Variable-rate Seeding Control System Based on RTK Speed Measurement for Rapeseed Direct Seeder

被引:0
作者
Liao, Qingxi [1 ,2 ]
Luo, Zhancheng [1 ]
Yang, Heng [1 ]
Li, Mengliang [1 ]
Shen, Wenhui [1 ]
Wang, Lei [1 ,2 ]
机构
[1] College of Engineering, Huazhong Agricultural University, Wuhan
[2] Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan
来源
Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery | 2024年 / 55卷 / 09期
关键词
control system; controlable and adjustable; rapeseed direct seeder; RTK speed measurement; seeding rate adjustment;
D O I
10.6041/j.issn.1000-1298.2024.09.005
中图分类号
学科分类号
摘要
: A precision rapeseed seeder with continuous operation often faces the problem of inconsistent sowing quantity with the target seeding rate due to fluctuations in operating speed. To address this issue, a control system for precise rapeseed seeder, based on “RTK speed measurement + seed drop detection + real-time motor control,“was designed. Key parameters affecting the speed control performance were analyzed, and a stepper motor speed control model was established. Static speed drift tests were conducted by using the ZED 一 F9P GNSS module with the GNSSToolKitLite software. The analysis determined that the static speed drift of the module followed a normal distribution with a mean of 0. 054 m/s and a variance of 0. 029 m2/s 2. The performance tests with an automatic seed particle counter and the JPZS - 16 seeding performance test bench determined that the average absolute error between the seeding quantity detection value of the positive and negative pressure seeders and the actual value was less than 10% when the rotation speed was ranged from 5 r/min to 60 r/min. The speed control models for different seeders were determined through bench tests, and the functional relationship between the optimal operating speed range of different seeders and the motor speed with the target seeding rate was analyzed. The adaptability bench tests for different seeders demonstrated that when the operating speed was ranged from 3 km/h to 12 km /h, the total displacement coefficient of variation for the system equipped with a high-speed mechanical centrifugal seeder and a combined air-assisted seeder for rapeseed and wheat was less than 1.21% . Field tests showed that when the operating speed was ranged from 5 km/h to l2 km /h, the total displacement coefficient of variation for the system equipped with a highspeed mechanical centrifugal seeder and a furrow press wheel seeder was less than 9.7%, meeting the requirements of variable-rate seeding. This system can serve as a reference for improving the structure of precision rapeseed seeding control systems. © 2024 Chinese Society of Agricultural Machinery. All rights reserved.
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页码:65 / 74
页数:9
相关论文
共 25 条
  • [1] LIAO Qingxi, LEI Xiaolong, LIAO Yitao, Et al., Research progress of precision seeding for rapeseed [J], Transactions of the Chinese Society for Agricultural Machinery, 48, 9, pp. 1-16, (2017)
  • [2] DING Youqiang, HE Xiantao, YANG Li, Et al., Low-cost turn compensation control system for conserving seeds and increasing yields from maize precision planters [J], Computers and Electronics in Agriculture, 199, pp. 107-118, (2022)
  • [3] HE Xiantao, DING Youqiang, ZHANG Dongxing, Et al., Development of a variable-rate seeding control system for corn planters Part I : design and laboratory experiment[J], Computers and Electronics in Agriculture, 162, pp. 318-327, (2019)
  • [4] XIE Chunji, ZHANG Dongxing, YANG Li, Et al., Remote monitoring system for maize seeding parameters based on Android and wireless communication [J], International Journal of Agricultural and Biological Engineering, 13, pp. 159-165, (2020)
  • [5] CAY A, KOCABIYIK H, MAY S., Development of an electro-mechanic control system for seed-metering unit of single seed corn planters Part I : design and laboratory simulation [J], Computers and Electronics in Agriculture, 144, pp. 71-19, (2018)
  • [6] YUAN Yanwei, BAI Huijuan, FANG Xianfa, Et al., Research progress on maize seeding and its measurement and control technology, Transactions of the Chinese Society for Agricultural Machinery, 49, 9, pp. 1-18, (2018)
  • [7] WANG Fangyan, YANG Liang, WANG Hongti, Design and test of electric driving pneumatic carrot planter in greenhouse, Transactions of the Chinese Society for Agricultural Machinery, 53, 8, pp. 64-73, (2022)
  • [8] DING Youqiang, YANG Li, ZHANG Dongxin, Et al., Control system of motor-driving maize precision planter based on GPS s eed measurement, Transactions of the Chinese Societ for A ricultural Machiner, 49, 8, pp. 42-49, (2018)
  • [9] XIE Chunji, ZHANG Dongxing, YANG Li, Et al., Precision seeding parameter monitor system based on laser sensor and wireless serial port communication [J], Computers and Electronics in Agriculture, 190, (2021)
  • [10] HE Xiantao, ZHANG Dongxing, YANG Li, Et al., Design and experiment of a GPS-based turn compensation system for improving the seeding uniformity of maize planter[J], Computers and Electronics in Agriculture, 199, (2021)