蔬菜种子精量直播技术与装备研究进展
作者:
作者单位:

1.武汉市农业科学院,武汉 430065;2.十堰市农机技术推广中心,十堰 442000;3.浙江大学工程师学院,杭州 310014;4.华中农业大学工学院,武汉 430070

作者简介:

刘海,E-mail:lh@whiam.cn

通讯作者:

廖宜涛,E-mail:liaoetao@mail.hzau.edu.cn

中图分类号:

S233.2

基金项目:

国家重点研发计划项目(2021YFD2000401);国家自然科学基金项目(32001427)


Progress on technology and equipment of precision and direct seeding for vegetable seeds
Author:
Affiliation:

1.Wuhan Academy of Agricultural Sciences, Wuhan 430065, China;2.Shiyan Agricultural Machinery Technology Promotion Center, Shiyan 442000, China;3.College of Engineers, Zhejiang University, Hangzhou 310014, China;4.College of Engineering, Huazhong Agricultural University, Wuhan 430070, China

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  • 参考文献 [86]
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    摘要:

    简述了国内外蔬菜精量播种技术装备的研究进展,分析了国内外蔬菜生产概况和主要播种装备,重点阐述了蔬菜直播环节的精量和变量排种、种床成型、种沟成型和控制检测等关键技术装备及蔬菜智能化机械直播的动态,阐明了蔬菜机械化直播的研究重点和难点,归纳了蔬菜精量直播机排种系统和种床成型系统的优化设计方法,总结了蔬菜精量机械化直播的基础和核心,从蔬菜精量直播关键技术角度探讨了影响排种精度的关键因素,并阐明了蔬菜种子精量直播技术的实现方式。在系统总结和分析我国蔬菜种植特点和精量直播技术装备发展趋势的基础上,指出了现阶段蔬菜精量播种技术难点,提出了研究重点在于突破排种技术中的精量和变量排种、高速和高效播种的方法。同时通过分析国内外精量播种机发展现状,展望蔬菜精量直播技术未来发展趋势。

    Abstract:

    This article briefly reviewed the progress on the technology and equipment of precision and direct seeding for vegetables at home and abroad. The overview of vegetable production and major seeding equipment worldwide was analyzed. The key technical equipment and the dynamics of intelligent mechanized direct seeding of vegetables including the precision and variable seed metering, seedbed formation, seed furrow shaping, and control detection were emphasized. The focus and difficulties of studying the mechanized direct seeding of vegetables were clarified. The optimized methods for designing the seed metering system and the forming system of seedbed for the mechanized direct seeding of vegetables were summarized. The foundation and core of mechanized precision and direct seeding of vegetables was highlighted. The key factors affecting the accuracy of seeding were identified from the perspective of key technologies for precision and direct seeding of vegetables and the implementation methods of precision and direct seeding technology for vegetable seeds were elucidated. The difficulties in precision seeding technology for vegetables at the current stage were pointed out, and the focus was proposed to break through the methods of precision and variable seeding, high-speed and efficient seeding in sowing technology based on a systematic summary and analysis of the characteristics of vegetable planting in China and the development trend of technology and equipment for precision and direct seeding. The trend of developing precision and direct seeding technology for vegetables was prospected by analyzing the current development status of precision seeders at home and abroad. It will provide a reference for the theoretical studies and the development of precision seeders for vegetables in China, which is of significant importance for the advancement of high-speed precision seeding technology in China.

    图1 蔬菜直播工艺方案示意图Fig.1 Schematic of technology scheme for vegetable seeding
    图2 蔬菜精量直播装备Fig.2 Precision seeding equipment for vegetable seeds
    图3 国外代表性蔬菜播种机Fig.3 Representative vegetable seeders from abroad
    图4 国外气吸式播种机Fig.4 International pneumatic planters
    图5 国内蔬菜播种机Fig.5 Domestic vegetable planters
    参考文献
    [1] 洪娟.武汉市三种蔬菜主栽品种养分吸收与优质高效施肥技术研究[D].武汉:华中农业大学,2022.HONG J.Study on nutrient absorption and high-quality and efficient fertilization techniques of three main vegetable varieties in Wuhan[D].Wuhan:Huazhong Agricultural University,2022(in Chinese with English abstract).
    [2] 祁亚卓,相姝楠.国内外蔬菜播种机的研究现状与发展趋势[J].中国农机化学报,2020,41(1):205-208.QI Y Z,XIANG S N.Research status and development trend of vegetable seeder at home and abroad[J].Journal of Chinese agricultural mechanization,2020,41(1):205-208(in Chinese with English abstract).
    [3] 邓兰欣.生产支持政策对蔬菜种植规模影响的实证研究[D].武汉:华中农业大学,2022.DENG L X.An empirical study on the influence of production support policy on vegetable planting scale[D].Wuhan:Huazhong Agricultural University,2022(in Chinese with English abstract).
    [4] 吴文劼.我国蔬菜生产集聚的时空特征和影响因素分析[D].武汉:华中农业大学,2015.WU W J.Spatial and temporal characteristics and influencing factors of vegetable production agglomeration in China[D].Wuhan:Huazhong Agricultural University,2015(in Chinese with English abstract).
    [5] 吴瑛莉.新时期金华市农业机械化发展研究[D].杭州:浙江大学,2016.WU Y L.Research on the development of agricultural mechanization in Jinhua City in the new period[D].Hangzhou:Zhejiang University,2016(in Chinese with English abstract).
    [6] 祝广辉.蔬菜钵苗旋转式取苗机构的参数优化与试验研究[D].杭州:浙江理工大学,2015.ZHU G H.Parameter optimization and experimental study of rotary seedling picking mechanism for vegetable bowl seedlings[D].Hangzhou:Zhejiang Sci-Tech University,2015(in Chinese with English abstract).
    [7] 吴传云,王建合,杨瑶,等.我国经济作物产业发展现状与机械化趋势分析[J].中国农机化学报,2024,45(1):1-13.WU C Y,WANG J H,YANG Y,et al.Analysis of the development status and mechanization trends of economic crop industry in China[J].Journal of Chinese agricultural mechanization,2024,45(1):1-13(in Chinese with English abstract).
    [8] 郑娟,廖宜涛,廖庆喜,等.播种机排种技术研究态势分析与趋势展望[J].农业工程学报,2022,38(24):1-13.ZHENG J,LIAO Y T,LIAO Q X,et al.Trend analysis and prospects of seed metering technologies[J].Transactions of the CSAE,2022,38(24):1-13(in Chinese with English abstract).
    [9] 邱兆美,张巍朋,赵博,等.小粒种子电动播种机作业质量监测系统设计与试验[J].农业机械学报,2019,50(4):77-83.QIU Z M,ZHANG W P,ZHAO B,et al.Design and test of operation quality monitoring system for small grain electric seeder[J].Transactions of the CSAM,2019,50(4):77-83(in Chinese with English abstract).
    [10] 信桂新,杨朝现,邵景安,等.基于农地流转的山地丘陵区土地整治技术体系优化及实证[J].农业工程学报,2017,33(6):246-256.XIN G X,YANG C X,SHAO J A,et al.Optimization and demonstration of land consolidation technical system in mountainous and hilly region based on farmland transfer[J].Transactions of the CSAE,2017,33(6):246-256(in Chinese with English abstract).
    [11] 肖体琼,崔思远,陈永生,等.我国蔬菜生产概况及机械化发展现状[J].中国农机化学报,2017,38(8):107-111.XIAO T Q,CUI S Y,CHEN Y S,et al.Development status of vegetable production and its mechanization in China[J].Journal of Chinese agricultural mechanization,2017,38(8):107-111(in Chinese with English abstract).
    [12] 车艳芳,杨英茹.白菜萝卜辣椒种植技术[M].石家庄:河北科学技术出版社,2014.CHE Y F,YANG Y R.Cultivation techniques of Chinese cabbage,radish and pepper[M].Shijiazhuang:Hebei Science & Technology Press,2014(in Chinese).
    [13] 陈永生,李莉.蔬菜生产机械化范例和机具选型[M].北京:中国农业出版社,2017:1-5.CHEN Y S,LI L.Examples of vegetable production mechanization and machine selection[M].Beijing:China Agriculture Press,2017:1-5(in Chinese).
    [14] TURAN J,VI?ACKI V,SEDLAR A,et al.Seeder with different seeding apparatus in maize sowing[J].Acta universitatis agriculturae et silviculturae mendelianae brunensis,2015,63(1):137-141.
    [15] JACK D S,HESTERMAN D C,GUZZOMI A L.Precision metering of Santalum spicatum (Australian Sandalwood) seeds[J].Biosystems engineering,2013,115(2):171-183.
    [16] LI Y,HE X T,TAO C,et al.Development of mechatronic driving system for seed meters equipped on conventional precision corn planter[J].International journal of agricultural & biological engineering, 2015,8(4):1-9.
    [17] JOHANSEN C,HAQUE M E,BELL R W,et al.Conservation agriculture for small holder rainfed farming:opportunities and constraints of new mechanized seeding systems[J].Field crops research,2012,132:18-32.
    [18] KEEP T,NOBLE S D.Optical flow profiling method for visualization and evaluation of flow disturbances in agricultural pneumatic conveyance systems[J].Computers and electronics in agriculture,2015,118:159-166.
    [19] KOCHER M F,COLEMAN J M,SMITH J A,et al.Corn seed spacing uniformity as affected by seed tube condition[J].Applied engineering in agriculture,2011,27(2):177-183.
    [20] BENJAPHRAGAIRAT Jiraporn,SAKURAI Hai,ITO Nobutaka.大蒜播种机排种器及开沟器设计与控制(摘选)[J].农业工程,2011,1(2):109-110.BENJAPHRAGAIRAT J,SAKURAI H,ITO N.Design and control of metering system and furrow openers for garlic planter[J].Agricultural engineering,2011,1(2):109-110(in Chinese with English abstract).
    [21] GIERZ ?,K?SKA W.Simulation and laboratory tests of transport time of rape grain in the drill seed tube[J]. Journal of research & applications in agricultural engineering,2012,57(2):73-78.
    [22] BOYDA? M G.Effect of cup size,seed characteristics and angular speed on the performance of an automatic potato planter under laboratory conditions[J].Tar?m bilimleri dergisi,2017:317-327.
    [23] 李兆东,孙誉宁,杨文超,等.光束阻断式小粒蔬菜种子漏充与堵孔同步检测系统研究[J].农业机械学报,2018,49(8):119-126.LI Z D,SUN Y N,YANG W C,et al.Design of synchronous detection system of missing filling seeds and suction hole blocking based on beam blocking for small vegetable grains[J].Transactions of the CSAM,2018,49(8):119-126(in Chinese with English abstract).
    [24] 刘海,杜铮,李旭,等.小白菜种子机械物理特性试验[J].中国农机化学报,2023,44(3):88-93.LIU H,DU Z,LI X,et al.Experimental study on mechanical and physical properties of pakchoi seeds[J].Journal of Chinese agricultural mechanization,2023,44(3):88-93(in Chinese with English abstract).
    [25] 殷德峰.气力窝眼轮式小粒径种子排种器设计与试验研究[D].武汉:华中农业大学,2017.YIN D F.Design and experimental study of pneumatic socket wheel small particle seed metering device[D].Wuhan:Huazhong Agricultural University,2017(in Chinese with English abstract).
    [26] 吴飞.蔬菜小粒径种子毯状苗播种装置设计与研究[D].杭州:浙江理工大学,2016.WU F.Design and research on seeding device for carpet seedlings of vegetable small-sized seeds[D].Hangzhou:Zhejiang Sci-Tech University,2016(in Chinese with English abstract).
    [27] 殷复伟.行株距配置对宽幅播种小麦产量形成的影响[D].泰安:山东农业大学,2017.YIN F W.Effect of row-plant spacing configuration on yield formation of wide sowing wheat[D].Taian:Shandong Agricultural University,2017(in Chinese with English abstract).
    [28] 刘海,廖宜涛,王磊,等.小白菜正负气压组合式精量排种器设计与试验[J].农业机械学报,2022,53(10):54-65.LIU H,LIAO Y T,WANG L,et al.Design and experiment of positive and negative pressure combination precision metering device for pakchoi[J].Transactions of the CSAM,2022,53(10):54-65(in Chinese with English abstract).
    [29] 孟华,王茜,李晓红,等.定扰动辅助充种大豆排种器设计与试验[J].中国农机化学报,2023,44(6):18-25.MENG H,WANG X,LI X H,et al.Design and experiment of soybean seed metering device with constant disturbance aided filling soybean[J].Journal of Chinese agricultural mechanization,2023,44(6):18-25(in Chinese with English abstract).
    [30] 张中锋,石林雄,史芳志,等.2BMK-6型铺膜铺管施肥播种机的设计与试验[J].中国农机化学报,2019,40(11):13-19.ZHANG Z F,SHI L X,SHI F Z,et al.Design and test on 2BMK-6 type film and tube spreading fertilization and seeding machine[J].Journal of Chinese agricultural mechanization,2019,40(11):13-19(in Chinese with English abstract).
    [31] 刘海,杜铮,李旭,等.蔬菜联合播种机关键部件结构设计[J].中国农机化学报,2020,41(5):64-68.LIU H,DU Z,LI X,et al.Design on key parts of vegetable combine seeder[J].Journal of Chinese agricultural mechanization,2020,41(5):64-68(in Chinese with English abstract).
    [32] 史玉豪.大白菜精量排种系统的设计与试验[D].武汉:华中农业大学,2016.SHI Y H.Design and experiment of precision seeding system for Chinese cabbage[D].Wuhan:Huazhong Agricultural University,2016(in Chinese with English abstract).
    [33] 曾山,文智强,刘伟健,等.气吸式小粒蔬菜种子精量穴播排种器优化设计与试验[J].华南农业大学学报,2021,42(6):52-59.ZENG S,WEN Z Q,LIU W J,et al.Optimal design and experiment of air-suction precision hole sowing seed metering device for small-grain vegetable seed[J].Journal of South China Agricultural University,2021,42(6):52-59(in Chinese with English abstract).
    [34] 王金武,唐汉,王奇,等.基于EDEM软件的指夹式精量排种器排种性能数值模拟与试验[J].农业工程学报,2015,31(21):43-50.WANG J W,TANG H,WANG Q,et al.Numerical simulation and experiment on seeding performance of pickup finger precision seed-metering device based on EDEM[J].Transactions of the CSAE,2015,31(21):43-50(in Chinese with English abstract).
    [35] YAZGI A,DEGIRMENCIOGLU A.Measurement of seed spacing uniformity performance of a precision metering unit as function of the number of holes on vacuum plate[J].Measurement,2014,56:128-135.
    [36] YAZGI A,DE??RMENC?O?LU A.Optimization of the seed spacing uniformity of a vacuum type precision seeder using spherical materials[J].Biosystems engineeringi,20007,97(3):347-356.
    [37] SIEMENS M C, GAYLER R R.Improving seed spacing uniformity of precision vegetable planters[J].Applied engineering in agriculture,2016,32(5):579-587.
    [38] KAMGAR S,NOEI-KHODABADI F,SHAFAEI S M.Design,development and field assessment of a controlled seed metering unit to be used in grain drills for direct seeding of wheat[J].Information processing in agriculture,2015,2(3/4):169-176.
    [39] 林翩,廖庆喜,王磊,等.芝麻精量穴播排种器吸种性能分析与试验[J].华中农业大学学报,2021,40(5):195-206.LIN P,LIAO Q X,WANG L,et al.Seed suction performance and experiment of sesame precision hole seeding metering device[J].Journal of Huazhong Agricultural University,2021,40(5):195-206(in Chinese with English abstract).
    [40] 莫定红,舒彩霞,廖宜涛,等.油菜正负气压组合式穴播器设计与试验[J].华中农业大学学报,2021,40(4):219-230.MO D H,SHU C X,LIAO Y T,et al.Design and experiment of positive and negative pressure combined dibbler for rapeseed[J].Journal of Huazhong Agricultural University,2021,40(4):219-230(in Chinese with English abstract).
    [41] 李金凤.小粒径蔬菜种子气吸式精密排种器的设计与试验研究[D].泰安:山东农业大学,2019.LI J F.Design and experimental research of small-size vegetable seeds air suction precision seeder[D].Taian:Shandong Agricultural University,2019(in Chinese with English abstract).
    [42] 李晓冉,张银平,刁培松,等.单盘多行独立气道式蔬菜精量排种器设计与试验[J].中国农机化学报,2022,43(2):28-36.LI X R,ZHANG Y P,DIAO P S,et al.Design and experiment of vegetable precision seed metering device with a single plate and multiple rows with independent airway[J].Journal of Chinese agricultural mechanization,2022,43(2):28-36(in Chinese with English abstract).
    [43] 丁杨.气力式辣椒排种器的设计与试验[D].泰安:山东农业大学,2020.DING Y.Design and experiment of pneumatic pepper seed metering device[D].Taian:Shandong Agricultural University,2020(in Chinese with English abstract).
    [44] KOSARIYA Y K, JOGDAND S V, VICTOR V M. Study on the physico-engineering and morphological characteristics of different seed potato tubers[J]. Akinik publications,2021,10(7):1661-1666.
    [45] 肖文立,肖文芳,廖宜涛,等.油菜直播机犁式正位深施肥装置设计与性能试验[J].华中农业大学学报,2018,37(4):131-137.XIAO W L,XIAO W F,LIAO Y T,et al.Design and performance test of plough-type positive deep fertilization device for rapeseed direct planter[J].Journal of Huazhong Agricultural University,2018,37(4):131-137(in Chinese with English abstract).
    [46] XI X B,GAO W J,GU C J,et al.Optimisation of no-tube seeding and its application in rice planting[J].Biosystems engineering,2021,210:115-128.
    [47] 杨薇.玉米育种精量播种关键技术与装备研究[D].北京:中国农业机械化科学研究院,2019.YANG W.Research on key technologies and equipment of precision sowing in maize breeding[D].Beijing:Chinese Academy of Agricultural Mechanization Science,2019(in Chinese with English abstract).
    [48] 廖宜涛,李成良,廖庆喜,等.播种机导种技术与装置研究进展分析[J].农业机械学报,2020,51(12):1-14.LIAO Y T,LI C L,LIAO Q X,et al.Research progress of seed guiding technology and device of planter[J].Transactions of the CSAM,2020,51(12):1-14(in Chinese with English abstract).
    [49] 廖宜涛,孙迈,廖庆喜,等.油菜精量播种导种环节种子流有序性分析[J].农业工程学报,2023,39(23):23-35.LIAO Y T,SUN M,LIAO Q X,et al.Ordering of seed flow in seed guiding of precision sowing for rapeseed[J].Transactions of the CSAE,2023,39(23):23-35(in Chinese with English abstract).
    [50] 马成成,衣淑娟,陶桂香,等.带式玉米高速导种装置旋夹纳种机理分析与参数优化[J].农业机械学报,2023,54(7):134-143.MA C C,YI S J,TAO G X,et al.Mechanism analysis and parameter optimization of corn seeds receiving by rotating clamp of belt-type high-speed seed guiding device[J].Transactions of the CSAM,2023,54(7):134-143(in Chinese with English abstract).
    [51] 郑嘉鑫.大豆精密播种机种沟构建技术及开沟装置研究[D].长春:吉林大学,2017.ZHENG J X.Furrow construction technology and furrowing machine for soybean precision planters[D].Changchun:Jilin University,2017(in Chinese with English abstract).
    [52] 马磊,廖庆喜,魏国粱,等.油菜联合直播机种床松旋装置设计与试验[J].华中农业大学学报,2019,38(6):132-138.MA L,LIAO Q X,WEI G L,et al.Design and test of seedbed subsoiling and rotating device for rapeseed combined planter[J].Journal of Huazhong Aagricultural University,2019,38(6):132-138(in Chinese with English abstract).
    [53] USABORISUT P,PRASERTKAN K.Performance of combined tillage tool operating under four different linkage configurations[J].Soil and tillage research,2018,183:109-114.
    [54] 张青松.油菜直播机开沟旋耕降附减阻机理与仿真分析[D].武汉:华中农业大学,2017.ZHANG Q S.Mechanism and simulation analysis of drag reduction by ditching and rotary tillage of rape direct seeding machine[D].Wuhan:Huazhong Agricultural University,2017(in Chinese with English abstract).
    [55] 刘晓鹏.油菜直播机开沟耕整地部件设计及其工作机理[D].武汉:华中农业大学,2018.LIU X P.Design and working mechanism of ditching and soil preparation components of rape direct seeding machine[D].Wuhan:Huazhong Agricultural University,2018(in Chinese with English abstract).
    [56] 肖文芳.犁旋组合式稻茬全量还田油菜直播种床整理机设计与试验[D].武汉:华中农业大学,2019.XIAO W F.Design and experiment of plough-rotary combined rice stubble full-returning rape direct seeding seedbed finishing machine[D].Wuhan:Huazhong Agricultural University,2019(in Chinese with English abstract).
    [57] GESCH R W,DOSE H L,FORCELLA F.Camelina growth and yield response to sowing depth and rate in the northern Corn Belt USA[J].Industrial crops and products,2017,95:416-421.
    [58] KüHLING I,REDOZUBOV D,BROLL G,et al.Impact of tillage,seeding rate and seeding depth on soil moisture and dryland spring wheat yield in Western Siberia[J].Soil and tillage research,2017,170:43-52.
    [59] BERTI M T,JOHNSON B L.Switchgrass establishment as affected by seeding depth and soil type[J].Industrial crops and products,2013,41:289-293.
    [60] BARR J B,DESBIOLLES J M A,FIELKE J M.Minimising soil disturbance and reaction forces for high speed sowing using bentleg furrow openers[J].Biosystems engineering,2016,151:53-64.
    [61] 赵淑红,刘宏俊,张先民,等.滑推式开沟器设计与作业性能优化试验[J].农业工程学报,2016,32(19):26-34.ZHAO S H,LIU H J,ZHANG X M,et al.Design and optimization experiment of working performance of sliding push opener[J].Transactions of the CSAE,2016,32(19):26-34(in Chinese with English abstract).
    [62] 马云海,马圣胜,贾洪雷,等.仿生波纹形开沟器减黏降阻性能测试与分析[J].农业工程学报,2014,30(5):36-41.MA Y H,MA S S,JIA H L,et al.Measurement and analysis on reducing adhesion and resistance of bionic ripple opener[J].Transactions of the CSAE,2014,30(5):36-41(in Chinese with English abstract).
    [63] WOJTKOWSKI M,PECEN J,HORABIK J,et al.Rapeseed impact against a flat surface:physical testing and DEM simulation with two contact models[J].Powder technology,2010,198(1):61-68.
    [64] TAGHINEZHAD J,ALIMARDANI R,JAFARI A.Design,development and evaluation of a new mechanism for sugarcane metering device using analytical hierarchy method and response surface methodology[J].Sugar Tech,2015,17(3):258-265.
    [65] UCGUL M,FIELKE J M,SAUNDERS C.Three-dimensional discrete element modelling (DEM) of tillage:accounting for soil cohesion and adhesion[J].Biosystems engineering,2015,129:298-306.
    [66] KAYACAN E,KAYACAN E,RAMON H,et al.Distributed nonlinear model predictive control of an autonomous tractor:trailer system[J].Mechatronics,2014,24(8):926-933.
    [67] REZVANI F,AZARGOSHASB H,JAMIALAHMADI O,et al.Experimental study and CFD simulation of phenol removal by immobilization of soybean seed coat in a packed-bed bioreactor[J].Biochemical engineering journal,2015,101:32-43.
    [68] LEI X L,LIAO Y T,ZHANG Q S,et al.Numerical simulation of seed motion characteristics of distribution head for rapeseed and wheat[J].Computers and electronics in agriculture,2018,150:98-109.
    [69] HAN D D,ZHANG D X,JING H R,et al.DEM-CFD coupling simulation and optimization of an inside-filling air-blowing maize precision seed-metering device[J].Computers and electronics in agriculture,2018,150:426-438.
    [70] 龚智强,陈进,李耀明,等.吸盘式精密排种装置吸种过程气流场中种子受力研究[J].农业机械学报,2014,45(6):92-97.GONG Z Q,CHEN J,LI Y M,et al.Seed force in airflow field of vacuum tray precision seeder device during suction process of seeds[J].Transactions of the CSAM,2014,45(6):92-97(in Chinese with English abstract).
    [71] 史嵩,张东兴,杨丽,等.基于EDEM软件的气压组合孔式排种器充种性能模拟与验证[J].农业工程学报,2015,31(3):62-69.SHI S,ZHANG D X,YANG L,et al.Simulation and verification of seed-filling performance of pneumatic-combined holes maize precision seed-metering device based on EDEM[J].Transactions of the CSAE,2015,31(3):62-69(in Chinese with English abstract).
    [72] 杨善东,张东兴,刁培松,等.侧正压玉米排种器的设计与试验[J].农业工程学报,2015,31(S1):8-13.YANG S D,ZHANG D X,DIAO P S,et al.Design and experiment of side positive pressure seed metering device[J].Transactions of the CSAE,2015,31(S1):8-13(in Chinese with English abstract)..
    [73] 韩丹丹,张东兴,杨丽,等.基于EDEM-CFD耦合的内充气吹式排种器优化与试验[J].农业机械学报,2017,48(11):43-51.HAN D D,ZHANG D X,YANG L,et al.Optimization and experiment of inside-filling air-blowing seed metering device based on EDEM-CFD[J].Transactions of the CSAM,2017,48(11):43-51(in Chinese with English abstract).
    [74] 陈玉龙,贾洪雷,王佳旭,等.大豆高速精密播种机凸勺排种器设计与试验[J].农业机械学报,2017,48(8):95-104.CHEN Y L,JIA H L,WANG J X,et al.Design and experiment of scoop metering device for soybean high-speed and precision seeder[J].Transactions of the CSAM,2017,48(8):95-104(in Chinese with English abstract).
    [75] 姚露,廖庆喜,王磊,等.油菜旋转盘式高速集排器螺旋供种装置设计与试验[J].农业机械学报,2022,53(6):78-88.YAO L,LIAO Q X,WANG L,et al.Design and experiment of spiral seed feeding device in spinning disc high-speed metering device for rapeseed[J].Transactions of the CSAM,2022,53(6):78-88(in Chinese with English abstract).
    [76] YU J J,LIAO Y T,CONG J L,et al.Simulation analysis and match experiment on negative and positive pressures of pneumatic precision metering device for rapeseed[J].International journal of agricultural and biological engineering,2014,7(3):1-12.
    [77] 雷小龙,廖宜涛,李兆东,等.种层厚度对油麦兼用集排器供种装置充种性能的影响[J].农业工程学报,2016,32(6):11-19.LEI X L,LIAO Y T,LI Z D,et al.Effects of seed layer thickness on seed filling performance of seed feeding device for rapeseed and wheat[J].Transactions of the CSAE,2016,32(6):11-19(in Chinese with English abstract).
    [78] 臧英,邢赫,王在满,等.水稻气力式排种器挡种装置设计与试验[J].农业机械学报,2015,46(5):33-38.ZANG Y,XING H,WANG Z M,et al.Design and experiment of shield device on rice pneumatic metering device[J].Transactions of the CSAM,2015,46(5):33-38(in Chinese with English abstract).
    [79] 丁幼春,杨军强,朱凯,等.油菜精量排种器种子流传感装置设计与试验[J].农业工程学报,2017,33(9):29-36.DING Y C,YANG J Q,ZHU K,et al.Design and experiment on seed flow sensing device for rapeseed precision metering device[J].Transactions of the CSAE,2017,33(9):29-36(in Chinese with English abstract).
    [80] 李姗姗.油菜气力滚筒式精量集排器排种过程分析及性能试验[D].武汉:华中农业大学,2017.LI S S.Analysis of seed metering process and performance experiment on pneumatic cylinder-type centralized precision metering device for rapeseed[D].Wuhan:Huazhong Agricultural University,2017(in Chinese with English abstract).
    [81] 李骅,马云龙,於海明,等.群组吸孔气吸式芹菜排种器设计与试验[J].农业机械学报,2023,54(3):87-95.LI H,MA Y L,YU H M,et al.Design and experiment of group air-suction type celery seed metering device[J].Transactions of the CSAM,2023,54(3):87-95(in Chinese with English abstract).
    [82] 刘彩玲,李方林,姜萌,等.点胶-纸带式小粒径种子蔬菜精密播种机设计与试验[J].农业工程学报,2022,38(13):20-29.LIU C L,LI F L,JIANG M,et al.Design and experiment of the spotting glue-paper tape precision seeder for small seed vegetables[J].Transactions of the CSAE,2022,38(13):20-29(in Chinese with English abstract).
    [83] 罗本钒.小白菜遗传多样性分析及优良性状鉴定与利用[D].武汉:华中农业大学,2015.LUO B F.Genetic diversity analysis of pak-choi and identification and utilization of good traits[D].Wuhan:Huazhong Agricultural University,2015(in Chinese with English abstract).
    [84] 黎永键,赵祚喜,黄培奎,等.基于DGPS与双闭环控制的拖拉机自动导航系统[J].农业机械学报,2017,48(2):11-19.LI Y J,ZHAO Z X,HUANG P K,et al.Automatic navigation system of tractor based on DGPS and double closed-loop steering control[J].Transactions of the CSAM,2017,48(2):11-19(in Chinese with English abstract).
    [85] 王鹤,胡静涛,高雷.农业机械自动导航车轮转角测量误差补偿模型[J].农业机械学报,2014,45(8):33-37.WANG H,HU J T,GAO L.Compensation model for measurement error of wheel turning angle in agricultural vehicle guidance[J].Transactions of the CSAM,2014,45(8):33-37(in Chinese with English abstract).
    [86] 张闻宇,丁幼春,廖庆喜,等.拖拉机液压转向变论域模糊控制器设计与试验[J].农业机械学报,2015,46(3):43-50.ZHANG W Y,DING Y C,LIAO Q X,et al.Variable universe fuzzy controller for tractor hydraulic steering[J].Transactions of the CSAM,2015,46(3):43-50(in Chinese with English abstract).
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