Journal of Agricultural Science and Technology ›› 2025, Vol. 27 ›› Issue (8): 8-17.DOI: 10.13304/j.nykjdb.2024.0963
• AGRICULTURAL INNOVATION FORUM • Previous Articles Next Articles
Xiang SUN1,2(), Liyang ZHANG3, Jiying YIN3, Kaiyi WANG1,2, Meirong GUO1,2, Heju HUAI1,2(
)
Received:
2024-11-21
Accepted:
2025-03-25
Online:
2025-08-15
Published:
2025-08-26
Contact:
Heju HUAI
孙想1,2(), 张立阳3, 殷继英3, 王开义1,2, 郭美荣1,2, 淮贺举1,2(
)
通讯作者:
淮贺举
作者简介:
孙想 E-mail:sunx@nercita.org.cn;
基金资助:
CLC Number:
Xiang SUN, Liyang ZHANG, Jiying YIN, Kaiyi WANG, Meirong GUO, Heju HUAI. Problems and Countermeasures of Digital Transformation of Maize Seed Production Base[J]. Journal of Agricultural Science and Technology, 2025, 27(8): 8-17.
孙想, 张立阳, 殷继英, 王开义, 郭美荣, 淮贺举. 玉米制种基地数字化转型的问题及对策[J]. 中国农业科技导报, 2025, 27(8): 8-17.
[1] | 国家统计局.2024年中国统计年鉴[EB/OL].(2024-10-15)[2025-02-16].. |
[2] | 农业农村部种业管理司,全国农业技术推广服务中心,农业农村部科技发展中心.2024年中国农作物种业发展报告[M].北京:中国农业科学技术出版社,2024:1-118. |
[3] | 甘肃省统计局.甘肃省统计提要2024[EB/OL]. (2024-5-10) [2025-02-16]. . |
[4] | 国家市场监督管理总局,国家标准化管理委员会. 粮食作物种子 第1部分:禾谷类: [S].北京:中国标准出版社,2024. |
[5] | 祁玉洁.打造全国玉米制种高地[N].甘肃经济日报,2024-05-09(1). |
[6] | 张掖市统计局. 2024年1—5 月张掖市规模以上服务业运行情况分析[EB/OL].(2024-7-12)[2025-02-16].. |
[7] | 倪绿周, 宋青竹. 张掖:"金种子"守护农民增收"饭碗"——"张掖种农"劳务品牌建设纪实[EB/OL]. (2024-8-26)[2025-02-16].. |
[8] | 张掖市统计局.2024年前三季度张掖市农村经济形势分析[EB/OL]. (2024-11-14)[2025-02-16].. |
[9] | 马丽娟,杨平.甘肃临泽水肥一体化高标准玉米制种基地建设成效[J].中国种业, 2023(5): 42-45. |
MA L J, YANG P.Effect of the construction of high-standard corn seed production base integrated with water and fertilizer in Linze, Gansu [J]. China Seed Ind., 2023(5): 42-45. | |
[10] | 封洪强,姚青,胡程,等.我国农作物病虫害智能监测预警技术新进展[J].植物保护, 2023, 49(5): 229-242. |
FENG H Q, YAO Q, HU C,et al..Recent advances in intelligent techniques for monitoring and prediction of crop diseases and insect pests in China [J]. Plant Prot., 2023, 49(5): 229-242. | |
[11] | 朱守银,杨东霞,程华,等.高质量推进农作物制种基地建设研究——基于四省五地实践的调研思考[J].种子, 2024, 43(4):147-156. |
ZHU S Y, YANG D X, CHENG H,et al..Research on high quality promotion of crop seed production base construction:research and reflection on practice in four provinces and five regions [J]. Seed, 2024, 43(4): 147-156. | |
[12] | 孔东升,吴尧,王林.制种玉米全程机械化存在的问题及对策建议——以甘肃省张掖市为例[J].中国种业, 2024(8): 32-38. |
KONG D S, WU Y, WANG L. Problems and countermeasures of mechanization in the whole process of maize seed production:taking Zhangye city,Gansu province as an example [J]. China Seed Ind., 2024(8): 32-38. | |
[13] | 贺吉,范晓飞,姚竟发,等.基于区块链的种子供应链信息溯源及信用度提升的方案设计与研究[J].中国农机化学报,2022, 43(7): 145-151. |
HE J, FAN X F, YAO J F, et al.. Design and research of the information traceability and credit enhancement of the seed supply chain based on the blockchain [J]. J. Chin. Agric. Mech., 2022, 43(7): 145-151. | |
[14] | 刘海启.我国玉米制种产业发展现状及战略选择[J].中国农业资源与区划, 2015, 36(1): 9-14. |
LIU H Q. Current situation of the development of maize seed industry in China and the strategic choice [J].Chin. J. Agric. Resour. Reg. Plan., 2015,36(1):9-14. | |
[15] | 汪斌斌,杨贵军,杨浩,等.基于YOLO_X和迁移学习的无人机影像玉米雄穗检测[J].农业工程学报,2022,38(15):53-62. |
WANG B B, YANG G J, YANG H, et al.. UAV images for detecting maize tassel based on YOLO_X and transfer learning [J]. Trans. Chin. Soc. Agric. Eng., 2022, 38(15): 53-62. | |
[16] | DU J J, LI J R, FAN J C,et al.. Detection and identification of tassel states at different maize tasseling stages using UAV imagery and deep learning [J/OL]. Plant Phenomics, 2024, 6:188 [2025-02-16]. . |
[17] | 魏帅均,张彦娥,梅树立.基于俯视图像的玉米株心快速识别方法研究[J].农业机械学报,2017,48():136-141. |
WEI S J, ZHANG Y E, MEI S L. Fast recognition method of maize core based on top view image [J]. Trans. Chin. Soc. Agric. Mach., 2017, 48(S1): 136-141. | |
[18] | 朱超,吴凡,刘长斌,等.基于超体素聚类和局部特征的玉米植株点云雄穗分割[J].智慧农业(中英文), 2021, 3(1): 75-85. |
ZHU C, WU F, LIU C B,et al..Tassel segmentation of maize point cloud based on super voxels clustering and local features [J]. Smart Agric., 2021, 3(1): 75-85. | |
[19] | 李金瑞,杜建军,张宏鸣,等.基于轻量化MLCE-RTMDet的人工去雄后玉米雄穗检测算法[J].农业机械学报,2024, 55(11): 184-192, 503. |
LI J R, DU J J, ZHANG H M, et al.. Maize tassel detection algorithm after artificial emasculation based on lightweight MLCE-RTMDet [J]. Trans. Chin. Soc. Agric. Mach., 2024, 55(11):184-192, 503. | |
[20] | ZHANG R R, YANG J X, CHEN L P, et al.. Review of the detasseling techniques for maize (Zea mays L.) hybrid seed production [J]. Int. J. Agric. Biol. Eng., 2024, 17(3): 1-11. |
[21] | 陈立平,欧鸿,张瑞瑞,等.制种玉米去雄无人机旋切装置设计与试验[J].农业机械学报,2024, 55(4): 53-63. |
CHEN L P, OU H, ZHANG R R, et al.. Design and experiment of rotary-cutting device for corn seed production detasseling UAV [J]. Trans. Chin. Soc. Agric. Mach., 2024, 55(4): 53-63. | |
[22] | 沈艳艳,赵玉涛,陈庚申,等.玉米典型叶部病害高光谱识别及其烈度分类[J].智慧农业(中英文), 2024, 6(2): 28-39. |
SHEN Y Y, ZHAO Y T, CHEN G S, et al.. Identification and severity classification of typical maize foliar diseases based on hyperspectral data [J]. Smart Agric., 2024, 6(2): 28-39. | |
[23] | 许景辉,邵明烨,王一琛,等.基于迁移学习的卷积神经网络玉米病害图像识别[J].农业机械学报,2020, 51(2): 230-236, 253. |
XU J H, SHAO M Y, WANG Y C, et al.. Recognition of corn leaf spot and rust based on transfer learning with convolutional neural network [J]. Trans. Chin. Soc. Agric. Mach., 2020, 51(2): 230-236, 253. | |
[24] | 张澳雪,崔艳荣,李素若,等.基于改进RegNet网络的玉米叶片病害识别研究[J].江苏农业科学, 2024, 52(11): 216-224. |
ZHANG A X, CUI Y R, LI S R,et al.. Identification of maize leaf diseases based on improved RegNet network [J]. Jiangsu Agric. Sci., 2024, 52(11): 216-224. | |
[25] | 唐伯青,赵大勇,熊锋,等.基于视觉自注意力模型的苗期玉米与杂草检测方法[J].南京农业大学学报, 2024, 47(4): 772-781. |
TANG B Q, ZHAO D Y, XIONG F, et al.. Detection method of maize and weeds at seedling stage based on visual self-attention model [J]. J. Nanjing Agric. Univ., 2024, 47(4): 772-781. | |
[26] | 赵经华,马世骄,房城泰.基于熵权-模糊综合评价法的无人机多光谱春玉米长势监测模型研究[J].农业机械学报, 2024, 55(8): 214-224. |
ZHAO J H, MA S J, FANG C T. Growth monitoring of spring maize using UAV multispectral imaging based on entropy weight-fuzzy comprehensive evaluation method [J]. Trans. Chin. Soc. Agric. Mach., 2024, 55(8): 214-224. | |
[27] | ZHAO J X, TAO J P, ZHANG S R, et al.. Estimation of maize water requirements based on the low-cost image acquisition methods and the meteorological parameters [J/OL]. Agronomy, 2024,14(10):2325 [2025-02-16]. . |
[28] | LI J L, ZHANG D F, YANG F,et al.. TrG 2P:a transfer-learning-based tool integrating multi-trait data for accurate prediction of crop yield [J/OL]. Plant Commun., 2024, 5(7): 100975 [2025-02-16]. . |
[29] | HAN Y Y, WANG K Y, YANG F, et al.. Prediction of maize cultivar yield based on machine learning algorithms for precise promotion and planting [J/OL].Agric.For.Meteor., 2024, 355: 110123 [2025-02-16]. . |
[30] | 范贝贝,李瑾,马晨.我国作物种业数字化发展: 成效、困境与前瞻[J].中国农业科技导报, 2022, 24(12): 25-32. |
FAN B B, LI J, MA C. Digital development of China’s crop industry:achievements,difficulties and prospects [J].J. Agric. Sci. Technol., 2022, 24(12): 25-32. | |
[31] | 李道亮,李震.无人农场系统分析与发展展望[J].农业机械学报, 2020, 51(7): 1-12. |
LI D L, LI Z. System analysis and development prospect of unmanned farming [J]. Trans. Chin. Soc. Agric. Mach., 2020,51(7): 1-12. | |
[32] | 罗锡文,胡炼,何杰,等.中国大田无人农场关键技术研究与建设实践[J].农业工程学报, 2024, 40(1): 1-16. |
LUO X W, HU L, HE J, et al.. Key technologies and practice of unmanned farm in China [J]. Trans. Chin. Soc. Agric. Eng.,2024,40(1):1-16. |
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