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Agricultural mechanization, a key to food security in developing countries: strategy formulating for Iran

机译:农业机械化,发展中国家粮食安全的关键:为伊朗制定的战略

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Mechanization is a multi-dimensional concept and widely used in agriculture. There is, however, a major difference between the application of mechanization in developed and developing countries The developing countries tend to design their own strategies in food security given the challenges they face in all aspects of their economy including feeding a growing population, reducing poverty, protecting the environment, managing the effects of climate change and fighting malnutrition all which may further contribute to a reduction in economic growth and political instability. The goal of the strategies, with the help of appropriate technologies, is to lead to a sustainable agricultural development and, ultimately, food security. The policy making in each country should be based on its own conditions. This article uses Iran as an example of a developing country and considers the country’s specific climate as well as political and economic conditions to present development-oriented policies for achieving sustainable food security based on agricultural mechanization that may be adaptable to other developing countries. The main objective of this paper is to identify and provide guidelines to the current and future challenges of Iran’s food security, and it argues that for any strategy to succeed in producing a sustainable agricultural production, it will need a proper analysis and a formulation of an appropriate mechanization plan. To achieve the objective of a self-sustaining agricultural mechanization strategy, a SWOT analysis technique was used to identify the strengths, weaknesses, opportunities and threats and help us provide a framework by which policies can be defined. The framework includes internal and external factors that affect the development of agricultural mechanization and seek to provide ideas for agricultural development with the help of mechanization. These factors were then prioritized using the Hierarchical Analysis Method, and based on the obtained results, the final strategies were extracted and prioritized by the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS), a multi-criteria decision analysis method. According to the results, weaknesses and threats were the most important factors. Environmental threats, especially water shortages, economic problems as well as availability of the mechanization fleet and compatibility of the equipment within the country’s agricultural system were identified as the most important factors affecting the agricultural development. In order to achieve sustainable food security, with regards to the identified factors the necessary recommendations and Governmental-support policies in the agricultural sector were presented: 1. reforming the country’s planting pattern according to the climatic conditions considering the relative advantage of agricultural production, 2. modernizing the mechanization fleet; 3. investing in research and development of agriculture and modern knowledge; the production and import of agricultural machinery and modern technologies according to their suitability with the country's conditions and future needs of the country; strengthening of the supply chain and maintenance services.
机译:机械化是一种多维概念,广泛用于农业。然而,在发达国家和发展中国家的机械化应用之间存在一个主要区别,发展中国家倾向于为他们经济的各个方面面临的挑战,包括喂养不断增长的人口,减少贫困的挑战,促进自己的粮食安全战略。保护环境,管理气候变化和战斗营养不良的影响,所有这些都可能进一步有助于减少经济增长和政治不稳定。在适当的技术的帮助下,策略的目标是导致可持续的农业发展,并最终粮食安全。每个国家的政策制定应根据自己的条件。本文用伊朗作为发展中国家的一个例子,并认为该国的具体气候以及政治和经济条件,以提出基于可能适应其他发展中国家的农业机械化实现可持续粮食安全的发展导向政策。本文的主要目标是识别并向伊朗粮食安全的当前和未来挑战提供指导,并认为对于任何策略在生产可持续农业生产方面,它将需要适当的分析和制定适当的机械化计划。为了实现自我维持的农业机械化战略的目标,使用SWOT分析技术来识别优势,劣势,机遇和威胁,并帮助我们提供可以定义策略的框架。该框架包括影响农业机械化发展的内部和外部因素,并寻求在机械化的帮助下为农业发展提供思路。然后使用分层分析方法优先考虑这些因素,并基于所得的结果,通过对理想解决方案(TOPSIS)的相似性,通过该技术提取和优先提取最终策略,并通过相似性,是一种多标准决策分析方法。根据结果​​,弱点和威胁是最重要的因素。环境威胁,尤其是水资源短缺,经济问题以及机械化舰队的可用性以及该国农业系统内的设备的兼容性被确定为影响农业发展的最重要因素。为了实现可持续的粮食安全,关于所确定的因素,提出了农业部门所必要的建议和政府支持政策:1。根据考虑农业生产相对优势的气候条件,改革该国的种植模式,2 。现代化机械化舰队; 3.投资农业和现代知识的研发;农业机械和现代技术的生产和进口根据符合国家的条件和国家的未来需求;加强供应链和维修服务。

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