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混合动力汽车综合了内燃机驱动式汽车及电动机驱动式汽车的二者优势,具有环保、节油的特点,得到了各国的广泛重视.文章主要阐述了混合动力汽车的发展现状,分析了混合动力汽车发展的必要性,并结合混合动力汽车应用的特点,分析了影响混合动力汽车性能的关键性技术. 相似文献
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V. Pracny M. Meywerk A. Lion 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2007,45(1):1-14
The method of numerical multi-body simulation is an often used and well-understood development tool in the automotive industry. In order to reproduce the ride comfort or handling behaviour of vehicles, mathematical models have to be built up. To achieve accurate simulation results, highly detailed component models are required. However, the formulation of appropriate physically-based model equations of complex automotive components (e.g. air springs, shock absorbers, rubber bearings, tyres, etc.) can be very difficult. To handle this, empirical modelling methods have been developed. Simple algebraic equations are used to describe complex system behaviour. This simplification is very effective, although it largely ignores the natural laws of mechanics and thermodynamics but is still capable to predict the component response. This article illustrates how to take advantage of this approach in numerical simulations. We describe the development of a hybrid automotive shock absorber model based on both spline and neural network (NN) approaches. By combining these different approaches, an accurate model is achieved without loss of variability. Non-isothermal laboratory force-displacement measurements of an automotive shock absorber are being used to estimate the parameters of the NN. As shown, the model replicates the measured data with sufficient accuracy, especially the hysteresis. Finally, we present a set of quarter-car simulations with a built-in hybrid NN shock absorber. 相似文献
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This paper establishes the simulation model of a city bus on the basis of the EQ6110 bus prototype and its experimental data.
According to the actual urban driving cycle, the fuel economy and the traction performance of the EQ6110 city bus have been
simulated, and factors such as the driving cycle, the loss of power to engine accessories, the gear-shifting strategy, the
fuel shut-off strategy of the engine, etc., which influence on the bus’s fuel economy, are also quantitatively analyzed. Some
conclusions are drawn as follows: (1) driving cycles have a great influence on the fuel economy of a city bus; (2) under the
typical urban driving cycle of the public bus in China, the engine fuel shut-off strategy can save about 1 to 1.5 percent
of the fuel consumption; and (3) the optimized gear-shifting rules can save 6.7 percent of the fuel consumption. Experimental
results verify that the fuel economy for the EQ6110 public bus is improved by 7.2 pecent over the actual Wuhan urban driving
cycle of the current public bus in China. 相似文献
16.
In this paper, we investigate the transient characteristics of combustion and emissions during engine start/stop operations
in hybrid electric vehicle (HEV) applications. Hydrocarbon (HC) emissions during the initial 2nd∼9th cycles are found to be significantly greater when the engine is quickly started under the original engine calibration mode.
Lower intake manifold absolute pressure (MAP) was also found to cause larger residual gas dilution and poor combustion, resulting
in a higher HC concentration when the cranking speed was increased. The post-catalyst HC concentration was found in the way
of initially decrease and then to increase again as the cranking speed was increased. A lowest concentration value was achieved
at a cranking speed of 1000 r/min. Engine shut-down by fuel cut-off was shown to produce lower emissions than shut-down by
ignition cut-off as one can avoid misfire of the last fuel injection cycle. The fuel deposited during the stop process seems
to impact engine restart enrichment mostly during the initial 0.7 s for this engine, whose performance is dominated by the
MAP transition characteristic and the time coefficient for fuel vaporization in this time period 相似文献
17.
根据整车设计要求,建立插电式双电机MG1/MG2+行星轮系混合动力汽车高电压系统方案模型。通过理论计算及工程分析确定高压电池组、高电压线缆、双电机MG1/MG2、变频器(转换器/逆变器)、空调压缩机等高电压部件的结构及关键参数。针对高电压部件布置的安全及可靠性提出建议。 相似文献
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新能源汽车3大关键技术包括动力电池及其电池管理系统、驱动电机及其电机控制以及整车能量管理控制策略,整车控制策略直接决定能量流在汽车内部的流动及整车性能的好坏。文章利用模糊控制策略建立了详细的动力总成多能源能量管理控制模块,并通过ADVISOR仿真平台对所设计的控制策略进行仿真分析。仿真结果显示100km油耗仅5.1L,0-100km/h加速时间为23.1s,最大行驶速度168.3km/h;表明该能量管理策略能明显改善燃油经济性。动力性也具有较好表现。 相似文献
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基于道路设计与交通规划的道路选线优化模型 总被引:1,自引:0,他引:1
结合道路设计理论与交通规划理论,以地理信息系统为平台,开发道路选线优化模型。该模型是一个费用指向的优化问题,最小化费用目标函数中包括道路建设费用、土方工程费、道路交通诱发的环境污染的不经济费用,OD交通在路网上总走行时间的时间费用等。优化模型首先随机生成新建道路的空间位置候选方案集,并自动设计新建道路的平曲线和竖曲线,计算新建道路的各项工程费用。然后,对变化的路网进行自动拓扑,通过交通量分配得到OD交通在新路网上的走行时间和交通流特征,计算OD交通的环境负荷。最后,在遗传算法中判断候选方案的优劣,直到得到一个最佳的新建道路的空间位置方案为止。 相似文献