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Search results for: MV CABLE NETWORK

  • Katedra Elektroenergetyki

    * ochrona i bezpieczeństwo pracy systemu elektroenergetycznego, * stabilność sterowanie pracą systemu elektroenergetycznego, * kompleksowe modelowanie systemów elektroenergetycznych oraz szczegółowe modele elementów systemu, * urządzenia FACTS i systemy HVDC w systemach elektroenergetycznych, * odnawialne źródła energii w systemach elektroenergetycznych, * urządzenia i instalacje elektryczne, * optymalizacja struktury i parametrów...

  • Zespół Wysokich Napięć

    1. Urządzenia ograniczające prądy zwarciowe; 2. Symulacja zjawisk zachodzących w nieliniowych obwodach zwarciowych; 3. Dynamika łuku zwarciowego; 4. Mechanizmy degradacji izolacji polimerowej i złożonej; 5. Ochrona przeciwporażeniowa i przeciwprzepięciowa linii elektroenergetycznych wysokiego napięcia; 6. Jakość energii w systemach elektroenergetycznych.

  • Katedra Automatyki Napędu Elektrycznego i Konwersji Energii

    * nieliniowe sterowanie maszynami elektrycznymi * napędy elektryczne o sterowaniu bez czujnikowym * sterowanie przekształtnikami energoelektronicznymi, w tym przekształtnikami na średnie napięcia i przekształtnikami sieciowymi * energoelektroniczne układy przetwarzania energii w odnawialnych źródłach energii * projektowanie i badanie falowników i przetwornic * projektowanie układów sterowania mikroprocesorowego z wykorzystaniem...

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Search results for: MV CABLE NETWORK

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Search results for: MV CABLE NETWORK

  • Modelling of MV and HV Cable Lines

    Overhead and cable lines are fundamental elements of power systems. Participation of cable lines is smaller and their percentage decreases as voltage is increased. HV cable lines are often built with the use of cables which are composed of coaxial metallic sheaths. Such cables are also often used in MV networks. The sheath may operate in different confgurations. In the case of Polish MV network the sheaths are earthed at both ends....

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  • Quality Evaluation of Voice Transmission Using BPL Communication System in MV Mine Cable Network

    Publication

    - Elektronika Ir Elektrotechnika - Year 2019

    This article presents results of a quality evaluation study, considering voice transmission in a 6 kV medium voltage cable network using the BPL (Broadband over Power Line) communication system. The tests are carried out under real mining conditions for the selected power cable without voltage, earthed at both sides. Such a method of monitoring work conditions is of great importance, especially during a disaster. Power cables are...

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  • Attempt to a Video-Transmission Capability in MV Mine Cable Network Using BPL-PLC Technology

    Publication
    • G. Debita
    • P. Falkowski-Gilski
    • M. Habrych
    • B. Miedziński
    • G. Wiśniewski
    • P. Jedlikowski
    • B. Polnik

    - Year 2020

    This article presents and discusses the attempt to transmit video content using the BPL-PLC (Broadband over Power Line - Power Line Communication) technology. It includes simulation results of a specially developed digital transmitter and receiver, dedicated to a given predefined 6 kV mining power cable. The effect of two different transmission modes (2-7 MHz and 3-7.5 MHz) and two types of coupling (capacitive-inductive and induction-inductive),...

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  • Incomplete Cross-Bonding in the MV Line. Experience from the Operation of MV Single Cable Lines

    Publication

    - ENERGIES - Year 2020

    Cable lines are one of the basic components of power systems. Medium and high voltage cables mainly comprise a metallic sheath, which is concentric to the main core conductor. There are several operating schemes of such cable lines, which differ in the place of earthing of sheaths and the possible use of the sheaths and/or conductors crossing. The sheaths cross-bonding is typically done in two places of one cable line section,...

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  • Cross-Bonding of MV Cable Lines for Energy Losses Decrease

    Publication

    - Acta Energetica - Year 2019

    Currently, almost all medium voltage cable lines (MV) operate with the return wires earthed at both ends of the cable. Such a way of operation causes that during normal states of operation as well as during disturbances, e.g. short-circuits, in the return wires induce currents whose values mainly depend on the currents flowing in the phase wires. These currents in normal operating states are a source of additional energy losses...

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