在车路协同系统仿真的基础上,以局部交通网络的实时交通仿真为例,建立了车路协同系统视景仿真模型库,确立了视景仿真系统的框架体系结构。将视景仿真集成为整个仿真系统的一个联邦成员,建立了车车信息交互、车路信息交互的典型视景仿真功能模型。使用LoD模型简化技术对视景仿真功能模型进行分解,生成了5个不同精细程度的LoD模型。采用DOF、LOD、Switch功能化节点,从节点结构上优化了典型应用场景中的交叉口信号灯、车辆运动等相关模型,建立了一套类似模型几何形状的层级节点结构。构建了车路协同系统可视化视景仿真平台,包括HLA/RTI信息交互与控制模块、车路协同数据处理模块、信息交互模块、模型引导控制模块、视角动态切换模块与模型状态参数动态显示模块。采用建模优化相关技术,对典型交通场景进行了视景仿真。仿真结果表明:通过LOD模型简化技术,模型简化率最高可达95.5%,内存占用减少86.3%;通过视景仿真方法的使用,提高了渲染效率与系统仿真效率,车路协同典型交通场景验证了仿真方法的可行性。
Based on the simulation of cooperative vehicle-infrastructure system(CVIS), the real- time traffic simulation of local region traffic network was taken as an example, the visual simulation model library of CVIS was constructed, and the infrastructure and framework of visual simulation system were established. Visual simulation was integrated as a federate member of whole simulation system, and the typical visual simulation functional models for vehicle-vehicle and vehicle-infrastructure information interactions were built. The visual simulation functional models were divided by using LOD reduction technique, and 5 LOD models with different detail degrees were built. By using the functional nodes of DOF, LOD and switch, the related models like intersection signal lamp and vehicles movement in the typical application scenarios were optimized based on node structure, and a similar model geometry node hierarchy structure was constructed. CVIS visual simulation platform including HLA/RTI information interaction and control module, vehicle-infrastructure cooperative data processing mouule, interaction module, model guidance and control module, view angle switching module and dynamic display module of model status parameters were constructed. Typical traffic scenario was visually simulated by using modeling optimization technique. Simulation result indicates that by using LOD reduction technique, the model reduction ratio reaches 95.5~, and memory occupancy ratio decreases by 86.3%. By using visual simulation method, rendering efficiency is improved, the efficiency of system simulation is accelerated, and the feasibility of simulation method is verified at typical cooperative vehicle infrastructure scenario. 1 tab, 12 figs, 21 refs.