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Adaptive Pulse Width/Phase Modulated Controller for a High Frequency Active Electro-Hydraulic Pump System

机译:高频有源电液泵系统的自适应脉冲宽度/相位调制控制器

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In this article, an adaptive width/phase differential modulated controller is designed for an active electro-hydraulic pump (AehP) system consisting of a single straight cylinder. This controller adjusts the duty cycle and relative phase between the incoming and outgoing valve. The adjustment relies on the maximization of a cost function that characterizes the net outflow rate. The developed model relies on computational fluid dynamics (CFD). Transient CFD analysis shows that the pressure propagation causes the pump performance to be highly dependent to the overall dimensions of the hydraulic system, the fluid used and the operating conditions, thus constraining and complicating the controller design process. The controller''s adaptation mechanism relies on the cyclic coordinate method, which adjusts each parameter in a periodic manner. Simulation studies are used to investigate the efficiency of the proposed controller with respect to the pump-chamber''s length, the piston''s pulsating frequency, and the fluid properties
机译:在本文中,为包含单个直缸的有源电动液压泵(AehP)系统设计了一种自适应宽度/相位差分调制控制器。该控制器调整输入阀和输出阀之间的占空比和相对相位。调整依赖于表征净流出率的成本函数的最大化。开发的模型依赖于计算流体动力学(CFD)。瞬态CFD分析表明,压力传播使泵的性能高度依赖于液压系统的整体尺寸,所用的流体和工作条件,从而使控制器的设计过程变得复杂和复杂。控制器的自适应机制依赖于循环坐标方法,该方法以周期性的方式调整每个参数。仿真研究用于研究拟议控制器相对于泵室长度,活塞脉动频率和流体特性的效率。

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