School of Mechanical Engineering, Hebei University of Technology, Tianjin 300401, China.
National Engineering Research Center for Technological Innovation Method and Tool, Hebei University of Technology, Tianjin 300401, China.
Sensors (Basel). 2022 Jun 20;22(12):4654. doi: 10.3390/s22124654.
While Product-Service Systems (PSS) have a potential sustainability impact by increasing a product's life and reducing resource consumption, the lack of ownership might lead to less responsible user behavior. Smart PSS can overcome this obstacle and guarantee correct and safe PSS use. In this context, intelligent connected vehicles (ICVs) with PSS can effectively reduce traffic accidents and ensure the safety of vehicles and pedestrians by guaranteeing optimal and safe vehicle operation. A core subsystem to support that is the collision-warning system (CWS). Existing CWSs are, however, limited to in-car warning; users have less access to the warning information, so the result of CWS for collision avoidance is insufficient. Therefore, CWS needs to be extended to include more elements and stakeholders in the collision scenario. This paper aims to provide a novel understanding of extended CWS (ECWS), outline the conceptual framework of ECWS, and contribute a conceptual modeling approach of ECWS from the smart PSS perspective at the functional level. It defines an integrated solution of intelligent products and warning services. The function is modeled based on the Theory of Inventive Problem Solving (TRIZ). Functions of an ECWS from the perspective of smart PSS can be comprehensively expressed to form an overall solution of integrated intelligent products, electronic services, and stakeholders. Based on the case illustration, the proposed method can effectively help function modeling and development of the ECWS at a conceptual level. This can effectively avoid delays due to traffic accidents and ensure the safety of vehicles and pedestrians.
虽然产品服务系统(PSS)通过延长产品寿命和减少资源消耗具有潜在的可持续性影响,但缺乏所有权可能导致用户行为不负责任。智能 PSS 可以克服这一障碍,并保证正确和安全的 PSS 使用。在这种情况下,具有 PSS 的智能联网汽车(ICV)可以通过保证车辆的最佳和安全运行,有效减少交通事故,确保车辆和行人的安全。支持这一点的核心子系统是碰撞警告系统(CWS)。然而,现有的 CWS 仅限于车内警告;用户对警告信息的访问较少,因此 CWS 避免碰撞的效果不足。因此,CWS 需要扩展到包括碰撞场景中的更多元素和利益相关者。本文旨在提供对扩展的 CWS(ECWS)的新认识,概述 ECWS 的概念框架,并从智能 PSS 的角度贡献 ECWS 的概念建模方法在功能级别。它定义了智能产品和警告服务的集成解决方案。该功能基于发明问题解决理论(TRIZ)进行建模。从智能 PSS 角度来看,ECWS 的功能可以全面表达,形成集成智能产品、电子服务和利益相关者的整体解决方案。基于案例说明,所提出的方法可以有效地帮助 ECWS 在概念层面进行功能建模和开发。这可以有效地避免交通事故造成的延误,确保车辆和行人的安全。