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A Digital Damping Controller to Increases the Safety in Hydraulic Pumping Systems

机译:数字阻尼控制器可提高液压泵系统的安全性

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Hydraulic pumping systems are ubiquitous in a wide range of industrial processes. However, such systems may exhibit dangerous pressure oscillations, which may lead to serious equipment damage and no programmed plant outage. In order to prevent equipment damage, this paper proposed a damping controller to mitigate dangerous pressure oscillations in hydraulic pumping systems. The controller design is based on frequency domain techniques. For implementation objectives, the resulting damping control law is then converted to discrete time domain by using Tustins methodology and, subsequently, embedded in a hardware built around a 32-bits ARM microcontroller. To assess the controller performance, experimental tests were developed on a laboratory scale pumping system comprised of a centrifugal pump driven by an induction motor-inverter set. The experimental results showed that the proposed controller provides an improve performance by mitigating the pressure oscillations in the tubes. Furthermore, the approach is of low-cost implementation in existing pumping systems.
机译:液压泵系统在广泛的工业过程中无处不在。但是,此类系统可能会出现危险的压力波动,这可能会导致严重的设备损坏,并且不会造成设备中断。为了防止设备损坏,本文提出了一种阻尼控制器,以减轻液压泵系统中的危险压力波动。控制器设计基于频域技术。为了实现目标,然后使用Tustins方法将得到的阻尼控制律转换为离散时域,然后嵌入到围绕32位ARM微控制器构建的硬件中。为了评估控制器的性能,在实验室规模的抽气系统上进行了实验测试,抽气系统包括由感应电动机-变频器组驱动的离心泵。实验结果表明,所提出的控制器通过减轻管中的压力波动提供了改进的性能。此外,该方法在现有的泵系统中以低成本实施。

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