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Automotive A/C System Integrated with Electrically-Controlled Variable Capacity Scroll Compressor and Fuzzy Logic Refrigerant Flow Management

机译:汽车A / C系统集成,电控变量涡旋压缩机和模糊逻辑制冷剂流量管理

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This paper describes the recent efforts on developing an automotive climate control system throughout integrating an electrically-controlled variable capacity scroll compressor with a fuzzy logic control-based refrigerant flow management. Applying electrically controlled variable capacity compressor technology to climate control systems has a significant impact on improving vehicle fuel economy, achieving higher passenger comfort level, and extending air and refrigerant temperature controllability as well. In this regard, it is very important for automotive climate control engineers to layout a system-level temperature control strategy so that the operation of variable capacity compressor can be optimized through integrating the component control schemes into the system-level temperature control. Electronically controlled expansion devices have become widely available in automotive air conditioning (A/C) systems for the future vehicle applications. An electronic expansion valve (EXV), similar to the mechanically actuated thermostatic expansion valve (TXV), is a flow control device whose operational goal is to throttle and regulate the refrigerant flow rate. Principally, TXV regulates the refrigerant entering the evaporating equipment in response to the superheat variation. Comparing to the mechanical actuation mechanism of TXV, the electronically modulated EXV gives the additional flexibility to apply the microprocessor-based intelligent control. Accordingly, a fuzzy logic algorithm of EXV has been incorporated to the A/C system control in order to achieve a high efficiency and optimal operation. The primary objectives of this paper are to (a) present the design features and control mechanism of an electrically-controlled variable capacity scroll compressor; (b) describe the temperature control system architecture of refrigeration circuit and air flow management; (c) describe the architecture of fuzzy logic control of a refrigerant flow control; and (d) discuss and analyze the results obtained in bench testing.
机译:本文介绍了在整合电控变量涡旋压缩机的过程中开发汽车气候控制系统的最新努力,其采用模糊逻辑控制的制冷剂流量管理。将电控变量压缩机技术应用于气候控制系统对改善车辆燃料经济性的影响,实现更高的乘客舒适度,以及延伸空气和制冷剂温度控制性。在这方面,对于汽车气候控制工程师来说是非常重要的,可以布局系统级温度控制策略,以便通过将组件控制方案集成到系统级温度控制中,可以优化可变容量压缩机的操作。电子控制的扩展装置已广泛可用于用于未来车辆应用的汽车空调(A / C)系统。类似于机械致动的恒温膨胀阀(TXV)的电子膨胀阀(EXV)是一种流量控制装置,其操作目标是节流并调节制冷剂流速。主要是,TXV调节响应于过热变化进入蒸发设备的制冷剂。比较TXV的机械致动机理,电子调制的exv提供了应用基于微处理器的智能控制的额外灵活性。因此,exv的模糊逻辑算法已被纳入A / C系统控制,以实现高效率和最佳操作。本文的主要目标是(a)呈现电控变量涡旋压缩机的设计特征和控制机构; (b)描述制冷电路和空气流量管理的温度控制系统架构; (c)描述制冷剂流量控制的模糊逻辑控制的结构; (d)讨论并分析板凳测试中获得的结果。

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