Platforms and Complexes for Unmanned Technologies in Road Transport

O. Maksimychev, A. Volosova, M. Ismoilov, N. G. Kuftinova, K. N. Mezentsev
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引用次数: 2

Abstract

The article is devoted to research in the field of designing hardware platforms designed for the implementation of computer control systems for unmanned vehicles and modes of robotic control in transport. The organization of traffic in difficult conditions is key for the transport systems of the regions of the Arctic zone. The solution of tasks within this organization is associated with the processing of uncertainty at different levels of the transport system management process. The article discusses various types of uncertainty, the manifestation of which can be expected in the dynamic process of management. Using the example of the organization of interaction of smart controllers in an electronic hitch, the authors substantiate the use of technological means of implementing the computing base of intelligent (smart) vehicle controllers that provide efficient processing of big data in in-real-time mode, the stability of the Intelligent electronic hitch system to changes in the topology of the connection of controllers based on heterogeneous components of computing means. The results reflected in the article show that cloud technologies, for example, can be used in smart controller systems of any level of complexity designed to control unmanned vehicles.
道路运输中无人驾驶技术的平台和综合体
本文主要研究无人驾驶车辆计算机控制系统的硬件平台设计和运输机器人控制模式的设计。在困难条件下的交通组织是北极地区运输系统的关键。该组织内的任务解决方案与运输系统管理过程中不同层次的不确定性处理相关联。本文讨论了各种类型的不确定性,这些不确定性在动态管理过程中的表现是可以预期的。以智能控制器在电子顺风车中的交互组织为例,论证了利用技术手段实现智能(智能)车辆控制器计算库,提供实时高效的大数据处理,以及基于计算手段异构组件的控制器连接拓扑变化对智能电子顺风车系统稳定性的影响。文章中反映的结果表明,例如,云技术可以用于任何复杂程度的智能控制器系统,以控制无人驾驶车辆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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