Development and Evaluation of a Locally Designed Solar Integrated Egg Incubator

M. Lawal, C. Ogunlade, K. Atanda
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Abstract

There is need for subsistence poultry farmers to maximize chick production to supply the increasing demand for poultry meat. This research developed and evaluated an egg incubator powered by a renewable energy source generated from solar modules. The incubator was incorporated with temperature and humidity sensors which measured and regulated the conditions suitable for the egg incubation. The direct current (DC) heater, sensor, microcontroller and DC fan provided suitable temperature and humidity for the eggs. The developed incubator was evaluated by monitoring the temperature and Relative Humidity (RH) readings over a range of time and the hatchability rate was also evaluated. The temperature within the incubator chamber ranged 37-38°C with an error margin of +0.1oC while the RH ranged between of 30-35% with an error margin of +5%. An average hatchability rate of 92% was obtained from the evaluation of the incubator. The evaluation gave a standardized temperature and relative humidity range of values necessary for incubation of eggs. The study has shown that solar energy could be used to successfully power incubator systems with good hatchability for the whole incubation period.
自主设计的太阳能一体化鸡蛋培养箱的研制与评价
自给家禽养殖户需要最大限度地提高雏鸡产量,以满足对禽肉日益增长的需求。本研究开发并评估了一种由太阳能模块产生的可再生能源驱动的孵卵器。培养箱装有温度和湿度传感器,用于测量和调节适合卵孵化的条件。直流加热器、传感器、单片机和直流风扇为鸡蛋提供了合适的温度和湿度。通过监测一段时间内的温度和相对湿度(RH)读数来评估所研制的培养箱,并评估孵化率。培养箱内温度范围为37 ~ 38℃,误差范围为+0.1℃;相对湿度范围为30 ~ 35%,误差范围为+5%。对培养箱进行评价,平均孵化率为92%。该评价给出了孵卵所需的标准化温度和相对湿度范围。研究表明,在整个孵化期内,太阳能可以成功地为孵化系统提供良好的孵化率。
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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