scholarly journals DEVELOPMENT OF A BINARY INSTALLATION DISPATCH SYSTEM BASED ON THE SIEMENS TIA PORTAL SOFTWARE 

Author(s):  
В.В. Пашаев ◽  
М.Р. Исаева ◽  
М.А. Лабазанов

В данной работе представлены результаты исследований, связанные с возможностью реализации бинарной установки генерации электроэнергии для самообеспечения геотермальной станции на основе реализации циркуляционной схемы использования глубинного тепла Земли (ГСЦС). Авторами рассмотрена схема бинарной установки с включением экономайзера. Разработанная программа пользовательского интерфейса предназначена для реализации человеко-машинного интерфейса автоматизированной системы управления и контроля опытно-промышленной геотермальной станции на основе реализации циркуляционной схемы использования глубинного тепла Земли. Произведен подбор аппаратно-технических и программных средств для выполнения программы. This article presents the results of studies related to the possibility of implementing a binary installation of electricity generation for self-support of a geothermal station based on the implementation of the circulation scheme for using the Earths deep heat (GSCS). The authors considered a binary installation scheme with the economizer on. The developed user interface program is designed to implement a human-machine interface of an automated control and monitoring system for a pilot industrial geothermal station based on the implementation of the circulation scheme for using the Earths deep heat. The selection of hardware and software and software for the program.

Ergodesign ◽  
2020 ◽  
Vol 2020 (2) ◽  
pp. 93-98
Author(s):  
Vladislav Korobkin ◽  
Alexander Nefedovich

The description and results of experimental studies of rationality of using various computer control tools for the practice of developing a human-machine interface intended for automated workstations of system control operators for shipboard technical complexes are presented in the work.


2017 ◽  
Vol 19 (3) ◽  
pp. 1
Author(s):  
Esa Hayyu Wiguna ◽  
Arkhan Subari

Esa Hayyu Wiguna, Arkhan Subari, in this paper explain that the monitoring system is a system used to monitor and control work processes in a plant design. This system is widely used and applied in the industrial world to find out the performance of a plant. To do the monitoring system, a lot of software can be used, which is then called the HMI (Human Machine Interface). The monitoring system with an interface in the form of HMI can be presented in various forms, such as buttons, or can also be displayed in the visualization of the plant while working. This monitoring system through an HMI interface uses supporting hardware in the form of a Raspberry Pi as a device to process the data that will be displayed on the display screen, while displaying its visualization uses an LCD touch screen. This LCD touch screen is connected to the Raspberry Pi via the LCD driver. The graphic form that will be displayed on the LCD touch screen is designed using Node-RED software. The visualization that will be displayed on the Touch Screen LCD will be adjusted to the working system of automatic plant sprinklers. This monitoring system using an HMI interface can display the plant's working system through indicators of water level and soil moisture. To test tube 2 water level measured through ultrasonic sensors through HMI has an error ratio of 1.01%, while for soil moisture measured through soil moisture sensors has an error ratio of 1.51%. Keywords: Monitoring System, Human Machine Interface (HMI), Raspberry Pi, Node-RED. ReferencesHaryanto, Heri dan Sarif Hidayat. 2012. Perancangan HMI (Human Machine Interface) Untuk Pengendalian Kecepatan Motor DC. Jurnal S1 Jurusan Elektro Fakultas Teknik Terpublikasi. Banten: Universitas Sultan Ageng Tirtayasa.Udayana, Gede Agus, I Gede Mahendra Darmawiguna, dan I Made Gede Sumarya. 2016. Pengembangan Prototipe Portal Otomatis Dengan Pendeteksian Plat Nomor Kendaraan Berbasis Raspberry Pi. Artikel Jurusan Pendidikan Teknik Informatika Terpublikasi. Bali: Universitas Pendidikan Ganesha.Man, Joseph. 2016. Raspberry Pi 3 Model B Technical Specifications. https://www.element14.com/community/docs/DOC-80899/l/raspberry-pi-3-model-b-technical-specifications. Diakses tanggal 14 Agustus 2017.Kurniawan, Halim. 2005. Aplikasi Penjawab Pesan Singkat Automatis dengan Bahasa Python. Makalah Seminar Tugas Akhir S1 Jurusan Teknik Elektro Terpublikasi. Semarang: Universitas Diponegoro.Node-RED. 2013. Node-RED; Flow-based programming for the Internet of Things. https://nodered.org/. Diakses tanggal 02 Mei 2017.Tim J, M. 2016. Developing with Node-RED. https://software.intel.com/en-us/articles/developing-with-node-red. Diakses tanggal 02 Mei 2017.


JURNAL ELTEK ◽  
2018 ◽  
Vol 16 (1) ◽  
pp. 24
Author(s):  
Irwan Heryanto Eryk ◽  
Slamet Nurhadi

This research is studying the automation of substation monitoring system especially in metering equipment. It was aimed to plan and implemented the substation design that monitored with SIMATIC WinCC program. The equipments are PLC, PM-710, SIMATIC WinCC, Movicon, relay, MCB, CT and Transformers. It used 3 phase power supply connected to several load of Resistor (R),Inductor (L), and Capacitor (C). PM-710 was used to measure the outgoing load datas that connected and saved to Personal Computer (PC). The experiment were using the varied load. Base on the module, the power substation simulated with WinCC and the reading metering datas such as real power, apparent power and power factor also frequency by MOVICON that displayed in the PC monitor.


Sign in / Sign up

Export Citation Format

Share Document