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EN
The paper presents some issues with developing dedicated software solutions for control – measurement systems equipped with Graphical User Interface (GUI) and touchscreen dedicated to work under different operating systems like MS Windows and Linux. Some important issues of preparing the system to work under different operating system environment using common software code are described. As an example of a practical solution, the control system of the radiation monitor produced by Relpol S.A. built using the QT multi-platform development environment is presented.
PL
W artykule zaprezentowane zostanie rozwiązanie aparatury EAZ (energetyczna automatyka zabezpieczeniowa) wspomagającej eliminowanie niekorzystnych zjawisk występujących w sieciach średnich napięć wskutek przyłączania lokalnych źródeł energii, na przykładzie funkcjonalności terminalu polowego CZIP-PRO (1E) produkowanego przez firmę RELPOL S.A zakład Polon w Zielonej Górze. Opisana będzie budowa urządzenia, specyficzne funkcje zabezpieczeniowe dedykowane do pracy w sieciach rozdzielczych z generacją rozproszoną oraz typowy schemat aplikacyjny.
EN
he paper presents the system of elimination of negative phenomena in the medium voltage networks as a result of connecting local energy sources, using the functionality of the energy protection terminal field CZIP-PRO (1E) device produced by RELPOL S.A. division Polon in Zielona Góra. In the Chapter 1 brief introduction to the problem of using local renewable energy sources in public middle voltage energy networks is described. Chapter 2 briefly presents construction of the CZIP-PRO 1E device – Fig.1. Some details of the software modules are described together with the description of graphical user interface functionality based on using LCD touch screen and specialised software modules. Chapter 3 is dedicated to the description of the functionality of the CZIP-PRO device devoted to application of local renewable energy sources like wind, water or solar energy generators. The device works in real-time regime and based on several measurement and calculation based values its protection control decisions are evaluated. Most important current, voltage and frequency based protection functions specific for local energy sources are briefly described. Chapter 4 presents typical application diagram of the CZIPPRO device to protect local renewable energy generator connected to the middle voltage energetic network – Fig. 2.
PL
W artykule zostanie zaprezentowany system cyfrowych zabezpieczeń i pomiarów dla rozdzielni SN opracowany w firmie Relpol S.A. zakład Polon w Zielonej Górze. Zaprezentowane zostaną najważniejsze możliwości urządzenia wraz z jego budową sprzętową i najważniejszymi modułami programowymi. Przedstawione zostaną także możliwe obszary zastosowań omawianego systemu.
EN
The paper presents a digital protection and measurement system for medium voltage distribution stations developed in the Relpol S.A. company, division Polon in Zielona Góra. The system comprises of several hardware components and modules of specialized software. Their role and functionality are briefly explained in the paper. Thanks to the modular construction, it is possible to fast adapt the equipment to dynamically changing expectations and needs. The system uses the real-time operating system Windows CE, and specialized software which provides protection and metering functions. The status of the system and setup is presented by a graphic user interface using a colour LCD screen with touch control support - Fig 1. Protection functions require fast measurement of many primary quantities like phase currents and voltages as well as zero components of voltages and currents. The primary quantities are used to calculate many derivative values used then by digital protection functions. The system protection functions should react within the time of 60 ms after detecting a dangerous situation like a phase short circuit or a ground short circuit. Possible areas of the system application
PL
W artykule zaprezentowany zostanie rozproszony system informatyczny przeznaczony do nadzoru pracy stacjonarnych monitorów promieniowania (SMP). W artykule zostaną zaprezentowane urządzenia SMP wraz ich możliwościami i wybranymi parametrami oraz przedstawione zostaną możliwości systemu informatycznego zbudowanego do ich nadzoru. System wykorzystuje nowoczesne technologie, takie jak technologie sieciowe, kamery video IP do dokumentowania zdarzeń oraz bazy danych do przechowywania informacji.
EN
In the paper Stationary Radiation Monitors (SRMs) and a radiology control system based on them are presented. SRMs manufactured by the division Polon of the Relpol company are described. Selected parameters of the elaborated SRM and information system to supervise their work are outlined. Components of the SRM are shown in figure 1. The basic SRM components are gamma and neutron detection modules and a control module with a touch screen and thermal printer. SRMs are used for detection of nuclear and radioactive materials. SRMs presented in the paper are a new generation of gamma and neutron radiation detector devices and can be used on border crossings, airports, nuclear factories, etc. SRMs installed in the field can be configured and monitored by a local control module or remotely by a monitoring system. The monitoring system can manage up to 16 SRMs. The monitoring system collects information about the SRM current status and events generated by the SRM and stores them in a data base. The functional and program modules and the main window view of the monitoring program are shown in figures 3 and 4. The new generation of SRMs is equipped with intelligent IP cameras with pre-triggering function. This function allows tracing a picture up to one minute before the alarm occurs. Video pictures and alarms are stored in the monitoring system data base and can be displayed by the authorized personnel.
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