男,博士,研究員,博士生導師,國家農業智慧型裝備工程技術研究中心精準施藥部副主任,2015-2018年美國Oklahoma State University(俄克拉荷馬州立大學)博士後,2013-2014年美國Cornell University(康奈爾大學)訪問學者,中國農業機械學會理事,美國肯塔基州科學與工程基金項目、國家重點研發計畫項目評審專家,《Frontiers in Plant Science》、《Agronomy》、《Agriculture》等中科院一區/JCR Q1 期刊專欄主編,《Artificial Intelligence in Agriculture》期刊編委,《農業工程學報》和《農業機械學報》青年編委,北京市農林科學院“傑出科學家”。
[1] Xueguan Zhao#, Changyuan Zhai#, Songlin Wang, Hanjie Dou, Shuo Yang, Xiu Wang*, Liping Chen*. Sprayer boom height measurement in wheat field using ultrasonic sensor: An exploratory study. Front. Plant Sci., 2022, 13:1008122. (SCI, JCR Q1)
[2] Chenchen Gu, Wei Zou, Xiu Wang, Liping Chen*, Changyuan Zhai*. Wind loss model for the thick canopies of orchard trees based on accurate variable spraying. Front. Plant Sci., 2022, 13:1010540. (SCI, JCR Q1)
[3] Xueguan Zhao, Xiu Wang, Cuiling Li, Hao Fu, Shuo Yang, Changyuan Zhai*. Cabbage and Weed Identification Based on Machine Learning and Target Spraying System Design. Front. Plant Sci., 2022, 13:924973. (SCI, JCR Q1)
[4] Wei Qiu, Hongbin Guo, He Zheng, Yubin Cao, Xiaolan Lv, Jie Fang, Changyuan Zhai*, Hongfeng Yu. CFD modelling to analyze the droplets deposition behavior on vibrating rice leaves. Computers and Electronics in Agriculture, 2022, 201:107330. (SCI, JCR Q1)
[5] Hao Fu, Xueguan Zhao, Huarui Wu, Shenyu Zheng, Kang Zheng, Changyuan Zhai*. Design and Experimental Verification of the YOLOV5 Model Implanted with a Transformer Module for Target-Oriented Spraying in Cabbage Farming. Agronomy, 2022, 12:2551. (SCI, JCR Q1)
[6] Chenchen Gu, Chunjiang Zhao, Wei Zou, Shuo Yang, Hanjie Dou, Changyuan Zhai*. Innovative Leaf Area Detection Models for Orchard Tree Thick Canopy Based on LiDAR Point Cloud Data. Agriculture, 2022, 12:1241. (SCI, JCR Q1)
[7] Xiaohe Sun, Chunjiang Zhao, Shuo Yang, Haolin Ma, Changyuan Zhai*. Simulations and Experiments of Soil Temperature Distribution after 2.45 GHz Long-Term Microwave Treatment. Agriculture, 2022, 12:909. (SCI, JCR Q1)
[8] HanJie Dou, Changyuan Zhai*, LiPing Chen, SongLin Wang, Xiu Wang. Field variation characteristics of sprayer boom height using a newly designed boom height detection system. IEEE Access, 2021, 9:17148-17160. (SCI, JCR Q1)
[10] Chenchen Gu, Changyuan Zhai*, Xiu Wang, Songlin Wang. CMPC: An Innovative Lidar-Based Method to Estimate Tree Canopy Meshing-Profile Volumes for Orchard Target-Oriented Spray. Sensors, 2021, 21:4252. (SCI, JCR Q1)
[11] Xueguan Zhao, Liping Chen, Yuanyuan Gao, Shuo Yang, Changyuan Zhai*. Optimization method for accurate positioning seeding based on sowing decision. Int J Agric & Biol Eng, 2021, 14(3):171–180. (SCI, JCR Q1)
[12] Changyuan Zhai, John Long, Randal Taylor*, Paul Weckler, Ning Wang. Field scale row unit vibration affecting planting quality. Precision Agriculture, 2020, 21:589–602.(SCI, JCR Q1)
[13] Changyuan Zhai*, Andrew Landers, Bo Zhang. An RFID-based solution for monitoring sprayer movement in an orchard/vineyard. Precision Agriculture, 2018, 19:477-496. (SCI, JCR Q1)
[14] Shuo Yang, Changyuan Zhai*, John Long, Bo Zhang, Hanzhe Li. Wolfberry tree dual-model detection method and orchard target-oriented fertilization system based on photoelectric sensors [J]. Int J Agric & Biol Eng, 2018, 11(4):65-73. (SCI, JCR Q1)