首页> 外文会议>Instrumentation, Communications, Information Technology, and Biomedical Engineering (ICICI-BME), 2009 >Natural Logarithm-based sliding mode control for two DOF active engine mounting system
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Natural Logarithm-based sliding mode control for two DOF active engine mounting system

机译:基于自然对数的滑模控制,用于两个自由度主动发动机安装系统

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摘要

The needs of powerful engine and lighter car body has adverse effect to the vibration occurred in the car. Obviously the presence of the engine vibration will imposed to the discomfort of the driver and passengers as well. To isolate the vibration, active engine mounting (AEM) has been proposed as the new generation of engine mounting. The control method becomes key factor of successfulness of AEM system. This paper presents a control method using natural logarithm-based sliding mode control (ln-SMC) for two degree-of-freedom (DOF) active engine mounting system. The performance of the controller is evaluated by applying sinusoidal and random disturbance to the system. Robustness of the proposed controller can be evaluated by increasing magnitude of the disturbance. The result shows that proposed control method not only able to attenuate the vibration of the different types of disturbance but also robust for magnitude variation of disturbance.
机译:强劲的发动机和更轻的车身的需求会对汽车中发生的振动产生不利影响。显然,发动机振动的存在也会使驾驶员和乘客感到不适。为了隔离振动,主动式发动机支架(AEM)已被建议作为新一代的发动机支架。控制方法成为AEM系统成功的关键因素。本文提出了一种基于自然对数的滑模控制(ln-SMC)的两自由度(DOF)主动发动机安装系统的控制方法。通过对系统施加正弦和随机干扰来评估控制器的性能。可以通过增加干扰的大小来评估所提出控制器的鲁棒性。结果表明,所提出的控制方法不仅能够减弱不同类型的扰动的振动,而且对扰动的大小变化具有鲁棒性。

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