[1] CHO D, GUPTA R, DAI E, et al. Launch performance optimization of GTDI-DCT powertrain[J]. SAE Int. J. Engines,2015,8(3):1398-1407. [2] DOREY R E, HOLMES C B. Vehicle drivability-its characterization and measurement[C]. SAE Paper 1999-01-0949. [3] 赵治国,王琪,陈海军,等.干式DCT换挡模糊时间决策及转矩协调控制[J].机械工程学报,2013,49(12):92-108. [4] 陈海军,赵治国,王琪,等.干式DCT双离合器联合起步最优协调控制[J].机械工程学报,2014,50(22):150-164. [5] 吴明翔.汽车干式双离合器接合过程动力学与控制的研究[D].上海:上海交通大学,2013. [6] 陈然,孙冬野.自动变速车辆起步模糊神经网络控制策略仿真[J].系统仿真学报,2010,22(4):912-914. [7] 吴光强,司建玉.双离合器自动变速器起步的智能控制策略[J].同济大学学报(自然科学版),2012,40(1):81-87. [8] HUANG Q, WANG H. Fundamental study of jerk: evaluation of shift quality and ride comfort[C]. SAE Paper 2004-01-2065. [9] 赵振和,朱勇,邢红岩,等.AMT起步品质评价指标的研究[J].北京汽车,2014(1):14-16. [10] XING R F, GUAN X, TIAN C W, et al. Weight of subjective evaluation indexes for car handling and stability [J]. Journal of Jilin University,2009(39):33-38. [11] 宋世欣,张元侠,刘科,等.双离合器自动变速器控制品质评价指标分析[J].汽车工程,2015,37(8):925-930. [12] LEI Y L, LIU H B, QIU J, et al. Starting quality assessment and optimization for automated manual transmission[C]. SAE Paper 2012-01-0059. [13] 张建国.双离合器式自动变速器控制品质评价与优化[D].长春:吉林大学,2011. [14] 杨伟斌,陈全世,吴光强,等.双离合器式自动变速器起步的智能控制及性能仿真[J].机械工程学报,2008,44(11):178-185. [15] LAVANGARE P, JAHAGIRDAR A, MENGAJI P, et al. Development of indigenous automated system to evaluate clutch performance under real world conditions[C]. Symposium on International Automotive Technology,2017. [16] GALVAGNO E, GUERCIONI G R, VIGLIANI A. Sensitivity analysis of the design parameters of a dual-clutch transmission focused on NVH performance[C]. SAE 2016 World Congress and Exhibition,2016. [17] SUN W, HUA Y L, LIU G Q. A test study of wet dual clutch transmission during vehicle launch[J]. Advanced Materials Research,2012,490-495:86-90. [18] SHANKAR M, SRI H S I, SUNIL K, et al. Methodology to study the effect of variation of suspension characteristics on body durability[C]. SAE Paper 2017-01-0348. [19] PACHECO A F, MARTINS M E S, ZHAO H. New European drive cycle (NEDC) simulation of a passenger car with a HCCI engine: emissions and fuel consumption results[J]. Fuel,2013,111(9):733-739. [20] KUO R, HUANG M, CHENG W, et al. Application of a two-stage fuzzy neural network to a prostate cancer prognosis system[J]. Artificial Intelligence in Medicine,2014,63(2):119-133. [21] LOHANI A K, KUMAR R, SINGH R D. Hydrological time series modeling a comparison between adaptive neuro-fuzzy, neural network and autoregressive techniques[J]. Journal of Hydrology,2012(s442-443):23-35. [22] ALIEY R A. Type-2 fuzzy neural networks with fuzzy clustering and differential evolution optimization[J]. Information Sciences,2011,181(9):1591-1608. [23] Subjective rating scale for vehicle handling[S]. Warrendale, United States: SAE,2007. |