现代漂浮温室:利用包括手机算法和 Arduino 远程控制在内的先进管理技术种植灰蚝菇

Grianggai Samseemoung, Phongsuk Ampha, Niti Witthayawiroj, Supakit Sayasoonthorn, Theerapat Juey
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摘要

种植杏鲍菇的浮动温室可通过手机进行远程操作。这一创新系统可提高蘑菇产量和质量,同时节省时间。通过使用手机上的安卓操作系统(带安卓操作系统的互联网移动设备,MGT 型号:T10),用户可以调节温室内的湿度和温度。这种方法对老年人尤其有益。创建一个可远程控制的智能浮动温室,用于栽培杏鲍菇。这将有助于提高蘑菇的质量,减少栽培所需的时间,提高单位种植面积的产量。我们仔细研究了规格要求,并着手制造一个可以漂浮的温室。此外,我们还开发了一个可以控制温度和湿度的装置、一个太阳能电池装置和一个种植蘑菇的架子。我们的温室是远程操作的。为了确定在漂浮温室中种植植物的最佳条件,我们进行了一次测量温度和湿度的试验。然后,我们将测试结果与传统温室的测试结果进行比较,确定了浮动温室生长的最佳参数。这些参数包括生长时间、温度、湿度和重量。可远程控制、漂浮在水面上的蘑菇苗圃由四个主要部分组成:调节温度和湿度的结构、太阳能电池和蘑菇架。研究表明,在这种自动控制系统下种植的蘑菇比传统方法种植的蘑菇长得更好。收获期更短,产量也高于 1.81-1.22 的典型产量。如果考虑到遥控浮动蘑菇苗圃的建设和使用,每天的蘑菇重量占 20.22%。经研究发现,该公司的投资回报率为 3.47 年,即每年 580.21 h,高于传统方法的产量。这套由 Arduino 打造的手机远程控制系统是为种植灰蘑菇的尖端浮动温室量身定制的。它可以通过移动设备轻松操作,尤其适合老年人使用。该系统能让农民生产出大量优质菌种。此外,拥有鱼塘的人也可以利用该系统增加利润。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modern Floating Greenhouses: Planting Gray Oyster Mushrooms with Advanced Management Technology Including Mobile Phone Algorithms and Arduino Remote Control
A floating greenhouse for growing oyster mushrooms can be operated remotely via a mobile phone. This innovative system can enhance mushroom production and quality while saving time. By using the Android OS operating system on a mobile phone (Internet Mobile Device with Android OS, MGT Model: T10), users can adjust the humidity and temperature within the greenhouse. This approach is particularly beneficial for older adults. Create a smart floating greenhouse that can be controlled remotely to cultivate oyster mushrooms. It would help to enhance the quality of the mushrooms, reduce the time required for cultivation, and increase the yield per planting area. We carefully examined the specifications and proceeded to create a greenhouse that could float. In addition, we have developed a unit that could control temperature and humidity, a solar cell unit, and a rack for growing mushrooms. Our greenhouses were operated remotely. To determine the best conditions for growing plants in a floating greenhouse, we conducted a test to measure temperature and humidity. We then compared our findings to those of a traditional greenhouse test and determined the optimal parameters for floating greenhouse growth. These parameters include growth time, temperature, humidity, and weight. A mushroom nursery that can be controlled remotely and floats on water consists of four main components: a structure to regulate temperature and humidity, solar cells, and mushroom racks. Research shows that mushrooms grown under this automated control system grow better than those grown through traditional methods. The harvest period is shorter, and the yield is higher than the typical yield of 1.81–1.22. When considering the construction and use of remote-controlled floating mushroom nurseries, the daily weight of mushrooms accounted for 20.22%. The company’s investment return rates were found to be 3.47 years, or 580.21 h per year, which is higher than the yield of traditional methods. This mobile phone remote control system, created by Arduino, is tailor-made for cutting-edge floating greenhouses that grow grey oyster mushrooms. It can be operated with ease via mobile devices and is especially user-friendly for elderly individuals. This system enables farmers to produce a high volume of quality breeds. Furthermore, those with fish ponds can utilize the system to increase their profits.
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