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LEAKAGE BASED CONDITION MONITORING AND PRESSURE CONTROL OF THE SWASHPLATE AXIAL PISTON PUMP

机译:轴突式柱塞泵基于泄漏的状态监测和压力控制

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This research mainly focused on the axial piston variable displacement pump, which is the most important part of the fluid power system. The variable displacement axial piston has been found as versatile and flexible for electro-hydraulic applications. Heavy industries such as automobile, aircraft, and mining use an axial piston pump due to its high power to weight ratio, continuous variable power transmission, low inertia, self-lubricating properties, and good controllability. The main challenges with the hydraulic system are highly nonlinear, leakages, unknown external disturbance, etc. The mathematical model of the variable displacement pump along with swashplate control has been developed. The model is used to identify the pump health condition with pressure and flow measurement, i.e., ripple pattern. The pressure and flow ripple will vary from the regular pattern due to wear and tear, i.e., increased leakage flow. The main source of the increase in leakage flow is due to wear in piston and cylinder bore. The piston chamber pressure, kinematical flow, and discharge area model of the pump has been validated with the existing results. The pump pressure control is very much essential for the enhancement of the performance of the electro-hydraulic system. In the present study, a conventional PID controller has been used as a backup to maintain system performance within the permissible faults. The electro-hydraulic system has been employed for swash-plate control of the pump to obtain desire pressure flow at the exit of the pump. MATLAB Simulink has been used for the simulation study of the pump.
机译:这项研究主要集中在轴向活塞可变排量泵上,这是流体动力系统中最重要的部分。已经发现可变排量轴向活塞对于电动液压应用具有通用性和灵活性。重工业,例如汽车,飞机和采矿业,使用轴向柱塞泵,因为它具有高功率重量比,连续可变动力传递,低惯性,自润滑性能和良好的可控制性。液压系统的主要挑战是高度非线性,泄漏,未知的外部干扰等。已经开发了可变排量泵与斜盘控制的数学模型。该模型用于通过压力和流量测量(即波纹模式)来识别泵的健康状况。由于磨损,即泄漏流量增加,压力和流量波动将不同于常规模式。泄漏流量增加的主要原因是活塞和气缸孔的磨损。现有结果验证了泵的活塞腔压力,运动流和排放面积模型。泵压力控制对于增强电动液压系统的性能非常重要。在本研究中,常规的PID控制器已用作备用,以将系统性能维持在允许的故障范围内。电动液压系统已用于泵的斜盘控制,以在泵的出口处获得所需的压力流。 MATLAB Simulink已用于泵的仿真研究。

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