[1]QIN Zengzhi, SHANG Yujun, JIANG Wei, et al. Comfort Evaluation and Position Optimization of the Clutch Pedal in Agricultural Machinery Based on a Multi-level Evaluation System[J]. Transactions of the ASABE, 2021, 64(6):1805-1816.
[2]王雪涛, 别凤赛, 李晓光, 等. 煤矿作业工人肌肉骨骼疾患及其相关因素的调查与研究[J]. 中国工业医学杂志, 2020, 33(3):211-216.
WANG Xuetao, BIE Fengsai, LI Xiaoguang, et al. Investigation and Research on Musculoskeletal Disorders and Related Factors in Coal Mine Workers[J]. Chinese Journal of Industrial Medicine, 2020, 33(3):211-216.
[3]TANG Zhichuan, YANG Hongchun, ZHANG Lekai, et al. Effect of Shoulder Angle Variation on SEMG-based Elbow Joint Angle Estimation[J]. International Journal of Industrial Ergonomics, 2018, 68:280-289.
[4]YAMAUCHI J, KOYAMA K. Relation between the Ankle Joint Angle and the Maximum Isometric Force of the Toe Flexor Muscles[J]. Journal of Biomechanics, 2019, 85:1-5.
[5]MAYORCA-TORRES D, CAICEDO-ERASO J C, PELUFFO-ORDEZ D H. Knee Joint Angle Measuring Portable Embedded System Based on Inertial Measurement Units for Gait Analysis[J]. International Journal on Advanced Science, Engineering and Information Technology, 2020, 10(2):430-437.
[6]余晓枝, 任金东, 刘群, 等. 基于生物力学仿真的驾驶员身体负荷分布研究[J]. 汽车工程, 2017, 39(4):394-400.
YU Xiaozhi, REN Jindong, LIU Qun, et al. A Research on Driver Body Loads Distribution Based on Biomechanical Simulation[J]. Automotive Engineering, 2017, 39(4):394-400.
[7]陈子昂, 张淼, 钱佩伦, 等. 基于驾驶员关节力矩的转向操纵不舒适性研究[J]. 农业装备与车辆工程, 2016, 54(7):21-24.
CHEN Ziang, ZHANG Miao, QIAN Peilun, et al. Research on Steering Discomfort Based on Drivers Joint Torque[J]. Agricultural Equipment & Vehicle Engineering, 2016, 54(7):21-24.
[8]宋强, 白新瑀, 高喜银, 等. 基于生物力学的自走式喷雾机驾驶员下肢姿势舒适性研究[J]. 中国农机化学报, 2021, 42(7):99-106.
SONG Qiang, BAI Xinyu, GAO Xiyin, et al. Research on Lower Limb Posture Comfort of Drivers Based on Biomechanical Self-moving Spray Machine[J]. Journal of Chinese Agricultural Mechanization, 2021, 42(7):99-106.
[9]GRUJICIC M, PANDURANGAN B, XIE X, et al. Musculoskeletal Computational Analysis of the Influence of Car-seat Design/Adjustments on Long-distance Driving Fatigue[J]. International Journal of Industrial Ergonomics, 2010, 40(3):345-355.
[10]MIYAMOTO M, KONNO S, GEMBUN Y, et al. Epidemiological Study of Low back Pain and Occupational Risk Factors among Taxi Drivers[J]. Industrial Health, 2008, 46(2):112-117.
[11]张松. 基于骨肌生物力学的商用车驾驶员下肢操纵舒适性研究[D]. 长春:吉林大学, 2021.
ZHANG Song. Study on Lower Limb Handling Comfort of Commercial Vehicle Drivers Based on Musculoskeletal Biomechanics[D].Changchun:Jilin University, 2021.
[12]杨洋, 李宛骏, 李延凯, 等. 基于生物力学模型的拖拉机离合踏板人机工程设计[J]. 农业工程学报, 2019, 35(3):82-91.
YANG Yang, LI Wanjun, LI Yankai, et al. Ergonomics Design of Tractor Clutch Pedal Based on Biomechanical Model[J]. Transactions of the Chinese Society of Agricultural Engineering, 2019, 35(3):82-91.
[13]STURDY J T, SESSOMS P H, SILVERMAN A K. A Backpack Load Sharing Model to Evaluate Lumbar and Hip Joint Contact Forces during Shoulder Borne and Hip Belt Assisted Load Carriage[J]. Applied Ergonomics, 2021, 90:103277.
[14]ZHANG Wenjie, WANG Qichao, XU Zheng, et al. Development of a Tractor Operator-operation Environment Coupled Biomechanical Model and Analysis of Lower Limb Muscle Fatigue[J]. International Journal of Industrial Ergonomics, 2023, 93:103407.
[15]LECOCQ M, LANTOINE P, BOUGARD C, et al. Neuromuscular Fatigue ProfilesDepends on Seat Feature during Long Duration Driving on a Static Simulator[J]. Applied Ergonomics, 2020, 87:103118.
[16]WANG Qichao, HUO Yihuan, XU Zheng, et al. Effects of Backrest and Seat-pan Inclination of Tractor Seat on Biomechanical Characteristics of Lumbar, Abdomen, Leg and Spine[J]. Computer Methods in Biomechanics and Biomedical Engineering, 2023, 26(3):291-304.
[17]徐红梅, 王启超, 张文杰, 等. 基于驾驶员生物力学特性的拖拉机座椅位置参数优化[J]. 农业工程学报, 2022, 38(22):32-40.
XU Hongmei, WANG Qichao, ZHANG Wenjie, et al. Optimization of Tractor Seat Position Parameters Based on Biomechanical Characteristics[J]. Transactions of the Chinese Society of Agricultural Engineering, 2022, 38(22):32-40.
[18]DAMSGAARD M, RASMUSSEN J, CHRISTENSEN S T, et al. Analysis of Musculoskeletal Systems in the AnyBody Modeling System[J]. Simulation Modelling Practice and Theory, 2006, 14(8):1100-1111.
[19]NOLTE A, AUGAT P, RASMUSSEN J. Analysis of the Muscle and Joint Forces in the Shoulder Joint Using the anybody Simulation Model[J]. Journal of Biomechanics, 2008, 41:S492.
[20]BURKHART K A, BRUNO A G, BOUXSEIN M L, et al. Estimating Apparent Maximum Muscle Stress of Trunk Extensor Muscles in Older Adults Using Subject-specific Musculoskeletal Models[J]. Journal of Orthopaedic Research, 2018, 36(1):498-505.
[21]CHAFFIN D B. Occupational Biomechanics[M]. 4th ed. New York:John Wiley, 2006.
[22]LI Le, TONG Kaiyu, SONG Rong, et al. Is Maximum Isometric Muscle Stress the Same among Prime Elbow Flexors?[J]. Clinical Biomechanics, 2007, 22(8):874-883.
[23]CHEN Yan, MA Ke, YANG Lie, et al. Trunk Compensation Electromyography Features Purification and Classification Model Using Generative Adversarial Network[J]. Biomedical Signal Processing and Control, 2021, 65:102345.
[24]VERA-GARCIA F J, MORESIDE J M, McGILL S M. MVC Techniques to Normalize Trunk Muscle EMG in Healthy Women[J]. Journal of Electromyography and Kinesiology, 2010, 20(1):10-16.
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