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High-linear digital hydraulic valve control by an equal coded valve system and novel switching schemes

机译:均等编码阀系统的高数字液压阀控制和新颖的切换方案

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摘要

This study proposes a novel digital hydraulic valve system using multiple equal size on/off valves and a circulating switching control, with an aim to increase the resolution and the linearity of the digital hydraulic valve systems. The solution is founded on the equal coded valve system concept which represents a recent development in the digital hydraulic valve technology. The circulating switching control algorithm is used to overcome nonlinearities occurring in the typical non-circulating switching control and to decrease the operating frequency of single on/off valves. As a result, a substantial improvement in tracking control performance is demonstrated with 8 + 8 parallel connected valves. The results verify that compact, robust, and high-performance valve control can be realized.
机译:这项研究提出了一种新颖的数字液压阀系统,该系统使用多个相等大小的开/关阀和循环切换控制,旨在提高数字液压阀系统的分辨率和线性度。该解决方案基于相等编码阀系统概念,代表了数字液压阀技术的最新发展。循环切换控制算法用于克服典型的非循环切换控制中出现的非线性,并降低单个开/关阀的工作频率。结果,通过8 + 8并联阀显示了跟踪控制性能的显着提高。结果证明,可以实现紧凑,坚固,高性能的阀门控制。

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