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Modeling of Hydraulic Controlled and Regulated Direct Method in the Cutter System of Shield Tunneling Machine

机译:盾构隧道机切割系统中液压控制和调节直接方法的建模

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This paper is mainly concerned with the technology about how to improve the response of the cutter system when the shield machine encounters sudden load changes. By analyzing the conventional control method of the displacement of the pump, a new control method named as hydrauLic controlled and regulated direct method is proposed. In order to make a comparison between the two control methods, the two simulation models are constructed in AMESim software. The simulation results show that the new control method has a shorter response time and better dynamic behavior, when the shield machine encounters sudden load changes and the system pressure jumps from 7 MPa to 25 MPa. The length of the pipe between the shuttle valve and the pump is taken into account in affecting the response of the system.
机译:本文主要涉及该技术,了解如何在屏蔽机遇到突然负荷变化时改善刀具系统的响应。通过分析泵的位移的传统控制方法,提出了一种名为液压控制和调节直接方法的新控制方法。为了在两个控制方法之间进行比较,两种仿真模型是在Amesim软件中构建的。仿真结果表明,当屏蔽机遇到突然负载变化时,新的控制方法具有较短的响应时间和更好的动态行为,并且系统压力从7 MPa跳跃到25 MPa。在影响系统的响应时考虑了梭阀和泵之间的管道的长度。

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