Battery Powered Agricultural Sprayers: A Review

A. Chandraker, V. M. Victor, S. Jogdand, D. Khalkho
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Abstract

Agricultural technology is undergoing rapid change, with continuous improvements in farm machinery, buildings, and production facilities. The quest for cheaper and enhanced energy sources is essential for the efficient and seamless operation of these facilities. Day to day depleting reserves of fossil fuels has motivated researchers to work on alternate source of energy. A battery has been proved a good alternative to fossil fuels for the operation of moving objects. A battery-powered agricultural sprayer, driven by a DC pump running on electricity stored in a battery, offers numerous advantages. Their operation is more cost-effective due to lower maintenance costs and has a lesser environmental impact compared to pumps powered by internal combustion engines (ICE). Additionally, they produce less vibration than petrol sprayers. With such sprayers, farmers can conduct spraying operations themselves, thus enhancing efficiency without needing additional labor. Several researchers carried out work on battery powered sprayers, in the different locations of the world. Different types of sprayers have been modified and successfully and efficiently operated on electricity generated in batteries. The review cover both solar power charged batteries and domestic electricity charged batteries. Research findings also indicated the reduction in drudgery of human labours involved in the spraying operation. These sprayers are an excellent means to cover large areas quickly and effortlessly. In summary, this innovative solution addresses the challenges of manual labor while promoting efficient, precise and sustainable agricultural practices.
电池供电的农用喷雾器:回顾
农业技术日新月异,农业机械、建筑和生产设施不断改进。要使这些设施高效、无缝地运行,就必须寻求更廉价、更先进的能源。化石燃料储量日渐枯竭,促使研究人员致力于开发替代能源。事实证明,在移动物体的运行中,电池是化石燃料的良好替代品。以电池为动力的农用喷雾器由直流电泵驱动,其电力储存在电池中,具有许多优点。与内燃机(ICE)驱动的泵相比,直流泵的维护成本更低,运行成本效益更高,对环境的影响也更小。此外,与汽油喷雾器相比,它们产生的振动更小。有了这种喷雾器,农民就可以自己进行喷洒作业,从而提高效率,而不需要额外的劳动力。一些研究人员在世界各地开展了电池驱动喷雾器的研究工作。对不同类型的喷雾器进行了改装,并成功、高效地利用电池产生的电能进行作业。审查涉及太阳能充电电池和家用电力充电电池。研究结果还表明,喷洒作业中的人工劳动强度有所降低。这些喷雾器是快速、轻松覆盖大面积区域的绝佳手段。总之,这一创新解决方案既解决了人工劳动的难题,又促进了高效、精确和可持续的农业实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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