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Performance analysis of an electro-hydrostatic actuator with high-pressure load sensing based on fuzzy PID

机译:基于模糊PID的高压负荷感应电静压执行器的性能分析

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摘要

Electro-hydrostatic actuator (EHA) is an important form of power-by-wire (PBW) technology, which is widely used in aircraft because of the characteristics of small size, high power and light weight. However, the current traditional EHA with fixed pump displacement and variable motor speed (FPVM-EHA) has the problems of high energy consumption and heating of the motor under heavy load. An improved EHA with high-pressure load sensing (HPLS-EHA) is proposed in this paper, which can reduce the pump displacement under heavy load, so as to achieve reducing the torque and heating of the motor, solving the problem of high energy consumption of EHA system and improving the efficiency. The co-simulation model of the FPVM-EHA and the HPLS-EHA was established using the software programs AMESim and MATLAB, and then the simulation results are analysed. The simulation results show that the HPLS-EHA can reduce the torque and heat flow rate of the motor by 23.20? % and 41.02? % under the load of 20.2? MPa , and the fluctuation times and amplitude of output position are also reduced under varying loads at 5? s , but it will slightly reduce the position accuracy of the EHA system. In order to solve this problem, the fuzzy PID control strategy is adopted for the HPLS-EHA. The simulation results show that the position accuracy and response speed of the HPLS-EHA based on fuzzy PID are improved, the output position is improved from 8.93 to 9.25? mm , better than 9.19? mm of the FPVM-EHA, and it also maintains the advantages of low motor torque, heating and output position fluctuation.
机译:电静压致动器(EHA)是备用电线(PBW)技术的重要形式,由于小尺寸,功率和重量轻的特性,广泛应用于飞机中。然而,目前具有固定泵位移和可变电机速度(FPVM-EHA)的传统EHA具有高能耗和电动机在重负荷下的电气消耗问题。本文提出了一种具有高压负荷感测(HPLS-EHA)的改进的EHA,这可以减少重载下的泵位移,从而实现电动机的扭矩和加热,解决高能耗的问题EMA系统提高效率。使用软件程序AMESIM和MATLAB建立FPVM-EHA和HPLS-EHA的共模模型,然后分析了模拟结果。仿真结果表明,HPLS-EHA可以通过23.20降低电机的扭矩和热流速? %和41.02? %在20.2的负荷下?在5的不同负载下,输出位置的波动和输出位置的波动时间和幅度也会减少? S,但它将略微降低EHA系统的位置准确性。为了解决这个问题,采用了模糊的PID控制策略为HPLS-EHA采用。仿真结果表明,基于模糊PID的HPLS-EHA的位置精度和响应速度得到改善,输出位置从8.93增加到9.25? mm,比9.19好吗? FPVM-EHA的MM,它还保持了电动机扭矩,加热和输出位置波动的优点。

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