Interconnecting Power-Electronic Buck Converter Modules in a Novel High-Power Test Bench for MVDC Circuit Breakers
Energies, vol. 15, pp. 7915
Abstract
Advances in medium voltage direct current (MVDC) technologies and the penetration of extended MVDC systems are still significantly hindered by the lack of adequate direct current (DC) switching equipment. The fundamentally different fault current behavior in case of a DC fault, compared to faults in alternating current (AC) systems, with regard to the characteristics and development of fault currents and their interruption make dedicated test procedures necessary. One testing approach is the application of a power-electronic buck converter (PEBC) to simulate relevant stresses on DC switching equipment during a DC fault current interruption. Since the associated requirements, especially regarding current ratings of several kiloamperes, cannot be fulfilled by using a singular PEBC, a modularization becomes necessary. However, particularly in high-power applications, the interconnection of several PEBC modules poses significant challenges. In this article, a demonstrator PEBC-based high-power test circuit for the provision of relevant testing parameters is presented. The underlying challenges and respective solutions with regard to the interconnection of, in total, 120 individual PEBC modules are discussed. It can be shown that the harmonization of connection busbar inductances is the main contributor towards a stable and safe test circuit operation.
Authors 3
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Affiliation as printed
Institute of High Voltage Equipment and Grids, Digitalization and Energy Economics (IAEW), RWTH Aachen University, 52062 Aachen, Germany
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Affiliation as printed
Institute of High Voltage Equipment and Grids, Digitalization and Energy Economics (IAEW), RWTH Aachen University, 52062 Aachen, Germany
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Affiliation as printed
Institute of High Voltage Equipment and Grids, Digitalization and Energy Economics (IAEW), RWTH Aachen University, 52062 Aachen, Germany
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References 27
-
W4256122538details pending0citations
-
W4200111134details pending0citations
-
W4214771249details pending0citations
-
W2148079515details pending0citations
-
W1841644489details pending0citations
-
W352497363details pending0citations
-
W1482977119details pending0citations
-
W1992353874details pending0citations
-
W2045803626details pending0citations
-
W2069193227details pending0citations
-
W2137378603details pending0citations
-
W2159457062details pending0citations
-
W2498590753details pending0citations
-
W2538232383details pending0citations
-
W2571292791details pending0citations
-
W2783124586details pending0citations
-
W2884589686details pending0citations
-
W2920674798details pending0citations