48 V i-BSG(带传动的智能一体化起动/发电机)电机是汽车混合动力系统的核心零部件。电机具有起动、发电以及能量回收、动力辅助的功能,因此提升发动机低速区域的性能可以获得较好的排放与油耗指标。为了获得电机优良的性能指标,采用电...48 V i-BSG(带传动的智能一体化起动/发电机)电机是汽车混合动力系统的核心零部件。电机具有起动、发电以及能量回收、动力辅助的功能,因此提升发动机低速区域的性能可以获得较好的排放与油耗指标。为了获得电机优良的性能指标,采用电磁学仿真软件,对电机的电磁结构进行优化设计。阐述了电机工作模式以及相应的控制策略。最后进行工程样机的制造和测试验证,结果表明电机性能达到设计指标。与法雷奥公司同类产品进行对比分析得出,在具备相同性能条件下,所设计电机有体积小、低成本等优点,为推向市场应用奠定了坚实的基础。展开更多
针对轻型混合动力汽车开发了一款48 V带传动一体化起/发电机(BSG)电机控制器。阐述了该控制器的总体设计方案,对BSG电机控制器的结构、硬件、软件进行了分析,提出了基于功率MOSFET模块的风冷电机控制器设计方案,并对风冷散热板进行了热...针对轻型混合动力汽车开发了一款48 V带传动一体化起/发电机(BSG)电机控制器。阐述了该控制器的总体设计方案,对BSG电机控制器的结构、硬件、软件进行了分析,提出了基于功率MOSFET模块的风冷电机控制器设计方案,并对风冷散热板进行了热仿真,研究了MOSFET模块散热效果。最后,对试验样机进行了台架测试,由测试结果可以看出,所设计48 V BSG电机控制器具有良好的控制效果。展开更多
The 48V mild hybrid system is a cost-efficient solution for original equipment manufacturers to meet increasingly stringent fuel consumption requirements.However,hybrid functions such as auto-stop/start and brake rege...The 48V mild hybrid system is a cost-efficient solution for original equipment manufacturers to meet increasingly stringent fuel consumption requirements.However,hybrid functions such as auto-stop/start and brake regeneration are unavailablewhen a 48V battery is at very low temperature because of its limited charge and discharge capability.Therefore,it is important to develop cost-efficient thermal management to warm-up the battery of a 48V mild hybrid electric vehicle(HEV)to recover hybrid functions quickly in cold climate.Following the model-based“V”process,we first define the requirements and then design different mechanisms to heat a 48V battery.Afterward,we build a 48V battery model in LMS AMESim and conduct co-simulation with simplified battery management system and hybrid control unit algorithms in MATLAB Simulink for analysis.Finally,we carry out a series of vehicle experiments at low temperature and observe the effect of heating to validate the design.Both simulation results and experimental data show that a cold 48V battery placed in a cabin with hot air can be heated effectively in the developed“Enhanced Generator Mode with 48V Battery”mode.The entire design is in a newly developed software that cyclically charges and discharges a 48V battery for quick warm-up in cold temperature without needing any additional hardware such as a heater,making it a cost-efficient solution for HEVs.展开更多
文摘48 V i-BSG(带传动的智能一体化起动/发电机)电机是汽车混合动力系统的核心零部件。电机具有起动、发电以及能量回收、动力辅助的功能,因此提升发动机低速区域的性能可以获得较好的排放与油耗指标。为了获得电机优良的性能指标,采用电磁学仿真软件,对电机的电磁结构进行优化设计。阐述了电机工作模式以及相应的控制策略。最后进行工程样机的制造和测试验证,结果表明电机性能达到设计指标。与法雷奥公司同类产品进行对比分析得出,在具备相同性能条件下,所设计电机有体积小、低成本等优点,为推向市场应用奠定了坚实的基础。
文摘针对轻型混合动力汽车开发了一款48 V带传动一体化起/发电机(BSG)电机控制器。阐述了该控制器的总体设计方案,对BSG电机控制器的结构、硬件、软件进行了分析,提出了基于功率MOSFET模块的风冷电机控制器设计方案,并对风冷散热板进行了热仿真,研究了MOSFET模块散热效果。最后,对试验样机进行了台架测试,由测试结果可以看出,所设计48 V BSG电机控制器具有良好的控制效果。
文摘The 48V mild hybrid system is a cost-efficient solution for original equipment manufacturers to meet increasingly stringent fuel consumption requirements.However,hybrid functions such as auto-stop/start and brake regeneration are unavailablewhen a 48V battery is at very low temperature because of its limited charge and discharge capability.Therefore,it is important to develop cost-efficient thermal management to warm-up the battery of a 48V mild hybrid electric vehicle(HEV)to recover hybrid functions quickly in cold climate.Following the model-based“V”process,we first define the requirements and then design different mechanisms to heat a 48V battery.Afterward,we build a 48V battery model in LMS AMESim and conduct co-simulation with simplified battery management system and hybrid control unit algorithms in MATLAB Simulink for analysis.Finally,we carry out a series of vehicle experiments at low temperature and observe the effect of heating to validate the design.Both simulation results and experimental data show that a cold 48V battery placed in a cabin with hot air can be heated effectively in the developed“Enhanced Generator Mode with 48V Battery”mode.The entire design is in a newly developed software that cyclically charges and discharges a 48V battery for quick warm-up in cold temperature without needing any additional hardware such as a heater,making it a cost-efficient solution for HEVs.