Development of a Real-Time Web-Based Power Monitoring System for the Substation of Petrochemical Facilities

2019 ◽  
Vol 55 (1) ◽  
pp. 43-50 ◽  
Author(s):  
Long Zhao ◽  
Igor B. M. Matsuo ◽  
Farshid Salehi ◽  
Yuhao Zhou ◽  
Wei-Jen Lee
2021 ◽  
Vol 9 (2) ◽  
pp. 27-36
Author(s):  
Sheikh Hasib Cheragee ◽  
Nazmul Hassan ◽  
Sakil Ahammed ◽  
Abu Zafor Md. Touhidul Islam

We have Developed an IoT-based real-time solar power monitoring system in this paper. It seeks an opensource IoT solution that can collect real-time data and continuously monitor the power output and environmental conditions of a photovoltaic panel.The Objective of this work is to continuously monitor the status of various parameters associated with solar systems through sensors without visiting manually, saving time and ensures efficient power output from PV panels while monitoring for faulty solar panels, weather conditionsand other such issues that affect solar effectiveness.Manually, the user must use a multimeter to determine what value of measurement of the system is appropriate for appliance consumers, which is difficult for the larger System. But the Solar Energy Monitoring system is designed to make it easier for users to use the solar system.This system is comprised of a microcontroller (Node MCU), a PV panel, sensors (INA219 Current Module, Digital Temperature Sensor, LDR), a Battery Charger Module, and a battery. The data from the PV panels and other appliances are sent to the cloud (Thingspeak) via the internet using IoT technology and a Wi-Fi module (NodeMCU). It also allows users in remote areas to monitor the parameters of the solar power plant using connected devices. The user can view the current, previous, and average parameters of the solar PV system, such as voltage, current, temperature, and light intensity using a Graphical User Interface. This will facilitate fault detection and maintenance of the solar power plant easier and saves time.


2014 ◽  
Vol 9 (1) ◽  
pp. 17-25 ◽  
Author(s):  
Mirosław Skibniewski ◽  
Hui-Ping Tserng ◽  
Shen-Haw Ju ◽  
Chung-Wei Feng ◽  
Chih-Ting Lin ◽  
...  

2018 ◽  
Vol 627 ◽  
pp. 852-859 ◽  
Author(s):  
Qinghua Sun ◽  
Jia Zhuang ◽  
Yanjun Du ◽  
Dandan Xu ◽  
Tiantian Li

PLoS ONE ◽  
2016 ◽  
Vol 11 (3) ◽  
pp. e0150935 ◽  
Author(s):  
Arun Kumar Pratihast ◽  
Ben DeVries ◽  
Valerio Avitabile ◽  
Sytze de Bruin ◽  
Martin Herold ◽  
...  

TRANSIENT ◽  
2019 ◽  
Vol 7 (3) ◽  
pp. 819
Author(s):  
Galih Irvan Setiaji ◽  
Aghus Sofwan ◽  
Sumardi Sumardi

Panel surya sebagai salah satu alternatif pembangkit listrik yang ramah lingkungan dengan sumber energi berupa sinar matahari. Penggunaan yang praktis dan memiliki mobilitas untuk menjangkau daerah yang tidak tercakup dalam jangkauan listrik PLN menjadikan panel surya banyak digunaan dalam kehidupan masyarakat. Hal ini yang menjadi pertimbangan catu daya yang digunakan dalam sistem smart open parking. Penelitian ini bertujuan untuk merancang sistem charging dan monitoring daya yang dapat dilakukan secara realtime dan online. Sistem ini dilengkapi dengan sensor tegangan mengetahui tegangan, sensor arus ACS712 dan sensor DHT22 yang telah dikalibrasi dan terhubung dengan converter sebagai media konversi daya untuk mengisi baterai. Sistem ini menggunakan internet  yang terintegrasi database dan aplikasi android sebagai media untuk melakukan monitoring daya secara real time dan online sehingga sistem berjalan dengan prinsip IoT. Perancangan alat ini menggunakan Raspberry Pi 3 sebagai media pengolah dan pengirim data. Berdasarkan hasil penelitian, sistem dapat memantau tegangan, arus, dan daya dari panel surya, tegangan baterai, suhu dan kelembaban sistem  dengan tingkat rata-rata error pengukuran tegangan panel 0,12V, arus panel 0,004A, daya panel 0,34W, tegangan baterai 0,73V, suhu sistem 0,2oC dan kelembaban sistem 2,5%. Dengan demikian kondisi sistem yang dipantau sesuai dengan kondisi sebenarnya.


Author(s):  
A. Ejah Umraeni Salam ◽  
Muh . ◽  
Tola . ◽  
Mary Selintung ◽  
Farouk Maricar

2013 ◽  
Vol 462-463 ◽  
pp. 539-542
Author(s):  
Li Li Zeng

The paper discusses the implementation scheme and software design that applies web technology into real-time remote monitoring system. Software design of monitoring system mainly includes design of serial data acquisition software and web-based remote monitoring software. Serial software acquires related data of solar heating system via RS-485 serial port and realizes storage of data. Web-based remote monitoring is in C/S mode, and users can browse and search data of solar water heating control system in real-time by using browser. The design scheme is a success in implementation of solar water system in campus, and realizes automation integrated with control, management, information and network through a combination of control network and Internet.


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