一种基于自动模糊逻辑控制器的智能平菇栽培技术

IF 1.2 Q2 MATHEMATICS, APPLIED
Dakhole Dipali, Thiruselvan Subramanian, G. Kumaran
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引用次数: 0

摘要

由于其营养和药用价值,平菇种植是一种环保、有利可图的农业综合企业,但它是劳动密集型的,而且生长在一个敏感的环境中。它必须使用一个自主的环境控制系统来优化和提供必要的生长条件。为了优化温度和湿度,从而最大限度地提高蘑菇产量,开发了一种使用模糊逻辑控制器(FLC)的智能蘑菇浇水、监测和控制系统。该研究建议在智能蘑菇屋中安装使用DHT22传感器、ESP32板和继电器控制执行器(洒水器、冷却风扇、加湿器、加热器)的物联网(IoT)节点。控制器对当前温度和湿度值的感知采用模糊逻辑技术自动开关执行器。每个物联网节点收集的数据在ThingSpeak平台上进行收集和可视化。用FLC计算的执行器响应时间与用简单的ON-OFF方法计算的响应时间进行了比较。结果表明,与简单的ON-OFF方法相比,使用模糊逻辑计算响应时间具有显著的准确性和速度。此外,在ThingSpeak上实时创建的图表表明,FLC算法比简单的on - off算法更健壮和有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A smart oyster mushroom cultivation using automatic fuzzy logic controller
Oyster mushroom cultivation is an eco-friendly, profitable agribusiness because of its nutritious and medicinal value but it is labor-intensive, and it grows in a sensitive environment. It must use an autonomous environment control system to optimize and offer the necessary growing conditions. To optimize the temperature and humidity and consequently maximize mushroom production, a smart mushroom watering, monitoring, and controlling system using fuzzy logic controllers (FLC) have been developed. This study suggests installing an Internet of Things (IoT) node that uses DHT22 sensors, an ESP32 board, and relays to control actuators (sprinkler, cooling fan, humidifier, and heater) in a smart oyster mushroom house. The controller on sensing current temperature and humidity values using the fuzzy logic technique switches on/off the actuators automatically. The data collected at each IoT node is collected and visualized on the ThingSpeak platform. The computed response time for actuators using FLC is compared with that calculated using a simple ON-OFF method. The findings demonstrate that response time calculation using fuzzy logic is significantly accurate and faster than a simple ON-OFF approach. Additionally, the graphs created in live on ThingSpeak, demonstrate that the FLC algorithm is more robust and effective than the simple ON-OFF algorithm.
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来源期刊
CiteScore
3.10
自引率
21.40%
发文量
126
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