代表性论文(第一作者):
[1] 张伏, 王新月, 崔夏华, 禹煌, 曹炜桦, 张亚坤, 熊瑛, 付三玲. 高光谱结合极限学习机的玉米品种鉴别[J]. 光谱学与光谱分析, 2023, 43(9):2928-2934. (SCI收录:001064031800042,EI收录:20234114875966)
[2] Zhang Fu, Zhang Fangyuan, Wang Shunqing, Lantao Li, Lv Qiang, Fu Sanling, Wang Xinyue, Lv Qingfeng, Zhang Yakun. Hyperspectral imaging combined with CNN for maize variety identification[J].Frontiers in Plant Science, 2023, 14: 1254548.(SCI收录:001069624700001)
[3] 张伏, 曹炜桦, 崔夏华, 王新月, 付三玲, 张亚坤. 基于SG-CARS-IBP的圣女果可溶性固形物可见/近红外光谱无损检测[J]. 光谱学与光谱分析, 2023, 43(3): 737-743. (SCI收录:000968678100011,EI收录:20232414215227)
[4] Zhang Fu, Chen Zijun, Ali Shaukat, Yang Ning, Fu Sanling, Zhang Yakun. Multi-class detection of cherry tomatoes using improved YOLOv4-Tiny [J]. International Journal of Agricultural and Biological Engineering, 2023, 16(2): 225-231.(SCI收录:001000935600001)
[5] Zhang Fu, Chen Zijun, Wang Yafei, Bao Ruofei, Chen Xingguang, Fu Sanling, Tian Mimi, Zhang Yakun. Research on Flexible End-Effectors with Humanoid Grasp Function for Small Spherical Fruit Picking[J]. Agriculture, 2023, 13(1): 123. (SCI收录:000916833700001)
[6] Zhang Fu, Cui Xiahua, Zhang Chaochen, Cao Weihua, Wang Xinyue, Fu Sanling, Teng Shuai. Rapid non-destructive identification of selenium-enriched millet based on hyperspectral imaging technology[J]. CZECH Journal of Food Sciences, 2022,40(6): 445–455. (SCI收录:000899740100001)
[7] Zhang Fu, Qiu Yubo, Teng Shuai, Cui Xiahua, Wang Xinyue, Sun Haoxun, Ali Shaukat, Guo Zhijun, Wang Jiajia, Fu Sanling. Design and Test of Tread-Pattern Structure of Biomimetic Goat-Sole Tires[J]. Biomimetics, 2022, 7(4), 236 (SCI收录:000900607600001)
[8] Zhang Fu, Cui Xiahua, Wang Shunqing, Sun Haoxuan, Wang Jiajia, Wang Xinyue, Fu Sanling, Guo Zhijun. Analysis of Kinematic Characteristics of Saanen Goat Spine Under Multi-Slope[J]. Biomimetics, 2022, 7(4): 181. (SCI收录:000900567500001)
[9] Zhang Fu, Cao Weihua, Wang Shunqing, Cui Xiahua, Yang Ning, Wang Xinyue, Zhang Xiaodong, Fu Sanling. Improved YOLOv4 recognition algorithm for pitaya based on coordinate attention and combinational convolution[J]. Frontiers in Plant Science, 2022, 13: 1030021.(SCI收录:000878408000001)
[10] Zhang Fu, Wang Shunqing, Cui Xiahua, Wang Xinyue, Cao Weihua, Yu Huang, Fu Sanling, Pan Xiaoqing. Goat-Face Recognition in Natural Environments Using the Improved YOLOv4 Algorithm[J]. Agriculture. 2022; 12(10): 1668.(SCI收录:000872045500001)
[11] Zhang Fu, Zhang Chaochen, Teng Shuai, Cui Xiahua, Ali Shaukat, Wang Xinyue. Research on the adhesive performance of a biomimetic goat hoof track shoe pattern. Biomimetics, 2022, 7(2): 80.(SCI收录: 000816478600001)
[12] 张伏, 王新月, 崔夏华, 曹炜桦, 张晓东, 张亚坤. 可见/近红外光谱结合GWO-SVM对千禧番茄的分类鉴别[J]. 光谱学与光谱分析, 2022, 42(10): 3291-3297.(SCI收录:000891901900048,EI收录:20224312998709)
[13] 张 伏, 崔夏华, 丁 轲, 等. 不同预处理方法对多位置种蛋性别鉴定的影响研究[J]. 光谱学与光谱分析, 2022, 42(2): 434-439.(SCI收录:000763774300016,EI收录:20220711636304)
[14] Zhang Fu, Chen Tianhua, Teng Shuai, et al. Model construction for field operation machinery selection and configuration in wheat-maize double cropping system [J]. International Journal of Agricultural and Biological Engineering, 2021, 14 (4): 82-89.(SCI收录:000691738900008)
[15] 张 伏, 陈自均, 鲍若飞, 等. 基于改进型YOLOv4-LITE 轻量级神经网络的密集圣女果识别方法[J]. 农业工程学报, 2021, 37(16): 270-278.(EI收录:20214711218113)
[16] 张 伏, 崔夏华, 张亚坤, 等. 多位置可见/近红外光谱检测与种鸡蛋受精信息的关系研究[J]. 光谱学与光谱分析, 2021, 41(10):3064-3068.(SCI收录:000715857400012,EI收录:20214111001367)
[17] Zhang Fu, Teng Shuai, Wang Yafei, et al. Design of bionic goat quadruped robot mechanism and walking gait planning[J]. International Journal of Agricultural and Biological Engineering, 2020, 13(5): 32-39.(SCI收录:000582366300005)
[18] Zhang Fu, Wang YaFei, Teng Shuai, et al. Development of agricultural bionic four-legged robot: Effect of head movement adjustment on the stability of goats [J]. International Journal of Agricultural and Biological Engineering, 2019, 12(4): 10-15.(SCI收录:000483293100002)
[19] Zhang Fu, Zheng Limin, Wang Wei, et al. Development of agricultural bionic mechanisms: investigation of the effect of joint angle and pressure on the stability of goats moving on sloping lands [J]. International Journal of Agricultural and Biological Engineering, 2018, 11(3): 35-41.(SCI收录:000434341100005)
[20] 张 伏, 王亚飞, 马田乐, et al. 山羊蹄底部非规则曲面仿生形貌数学模型构建及验证[J]. 农业工程学报, 2018, 34(15): 30-36.(EI收录:20184506039281)
[21] 张 伏,王亚飞,吕美,等. 仔猪自动精细饲喂系统设计与试验[J]. 农业机械学报, 2018, 49(7): 39-45.(EI收录:20184506044384)
代表性专利(发明专利,第一发明人):
[1] 一种基于ZigBee技术的大功率拖拉机牵引性能测试系统,ZL201710066630.2,2023-08-08.
[2] 一种仿乌龟回项摆胫耦合翻转机器人,ZL201810005238.1,2023-09-01.
[3] 一种手持便捷式幼果自动套袋机,ZL201810379744.7,2023-09-08.
[4] 一种能够防止渗灌管断裂的多功能铺管机及其使用方法,ZL201810674159.X,2023-09-05.
[5] 一种智能防断裂深松装置及其使用方法,ZL201810674160.2,2023-09-19.
[6] 基于可见近红外光谱的孵化早期受精种蛋判别模型的建立方法,ZL202010387554.7,2023-03-24.
[7] 一种仿蛇形巡检机器人自动避障系统的通讯方法,ZL202010523858.1,2023-03-14.
[8] 一种聚合式类球形单果采摘机械手及控制方法,ZL202111394300.9,2023-01-03.
[9] 一种仿山羊蹄履带花纹结构,ZL202210158241.3,2023-07-21.
[10] 类球形小果体果蔬采摘末端执行器及其控制方法,ZL202210713026.5,2023-08-15.
[11] 一种用于羊蹄的压力传感器固定装置,ZL201611069408.X,2022-04-29.
[12] 果园自动对靶喷药机器人及喷药方法,ZL201710910183.4,2021-01-29.
[13] 果园喷药机器人的自动执行系统及自动执行方法,ZL201710910181.5,2021-01-26.
[14] 一种用于配网线路柱上开关的智能控制终端,ZL201611080637.1,2019-3-26.
[15] 一种扭矩标准机用的扭矩传感器位置调整装置,ZL201510202863.1,2017-12-05.
[16] 一种坡地可调的实验装置,ZL201510408342.1,2017-12-08.
[17] 轮腿机器人及轮腿的智能切换方法,ZL201310252410.0,2015-11-18.
[18] 一种果实采摘机械手,ZL201110432762.5,2015-07-01.
[19] 仿生机械手,ZL201210000857.4,2014-12-24.
专著与教材:
[1] 小麦-玉米两熟丰产增效技术[M]. 北京: 中国农业出版社, 2021.(副主编)
[2] 机械仿生技术[M]. 北京: 清华大学出版社,2016.(主编)
[3] 基于昆虫鞘翅微结构的仿生秸秆层构板材制备研究[M]. 北京: 中国农业出版社, 2017.(独著)