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作 者:孟建军[1,2,3] 王终军 胥如迅 李德仓 Meng Jianjun;Wang Zhongjun;Xu Ruxun;Li Decang(Mechatronics T&R Institute,Lanzhou Jiaotong University,Lanzhou 730070,China;Gansu Provincial Engineering Technology Center for Informatization of Logistics&Transport Equipment,Lanzhou 730070,China;Gansu Provincial Industry Technology Center of Logistics&Transport Equipment,Lanzhou 730070,China)
机构地区:[1]兰州交通大学机电技术研究所,甘肃兰州730070 [2]甘肃省物流及运输装备信息化工程技术研究中心,甘肃兰州730070 [3]甘肃省物流与运输装备行业技术中心,甘肃兰州730070
出 处:《系统仿真学报》2021年第7期1554-1564,共11页Journal of System Simulation
基 金:国家自然科学基金(61563027);甘肃省高等学校科研项目(2017D-09,2018C-10)。
摘 要:为提升高速列车运行平稳性,基于其主动悬挂系统,建立半车垂向六自由度状态空间模型,以模糊控制理论为基础,设计模糊控制器与模糊PID控制器,并针对模糊PID控制需人工调整、主观性较强的缺陷,用粒子群算法优化控制器初始参数,使悬挂系统更符合客观实际。为验证此策略的先进性,用天棚阻尼策略作为对比,将控制器模型与悬挂系统模型进行联合仿真分析,结果表明:基于PSO的模糊PID控制改善效果最优,进一步表明复合模糊控制比单一模糊控制更能有效改善列车运行平稳性。In order to improve the running stability of high-speed train, a semi-vertical six-degree-offreedom state space model is established based on the active suspension system. Based on fuzzy control theory, the fuzzy controllers and fuzzy PID controllers are designed. Aiming at the defects of strong subjectivity of fuzzy PID control which needs manual adjustment, particle swarm optimization is used to optimize the initial parameters of the controller to make the suspension system be more correspond with the objective reality. In order to verify the advance of this strategy, with the sky-hook damping strategy for comparison, the controller model is combined with the suspension system model for simulation analysis. The results show that the PSO-based fuzzy PID control has the best improvement effect, which indicates that the compound fuzzy control is more effective than the single fuzzy control in improving the running smoothness.
关 键 词:主动悬挂 状态空间 模糊控制 粒子群算法 天棚阻尼
分 类 号:U270.33[机械工程—车辆工程] TP273.4[交通运输工程—载运工具运用工程]
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