Test bench for multi-picking detection and air-blowing removal of excess seed potatoes
Abstract
Multi-picking of spoon-chain type seed-metering devices in potato planters causes multi-seeding, which leads to yield loss and plant diseases. This study developed a dedicated test bench for multi-picking detection and air-blowing excess seed removal, which integrated a detector based on spatial capacitive sensor, an air-blowing excess seed remover, and a controller. The feasibility of multi-picking identification via maximum net capacitance change was verified through theoretical analysis and Maxwell simulation. A two-point air-blowing strategy was adopted for air-blowing excess seed removal. Taking the success rate of air-blowing excess seed removal as the evaluation index, bench tests and parameter optimization were conducted with airflow speed for air-blowing excess seed removal, potato spoon depth, and seed-metering chain speed as variable factors. The optimal parameters were determined as an airflow speed of 31.34 m/s, a potato spoon depth of 19.67 mm, and a seed-metering chain speed of 0.29 m/s. Under this optimal parameter combination, the actual success rate of air-blowing excess seed removal reached 85.5%. This test bench provides a practical technical solution for solving multi-seeding in seed potato precision seeding, and lays a solid foundation for the optimization of seeding processes and the popularization of seed potato precision seeding technology.
Keywords: seed potato, spoon-chain type seed-metering device, multi-picking detection, spatial capacitive sensor, maximum net capacitance change, air-blowing excess seed removal
DOI: 10.25165/j.ijabe.20261902.10268
Citation: Liu Y, Wang G P, Gao Q, Sun W, Yang S, Li H L. Test bench for multi-picking detection and air-blowing removal of excess seed potatoes. Int J Agric & Biol Eng, 2026; 19(2): 120–127.
References
[1] Chang X L, Teng M R, Tian Y, Zhao Z L, Han X J, Shang S Q. Current status and prospects of full mechanization in potato production. China Agricultural Machinery Equipment, 2023; 11: 6–11. (in Chinese)
[2] Pei L Q, Sun W, Wang J L, Simionescu P A. Design and experiment of a film-drilling potato seeder with eccentric coupling. Agriculture, 2024; 14(6): 933.
[3] Lv J Q, Zhang H, Li J C, Liu Z Y, Su W H, Zhu X X. Design and experiment of sorting device of potato seed cutting machine. Journal of Northeast Agricultural University, 2022; 53(11): 47–59.
[4] Sun W, Wang G P, Wu J M. Design and experiment of missing seeding detection and reseeding system for spoon-chain potato seeder. Transactions of the CSAE, 2016; 32(11): 8–15. (in Chinese)
[5] Wang G P, Sun W. Development of a missing seeding detection and compensation device for potatoes. Research of Agricultural Modernization, 2016; 37(5): 1008–1014. (in Chinese)
[6] Wang G P, Sun W, Chen L D, Zhang H, Liu X, Li H, et al. Realization of an integrated seeding and compensating potato planter based on one-way clutch. Int J Agric & Biol Eng, 2020; 13(3): 79–87.
[7] Wang G P, Sun W, Zhang H, Liu X, Li H, Yang X. Research on a kind of seeding-monitoring and compensating control system for potato planter without additional seed-metering channel. Computers and Electronics in Agriculture, 2020; 177: 105681.
[8] Liu Q W, Wu J M, Wang D, Sun W, Wang G P, Shi L R, et al. Design and research on missing seeding compensation system of 2CM-2 potato planter. Agricultural Research in the Arid Areas, 2013; 31(3): 260–266. (in Chinese)
[9] Li H, Liu X, Zhang H, Li H, Jia S, Sun W, et al. Research and experiment on miss-seeding detection of potato planter based on improved YOLOv5s. Agriculture, 2024; 14(11): 1905.
[10] Wang J, Liao M, Xia H, Chen R, Li J, Li J, Yang J. Study on a novel reseeding device of a precision potato planter. Agriculture, 2024; 14(10): 1824.
[11] Yang H G, Liu Z S, Ni Z W, Lin L C, Yang R B. Design and experiment of 2CM-4 potato planter. Journal of Qingdao Agricultural University (Natural Science Edition), 2017; 34(2): 137–140, 156. (in Chinese)
[12] Cai H X. Research on seeding performance improvementof potato planter in hilly areas. Master’s thesis, Yangling: Northwest A&F University, 2023; 85p. (in Chinese)
[13] Liu W L, Wang H R, Wang X Y. Design and test of vibration feeding device for seed potato cutting machine. IOSR Journal of Mechanical and Civil Engineering, 2021; 21(1): 45–52.
[14] Wen B Q, Song P X, Li J B, Huang Y, Cen H L. Design and experiment of missing seeding detection and reseeding system for spoon-type potato seed-metering device. Transactions of the CSAM, 2022; 53(2): 36–46. (in Chinese).
[15] Wang J R, Liao M, Su C, Chen R, Xia H L, Li J J, et al. Study on the excess seeds removing performance of a potato precision seed metering device. Scientific Reports, 2024; 14(1): 27832.
[16] Liu W. Research on seeding rate monitoring and controlling technology based on information of seed flow rate for wheat drill. Jiangsu University, 2023. (in Chinese)
[17] Karimi H, Navid H, Mahmoudi A. Online laboratory evaluation of seeding-machine application by an acoustic technique. Spanish Journal of Agricultural Research, 2015; 13(1): 202.
[18] Zhao B, Fan X Q, Zhou L M, Li Y, Che Y, Niu K. Design and test of piezoelectric flow sensor for pneumatic seeder. Transactions of the CSAM, 2020; 51(8): 55–61. (in Chinese)
[19] Chen J G, Li Y M, Qin C J, Liu C L. Design and experiment of precision detecting system for wheat-planter seeding quantity. Transactions of the CSAM, 2019; 50(1): 66–74. (in Chinese)
[20] Zhou L M, Wang S M, Zhang X C, Yuan Y W, Zhang J N. Seed monitoring system for corn planter based on capacitance signal. Transactions of the CSAE, 2012; 28(13): 16–21. (in Chinese)
[21] Zhu L, Wang G P, Sun W, Zhang H, Liu X L, Feng B, et al. Development of a potato seed-metering status monitoring system based on a spatial capacitance sensor. Transactions of the CSAE, 2021; 37(20): 34–43. (in Chinese)
[22] Chen S Z, Jiang Z Y. General physics. Beijing: Higher Education Press. 2022; pp.205. (in Chinese)
[23] Qiao T. Design and experiment of a potato whole-tuber planter. Master’s thesis. Yangling: Northwest A&F University, 2023; 77p. (in Chinese)
[24] Xia X Y. Study on intelligent measurement and control system for precision seeding of potatoes. Master’s thesis. University of Science and Technology of China, 2022; 73p. (in Chinese)
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