A Comprehensive Survey on Semi-Automatic Solar-Powered Pesticide Sprayers for Farming

Dr. Altaf O. Mulani
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Abstract

In recent years, the agriculture sector has witnessed a growing demand for sustainable and efficient pest management solutions to enhance crop yield and reduce environmental impact. Among these solutions, semi-automatic solar-powered pesticide sprayers have emerged as promising tools for farmers worldwide. This paper presents a comprehensive survey of semi-automatic solar-powered pesticide sprayers designed for farming applications. The survey begins by exploring the motivations behind the development of solar-powered pesticide sprayers, emphasizing the need for environmentally friendly alternatives to traditional pesticide application methods. It proceeds to examine the key components and functionalities of these sprayers, including solar panels, rechargeable batteries, pumps, nozzles, and control systems. Special attention is given to the integration of solar energy harvesting mechanisms and their impact on operational efficiency and sustainability. Furthermore, the survey investigates the design considerations and technical challenges associated with the development of semi-automatic solar-powered pesticide sprayers. Topics such as system autonomy, spray coverage, pesticide dosage control, and user-friendly interfaces are thoroughly discussed. Additionally, the paper highlights recent advancements and innovations in the field, including the incorporation of smart sensors, GPS technology, and data analytics for precision spraying and monitoring.
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关于农用半自动太阳能农药喷雾器的全面调查
近年来,农业部门对可持续、高效的病虫害管理解决方案的需求日益增长,以提高作物产量并减少对环境的影响。在这些解决方案中,半自动太阳能农药喷雾器已成为全球农民的理想工具。本文全面调查了为农业应用而设计的半自动太阳能农药喷雾器。调查首先探讨了开发太阳能农药喷洒器背后的动机,强调了对传统农药施用方法的环保型替代品的需求。接着研究了这些喷雾器的关键部件和功能,包括太阳能电池板、充电电池、泵、喷嘴和控制系统。特别关注太阳能收集机制的集成及其对操作效率和可持续性的影响。此外,调查还研究了与开发半自动太阳能农药喷洒器相关的设计考虑因素和技术挑战。对系统自主性、喷洒范围、农药剂量控制和用户友好界面等主题进行了深入讨论。此外,本文还重点介绍了该领域的最新进展和创新,包括将智能传感器、GPS 技术和数据分析用于精确喷洒和监测。
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