首页> 外文期刊>African Journal of Agricultural Research >Boosting self-sufficiency in maize crop production in Osisioma Ngwa Local Government with internet of things (IOT)-climate messaging: A model
【24h】

Boosting self-sufficiency in maize crop production in Osisioma Ngwa Local Government with internet of things (IOT)-climate messaging: A model

机译:利用物联网(IOT)-气候消息传递:促进Osisioma Ngwa地方政府的玉米作物自给自足:一种模式

获取原文
获取外文期刊封面目录资料

摘要

The cultivation of maize round the year is a great challenge to both subsistence and mechanized farmers in Abia State owing to the changes in climatic conditions especially precipitation, relative humidity, and temperature during the two traditional seasons, which affect the growth and yield of the cereal crop. This paper is the first of a two-part study aimed to evolving an internet-based remote monitoring and messaging system for farmers in the Umueze-Umuchi communities and other connected areas in Osisioma Ngwa Local Government of Abia State to enable monitoring of vital climatic conditions that are much likely to affect their maize farms during the dry season. This study is descriptive and presents succinct information on maize cultivation in the communities with recourse to topography, relief and drainage, climate, soil and vegetation of the area. Data were collected through observation and interview of selected farmers. The vital atmospheric conditions required for maize farming such as temperature, vapour pressure, and relative humidity were noted to vary during the seasons: rainy and dry seasons, respectively. Data from farmers showed that maize cultivation begins in early march following early rainfall and actively ends around June when the volume of precipitation is at its peak. No maize cultivation is done during the dry season beginning from early November owing to low precipitation regardless of the presence of the Aba River across these communities. Consequent upon the findings, the authors are led to examining the option of all year-round maize cultivation aided by an internet of things (IoT)-enabled climate monitoring system in order to boost maize production in the aforementioned communities. It is submitted that the use of the monitoring device will enable the farmer know when to complement the adverse climatic conditions during the dry season thereby enhancing maize cultivation round the year.
机译:由于两个传统季节期间气候条件的变化,特别是降水,相对湿度和温度的变化,这影响了谷物的生长和单产,因此全年的玉米种植对阿比亚州的自给和机械化农民都构成了巨大的挑战作物。本文是一项由两部分组成的研究的第一部分,旨在发展一个基于互联网的远程监控和消息传递系统,该系统可用于阿比亚州Osisioma Ngwa地方政府的Umueze-Umuchi社区和其他连通地区的农民,从而能够监控重要的气候条件在干旱季节很可能会影响其玉米农场。这项研究是描述性的,通过该地区的地形,救济和排水,气候,土壤和植被,提供了有关社区玉米种植的简要信息。通过观察和采访选定的农民收集数据。玉米种植所需的重要大气条件,例如温度,蒸气压和相对湿度,在季节有所变化:雨季和旱季。农民的数据表明,玉米种植始于降雨之后的三月上旬,并在六月的降水量达到最高峰时积极结束。由于降水稀少,从11月初开始的干旱季节中没有进行玉米种植,无论这些社区中是否存在阿坝河。根据这些发现,作者被引导研究在具有物联网(IoT)的气候监测系统的辅助下进行的全年玉米种植的选择,以促进上述社区的玉米生产。据认为,使用监测装置将使农民知道何时在旱季补充不利的气候条件,从而全年改善玉米种植。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号