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Simulation Method for Extended-Range Electric Vehicle Battery State of Charge and Energy Consumption Simulation based on Driving Cycle

机译:基于驾驶循环的延伸范围电动车辆电池电池电池电池电池仿真方法

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The battery state of charge and energy consumption are two parameters which are characterized by the usage of an extended-range electric vehicle (EREV). Those two parameters should be simulated in order to design the EREV properly according to different design needs, therefore a simulation method is needed. This work tries to establish a simulation method for the simulation of EREV battery state of charge and energy consumption. The EREV propulsion system modeling required for the simulation method are obtained from the general and electric vehicle engineering. Driving cycle data is also involved in the simulation. After the simulation method has been established, this work also validates the established simulation method with two validation methods. The validation step shows that the established simulation method is able to produce satisfying energy consumption simulation results. However, this simulation method needs to be provided with data and modeling, which comply with the simulated EREV, in order to produce a more satisfying battery state of charge simulation result. This work offers an initial perspective of EREV simulation, especially for the battery state of charge and energy consumption. The established simulation method can hopefully contribute to the design process of EREVs in the future.
机译:电池充电状态和能量消耗是两个参数,其特征在于使用延伸范围的电动车辆(EREV)。应该模拟这两个参数,以便根据不同的设计需求正确设计EREV,因此需要一种模拟方法。这项工作试图建立模拟Erev电池充电状态和能量消耗的仿真方法。仿真方法所需的Erev推进系统建模是从通用和电动车辆工程获得的。驾驶循环数据也参与了模拟。在建立仿真方法后,这项工作还验证了具有两个验证方法的已建立的仿真方法。验证步骤表明,建立的仿真方法能够产生满足能量消耗仿真结果。然而,需要提供该模拟方法,其数据和建模,其符合模拟的eREV,以便产生更满意的电池仿真结果。这项工作提供了Erev仿真的初始视角,特别是对于电池的充电状态和能量消耗。建立的模拟方法可以在未来促进Erevs的设计过程。

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