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Closed-loop volume flow control algorithm for fast switching pneumatic valves with PWM signal

机译:带PWM信号的快速切换气动阀的闭环体积流量控制算法

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In this paper, a closed-loop volume flow PWM control algorithm of fast switching pneumatic solenoid valves is studied on the basis of experimental results of fluid flow valve characteristics. Dynamic nonlinear behavior of fast switching valves is analyzed using state-of-the-art mass flow sensors. Minimal Pulse Width Modulation (PWM) pulse width and nonlinear flow characteristics depending on pulse width and pressure difference are observed. Based on experimental data, different approaches to mathematically describe correlation of volume flow, pressure difference and pulse width are given. Bilinear interpolation is found out to have the best correlation and is used to develop a closed-loop control algorithm. The algorithm was tested with controlling of Pneumatic Artificial Muscle (PAM) contraction/position with two fast switching valves and minimal PLC / microcontroller requirements were determined.
机译:本文基于流体流量阀特性的实验结果,研究了快速切换气动电磁阀的闭环体积流量PWM控制算法。使用最新的质量流量传感器分析了快速切换阀的动态非线性行为。观察到最小脉冲宽度调制(PWM)脉冲宽度和取决于脉冲宽度和压力差的非线性流动特性。根据实验数据,给出了数学上描述体积流量,压力差和脉冲宽度相关性的不同方法。发现双线性插值具有最佳的相关性,并用于开发闭环控制算法。通过使用两个快速切换阀控制气动人工肌肉(PAM)的收缩/位置来测试该算法,并确定了最低的PLC /微控制器要求。

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