基于物联网的配电变压器中电压,电流,温度,甲烷和氢气水平监测系统

Maksal Mina, Kartika Kartika
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摘要

配电网在技术上和非技术上都是配电系统的重要组成部分,非常容易受到干扰。这种干扰应尽快解决,以免影响配电的性能,损坏配电变压器。为了克服这种干扰,可以在每个负载区使用安全装置和电压断路器。配电网中的保护系统必须快速工作并立即隔离异常情况,以防止进一步的损害并尽量减少停电。这种干扰应尽快解决,以免影响配电的正常运行,损坏配电变压器。这种扰动的影响改变了配电变压器中的电压、电流、温度和气体水平。因此,我们需要一种能够监测变压器状态的工具。NodeMCU ESP8266是一款可以连接到internet网络的微控制器,作为中央控制。PZEEM-004T传感器用作电流和电压读取器。对于气体测量,MQ-4传感器用于测量CH4气体水平;MQ-7传感器用于测量CO气体浓度,MQ-8传感器用于测量H2气体浓度。测试结果发现,由于负载不平衡,变压器内温度升高,导致气体水平变化。从试验中发现,最低气体含量为CH4达到113 PPM, CO达到21PPM, H2达到158PPM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring System for Levels of Voltage, Current, Temperature, Methane, and Hydrogen in IoT-Based Distribution Transformers
The distribution network is an integral part of electricity distribution, both technically and non-technically, which is very vulnerable to disturbances. This disturbance should be resolved as soon as possible so that it does not interfere with the performance of the electricity distribution and also damage the distribution transformer. In overcoming this disturbance, it can be done by using a safety device and a voltage breaker in each load area. The protection system in the distribution network must work quickly and immediately isolate abnormal conditions to prevent further damage and minimize blackouts. This disturbance should be resolved as soon as possible so that it does not interfere with the performance of the electricity distribution and also damage the distribution transformer. . The effects of this disturbance are changed in voltage, current, temperature, and gas levels in the distribution transformer. So we need a tool that can monitor the condition of the transformer. NodeMCU ESP8266 is a microcontroller that can connect to the internet network, which is used as the central control. The PZEEM-004T sensor is applied as a current and voltage reader. For gas measurement, the MQ-4 sensor is used to measure CH4 gas levels; the MQ-7 sensor is used to measure CO gas levels, and the MQ-8 sensor is used to measure H2 gas levels. The test results found that due to the unbalanced load conditions, there was an increase in temperature in the transformer, which resulted in changes in gas levels. Where from the test, it was found that the lowest gas content was CH4 reaching 113 PPM, CO went 21PPM, and H2 reaching 158PPM.
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