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SDRE Control Applied to the Wheel Speed of a Compressed Air Engine with Crank-Connecting-Rod Mechanism

机译:SDRE控制在带有曲柄连杆机构的压缩空气发动机的轮速中的应用

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摘要

Renewable energy sources for vehicles have been the motivation of many researches around the world. The reduction of fossil fuels deposits and increase of the pollution in cities bring the need of more efficient and cleaner energy sources. In this way, this work will present the application of a compressed air engine applied to a bicycle. The engine is composed of two pneumatic cylinders connected to the bicycle wheel through a crank-connecting-rod mechanism. In order to control the velocity of the bicycle, a strategy of control composed of two controls was implemented: a feedback and a feedforward control. For feedback control, the State-Dependent Riccati Equation (SDRE) control and also a proportional-derivative (PD) control are considered, considering three cases for velocity bicycle variation: 10 km/h, 20 km/h, and 30 km/h. The equations of motion of the system were obtained through the Lagrangian energy method. Numerical simulations were performed in order to analyze the dynamics of the system and the efficiency of the controllers.
机译:用于车辆的可再生能源一直是全世界许多研究的动机。减少化石燃料的沉积并增加城市的污染,带来了对更高效,更清洁能源的需求。这样,这项工作将提出将压缩空气发动机应用于自行车的应用。发动机由两个通过曲柄连杆机构连接到自行车车轮的气缸组成。为了控制自行车的速度,实施了由两个控制组成的控制策略:反馈和前馈控制。对于反馈控制,考虑了速度自行车变化的三种情况:10 km / h,20 km / h和30 km / h,考虑了状态相关Riccati方程(SDRE)控制以及比例微分(PD)控制。 。该系统的运动方程是通过拉格朗日能量法获得的。为了分析系统的动力学特性和控制器的效率,进行了数值模拟。

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