Hao Xiyang,Cai Xutao,Li Xiaomeng.Design and Simulation Analysis of New Plug-in Planetary Gear Hybrid Power System[J].Journal of Mechanical Transmission,2021,45(12):61-67.
Hao Xiyang,Cai Xutao,Li Xiaomeng.Design and Simulation Analysis of New Plug-in Planetary Gear Hybrid Power System[J].Journal of Mechanical Transmission,2021,45(12):61-67. DOI: 10.16578/j.issn.1004.2539.2021.12.010.
Design and Simulation Analysis of New Plug-in Planetary Gear Hybrid Power System
In order to improve the range and fuel economy of PHEV(plug-in hybrid electric vehicles),a new type of planetary gear driving device is presented,which can realize a variety of dynamic modes,and the adaptive control strategies modes is formulated. The simulation model of the PHEV is set up based on the ADVISOR software depending on the vehicle parameters of a domestic SUV,and secondary development to the control strategy of the vehicle is carried out at the same time. The PHEV in pure electric driving mode and hybrid mode are simulated in CYC-NEDC conditions. The results show that the mileage of pure electric range of new hybrid SUV is 16.7% more than that of the single motor endurance,the hybrid mode prompts the vehicle energy consumption reducing by 22.8%,which improved the fuel economy.
GAO Xiaojie,SUN Yongzheng,HAN Zhiyu,et al.Control strategy development for a new range-extender plug-in hybrid system[J].Journal of Tongji University(Natural Science),2019,47(S1):110-114.
SOVACOOL B K,HIRSH R F.Beyond batteries:an examination of the benefits and barriers to plug-in hybrid electric vehicles(PHEVs)and a vehicle-to-grid(V2G)transition[J].Energy Policy,2008,37(3):1095-1103.
WANG Cheng,GUO Shuying,LIU Ling.Development and application of serial hybrid electric powertrain system in the bus[J].Journalof Mechanical Engineering,2009,45(2):18-24.
MILLER J M.Hybrid electric vehicle propulsion system architectures of the e-CVT type[J].IEEE Transactions on Power Electronics,2006,21(3):756-767.
HE Ren,XU Yiqiang.Shift schedule of parallel hybrid electric vehicles under hybrid driving mode[J].Journal of Jiangsu University(Natural Science Edition),2016,37(6):657-662.
NI Runyu,ZHAO Zhiguo,GAO Xiaojie.Development and optimization of energy management strategy for a new plug-in hybrid electric car[J].Journal of Tongji University(Natural Science),2019,47(S1):104-109.
MURA R,UTKIN V,ONORI S.Energy management design in hybrid electric vehicles:a novel optimality and stability framework[J].IEEE Transactions on Control Systems Technology,2015,23(4):1307-1322.
LI Zhifeng,WANG Yulin,ZHANG Jian,et al.A hybrid power system with main and auxiliary gearbox structure and its simulation analysis[J].Journal of Mechanical Transmission,2020,44(5):65-72.
ZHANG Yan,DUAN Lian,YUAN Xiayi,et al.Experimental study on energy flow in a plug-in hybrid electric vehicle at low battery SOC[J].Automotive Engineering,2020,42(5):688-693.
ZHAO Xiaojing,WU Yimin,WANG Haixia.Analysis and modeling on Toyota/PRIUS hybrid powertrain system [J].Journal of Mechanical Transmission,2010,34(6):31-35.
TIAN Chun,HU Yuwen.Study of the scheme and theory of the direct torque control in permanent magnet synchronous motor drives[J].Transactions of China Electrotechnical Society,2002(1):7-11.
LUO Yutao,WANG Fuwen.Coordinated control for the mode switching of HEV powertrain with electro-mechanical variable transmission[J] .Automotive Engineering,2015,37(5):526-532.
NIU Qinyu,LI Zhenxi,WANG Zhichao,et al.Parameter matching and optimization of electric vehicle powertrain[J].Journal of Mechanical Transmission,2019,43(2):129-136.
National Automobile Standardization Technical Committee.Plug-in hybrid electric passenger cars-specifications:GB/T 32694-2016[S].Beijing:China Standard Press,2016:2.
National Automobile Standardization Technical Committee.Test methods for energy consumption of light-duty hybrid electric vehicles:GB/T 19753-2013[S].Beijing:China Standard Press,2014:5-7.