Title :
Research of interactive visual simulation method based on Cooperative Vehicle Infrastructure System
Author :
Wei Shang Guan ; Hong-Qian Guo ; Peng-Hui Liu ; Bai-Gen Cai ; Jian Wang
Author_Institution :
Sch. of Electron. & Inf. Eng., Beijing Jiaotong Univ., Beijing, China
Abstract :
Design, research and development of Cooperative Vehicle Infrastructure System (CVIS) involve several of factors and multi-level complex relationship. To reduce consume of manpower, material and financial resources, and avoid serious consequences happening during service stage, it is necessary to build a reliable, efficient and realistic virtual CVIS platform. This paper defines visual simulation as a federate of CVIS, to establish an interactive visual simulation platform. This paper uses MultiGen Paradigm´s visual simulation software to establish a model library and drive models. Further, some models are simplified by levels of detail (LOD) technique. Functional models of vehicle-to-vehicle and vehicle-infrastructure information interaction have been made. In the aspect of single car simulation, a 5DT data glove and an inertial sensor are used to design an interactive auxiliary driving platform. In the aspect of simulation platform optimization, a method of dynamic loading model mechanism has been proposed to save space and time. To make vehicles move smoothly during simulation, a dynamic interpolation method has been used to fit and interpolate vehicle´s trajectory. This paper establishes an interactive visual simulation platform based on CVIS. This platform has the ability to verify the property and function of CVIS. On this platform numbers of data information are transformed into visual graphic information, which enhances efficiency and interaction of the simulation to CVIS and accelerates the speed to develop real CVIS.
Keywords :
cooperative systems; data gloves; digital simulation; intelligent transportation systems; interactive systems; interpolation; 5DT data glove; LOD technique; cooperative vehicle infrastructure system; data information; drive model; dynamic interpolation method; dynamic loading model mechanism; functional models; inertial sensor; interactive auxiliary driving platform; interactive visual simulation method; interactive visual simulation platform; levels of detail technique; model library; multilevel complex relationship; simulation platform optimization; single car simulation; vehicle trajectory; vehicle-infrastructure information interaction; vehicle-to-vehicle infrastructure; virtual CVIS platform; visual graphic information; visual simulation software; Data gloves; Data models; Libraries; Load modeling; Solid modeling; Vehicles; Visualization;
Conference_Titel :
Intelligent Transportation Systems (ITSC), 2014 IEEE 17th International Conference on
Conference_Location :
Qingdao
DOI :
10.1109/ITSC.2014.6957677