Perbandingan Akurasi Pengukuran Sensor LM35 dan Sensor DHT11 untuk Monitoring Suhu Berbasis Internet of Things

Sirojul Hadi, Radimas Putra Muhammad Davi Labib, Parama Diptya Widayaka
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引用次数: 4

Abstract

Temperature is an object of research that is often studied. Research on temperature is within the scope of control and monitoring. The process of controlling and monitoring temperature is influenced by the selection of the right temperature sensor. The temperature sensors that are often used are the LM35 sensor and the DHT11 sensor. The LM35 sensor has advantages in terms of a simple design and easy to implement, while the DHT11 sensor has the advantage because in one sensor package there are two functions, namely to measure air temperature and humidity. In this study, temperature measurement accuracy was carried out to facilitate researchers in determining the right temperature sensor. The data monitoring method uses the internet of things (IoT). The results of the research show that the DHT11 temperature sensor is more accurate and more stable than the LM35 temperature sensor. The results of the sensor test at room temperature, the DHT11 sensor has an accuracy rate of 97.21% while the LM35 sensor has an accuracy rate of 96.86%. While the results of the sensor test in the server room, the DHT11 sensor has an accuracy rate of 95.26%, while the LM35 sensor has an accuracy rate of 90.32%.
企鹅传感器LM35和传感器DHT11监测苏湖基物联网
温度是人们经常研究的一个研究对象。对温度的研究是在控制和监测的范围内。温度传感器的选择直接影响到温度的控制和监测过程。常用的温度传感器有LM35传感器和DHT11传感器。LM35传感器的优点是设计简单,易于实现,而DHT11传感器的优点是在一个传感器封装中有两个功能,即测量空气温度和湿度。在本研究中,温度测量精度进行了研究,以方便研究人员确定合适的温度传感器。数据监控方法使用物联网(IoT)。研究结果表明,与LM35温度传感器相比,DHT11温度传感器精度更高,稳定性更强。在室温下的传感器测试结果显示,DHT11传感器的准确率为97.21%,LM35传感器的准确率为96.86%。而在服务器室的传感器测试结果中,DHT11传感器的准确率为95.26%,LM35传感器的准确率为90.32%。
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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