汽车专业毕业设计外文翻译--飞轮储能系统的集成性能分析——ELPH车辆
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1、Integration and Performance Analysis of FlywheelEnergy Storage System in an ELPH Vehicle I. INTRODUCTION Conventional Internal Combustion Engine (ICE) vehiclesbear the disadvantages of poor fuel economy andenvironmental pollution. Basis of poor fuel economy are(i) Operation of engine in lower effici
2、ency region duringmost of the time in a drive cycle and (ii) Dissipation ofvehicle kinetic energy during braking . Electricbattery operated vehicles have some advantages over the ICE driven vehicles, but their short range is a majorlacuna in their performance. The shortcomings of both ofthese can be
3、 overcome by using a Hybrid Electric Vehicle(HEV). An HEV comprises conventional propulsionsystem with an on-board Rechargeable Energy StorageSystem (RESS) to achieve better fuel economy than aconventional vehicle as well as higher range as comparedto an Electric Vehicle.HEVs prolong the charge on R
4、ESS by capturing kineticenergy via regenerative braking, and some HEVs also usethe engine to generate electricity through an electricalgenerator (M/G) to recharge the RESS. An HEVs engine is smaller and may run at variousspeeds, providing higher efficiency. Reference suggests that HEVs allow fuel ec
5、onomy and reducedemissions compared to conventional ICE vehicles by: 1. Allowing the engine to stop under vehicle stopcondition, 2. Downsizing the engine for same peak loadrequirements, as the motor will assist the engine for such higher loads, and 3. Allowing regenerative braking, not possible inco
6、nventional vehicle. In urban drive conditions, about 30% of the fuel can be saved throughregenerative braking because of the frequent stop and go conditions . Series and Parallel hybrids are the two majorconfigurations of the HEVs. Even in ParallelConfiguration of Hybrid Vehicles, there are severalp
7、ossibilities in which an arrangement between the engine,motor and transmission can be made to achieve thedesired performance from the vehicle. In general thereare two methods to couple the energy of the engine andmotor namely, (i) Speed Coupling, and (ii) TorqueCoupling.In Speed Coupling the speeds
8、of engine and motor are added in appropriate fractions to achieve the final speedof the drive, whereas in Torque Coupling the torquefrom the engine and motor are summed up in TorqueCoupler, which can be either an epicyclic gear train orsimply the rotor of the electric machine (motor). In lattercase
9、the rotor of the electric machine is integrated withthe shaft from the engine through a clutch. The parallelhybrid is considered for the present analysis because ofits significant advantages over the series hybrid, such aslower emissions, improved efficiency, simplerconfiguration and better performa
10、nce. The configurationconsidered for the analysis is Pre-transmission torquecoupled parallel hybrid drive train .There are various candidates for onboard RESS. So farlead acid batteries have dominated the industry becauseof their compactness, easy availability and low cost.However, batteries have a
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