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首页> 外文期刊>Current Journal of Applied Science and Technology >Development of Wireless Technique to Regulate Seed Dropping in a Seeder for Intercropping
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Development of Wireless Technique to Regulate Seed Dropping in a Seeder for Intercropping

机译:无线技术的开发,调节播种机的种子滴

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Although intercropping gives additional yield per unit area than sole cropping, yield may also decrease as the crops differ in their competitive abilities. To avoid competition and to accompany complimentary action between the base crop and inter crop in intercropping practise, proper crop ratio of two crops should be maintained. When sowing with available seeders crop ratio was not maintained because of non-availability of a seed hopper, handling two different varieties of seeds and the un controlled seed flow from the hopper to the seed tube when ground wheel is rotating. To look after this problem an experiment was conducted at DFMPE, AECandRI, Tamil Nadu Agricultural University, Kumulur by fabricating a seed hopper consisting of two compartments and circular shaped outlet for two variety of seeds and developing an RF (radio frequency) wireless technology to control servo motor in order to restrict the seed drop from seed hopper to the seed tube even though ground wheel is in running condition. In this paper considering a seven-row seeder, the performance of a micro controller coded with appropriate programme in embedded C language which can regulate seven servo motors each at seven seed hoppers, functioning of RF transmitter sketch, functioning of RF receiver sketch, header issueandits solution, angle conversion of servo shaft and power consumption was observed and discussed. Total power required for operating RF electronic setup containing seven servomotors was recorded as 5 V 12 A. The angle of rotation of servo motor shaft was from 0o to 165o when pulse width range in micro controller was set from 0 and 2400 micro seconds. The servo did not respond in the hardware interfacing because both the libraries use timer 1 interrupt which created an error issue. In order to overcome that “Servo timer 2.h” header was issued instead of servo.h. Then sketch was compiled and was executed successfully.
机译:虽然间作给予每单位面积的额外产量而不是唯一的种植,但由于作物对其竞争能力不同,但产量也可能降低。为避免竞争和伴随基本作物与作物之间的互补行为,应保持两种作物的适当作物比例。当播种可用播种机时由于种子料斗的非可用性而不维持作物比例,当研磨机旋转时,处理两种不同品种的种子和从料斗到种子管中的未受控制的种子流。要照顾这个问题,在泰米尔纳德农业大学的DFMPE,顽固,通过制造由两个种子和圆形出口组成的种子料斗和开发RF(射频)无线技术来控制熊市进行实验。伺服电机,即使研磨机处于运行条件,伺服电机也限制从种子料斗到种子管。在本文中,考虑到七排播种机,微控制器的性能与嵌入式C语言中的适当程序编码,可以在七个种子料斗中调节七个伺服电机,RF发射器素描的运作,RF接收器素描的功能,标题发行量求解伺服轴和功耗的角度转换被观察并讨论。运行包含七个伺服电机的RF电子设置所需的总功率被记录为5 V 12 A.当微控制器中的脉冲宽度范围设置为0和2400微秒时,伺服电机轴的旋转角度为0o至165o。伺服在硬件接口中没有响应,因为库都使用计时器1中断创建错误问题。为了克服“伺服定时器2.h”标题是发出的而不是servo.h。然后编译草图并成功执行。

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