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基于ECAS控制的模块式车辆空气悬架高度控制系统的设计与仿真
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作者 杨培刚 鲍健铭 +1 位作者 蒋瑞斌 熊少华 《湖南农机(学术版)》 2013年第6期39-42,共4页
以ECAS为基础,以WABCO4728800010两位三通电磁阀和Freescale的MC9S12D64微处理器为核心元器件,开发了一种模块式的空气悬架高度控制系统,并在matlab/simulink环境下进行了仿真验证。该系统的高度控制策略分为启动控制模块、动态调节模... 以ECAS为基础,以WABCO4728800010两位三通电磁阀和Freescale的MC9S12D64微处理器为核心元器件,开发了一种模块式的空气悬架高度控制系统,并在matlab/simulink环境下进行了仿真验证。该系统的高度控制策略分为启动控制模块、动态调节模块、手动调节模块以及误差调节模块,由模式选择开关来决定不同模块的工作状态,逻辑控制准确、调试方便。模块式的设计大幅降低了系统的复杂程度,同时也将降低软件的开发周期和成本。 展开更多
关键词 ECAS 模块式 空气 悬架高度控制 SIMULINK仿真
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凌志LS400车身高度调整系统故障检修
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作者 邵泽民 王岩峰 《汽车维修与保养》 2002年第11期24-25,共2页
凌志LS400型轿车悬架采用的是电控电气悬架,它可以根据需要自动调整车身高度.
关键词 凌志LS400 故障 检修 轿车 悬架高度控制系统
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Vehicle height and leveling control of electronically controlled air suspension using mixed logical dynamical approach 被引量:7
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作者 SUN Xiao Qiang CAI Ying Feng +2 位作者 YUAN Chao Chun WANG Shao Hua CHEN Long 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1814-1824,共11页
Vehicle height and leveling control of electronically controlled air suspension(ECAS) still poses theoretical challenges for researchers that have not been adequately addressed in prior research. This paper investigat... Vehicle height and leveling control of electronically controlled air suspension(ECAS) still poses theoretical challenges for researchers that have not been adequately addressed in prior research. This paper investigates the design and verification of a new controller to adjust the vehicle height and to regulate the roll and pitch angles of the vehicle body(leveling control) during the height adjustment procedures. A nonlinear mechanism model of the vehicle height adjustment system is formulated to describe the dynamic behaviors of the system. By using mixed logical dynamical(MLD) approach, a novel control strategy is proposed to adjust the vehicle height by controlling the on-off statuses of the solenoid valves directly. On this basis, a correction algorithm is also designed to regulate the durations of the on-off statuses of the solenoid valves based on pulse width modulated(PWM) technology, thus the effective leveling control of the vehicle body can be guaranteed. Finally, simulations and vehicle tests results are presented to demonstrate the effectiveness and applicability of the proposed control methodology. 展开更多
关键词 electronically controlled air suspension vehicle height control leveling control hybrid system mixed logical dynamical approach
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