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Investigation on Semi-active Suspension System for Multi-axle Armoured Vehicle using Co-simulation

机译:使用共模的多轴装甲车辆半主动悬架系统研究

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The objective of the study is to evaluate the performance of various semi-active suspension control strategies for 8x8 multi-axle armoured vehicles in terms of comparative analysis of ride quality and mobility parameters during negotiation of typical military obstacles. Since the cost, complexity and time precludes realisation of actual system, co-simulation technique has been effectively implemented for this investigation. Co-simulation combines advanced virtual prototyping and control technology which offers a novel approach to investigate the dynamics of such complex system. The simulations for the integrated control system along with multi body model of the vehicle are carried out for the control strategies, viz. continuous sky hook control, cascade loop control and cascade loop with ride control and compared with passive suspension system. The vehicle with 8x8 configuration is run on the real world obstacle profiles, viz. step, trench, trapezoidal bump and corrugated road and the effect of control strategies on ride comfort, wheel displacement and ground reaction is presented. It is observed that cascade loop with ride control in semi-active mode offers better vehicle ride comfort while crossing the said obstacles. The improved performance parameters are achieved through stabilisation of heave, pitch and roll motions of the vehicle through outer loop and isolation of vehicle level uneven disturbances through the fuzzy logic controller employed in inner loop.
机译:该研究的目的是评估各种半主动悬架控制策略对8x8多轴铠装车辆的性能,就典型军事障碍谈判期间乘坐质量和流动性参数的比较分析。由于成本,复杂性和时间排除了实际系统的实现,因此有效地实施了共仿真技术以进行这一调查。共仿真结合了先进的虚拟原型制作和控制技术,提供了一种研究这种复杂系统的动态的新方法。对控制策略的控制策略进行了集成控制系统的模拟以及车辆的多主体模型。连续天空挂钩控制,级联环路控制和带乘坐控制的级联环,与无源悬架系统相比。具有8x8配置的车辆在真实的世界障碍配置文件上运行。展示了步进,沟槽,梯形凸起和波纹状路径,并提出了控制策略对乘坐舒适度,车轮位移和地面反应的影响。观察到,半主动模式下具有乘坐控制的级联环路提供更好的车辆乘坐舒适性,同时穿过上述障碍。通过通过在内环中使用的模糊逻辑控制器稳定车辆的升降,俯仰和辊运动,通过外环稳定来实现改进的性能参数,并通过内循环中采用的模糊逻辑控制器隔离不均匀的扰动。

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