An objected-oriented approach to development and integration of graphical user interface and power system framework

Author(s):  
F. Kober ◽  
A. Manzoni ◽  
F.A.B. Lemos
2019 ◽  
Vol 11 (2) ◽  
pp. 138-148
Author(s):  
Adri Senen ◽  
Titi Ratnasari ◽  
Dwi Anggaini

The level of reliability of a distribution system is very important to ensure the continuity of electricity supply to consumers. This research was conducted to calculate the Saidi reliability index and the Saifi 20 kV distribution system in Pinang PLN in 2017 with the help of the Matlab R2008a application. A GUI is one of the Matlab programs that is widely used in describing information and commands, and its users are possible to form and format themselves according to the needs of the system itself. With the help of this software, it is hoped that it will be easier to calculate the system reliability index, namely the calculation of SAIDI and SAIFI, then the results can be made so that the database is more organized. The calculation results obtained will show the highest and lowest SAIDI and SAIFI values ​​that occur in each of the current months, making it easier to evaluate, analyze and improve the reliability of the electrical power system network in the future, especially in PT.


1996 ◽  
Vol 33 (2) ◽  
pp. 108-118
Author(s):  
H. B. Gooi ◽  
S. P. Zhu

A graphics simulation environment for power system education This paper describes a LAN-based system for load flow simulation studies. The system comprises an automatic one-line generator, a graphical user interface (GUI), print and database supporting tools. One-line displays can be generated either manually or automatically. The GUI was designed using the object-oriented programming (OOP) paradigm.


2020 ◽  
Vol 4 (1) ◽  
Author(s):  
Yudhi Ardiyanto ◽  
Muhamad Yusvin Mustar

Paper ini mengusulkan sebuah sistem monitoring nirkabel yang terintegrasi menjadi satu dalam melakukan pendeteksian hujan, suhu dan kelembaban dengan catu daya yang berasal dari solar DC power system, selain itu hasil monitoring didesain berbasis GUI (graphical user interface) menggunakan Processing, sehingga dapat di monitor melalui komputer (PC atau Laptop) dari jarak jauh. Sensor yang digunakan untuk melakukan monitoring terdiri dari sensor hujan (Raindrop Sensor), sensor suhu (NTC Thermistor) dan sensor kelembaban (HIH-4030). Hasil pembacaan ketiga sensor tersebut di inputkan pada mikrokontroller (Arduino Mega 2560) sebagai proses pengolahan data yang selanjutnya akan ditransmisikan melalui radio telemetry secara nirkabel kepada user. Hasil penelitian ini mampu memberikan sebuah model sistem monitoring nirkabel deteksi hujan, suhu dan kelembaban yang terintegrasi menjadi satu, sehingga dapat memudahkan petugas yang ingin melakukan monitoring pada lokasi atau wilayah tertentu, tanpa harus berada dilokasi selama melakukan monitoring pendeteksian hujan, suhu dan kelembaban.


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