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Challenges in Architecting Fully Automated Driving; with an Emphasis on Heavy Commercial Vehicles

机译:架构全自动驾驶的挑战;着重于重型商用车

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Fully automated vehicles will require new functionalities for perception, navigation and decision making -- an Autonomous Driving Intelligence (ADI). We consider architectural cases for such functionalities and investigate how they integrate with legacy platforms. The cases range from a robot replacing the driver -- with entire reuse of existing vehicle platforms, to a clean-slate design. Focusing on Heavy Commercial Vehicles (HCVs), we assess these cases from the perspectives of business, safety, dependability, verification, and realization. The original contributions of this paper are the classification of the architectural cases themselves and the analysis that follows. The analysis reveals that although full reuse of vehicle platforms is appealing, it will require explicitly dealing with the accidental complexity of the legacy platforms, including adding corresponding diagnostics and error handling to the ADI. The current fail-safe design of the platform will also tend to limit availability. Allowing changes to the platforms, will enable more optimized designs and fault-operational behaviour, but will require initial higher development cost and specific emphasis on partitioning and control to limit the influences of safety requirements. For all cases, the design and verification of the ADI will pose a grand challenge and relate to the evolution of the regulatory framework including safety standards.
机译:全自动驾驶汽车将需要用于感知,导航和决策的新功能-自动驾驶智能(ADI)。我们考虑此类功能的架构案例,并研究它们如何与旧平台集成。案例涉及从机器人代替驾驶员的驱动程序到现有车辆平台的全部重用,再到全新设计。我们着重于重型商用车(HCV),从业务,安全,可靠性,验证和实现的角度评估这些案例。本文的最初贡献是对架构案例本身的分类以及随后的分析。分析表明,尽管可以完全重用车辆平台,但仍需要明确处理遗留平台的意外复杂性,包括向ADI添加相应的诊断和错误处理。当前平台的故障安全设计也将趋于限制可用性。允许对平台进行更改,将可以实现更优化的设计和故障操作行为,但将需要初期较高的开发成本,并特别强调分区和控制以限制安全要求的影响。对于所有情况,ADI的设计和验证都将构成巨大挑战,并与包括安全标准在内的监管框架的发展相关。

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