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A novel lattice model integrating the cooperative deviation of density and optimal flux under V2X environment

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【作者】 彭光含罗春莉赵红专谭惠丽

【Author】 Guang-Han Peng;Chun-Li Luo;Hong-Zhuan Zhao;Hui-Li Tan;College of Physical Science and Technology, Guangxi Normal University;College of Architecture and Transportation Engineering, Guilin University of Electronic Technology;

【通讯作者】 彭光含;

【机构】 College of Physical Science and Technology, Guangxi Normal UniversityCollege of Architecture and Transportation Engineering, Guilin University of Electronic Technology

【摘要】 A novel lattice hydrodynamic model is proposed by integrating the cooperative deviation of density and optimal flux under vehicle to X(V2X) environment. According to the theoretical analysis, the stability conditions and the mKdV equations affected by the cooperative deviation of traffic information are explored. And the density wave, hysteresis loop and energy consumption of the traffic flow have been investigated via numerical simulation. The results indicate that the cooperative deviation of density and optimal flux can effectively alleviate the traffic congestion. More importantly, our new consideration can reduce fuel consumption and exhaust emission under the V2X environment.

【Abstract】 A novel lattice hydrodynamic model is proposed by integrating the cooperative deviation of density and optimal flux under vehicle to X(V2X) environment. According to the theoretical analysis, the stability conditions and the mKdV equations affected by the cooperative deviation of traffic information are explored. And the density wave, hysteresis loop and energy consumption of the traffic flow have been investigated via numerical simulation. The results indicate that the cooperative deviation of density and optimal flux can effectively alleviate the traffic congestion. More importantly, our new consideration can reduce fuel consumption and exhaust emission under the V2X environment.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 61963008);Guangxi Natural Science Foundation (Grant No. 2022GXNSFDA035080);Guangxi Innovation-Driven Development Special Fund Project (Grant No. GUIKEAA19254034-3);Doctor Scientific Research Startup Project Foundation of Guangxi Normal University, China (Grant No. 2018BQ007)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年01期
  • 【分类号】U495
  • 【下载频次】5
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