为了解决目前汽车防碰撞预警系统在复杂环境下评判标准单一、环境适应度差的问题,对多因素影响下的汽车碰撞危险辨识方法进行研究,建立“人-车-路-环境”协同的多层次汽车碰撞危险态势综合评价体系,将多因素影响下的汽车碰撞危险态势评...为了解决目前汽车防碰撞预警系统在复杂环境下评判标准单一、环境适应度差的问题,对多因素影响下的汽车碰撞危险辨识方法进行研究,建立“人-车-路-环境”协同的多层次汽车碰撞危险态势综合评价体系,将多因素影响下的汽车碰撞危险态势评估问题视为混合多准则决策问题,提出一种基于博弈论组合赋权,逼近理想解排序(technique for order preference by similarity to an ideal solution,TOPSIS)法的汽车碰撞危险态势评估方法。首先根据车路协同技术建立碰撞危险态势评估体系架构,运用德尔菲法和熵权法确定评价指标的主、客观权重值,利用博弈论法得到所选准则权重之间的最优平衡解。其次,应用TOPSIS法确定当前行车状态与决策信息表中行车状态的贴近度值距离,匹配碰撞风险的评估等级。最后,利用PreScan软件搭建仿真场景进行仿真分析。结果表明,该方法能在复杂环境下融合行车安全相关的多种因素来评估碰撞风险,为汽车防碰撞系统提供更准确的决策。展开更多
In order to reduce energy consumption and protect the human survival environment, the lightweight has became the development trend of the world automobile industry. On the premise of ensuring the strength, safety and ...In order to reduce energy consumption and protect the human survival environment, the lightweight has became the development trend of the world automobile industry. On the premise of ensuring the strength, safety and driving performance of the car, the major car enterprises try to reduce the curb weight of the ear, fuel consumption and emissions. Not only a lot of new technologies and new products have been generated, but also joint vehicle development process and computer aided engineering (CAE) analysis technology have been developed. Since the entry into the "Au- tomobile Lightweight Technology Innovation Strategic Alliance" in Dec. 2007, Geely Group has been focusing on light- weight construction of vehicle and key assemblies in every stage of the vehicle product development. Among vehicles ap- peared on the market and in research, it has presented continuously better performance. The paper describes application examples and successful experience of CAE simulation analysis and performance optimization during the lightweight de- sign and development of a self-developed model of Geely, and looks forward to the prospects for the development of lightweight of Geely vehicle.展开更多
文摘为了解决目前汽车防碰撞预警系统在复杂环境下评判标准单一、环境适应度差的问题,对多因素影响下的汽车碰撞危险辨识方法进行研究,建立“人-车-路-环境”协同的多层次汽车碰撞危险态势综合评价体系,将多因素影响下的汽车碰撞危险态势评估问题视为混合多准则决策问题,提出一种基于博弈论组合赋权,逼近理想解排序(technique for order preference by similarity to an ideal solution,TOPSIS)法的汽车碰撞危险态势评估方法。首先根据车路协同技术建立碰撞危险态势评估体系架构,运用德尔菲法和熵权法确定评价指标的主、客观权重值,利用博弈论法得到所选准则权重之间的最优平衡解。其次,应用TOPSIS法确定当前行车状态与决策信息表中行车状态的贴近度值距离,匹配碰撞风险的评估等级。最后,利用PreScan软件搭建仿真场景进行仿真分析。结果表明,该方法能在复杂环境下融合行车安全相关的多种因素来评估碰撞风险,为汽车防碰撞系统提供更准确的决策。
基金Supporting Program of the"Twelfth Five-year Plan"for Sci & Tech Research of China(No. 2011BAG03B02No.2011BAG03B06)
文摘In order to reduce energy consumption and protect the human survival environment, the lightweight has became the development trend of the world automobile industry. On the premise of ensuring the strength, safety and driving performance of the car, the major car enterprises try to reduce the curb weight of the ear, fuel consumption and emissions. Not only a lot of new technologies and new products have been generated, but also joint vehicle development process and computer aided engineering (CAE) analysis technology have been developed. Since the entry into the "Au- tomobile Lightweight Technology Innovation Strategic Alliance" in Dec. 2007, Geely Group has been focusing on light- weight construction of vehicle and key assemblies in every stage of the vehicle product development. Among vehicles ap- peared on the market and in research, it has presented continuously better performance. The paper describes application examples and successful experience of CAE simulation analysis and performance optimization during the lightweight de- sign and development of a self-developed model of Geely, and looks forward to the prospects for the development of lightweight of Geely vehicle.