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Wyszukujesz frazę "sieci elektryczne" wg kryterium: Temat


Wyświetlanie 1-3 z 3
Tytuł:
Quick-response protection system against electric shock in distributed generation systems
Autorzy:
Shkrabets, Fedir
Plaksin, Sergej
Ostapchuk, Oleksandr
Kuznetsov, Valeriy
Tymchenko, Irina
Muntian, Antonina
Powiązania:
https://bibliotekanauki.pl/articles/1840853.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Polskie Towarzystwo Diagnostyki Technicznej PAN
Tematy:
electric networks
protection
reliability
ground fault current
electrical safety
protection against electric shock
signal processing system
analog filtering
sieci elektryczne
ochrona
niezawodność
bezpieczeństwo elektryczne
ochrona przeciwporażeniowa
system przetwarzania sygnału
filtracja analogowa
Opis:
The peculiarities of the operation of distributed generation systems lead to a change in the requirements for the reliability and safety of the power distribution systems in which they are integrated. To meet the increased requirements, continuous monitoring of the insulation parameters (active resistance and capacitance to ground) is often used with operating artificial non-industrial frequency operational signals introduced into the network. In the case of a sudden touch, such a system is not effective, since the response time of the protection device, which consists of the signal processing time and the operating of the actuator, is crucially important. For the used operational signals with a frequency of 100 and 200 Hz, the processing time using the Fourier transform is 10 ms for 100 Hz and 5 ms for 200 Hz. Considering that the response time of the fastest actuators (based on vacuum switches) is from 3 to 7 ms, this is a rather significant period of time. To develop an effective resolver system, the capabilities of the Matlab environment were used to determine the most successful design of an analog prototype (Butterworth, Bessel, Chebyshev and Cauer of 6th order) for an operational signal with a frequency of 200 Hz. As a result, the processing time was established, which varies widely from 3.5 to 19 ms. Taking into account the known indicators, namely the frequency and number of operational signals, a signal processing system was developed using the vector-matrix analysis method. As a result of modeling the processing characteristics of functional signals (at a sampling rate of 1 kHz), the system quick-response was 3 ms, with the possibility of its further decrease as its productiveness increases.
Źródło:
Diagnostyka; 2021, 22, 3; 59-65
1641-6414
2449-5220
Pojawia się w:
Diagnostyka
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Quick-response protection system against electric shock in distributed generation systems
Autorzy:
Shkrabets, Fedir
Plaksin, Sergej
Ostapchuk, Oleksandr
Kuznetsov, Valeriy
Tymchenko, Irina
Muntian, Antonina
Powiązania:
https://bibliotekanauki.pl/articles/1840876.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Polskie Towarzystwo Diagnostyki Technicznej PAN
Tematy:
electric networks
protection
reliability
ground fault current
electrical safety
protection against electric shock
signal processing system
analog filtering
sieci elektryczne
ochrona
niezawodność
bezpieczeństwo elektryczne
ochrona przeciwporażeniowa
system przetwarzania sygnału
filtracja analogowa
Opis:
The peculiarities of the operation of distributed generation systems lead to a change in the requirements for the reliability and safety of the power distribution systems in which they are integrated. To meet the increased requirements, continuous monitoring of the insulation parameters (active resistance and capacitance to ground) is often used with operating artificial non-industrial frequency operational signals introduced into the network. In the case of a sudden touch, such a system is not effective, since the response time of the protection device, which consists of the signal processing time and the operating of the actuator, is crucially important. For the used operational signals with a frequency of 100 and 200 Hz, the processing time using the Fourier transform is 10 ms for 100 Hz and 5 ms for 200 Hz. Considering that the response time of the fastest actuators (based on vacuum switches) is from 3 to 7 ms, this is a rather significant period of time. To develop an effective resolver system, the capabilities of the Matlab environment were used to determine the most successful design of an analog prototype (Butterworth, Bessel, Chebyshev and Cauer of 6th order) for an operational signal with a frequency of 200 Hz. As a result, the processing time was established, which varies widely from 3.5 to 19 ms. Taking into account the known indicators, namely the frequency and number of operational signals, a signal processing system was developed using the vector-matrix analysis method. As a result of modeling the processing characteristics of functional signals (at a sampling rate of 1 kHz), the system quick-response was 3 ms, with the possibility of its further decrease as its productiveness increases.
Źródło:
Diagnostyka; 2021, 22, 3; 59-65
1641-6414
2449-5220
Pojawia się w:
Diagnostyka
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Management of power network operation safety in mining
Zarządzanie bezpieczeństwem eksploatacji sieci elektroenergetycznych w górnictwie
Autorzy:
Boron, S.
Powiązania:
https://bibliotekanauki.pl/articles/1206325.pdf
Data publikacji:
2015
Wydawca:
STE GROUP
Tematy:
electrical safety
power networks
bezpieczeństwo elektryczne
sieci elektroenergetyczne
Opis:
W artykule scharakteryzowano zagrożenia powodowane użytkowaniem sieci elektroenergetycznych w wyrobiskach podziemnych zakładach górniczych, ze szczególnym uwzględnieniem zagrożenia porażeniowego i wybuchowego. Przedstawiono środki ochronne zapewniające ograniczenie zagrożeń powodowanych stanami zakłóceniowymi w sieciach. Środki te związane są z odpowiednią konstrukcją aparatury oraz linii kablowych, układem sieci, zasadami doboru zabezpieczeń elektroenergetycznych, a także organizacją pracy przy urządzeniach elektrycznych.
The paper characterizes hazards resulting from the use of power networks in underground workings of mines, with particular emphasis placed on electric shock and explosion hazards. Protection measures that mitigate hazards caused by network failures are presented. These measures are related to the proper design of equipment and cable lines, network arrangement and principles of selecting adequate protection equipment. The vast majority of electrical accidents are caused by the incorrect behaviour of people, mostly intentional (resulting from not respecting the rules). For this reason, particular attention should be paid to the level of skills and awareness of the risks of electrical personnel, especially for junior employees. The article presents selected safety rules when working on electrical equipment.
Źródło:
Management Systems in Production Engineering; 2015, 2 (18); 76-80
2299-0461
Pojawia się w:
Management Systems in Production Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-3 z 3

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