Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Douglas C. Folts"'
Autor:
Nicolas Lallouet, J. O. Willis, W. Romanosky, D. Madura, Jie Yuan, Alexis P. Malozemoff, Stephen P Ashworth, B. Gamble, H.-W. Neumueller, J. Maguire, Hans-Peter Kraemer, Alexander Otto, Douglas C. Folts, Wolfgang Schmidt, S. Ahmed
Publikováno v:
IEEE Transactions on Applied Superconductivity. 19:1950-1955
All over the world there is a growing need for current limiting devices in electrical networks with steadily increasing power demands and fault currents. Production of YBCO coated conductors (CCs) paves the way for the economic viability of supercond
Publikováno v:
IEEE Transactions on Applied Superconductivity. 19:1740-1743
The US Department of Homeland Security is currently funding the design, development and demonstration of an inherently fault current limiting HTS cable, called Secure Super Grids, under the Hydra project with Con Edison. The cable is 300 m long and i
Autor:
Alexis P. Malozemoff, Douglas C. Folts, H.-W. Neumueller, Alexander Otto, Wolfgang Schmidt, Hans-Peter Kraemer, S. Kalsi
Publikováno v:
2007 IEEE Power Engineering Society General Meeting.
Resistive type superconducting fault current limiters (FCL) utilize a current-driven transition from the superconducting state to the normal state to limit short circuit currents in electric power grids. The FCL needs no active triggering at inceptio
Autor:
D.S. Dorr, Douglas C. Folts
Publikováno v:
Proceedings of 1994 IEEE Applied Power Electronics Conference and Exposition - ASPEC'94.
The time it takes for a backup power system (BPS) to transfer to battery power (i.e. "transfer time") is difficult to measure. No industry standard exists describing a reasonable test for this measurement. A technique for inducing power interruptions
Autor:
Hans-Peter Kraemer, Martin W. Rupich, M. Wohlfart, Cornelis Leo Hans Thieme, Xiaoping Li, Jie Yuan, H.-W. Neumueller, Steven Fleshler, Alexis P. Malozemoff, W Schmidt, Alexander Otto, Douglas C. Folts, J. Maguire, Wei Zhang
Publikováno v:
Superconductor Science and Technology. 21:034005
Second generation (2G) high temperature superconductor (HTS) wires are based on a coated conductor technology. They follow on from a first generation (1G) HTS wire consisting of a composite multifilamentary wire architecture. During the last couple o
Conference
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