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一类非自衡大时滞系统的模糊-Smith预测控制 被引量:3
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作者 回立川 陈蓓 郑恩让 《微计算机信息》 北大核心 2005年第09S期38-39,54,共3页
提出了一种基于非自衡加大纯滞后过程的模糊-Smith预估控制器的结构形式。仿真实验表明,这种控制器具有良好的性能,且对于时滞参数大范围变化的系统具有良好的鲁棒性。
关键词 非自衡 滞后 横糊控制 SMITH预估器
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基于模糊控制器的倒立摆控制 被引量:1
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作者 杨素梅 卢士彬 《伺服控制》 2014年第5期56-58,61,共4页
倒立摆是一个高阶次、多变量、非线性的不稳定系统。本文以一级倒立摆为研究对象,采用双闭环模糊控制方案对其进行控制研究,并利用SIMULINK工具箱对此模糊控制系统进行仿真。
关键词 一级倒立摆 双闭环 横糊控制 SIMU LINK
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Integrated yaw and rollover control based on differential braking for off-road vehicles with mechanical elastic wheel 被引量:1
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作者 LI Hai-qing ZHAO You-qun +1 位作者 LIN Fen XIAO Zhen 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2354-2367,共14页
Aiming at the issue of yaw and rollover stability control for off-road vehicles with non-pneumatic mechanical elastic wheel(MEW),an integrated control system based on fuzzy differential braking is developed.By simplif... Aiming at the issue of yaw and rollover stability control for off-road vehicles with non-pneumatic mechanical elastic wheel(MEW),an integrated control system based on fuzzy differential braking is developed.By simplifying the structure of the MEW,a corresponding fitting brush tire model is constructed and its longitudinal and lateral tire force expressions are set up,respectively.Then,a nonlinear vehicle simulation model with MEW is established to validate the proposed control scheme based on Carsim.The designed yaw and rollover control system is a two-level structure with the upper additional moment controller,which utilizes a predictive load transfer ratio(PLTR)as the rollover index.In order to design the upper integrated control algorithm,fuzzy proportional-integral-derivative(PID)is adopted to coordinate the yaw and rollover control,simultaneously.And the lower control allocator realizes the additional moment to the vehicle by differential braking.Finally,a Carsim-simulink co-simulation model is constructed,and simulation results show that the integrated control system could improve the vehicle yaw and roll stability,and prevent rollover happening. 展开更多
关键词 integrated control rollover stability yaw stability active braking fuzzy control CO-SIMULATION mechanical elastic wheel
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