Design of a Self-Sustained Farming System (SFS) for Pakistan

M. Jawad, N. Saleem, S. A. Ahmed, M. B. Qureshi, S. M. Ali, Z. Ullah, B. Khan, C. A. Mehmood, Rafiq Asghar, U. Fayyaz
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引用次数: 1

Abstract

Growing population of the world demands rapid, efficient, and safe production of the food items. The revolution in robotics and automation also introduces the concept of robotic farming that has the benefits to grow and inspect the food items more effectively. The need of the time is to introduce robustness and automation in the agriculture industry of Pakistan. Therefore, a Self-Sustained Farming System (SFS) is designed that has the capability to flourish a small agricultural area without any intervention of the farmer. The SFS is also effective in such terrains where conventional farming is difficult. The design of the SFS makes it capable to perform multiple tasks, such as weeding, seed injection, and soil moisture measurement. Moreover, the SFS changes the daily watering pattern for different plants with respect to the weather conditions of the area. Furthermore, the cloud interface of the SFS provides the feature of continuous updated remote assessment of the SFS system parameters. The SFS has another advantage to work both in grid-connected and off-grid (solar powered) mode. A detailed cost analysis of real-time data of SFS is conducted with respect to the saving of water and energy resources. The scope of the SFS is not limited to small kitchen gardens, the SFS is scalable to big garden and vegetation farms.
巴基斯坦自给农业系统(SFS)设计
世界上不断增长的人口要求快速、高效和安全的食品生产。机器人技术和自动化的革命也引入了机器人农业的概念,它有利于更有效地种植和检查食品。现在需要的是在巴基斯坦的农业工业中引入稳健性和自动化。因此,设计了一个自给自足的农业系统(SFS),它有能力在没有任何农民干预的情况下蓬勃发展一个小农业地区。SFS在传统耕作困难的地区也很有效。SFS的设计使其能够执行多种任务,如除草,种子注射和土壤湿度测量。此外,SFS根据该地区的天气条件改变了不同植物的日常浇水模式。此外,SFS的云接口还提供了对SFS系统参数进行持续更新的远程评估的功能。SFS还有另一个优点,即可以在并网和离网(太阳能供电)模式下工作。从节约水资源和能源的角度,对SFS实时数据进行了详细的成本分析。小型菜园支援计划的范围并不局限于小型菜园,亦可扩展至大型菜园及植物农场。
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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