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Hierarchical control of energy regulation based variable-speed electrohydraulic drive

机译:基于能量调节的变速电液驱动器的分层控制

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The variable-speed electrohydraulic drive, which can achieve similar energy efficiency as volume drive system, has some excellent features. But the main disadvantages, which are slow response and poor low-speed performance, limit its development. The energy regulation based variable-speed electrohydraulic drive is a good solution to solve these problems by adding an energy regulation device and a main-circuit throttling valve into the system. However, it is a multiple-input multiple-output control system, coupled with strong nonlinear and some parameters of volatility and uncertainty, which make the control strategy complicated. The hierarchical control strategy is proposed, which is composed of three layers, the energy layer, control layer and feedback layer. The principles and implementations of the three layers are discussed in detail. The simulation and experiment results have showed its performance.
机译:可实现与体积驱动系统相似的能源效率的变速电液驱动器具有一些出色的功能。但是主要缺点是响应速度慢和低速性能差,这限制了它的发展。通过在系统中添加一个能量调节装置和一个主回路节流阀,基于能量调节的变速电液驱动器是解决这些问题的好方法。但是,它是一个多输入多输出控制系统,加上强大的非线性以及一些波动性和不确定性参数,使得控制策略变得复杂。提出了分层控制策略,该策略由能量层,控制层和反馈层三层组成。详细讨论了这三层的原理和实现。仿真和实验结果表明了其性能。

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