2009 62nd Annual Conference for Protective Relay Engineers 2009
DOI: 10.1109/cpre.2009.4982509
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Design and testing of a system to classify faults for a generation-shedding RAS

Abstract: The PacifiCorp Jim Bridger Power Plant has 2.2 GW of installed capacity and is connected to the main grid by three 345 kV series-compensated lines. These lines are, on average, over 200 miles long. In order to operate at full capacity and maintain stability during a system contingency, Jim Bridger requires a generation-shedding remedial action scheme (RAS). PacifiCorp is modernizing and upgrading this scheme. The design of the RAS requires inputs from the protection systems and a special RAS logic relay on cri… Show more

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Cited by 6 publications
(1 citation statement)
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“…In [5], Idaho Power utilizes a dynamic RAS to protect transmission lines from overloading and also predict power flow scheduling limits on transmission lines. In [6], authors design a generation-shedding RAS, which can shed the generation based on different fault conditions. In [7], authors presents a country-wide RAS, which has six different schemes to protect the system from several types of faults.…”
Section: Introductionmentioning
confidence: 99%
“…In [5], Idaho Power utilizes a dynamic RAS to protect transmission lines from overloading and also predict power flow scheduling limits on transmission lines. In [6], authors design a generation-shedding RAS, which can shed the generation based on different fault conditions. In [7], authors presents a country-wide RAS, which has six different schemes to protect the system from several types of faults.…”
Section: Introductionmentioning
confidence: 99%