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Sliding Mode Control for Fuel Oil Viscosity of Marine Diesel Engine

机译:船用柴油机燃料油粘度的滑模控制

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An advanced 10000 TEU container ship is adapted as the main object of study in this paper. According to the law of energy conservation and thermodynamic principle, the mathematical models for major components of fuel oil viscosity control system (FOVCS) of marine diesel engine are established. For being insensitive to parameter variation or disturbance and the advantage of fast response, sliding mode variable structure controller based on exponential reaching law is proposed and used in FOVCS. In order to eliminate the chattering phenomenon caused by the sliding mode control (SMC), variable exponent reaching law is used to optimize the controller. The optimized sliding mode controller and the traditional PID controller are applied to simulation system respectively. Simulation results show that the optimized sliding mode controller has good performance, strong adaptability and robustness.
机译:先进的10000 TEU集装箱船适用于本文的主要研究对象。根据节能和热力学原理的定律,建立了船用柴油发动机燃油粘度控制系统(FOVCS)主要部件的数学模型。为了对参数变化或干扰的不敏感以及快速响应的优点,提出了基于指数到达法的滑动模式可变结构控制器,并用于FOVC。为了消除由滑动模式控制(SMC)引起的抖动现象,可变指数到达法用于优化控制器。优化的滑动模式控制器和传统的PID控制器分别应用于仿真系统。仿真结果表明,优化的滑模控制器具有良好的性能,强大的适应性和鲁棒性。

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