[1]王之中,田 野,孙 剑,等.自动驾驶测试公共服务平台建设与思考[J].交通运输工程学报,2023,23(06):1-9.[doi:10.19818/j.cnki.1671-1637.2023.06.001]
 WANG Zhi-zhong,TIAN Ye,SUN Jian,et al.Construction and rethinking on public service platform for autonomous driving test[J].Journal of Traffic and Transportation Engineering,2023,23(06):1-9.[doi:10.19818/j.cnki.1671-1637.2023.06.001]
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自动驾驶测试公共服务平台建设与思考()
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《交通运输工程学报》[ISSN:1671-1637/CN:61-1369/U]

卷:
第23卷
期数:
2023年06期
页码:
1-9
栏目:
综述
出版日期:
2023-12-30

文章信息/Info

Title:
Construction and rethinking on public service platform for autonomous driving test
文章编号:
1671-1637(2023)06-0001-09
作者:
王之中1田 野2孙 剑2黄 䶮2余荣杰12
(1.国家自然科学基金委员会 工程与材料科学部,北京 100085; 2.同济大学 交通运输工程学院,上海 201804)
Author(s):
WANG Zhi-zhong1 TIAN Ye2 SUN Jian2 HUANG Yan2 YU Rong-jie12
(1. Department of Engineering and Materials Sciences, National Natural Science Foundation of China,Beijing 100085, China; 2. College of Transportation Engineering, Tongji University, Shanghai 201804, China)
关键词:
交通与运载工程 自动驾驶 测试评价 公共服务平台 算法挑战赛
Keywords:
transportation and vehicle engineering autonomous driving test and evaluation public service platform algorithm competition
分类号:
U467.1
DOI:
10.19818/j.cnki.1671-1637.2023.06.001
文献标志码:
A
摘要:
为促进中国自动驾驶技术发展,在充分调研论证的基础上,按照工具化设计的理念,国家自然科学基金委员会交通与运载工程学科提出了场景库社会共建、开发环境敏捷、被测技术解耦、测试部署轻量化、评测结果公开透明的自动驾驶测试公共服务平台OnSite的建设构想,设置了战略委员会、技术委员会、用户委员会、创新基金会,自主决策,达成公共服务平台独立发展,良好运行的目标。2021年,交通与运载工程学科通过面上项目群快速启动本领域研究,2022年起,持续通过重点项目、面上项目群资助自动驾驶测评相关技术研究,推动OnSite平台建设,积极开展有组织科研。制定了单项决策规划能力测评-从单项测评到全栈技术测评-从虚拟测评到虚实融合测评-从单车测评到车队测评-从测评导向到开发测评一体五阶段公共服务平台建设计划; 目前,已完成第1阶段建设目标,已形成面向单项决策规划功能的测试能力。以OnSite平台为依托,学科已成功举办第一届OnSite自动驾驶算法挑战赛,有助于科研人员明确研究差距,促进实现需求牵引,问题导向的研究范式。打破科研机构与产业部门的壁垒,实现产-学-研精准、快速对接。此外,通过以赛代评,将进一步完善基础研究项目评价体系,切实推进破“四唯”工作。
Abstract:
To promote the development of autonomous driving technology in China, by conducting a comprehensive survey and adhering to the principles of instrumental design, the transportation and vehicle engineering discipline of the National Natural Science Foundation of China proposed a public service platform for autonomous driving tests(OnSite). The platform embodied the principles of socially co-constructed scenario library, agile development environment, system-under-test decoupling, lightweight test deployment, and transparent test result sharing. To ensure the independent development and smooth operation of the public service platform, the strategic committee, technical committee, user committee, and innovation foundation were set up through the self-decision-making. In 2021, research in this field was launched rapidly through the support of general programs by the transportation and vehicle engineering discipline. From 2022, research related to the autonomous driving technology testing was supported by the key and general programs. The construction of the OnSite platform was promoted, and the organized scientific research was actively carried out. A five-stage construction plan for the public service platform was devised, which follows the steps of single-item decision-making and planning testing, from single-item testing to full-stack testing, from virtual testing to virtual-real fusion testing, from single-vehicle testing to fleet testing, and from testing-orientation to development testing. The first phase of the construction goals was accomplished, and the testing capability for the single-item decision-making and planning functions was developed. Relying on the OnSite platform, the First OnSite Autonomous Driving Algorithm Competition was successfully held by the transportation and vehicle engineering discipline, which assisted researchers in pinpointing research gaps and promoted the realization of a demand-driven and problem-oriented research paradigm. It broke the barriers between the scientific research institutions and the industrial sectors and realized the accurate and rapid docking among industry, academia, and research. Furthermore, the OnSite competition was utilized the competition for testing, improved the evaluation system of the basic research programs, and contributed to addressing the issue of pursuing only four aspects. 1 tab, 6 figs, 8 refs.

参考文献/References:

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备注/Memo

备注/Memo:
收稿日期:2023-10-07
基金项目:国家自然科学基金项目(52232015,52172391)
作者简介:王之中(1969-),男,上海人,国家自然科学基金委员会,工学博士,从事科学基金管理工作。
更新日期/Last Update: 2023-12-30