可变乘客体型和反复颠簸情况下主动悬架系统性能的参数化研究

M. Avesh, R. Srivastava
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引用次数: 5

摘要

应用模糊控制器对主动悬架系统的行为进行研究,以提高主动悬架系统在不确定环境下的性能。应用Simulink软件对复杂四自由度系统进行了综合分析,建立了数学模型,并对模糊控制器进行了测试,从不同的操作方面提出了提高系统性能的建议。数学模型具有足够的灵活性,使仿真保真度达到期望的精度,满足目标和期望的结果。施加的有效分析参数是人体垂直运动、人体加速度、作动力以及恢复稳定所需的时间,对这些参数进行了大量的详细分析。仿真结果表明,所设计的模糊控制器在随机路面和可变载荷条件下的测试是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric study on the performance of active suspension system for variable passenger size and repeated road bumps
Efforts are made to investigate the behavior of active suspension system with application of fuzzy logic controller, for better performance against uncertain operating environment. Comprehensive analysis of the complex four degree of freedom system, for derived mathematical model, is performed with the application of Simulink, and a fuzzy logic controller is tested and suggested to improve the performance for different operating aspects. Mathematical model has the adequate flexibility for simulation fidelity to attain the desired degree of accuracy and to meet the objectives and desired outcomes. The imposed effective parameters of analysis are vertical body movements, body acceleration, actuating force in addition to time to regain the stability, which are thoroughly analyzed for great number of specifications. Simulation results indicate the feasibility of modeled fuzzy logic controller tested for randomly profiled road as well as changeable loading conditions.
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