对于提高级联制冷或热泵系统的性能至关重要。在本文中,提出了极端的寻求控制策略,以通过寻求实时最佳中间温度来优化性能系数。基于Modelica建立了级联制冷系统模型和级联空气源热泵热水器模型,通过实验数据验证了ASHP热水器模型。模拟在固定和可变的操作条件下进行,以验证拟议策略的有效性。 (c)2020 Elsevier Ltd和IIR。版权所有。

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