Utilisation of Automotive Commercial Sensing Technologies within Military Land Systems to Increase Survivability

S. Murphy, E. Stipidis, P. Charchalakis
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Abstract

This paper presents the results from the 1st year of a 2-year UK Ministry of Defence funded research project analysing the feasibility and applicability of Commercial of the Shelf (COTS) automotive sensing technologies for Mounted Close Combat (MCC). The aim of this research is to understand if and how COTS automotive sensing technologies could be utilised to increase MCC crew’s situational awareness. One current military area of operations is within diverse and complex urban environments, these operating environments can be described as Congested, Cluttered, Contested, Connected and Constrained (the 5C’s). Outside the military environment, over the past 10 years significant advances within the automotive sector regarding sensing technologies and autonomous systems have increased exponentially. Driven by enormous investment from the commercial / private automotive Tier 1 and 2 suppliers, with recent years seeing many government sponsored, technology accelerator programs. The results of this significant global investment have produced low cost, advanced, sensing technologies and sensing capabilities, which could potentially be exploited within military land platforms to increase situational awareness. The results of two discrete studies are presented within this paper, Study 1, provides an analysis of COTS automotive sensing technologies through a Strengths, Weaknesses, Opportunities and Threats (SWOT) analysis, with additional technical assessments to provide further indications of applicability to MCC. The conclusions and results of these analyses are then used to develop a selection of use cases for crews operating MCC. Study 2 presents a practical experiment designed to demonstrate the integration of Controller Area Network (CAN) COTS sensing technologies within Def Stan 23-009 Generic Vehicle Architecture (GVA) and STANAG 4754 NATO Generic Vehicle Architecture (NGVA). Finally, concluding remarks are provided highlighting the benefits and constraints for utilising COTS sensing technologies within GVA / NGVA compliant military land platforms with additional recommendations.
在军用陆地系统中利用汽车商业传感技术提高生存能力
本文介绍了英国国防部资助的一项为期两年的研究项目第一年的结果,该项目分析了商用货架(COTS)汽车传感技术用于机载近距离战斗(MCC)的可行性和适用性。本研究的目的是了解是否以及如何利用COTS汽车传感技术来提高MCC乘员的态势感知能力。当前的一个军事行动区域是在多样化和复杂的城市环境中,这些作战环境可以被描述为拥挤、混乱、竞争、连接和约束(5C)。在军事环境之外,在过去的10年里,汽车领域在传感技术和自主系统方面取得了重大进展,呈指数级增长。在商业/私人一级和二级汽车供应商巨额投资的推动下,近年来出现了许多政府资助的技术加速器项目。这一重大全球投资的结果产生了低成本、先进的传感技术和传感能力,这些技术和传感能力有可能在军事陆地平台上得到利用,以提高态势感知能力。本文提出了两项独立研究的结果,研究1通过优势、劣势、机会和威胁(SWOT)分析对COTS汽车传感技术进行了分析,并进行了额外的技术评估,以提供对MCC适用性的进一步指示。然后,这些分析的结论和结果用于为操作MCC的机组人员开发使用案例的选择。研究2提出了一个实际实验,旨在展示在Def Stan 23-009通用车辆架构(GVA)和STANAG 4754北约通用车辆架构(NGVA)中集成控制器区域网络(CAN) COTS传感技术。最后,结束语强调了在符合GVA / NGVA标准的军事陆地平台中使用COTS传感技术的好处和限制,并提出了其他建议。
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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