| Literature DB >> 36231418 |
Yongji Ma1, Jinliang Xu1, Chao Gao1, Minghao Mu2, Guangxun E2, Chenwei Gu1.
Abstract
Road traffic safety can be ensured by preventing and controlling the potential risks in road traffic operations. The relevant literature was systematically reviewed to identify the research context and status quo in the road traffic operation risk prevention and control field and identify the key study contents needing further research. As research material, the related English and Chinese literature published between 1996 and 2021 (as of 31st December 2021) was obtained through the Web of Science Core Collection and Chinese Science Citation Database. These research materials include 22,403 English and 7876 Chinese papers. Based on the bibliometrics, this study used CiteSpace software to conduct keyword co-occurrence analysis in the field. The results show that the relevant research topics mainly covered the risks of drivers, vehicles, roads, and the traffic environment. In the aspect of driver risks, the studies focused on driving behavior characteristics. In terms of vehicle risks, the related studies were mainly about the vehicle control system, driving assistance system, hazardous material transportation, automated driving technology, safe driving speed, and vehicle collision prediction. For the road risks, the safe driving guarantee of high-risk road sections, driving risks at intersections, and safe road alignment design were the three study hotspots. In terms of traffic environment risks, identifying traffic risk locations and driving safety guarantees under adverse weather conditions were the two main research highlights. Moreover, mathematical modeling was the main method for studying road traffic operation risk. Furthermore, the impact of environmental factors on drivers, the emergency rescue system for road traffic accidents, the connection between automated driving technology and safe driving theory, and the man-machine hybrid traffic flow characteristics are the subjects needing further research.Entities:
Keywords: human factor risk; review; road traffic risk prevention and control; traffic engineering; traffic risk
Mesh:
Substances:
Year: 2022 PMID: 36231418 PMCID: PMC9564786 DOI: 10.3390/ijerph191912115
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 4.614
Figure 1Co-occurrence network of partial high-frequency keywords in WoSCC.
Figure 2Co-occurrence frequency and time distribution of “model”.
Figure 3Co-occurrence frequency and time distribution of “risk”.
Figure 4Co-occurrence frequency and time distribution of “safety”.
Future research directions based on WoSCC.
| Future Research Directions | Specific Examples | |
|---|---|---|
| 1 | The impact of driving environment factors on the physiological and psychological characteristics of drivers and adverse driving behaviors | The influence of adverse weather environment on physiological and psychological conditions of drivers; |
| 2 | Traffic emergency response after accidents | Planning of traffic accident rescue service station; |
| 3 | The connection between ITS technologies and the core issues of road traffic safety | Expressway traffic flow characteristics under different weather conditions; |
| 4 | Changes in road traffic flow characteristics due to service object upgrading | Changes in road traffic flow characteristics in the context of vehicle networking and vehicle-road cooperation technologies |
| 5 | Various traffic conflicts on urban roads | Traffic conflicts between non-motor vehicles and motor vehicles; |
Figure 5Co-occurrence network of partial high-frequency keywords in CSCD.
Figure 6Co-occurrence frequency and time distribution of “traffic engineering”.
Figure 7Co-occurrence frequency and time distribution of “traffic safety”.
Figure 8Co-occurrence frequency and time distribution of “road engineering”.
Figure 9Co-occurrence frequency and time distribution of “expressway”.
Figure 10Co-occurrence frequency and time distribution of “vehicle engineering”.
Future research directions based on CSCD.
| Future Research Directions | Specific Examples | |
|---|---|---|
| 1 | Effective technologies for driving risk monitoring | Technologies for monitoring and warning drivers of high-risk driving conditions, capturing dangerous driving behaviors, and correcting dangerous behaviors |
| 2 | Optimization of driver training system | Investigating the psychological status of driving test personnel and developing the corresponding training strategies |
| 3 | Screening and monitoring of potential accident vehicles and dangerous operating vehicles | Screening and monitoring potential accident vehicles and dangerous operating vehicles from the huge and dense real-time vehicle data of road traffic flow |
| 4 | Tolerant design concept in road design work | Road alignment guidance design; |
| 5 | Risk prevention and control of tunnel sections | Response mechanism of an accurate early warning system, efficient rescue in the accident, and rapid recovery after the accident |
| 6 | Risk prevention and control of hazardous material transportation vehicles | Supervising the whole process of hazardous material transportation vehicles; |
| 7 | Safety management of overlimit transportation vehicles | Risk assessment, transport mileage limitation, transportation route planning, transportation process monitoring, and traffic organization and guidance of overlimit transportation vehicles |
| 8 | Emergency rescue for road traffic emergencies | Road network control plan in an emergency; |