Smart Farming Untuk Pengaturan Suhu Ruangan Pada Budidaya Jamur Tiram Berbasis Backpropagation

Putu Sugiartawan, I. G. N. Desnanjaya
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Abstract

The problem with mushroom cultivation is the difficulty of regulating the room temperature of mushrooms, especially oyster mushrooms. The optimal production of oyster mushrooms is at temperatures between 25 C - 27 C. To regulate or manipulate humidity and room temperature to water the kumbung or mushroom room. The watering process is carried out several times to stabilize the room temperature during the day.To overcome the watering that is done manually, Automatic Temperature Control and Monitoring of Oyster Mushrooms Based on GSM Sim800l Arduino Uno is made. This tool uses a DHT11 sensor, relay, 16x2 LCD, GSM Sim 800L, and Stepdown. The test was carried out in a mushroom kumbung measuring 10.7m long, 5.9m wide, and 3.5m high. Watering time is done by observing the data at room temperature. The data is then studied using a backpropagation. This method aims to identify the pattern of watering time so that the optimal watering time is produced. The test results show that the tool can monitor the temperature and humidity of the kumbung mushroom with the following values: temperature 27°C - 33°C and humidity 70% - 90%. The introduction of mushroom watering patterns with BPNN showed an error rate of 40%.
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智能农场的室温设置为基于基于宣传的牡蛎蘑菇栽培
蘑菇栽培的问题是难以调节蘑菇的室温,尤其是牡蛎蘑菇。牡蛎蘑菇的最佳生产温度在25摄氏度至27摄氏度之间。为了调节或控制湿度和室温,给Kumbong或蘑菇室浇水。浇水过程要进行几次,以稳定白天的室温。为了克服人工浇水的问题,研制了基于GSM Sim800l Arduino Uno的牡蛎蘑菇温度自动控制与监测系统。该工具使用DHT11传感器、继电器、16x2 LCD、GSM Sim 800L和Stepdown。试验在长10.7米、宽5.9米、高3.5米的蘑菇库中进行。浇水时间是通过在室温下观察数据来确定的。然后使用反向传播对数据进行研究。该方法旨在识别浇水时间的模式,从而产生最佳的浇水时间。测试结果表明,该工具可以监测Kumbong蘑菇的温度和湿度,其值如下:温度为27°C-33°C,湿度为70%-90%。用BPNN引入蘑菇浇水模式的错误率为40%。
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