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Digital Twin Environment to Integrate Vehicle Simulation and Physical Verification

机译:数字孪生环境整合了车辆仿真和物理验证

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摘要

In-vehicle control software has become complex, and powertrains have been diversified due to the advancement of vehicle electrification pushed by tightening environmental regulations. Nevertheless, we are required to shorten our development time and propose driver-friendly vehicle systems. We have worked on the development of mechanical and electrical co-simulation techniques as well as simulation-based quantitative evaluation methods for the trade-off between power consumption and ride comfort. To strengthen our system design and solution proposal capabilities, we have also been developing a whole vehicle simulation technique. This paper introduces our virtual car that can be connected with the real driving environment, focusing on an electric vehicle charging system.
机译:车载控制软件已经变得复杂,并且由于严格的环境法规推动了汽车电气化的发展,动力总成已经多样化。但是,我们需要缩短开发时间,并提出对驾驶员友好的车辆系统。我们一直致力于机械和电气联合仿真技术的开发,以及基于仿真的定量评估方法,以在功耗和乘坐舒适性之间进行权衡。为了增强我们的系统设计和解决方案建议功能,我们还一直在开发一种整车仿真技术。本文介绍了可以与真实驾驶环境连接的虚拟汽车,重点介绍了电动汽车充电系统。

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