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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Low-Cost Adaptive Fault-Tolerant Approach for Semiactive Suspension Control of High-Speed Trains
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Low-Cost Adaptive Fault-Tolerant Approach for Semiactive Suspension Control of High-Speed Trains

机译:高速列车半主动悬架的低成本自适应容错方法

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Excessive vertical and lateral motion of the train body could endanger the operation safety of a high-speed train. The situation is further complicated if actuation faults occur. This paper investigates a semiactive approach for suppressing such motions. By using the structural properties of the system model, a new control scheme is proposed to account for various factors such as input nonlinearities, actuator failures, and external disturbances in the system simultaneously. The resultant control scheme is capable of automatically generating the intermediate control parameters and literally producing the PD-like controller-the whole process does not require precise information on system model or system parameter. Furthermore, unlike traditional PD control, the proposed one has the stability-guaranteed algorithms to self-adjust its PD gains and there is no need for human tuning or trial and error process. Such user-friendly feature is deemed favorable for practical implementation. The effectiveness of the proposed controller is tested using computer simulations in the presence of parametric uncertainties and varying operation conditions.
机译:列车主体的垂直和横向运动过多会危害高速列车的运行安全。如果发生驱动故障,情况将更加复杂。本文研究了一种抑制这种运动的半主动方法。通过使用系统模型的结构特性,提出了一种新的控制方案来同时考虑输入非线性,执行器故障和系统中的外部干扰等各种因素。最终的控制方案能够自动生成中间控制参数并从字面上生成类似PD的控制器-整个过程不需要有关系统模型或系统参数的精确信息。此外,与传统的PD控制不同,提出的方法具有稳定性保证的算法来自动调整其PD增益,并且无需人工调整或反复试验。这样的用户友好功能被认为有利于实际实施。在存在参数不确定性和变化的操作条件的情况下,使用计算机模拟测试了所提出控制器的有效性。

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