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An Application-Oriented Design Method for Networked Driving Simulation

机译:面向应用的网络驾驶仿真设计方法

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Autonomous and cooperative vehicle systems represent a key priority in the automotive realm. Networked driving simulation can be utilized as a safe, cost-effective experimental replica of real traffic environments in order to support and accelerate the development of such systems. In networked driving simulation, different independent systems collaborate to achieve a common task: multi-driver traffic scenario simulation. Yet distinct system complexity levels are necessary to fulfill the requirements of various application scenarios, such as development of vehicle systems, analysis of driving behavior, and training of drivers. With myriad alternatives of available systems and components, developers of networked driving simulation are typically confronted with high design complexity. There are no systematic approaches to date for the design of networked driving simulation in accordance with the specific requirements of the concerned application scenarios. This paper presents a novel design method for networked driving simulation. The method consists mainly of a procedure model that is accompanied by a configuration software. The procedure model includes the necessary phases for the systematic design of application-oriented platforms for networked driving simulation. The configuration software embeds supportive decision-making processes that enable developers to apply the design method and easily create different system models. The design method was validated by generating system models and developing platforms of networked driving simulation for three different application scenarios.
机译:自主和协作车辆系统代表了汽车领域的关键优先事项。联网驾驶模拟可以用作真实交通环境的安全,经济高效的实验副本,以支持和加速此类系统的开发。在网络驾驶模拟中,不同的独立系统协作以完成一项共同的任务:多驾驶员交通场景模拟。然而,要满足各种应用场景的要求,就必须有不同的系统复杂性级别,例如车辆系统的开发,驾驶行为的分析以及驾驶员的培训。随着可用系统和组件的无数替代,网络驾驶模拟的开发人员通常面临着很高的设计复杂性。迄今为止,根据相关应用场景的特定要求,尚无系统的方法来设计网络驾驶模拟。本文提出了一种新的网络驾驶仿真设计方法。该方法主要由附带配置软件的过程模型组成。该过程模型包括用于网络驾驶仿真的面向应用程序平台的系统设计的必要阶段。该配置软件嵌入了支持性的决策过程,使开发人员能够应用设计方法并轻松创建不同的系统模型。通过针对三种不同的应用场景生成系统模型并开发网络驾驶仿真平台,对设计方法进行了验证。

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