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Modeling, Simulation and Design Optimization of a Series Hydraulic Hybrid Vehicle

机译:系列液压混合动力车辆的建模,仿真与设计优化

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Crude oil resources in the world continue to diminish; automobile, agricultural machinery and construction machinery manufacturing companies are placing more emphasis on energy efficient series hydraulic hybrid systems which can replace their conventional transmission systems. Series hydraulic hybrid system is a mechatronics system with two source of power (that includes prime mover and hydro-pneumatic accumulator) which drives the vehicle. Even though, it has been proven as an energy efficient system, sizing of the components or sub-system for automobiles has got a major influence on energy efficiency of vehicle. In this paper, a power bond graph approach is used to model the dynamics of series hydraulic hybrid system and simulation results elucidate various modes of operations. It also shows the dynamic response of hydro-pneumatic accumulator, prime-mover and system output speed. Further, design optimization of system is carried out to optimize the physical /process parameters for the maximum system's output energy that, leads to increase in energy efficiency and environmental friendly vehicle.
机译:世界上原油资源继续减少;汽车,农业机械和工程机械制造公司正在更加重视节能系列液压混合系统,可以取代其传统的传动系统。系列液压混合系统是一种机电一体化系统,具有两个电源源(包括推动车辆的主要动器和水气动蓄能器)。尽管如此,它已被证明是一种节能系统,但汽车组件或子系统的尺寸对车辆的能效产生了重大影响。在本文中,电力键合图方法用于模拟液压混合系统系列的动态,仿真结果阐明各种操作模式。它还显示了水气动蓄电池,Prime-MOVER和系统输出速度的动态响应。此外,进行了系统的设计优化,以优化最大系统输出能量的物理/工艺参数,导致能效和环保型车辆增加。

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