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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Design and test of operation parameters for rice air broadcasting by unmanned aerial vehicle
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Design and test of operation parameters for rice air broadcasting by unmanned aerial vehicle

机译:无人机稻空广播工作参数设计与测试

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Considering the difficulty of broadcasting in the small plots and complex terrain in South China, this research aimed to explore a new efficient broadcasting way and figure out advisable operation parameters by using a hollow 12-axis, rotor-wing Unmanned Aerial Vehicle (UAV) which is typically made up of four groups of solid support structure, with each consisting of three axes and two rotor wings. A 3.7 L reverse pyramid-shape seed hopper with a 60 mm×13 mm rectangular outlet at the bottom was designed to realize self-gravity seeding. Rice seed firstly directly falls on the rotating disc driven by direct-current dynamo before being sown. The disc was located 120 mm above the ground, with a diameter of 350 mm. Under constant flight conditions, parameters of the on-board broadcasting devices (dropping speed referring to speed for the outlet and the broadcasting speed for the disc’s rotation speed) determine the uniformity of air broadcasting. The FUTABA T8FG transmitter and receiver system were employed as the remote control device. When the UAV flies at 3 m/s and 2 m above the ground with an expected seeding of 180 grain/m2, the RD (Right Down) knob marked 29 and LD (Left Down) knob marked -24 with a disc rotation speed of 900 r/min, the broadcasting lasts for 15 seconds with a 25% opening (1.95 cm2) of rectangular outlet. In order to verify the feasibility of air broadcasting parameters, the project team carried out a field broadcasting test by using a hollow multi-rotor UAV at Zhongluotan Test Base in Guangzhou in July, 2014. In the square field plots of 0.09 hm2, flying path of air broadcasting operation was designed. The collected sampling data of broadcasting quantity per unit area after the test showed that there were, on average, 187.4 grains/m2 of the five sampling points with a standard deviation of 22.77, and a coefficient of variation of 12.15% which was far smaller than that of artificial broadcasting. The average yield of field broadcasted by UAV is 7705.5 kg/hm2 in 2014, implying that rice air broadcasting by UAV is feasible. Keywords: air broadcasting, test, 12-axis UAV, , self-gravity seeding, operation parameters, yield, rice DOI: 10.3965/j.ijabe.20160905.2248 Citation: Li J Y, Lan Y B, Zhou Z Y, Zeng S, Huang C, Yao W X, et al. Design and test of operation parameters for rice air broadcasting by unmanned aerial vehicle. Int J Agric & Biol Eng, 2016; 9(5): 24-32.
机译:考虑到在华南地区小地块和复杂地形上广播的困难,本研究旨在探索一种新型的有效广播方式,并使用空心12轴,旋翼无人飞行器(UAV)找出合适的运行参数通常由四组固体支撑结构组成,每组由三个轴和两个转子翼组成。设计了一个3.7 L倒金字塔形种子料斗,其底部具有60 mm×13 mm的矩形出口,可实现自重播种。水稻种子在播种之前首先直接落在直流发电机驱动的转盘上。圆盘位于离地面120 mm处,直径为350 mm。在恒定的飞行条件下,机载广播设备的参数(下降速度是指出口的速度,光盘的旋转速度是指广播速度)决定了空中广播的均匀性。 FUTABA T8FG发送器和接收器系统用作远程控制设备。当无人机以高于地面3 m / s和2 m的速度飞行时,预期播种量为180粒/ m2时,标有29的RD(右下)旋钮和标为-24的LD(左下)旋钮的盘转速为900 r / min,广播持续15秒,矩形出口的开口率为25%(1.95 cm2),持续15秒。为了验证空中广播参数的可行性,项目团队于2014年7月在广州的中螺潭试验基地使用中空多旋翼无人机进行了现场广播测试。在0.09 hm2的方形场区中,飞行路径设计了空中广播业务。测试后收集的单位面积广播量采样数据表明,五个采样点平均每平方米有187.4粒/ m2,标准偏差为22.77,变异系数为12.15%,远小于人工广播。 2014年,无人机播出的田间平均产量为7705.5 kg / hm2,这表明无人机播送稻米空气是可行的。关键词:空中广播,试验,12轴无人机,自重播种,运行参数,产量,水稻DOI:10.3965 / j.ijabe.20160905.2248引文:李继元,兰永斌,周正元,曾胜,黄丙, Yao WX等。无人机稻空广播工作参数的设计和测试。国际农业与生物工程杂志,2016; 9(5):24-32。

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