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Natural logarithm sliding mode control (ln-SMC) using EMRAN for active engine mounting system

机译:使用EMRAN的自然对数滑模控制(ln-SMC)用于主动发动机安装系统

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Robustness of the controller becomes major important factor in active engine mounting system to ensure the vibration of the engine can be attenuated in entire range of operating speed. As robustness is the main advantage of sliding mode control, it has been proposed for vibration control applications. However, most of the proposed sliding mode control are using linear sliding surface. In addition, there is no schematic method to determine the optimum sliding function. In this paper, natural logarithm-based sliding function is introduced. By its nature, natural logarithm function is nonlinear function. Since it consists of one parameter only, which is related to maximum allowable vibration level, it is more easily to be determined by the designer. Moreover, the advantage of fast on-line training using Extended Minimum Resource Allocating Network (EMRAN) algorithm, made it possible to design feedback control law without having to obtain the precise system model which is normally becomes major difficulties of sliding mode approach.
机译:控制器的坚固性成为主动式发动机安装系统中的重要因素,以确保在整个运行速度范围内都能减弱发动机的振动。由于鲁棒性是滑模控制的主要优点,因此已提出将其用于振动控制应用。但是,大多数建议的滑模控制都使用线性滑动表面。另外,没有用于确定最佳滑动功能的示意性方法。本文介绍了基于自然对数的滑动函数。从本质上讲,自然对数函数是非线性函数。由于它仅包含一个与最大允许振动水平有关的参数,因此设计者更容易确定它。此外,使用扩展的最小资源分配网络(EMRAN)算法进行快速在线培训的优势使设计反馈控制律成为可能,而不必获得精确的系统模型,而这通常成为滑模方法的主要困难。

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