播种机
还原(数学)
计算机科学
控制(管理)
嵌入式系统
实时计算
数学
人工智能
农学
播种
生物
几何学
作者
Bharath Kumar Komatineni,Sangram Kishore Satpathy,Kavan Kumar,Mude Arjun Naik,Utkarsh Dwivedi,Jyoti Lahre
标识
DOI:10.1016/j.atech.2024.100471
摘要
An unmanned rice seeder (URS) with WiFi based wireless communication system was developed to reduce surface seed dispersion, drudgery, human involvement, health hazards and environmental pollution. An android mobile phone with WIFI connectivity acts as wireless communication system to control the developed URS with operating range of 144.6 m which was surplus for small farms in hilly terrains of Sikkim. The factors of URS are found to be forward speed (Fs) and hopper fill level (HL) w.r.t responses of co-efficient of variation of number of seeds per hill (Cv), Seed rate (Sr), hill spacing uniformity (Us,), missing hill index (MI) and mean hill span (Hs). The optimum results of soil bin study are of Fs and HL of 2.4 km.h−1 and 75% w.r.t responses of Cv, Sr, MI, Us, Hs are 0.28, 18.5 kg. ha−1, 7.3 %, 91.7%, and 6.4 cm. Test results showed that the seeding performance of developed seeder was similar to manual drum seeder. But, due to higher speed of operation in developed seeder showed better results in field operation. The results from the field evaluation revealed that URS has increase in field capacity of 41 %, reduces labor requirement of 50 % than manual rice seeder. In economic evaluation URS has reduced cost of operation (₹ ha−1) of 90 % and increase net benefit (₹ year−1), Payback period of 61 % and 91 % over than manual rice seeder (MRS). The operator's workload was decreased by up to 95 % due to the machine's mobile operation as compared to the manual operation.
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