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基于空间特性的行李跟随系统的车辆调度方法
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作者 李林波 杨东援 《交通运输工程学报》 EI CSCD 北大核心 2008年第5期109-113,共5页
为了提高车辆配送初始解获得的效率,在不确定条件下,研究了上海世博会行李跟随系统需求点的空间特性,提出了基于空间特性的车辆调度方法,建立了需求点的空间特性SLINK聚类分析方法和聚类分析结果评估方法。计算结果表明:在需求点群聚状... 为了提高车辆配送初始解获得的效率,在不确定条件下,研究了上海世博会行李跟随系统需求点的空间特性,提出了基于空间特性的车辆调度方法,建立了需求点的空间特性SLINK聚类分析方法和聚类分析结果评估方法。计算结果表明:在需求点群聚状态下,采用基于空间特性的聚类分析法的调度初始解总距离为583,而传统SWEEP扫描法的调度初始解总距离为595,因此,在对车辆调度问题进行求解时,对需求点的空间分布特性进行分析有助于不确定环境下车辆调度问题的最终求解。 展开更多
关键词 物流工程 行李跟随系统 车辆调度方法 空间特性 聚类分析
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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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