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Title: Technologies for providing secure emergency power control of high voltage direct current transmission system

Abstract

Technologies for providing secure emergency power control of a high voltage direct current transmission (HVDC) system include a controller. The controller includes circuitry configured to receive status data indicative of a present physical status of a power system. The circuitry is also configured to obtain an emergency power control command triggered by a remote source. The emergency power control command is to be executed by an HVDC transmission system of the power system. Further, the circuitry is configured to determine, as a function of the status data, whether the emergency power control command is consistent with the present physical status of the power system and block, in response to a determination that the emergency power control command is not consistent with the present physical status of the power system, execution of the emergency power control command by the HVDC transmission system.

Inventors:
; ;
Issue Date:
Research Org.:
ABB Schweiz AG, Baden (Switzerland)
Sponsoring Org.:
USDOE
OSTI Identifier:
1986723
Patent Number(s):
11477213
Application Number:
16/148,043
Assignee:
ABB Schweiz AG (Baden, CH)
DOE Contract Number:  
OE0000824
Resource Type:
Patent
Resource Relation:
Patent File Date: 10/01/2018
Country of Publication:
United States
Language:
English

Citation Formats

Pan, Jiuping, Nuqui, Reynaldo, and Kondabathini, Anil. Technologies for providing secure emergency power control of high voltage direct current transmission system. United States: N. p., 2022. Web.
Pan, Jiuping, Nuqui, Reynaldo, & Kondabathini, Anil. Technologies for providing secure emergency power control of high voltage direct current transmission system. United States.
Pan, Jiuping, Nuqui, Reynaldo, and Kondabathini, Anil. Tue . "Technologies for providing secure emergency power control of high voltage direct current transmission system". United States. https://www.osti.gov/servlets/purl/1986723.
@article{osti_1986723,
title = {Technologies for providing secure emergency power control of high voltage direct current transmission system},
author = {Pan, Jiuping and Nuqui, Reynaldo and Kondabathini, Anil},
abstractNote = {Technologies for providing secure emergency power control of a high voltage direct current transmission (HVDC) system include a controller. The controller includes circuitry configured to receive status data indicative of a present physical status of a power system. The circuitry is also configured to obtain an emergency power control command triggered by a remote source. The emergency power control command is to be executed by an HVDC transmission system of the power system. Further, the circuitry is configured to determine, as a function of the status data, whether the emergency power control command is consistent with the present physical status of the power system and block, in response to a determination that the emergency power control command is not consistent with the present physical status of the power system, execution of the emergency power control command by the HVDC transmission system.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2022},
month = {10}
}

Works referenced in this record:

Dynamic model reduction using integrated PSS/E and Matlab
conference, April 2012


HVDC stability control using wide area measurements for optimising transmission boundary transfer
conference, January 2015


Measurement-based dynamic equivalent modeling for small and medium hydropower generator group
conference, October 2016


An engineering applicable dynamic equivalent method for large-scale AC system connected to VSC-HVDC
conference, October 2016


Securing Against Malicious Control of Circuit Breakers in Electrical Substations
patent-application, June 2017


Stability and control of HVDC and AC transmissions in parallel
journal, January 1999


Bobbinless Sewing Machine and Stitch
patent-application, January 2017


Development of a dynamic equivalent model for Ontario's external system
conference, July 2009