Accurate fuel injection control of aircraft engine can optimize the energy efficiency of UAV power system while meeting the propeller speed requirement. Traditional injection control method such as open-loop calibrati...Accurate fuel injection control of aircraft engine can optimize the energy efficiency of UAV power system while meeting the propeller speed requirement. Traditional injection control method such as open-loop calibration causes instability of fuel supply which brings the risk of power loss of UAV. Considering that the closed-loop control of AFR can ensure a stable fuel feeding, this paper proposes an AFR control based fuel supply strategy in order to improve the efficiency of fuel-powered UAV while obtaining the required engine speed. According to the optimum fuel injection results, we implement fuzzy-PID method to control the set AFR in different situations. Through simulation and experiment studies, the results indicate that, to begin with, the calibrated mathematical model of the aircraft engine is effective. Next, this fuel supply strategy based on AFR control can normally realize the engine speed regulation, and the applied control algorithm can eliminate the overshoot of AFR throughout all the working progress. What is more,the fuel supply strategy can averagely shorten the response time of the engine speed by about two seconds. In addition, compared with the open-loop calibration, in this work the power efficiency is improved by 9% to 33%. Last but not the least, the endurance can be improved by 30 min with a normal engine speed. This paper can be a reference for the optimization of UAV aircraft engine.展开更多
Axial flux permanent magnet synchronous motors(AFPMSMs)have been widely used in wind-power generation,electric vehicles,aircraft,and other renewable-energy applications owing to their high power density,operating effi...Axial flux permanent magnet synchronous motors(AFPMSMs)have been widely used in wind-power generation,electric vehicles,aircraft,and other renewable-energy applications owing to their high power density,operating efficiency,and integrability.To facilitate comprehensive research on AFPMSM,this article reviews the developments in the research on the design and control optimization of AFPMSMs.First,the basic topologies of AFPMSMs are introduced and classified.Second,the key points of the design optimization of core and coreless AFPMSMs are summarized from the aspects of parameter design,structure design,and material optimization.Third,because efficiency improvement is an issue that needs to be addressed when AFPMSMs are applied to electric or other vehicles,the development status of efficiency-optimization control strategies is reviewed.Moreover,control strategies proposed to suppress torque ripple caused by the small inductance of disc coreless permanent magnet synchronous motors(DCPMSMs)are summarized.An overview of the rotor-synchronization control strategies for disc contra-rotating permanent magnet synchronous motors(CRPMSMs)is presented.Finally,the current difficulties and development trends revealed in this review are discussed.展开更多
为了进一步发挥混合动力汽车的节油性能,插电式混合动力汽车(Plug-in Hybrid Electric Vehicle,PHEV)在电量消耗(Charge-Depleting,CD)模式下,制订系统效率最优的能量管理策略来提高整车的电消耗行驶里程,进而实现提升整车燃油经济性的...为了进一步发挥混合动力汽车的节油性能,插电式混合动力汽车(Plug-in Hybrid Electric Vehicle,PHEV)在电量消耗(Charge-Depleting,CD)模式下,制订系统效率最优的能量管理策略来提高整车的电消耗行驶里程,进而实现提升整车燃油经济性的目的。分析了系统在电量消耗模式下相关典型工作模式,以车辆动力学方程为基础,推导出系统效率模型。以需求转矩、动力电池荷电状态、电机转速作为动力系统的输入,将系统效率最优作为系统的目标价值函数,在动力性指标的约束下,优化获得在电量消耗模式下的电机转矩和无级变速器速比的最佳控制规律,综合数值建模和试验数据建模方法,基于Matlab/Simulink软件平台构建插电式混合动力汽车的发动机、驱动电机、无级变速器(CVT)和动力电池等动力传动系统关键部件效率数值模型和整车动力学模型以及驾驶员模型,在新欧洲行驶循环(New European Driving Cycle,NEDC)工况下进行模型在环循环仿真验证分析。仿真结果表明,插电式混合动力汽车在电量消耗模式下,基于系统效率最优的能量管理策略能够使动力电池运行更加高效,转矩的分配更为合理,无级变速器获得较佳的控制规律。与直观式逻辑控制相比,纯电动续航里程提升了10.9 km,即经济性提高了15.3%,充分体现了所制订的控制策略的有效性。展开更多
通过对内燃机典型万有特性曲线进行研究,以发动机效率优化为依据,提出了一种以并联式混合动力汽车(Parallel Hybrid Electric Vehicle,简称PHEV)需求扭矩、电池荷电状态和发动机转速为输入,发动机的实际输出扭矩为输出的并联式混合动力...通过对内燃机典型万有特性曲线进行研究,以发动机效率优化为依据,提出了一种以并联式混合动力汽车(Parallel Hybrid Electric Vehicle,简称PHEV)需求扭矩、电池荷电状态和发动机转速为输入,发动机的实际输出扭矩为输出的并联式混合动力汽车模糊控制策略。并在EUDC路况下进行了仿真。结果表明,所设计的模糊控制策略在满足车辆动力性能指标的前提下,与电辅助控制策略相比,PHEV的平均耗油量降低了11.5%,发动机效率提高了7%,证明了该策略的有效性。展开更多
基金financially supported by the National Natural Science Foundation of China (No. 51605013)the Pneumatic and Thermodynamic Energy Storage and Supply Beijing Key Laboratory
文摘Accurate fuel injection control of aircraft engine can optimize the energy efficiency of UAV power system while meeting the propeller speed requirement. Traditional injection control method such as open-loop calibration causes instability of fuel supply which brings the risk of power loss of UAV. Considering that the closed-loop control of AFR can ensure a stable fuel feeding, this paper proposes an AFR control based fuel supply strategy in order to improve the efficiency of fuel-powered UAV while obtaining the required engine speed. According to the optimum fuel injection results, we implement fuzzy-PID method to control the set AFR in different situations. Through simulation and experiment studies, the results indicate that, to begin with, the calibrated mathematical model of the aircraft engine is effective. Next, this fuel supply strategy based on AFR control can normally realize the engine speed regulation, and the applied control algorithm can eliminate the overshoot of AFR throughout all the working progress. What is more,the fuel supply strategy can averagely shorten the response time of the engine speed by about two seconds. In addition, compared with the open-loop calibration, in this work the power efficiency is improved by 9% to 33%. Last but not the least, the endurance can be improved by 30 min with a normal engine speed. This paper can be a reference for the optimization of UAV aircraft engine.
基金Supported by Shanghai Municipal Natural Science Foundation of China (Grant No.19ZR1418600)。
文摘Axial flux permanent magnet synchronous motors(AFPMSMs)have been widely used in wind-power generation,electric vehicles,aircraft,and other renewable-energy applications owing to their high power density,operating efficiency,and integrability.To facilitate comprehensive research on AFPMSM,this article reviews the developments in the research on the design and control optimization of AFPMSMs.First,the basic topologies of AFPMSMs are introduced and classified.Second,the key points of the design optimization of core and coreless AFPMSMs are summarized from the aspects of parameter design,structure design,and material optimization.Third,because efficiency improvement is an issue that needs to be addressed when AFPMSMs are applied to electric or other vehicles,the development status of efficiency-optimization control strategies is reviewed.Moreover,control strategies proposed to suppress torque ripple caused by the small inductance of disc coreless permanent magnet synchronous motors(DCPMSMs)are summarized.An overview of the rotor-synchronization control strategies for disc contra-rotating permanent magnet synchronous motors(CRPMSMs)is presented.Finally,the current difficulties and development trends revealed in this review are discussed.
文摘为了进一步发挥混合动力汽车的节油性能,插电式混合动力汽车(Plug-in Hybrid Electric Vehicle,PHEV)在电量消耗(Charge-Depleting,CD)模式下,制订系统效率最优的能量管理策略来提高整车的电消耗行驶里程,进而实现提升整车燃油经济性的目的。分析了系统在电量消耗模式下相关典型工作模式,以车辆动力学方程为基础,推导出系统效率模型。以需求转矩、动力电池荷电状态、电机转速作为动力系统的输入,将系统效率最优作为系统的目标价值函数,在动力性指标的约束下,优化获得在电量消耗模式下的电机转矩和无级变速器速比的最佳控制规律,综合数值建模和试验数据建模方法,基于Matlab/Simulink软件平台构建插电式混合动力汽车的发动机、驱动电机、无级变速器(CVT)和动力电池等动力传动系统关键部件效率数值模型和整车动力学模型以及驾驶员模型,在新欧洲行驶循环(New European Driving Cycle,NEDC)工况下进行模型在环循环仿真验证分析。仿真结果表明,插电式混合动力汽车在电量消耗模式下,基于系统效率最优的能量管理策略能够使动力电池运行更加高效,转矩的分配更为合理,无级变速器获得较佳的控制规律。与直观式逻辑控制相比,纯电动续航里程提升了10.9 km,即经济性提高了15.3%,充分体现了所制订的控制策略的有效性。
文摘通过对内燃机典型万有特性曲线进行研究,以发动机效率优化为依据,提出了一种以并联式混合动力汽车(Parallel Hybrid Electric Vehicle,简称PHEV)需求扭矩、电池荷电状态和发动机转速为输入,发动机的实际输出扭矩为输出的并联式混合动力汽车模糊控制策略。并在EUDC路况下进行了仿真。结果表明,所设计的模糊控制策略在满足车辆动力性能指标的前提下,与电辅助控制策略相比,PHEV的平均耗油量降低了11.5%,发动机效率提高了7%,证明了该策略的有效性。