[ 1 ] 王迪,尚秉旭,陈志新,等.轮毂电机及其电动车技术
发展综述[J].汽车文摘,2019(11):40-44.
[ 2 ] WANG Z, ZHOU J, RIZZONI G, et al.A Review of
Architectures and Control Strategies of Dual-motor
Coupling Powertrain Systems for Battery Electric
Vehicles[J].Renewable and Sustainable Energy Reviews,
2022,162:112455.
[ 3 ] 陈阁,杨延忠,黄福昊,等.电动汽车轮毂电机发展综
述[J].汽车实用技术,2022,47(4):139-143.
[ 4 ] 柴凤,于雁磊,裴宇龙.电传动车辆永磁轮毂电机技术
现状及展望[J].兵工学报,2021,42(10):2060-2074.
[ 5 ] 尤兵,李修森.基于轮毂电机驱动平台的转矩矢量分
配技术的研究[J].汽车文摘,2019(1):1-4.
[ 6 ] 汪新伟,周自宝.轮毂电机驱动电动汽车的电制动特
性研究[J].内燃机与配件,2021(1):29-30.
[ 7 ] 柴晓辉,连晋毅,王坤,等.分布驱动式纯电动汽车驱
动系统研究综述[J].汽车实用技术,2020,45(13):5-
10.
[ 8 ] 赵成.分布式驱动电动汽车用轮毂电机设计与验证
[J].微特电机,2022,50(2):22-26.
[ 9 ] LE SOLLIEC G,CHASSE A,GEAMANU M. Regenerative Braking Optimization and Wheel Slip Control
for a Vehicle with In-wheel Motors[J].IFAC Proceedings Volumes,2013,46(21):542-547.
[10] 余江泽.四轮独立驱动轮毂电机电动汽车再生制动
系统控制[D].杭州:浙江大学,2017.
[11] SUN Y. Application of Wheel Hub Motor Direct Drive
in Automobile[J].World Scientific Research Journal,
2022,8(5):526-531.
[12] MATSUGAURA S,KAWAKAMI K,SHIMIZU H.Evaluation of Performances for the In-wheel Drive System for the New Concept Electric Vehicle KAZ[C]//
Proceedings of the 19th International Electric Vehicle
Symposium.Seoul:South Korea's Venus Publishing
House,2002.
[13] GRANDONE M, NADDEO M, MARRA D,et al.
Development of a Regenerative Braking Control
Strategy for Hybridized Solar Vehicle[J].IFAC-Papers
OnLine,2016, 49(11):497-504.
[14] WANG Q, LI R, ZHU Y, et al. Integration Design and
Parameter Optimization for a Novel In-wheel Motor
with Dynamic Vibration Absorbers[J].Journal of the
Brazilian Society of Mechanical Sciences and Engineering,2020,42(9):1-12.
[15] 陈齐平,肖强,黄娟林,等.一种外转子轮毂电机电动汽
车驱动制动一 体化装置:201810421122.6[P].2018-
07-31.
[16] ZHANG R J. Structure Design and Coordinated Control of Electromagnetic and Frictional Braking System
Based on a Hub Motor[J].Science Progress,2021,104
(1):4147-4163.
[17] ZHANG L,HE R.Research on Multi-mode Regenerative Braking Energy Recovery of Electric Vehicle
with Double Rotor Hub Motor[J].International Journal
of Vehicle Design,2020,82(1-4):45-63.
[18] 雷雨龙,耿小虎,付尧,等.一种具有双电机的轮毂驱动
与制动集成系统及其控制方法:202010430707.1[P].
2020-05-20.
[19] GODFREY A J,SANKARANARAYANAN V. A New
Electric Braking System with Energy Regeneration
for a BLDC Motor Driven Electric Vehicle[J].Engineering Science and Technology,2018,21(4):704-713.
[20] VIGNATI M,BELLONI M,TARSITANO D,et al.Optimal Cooperative Brake Distribution Strategy for IWM
Vehicle Accounting for Electric and Friction Braking
Torques[J].Mathematical Problems in Engineering,
2021:1-19.
[21] AKSJONOV A, VODOVOZOV V, AUGSBURG K,et
al. Design of Regenerative Anti-lock Braking System
Controller for 4 In-wheel-motor Drive Electric
Vehicle with Road Surface Estimation[J].International
Journal of Automotive Technology,2018,19(4):727-
742.
[22] GONZáLEZ HERNáNDEZ M I, ARAUJO PéREZ B,
MARTíN SáNCHEZ J S,et al.Advanced Microsystems for Automotive Applications[M].Heidelberg:
Springer,2013.
[23] PEI X,PAN H,CHEN Z,et al.Coordinated Control
Strategy of Electro-hydraulic Braking for Energy
Regeneration[J].Control Engineering Practice,2020,96
(6):104324.
[24] 燕玉林,廖自力,刘春光,等.轮毂电机多轮独立驱动车
辆机电联合制动控制策略[J].火力与指挥控制,2015,
40(5): 120-123.
[25] XU W, CHEN H, ZHAO H,et al. Torque Optimization
Control for Electric Vehicles with Four In-wheel
Motors Equipped with Regenerative Braking System
[J].Mechatronics,2019,57:95-108.
[26] 刘晋霞,王莉,刘宗锋.四驱电动轮汽车模糊逻辑控制
的再生制动系统[J].机械设计与制造,2021(12):164-
168.
[27] 顾钰,何仁,王骏骋.轮毂电机电动汽车再生液压复合
制动系统协调控制策略[J].重庆理工大学学报(自然
科学),2020,34(6):32-40. |