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Title: | Placement of synchronized measurements for power system observability during cascaded outages |
Authors: | Venkatesh, Thirugnanasambandam Jain, Trapti |
Keywords: | Distributed power generation;Electric power system measurement;Observability;Phase measurement;Phasor measurement units;Redundancy;Units of measurement;blackout;Measurement redundancy;Numerical results;PMU placement;Power system islanding;Power system observabilities;Synchronized measurement;System collapse;Outages |
Issue Date: | 2017 |
Publisher: | Walter de Gruyter GmbH |
Citation: | Thirugnanasambandam, V., & Jain, T. (2017). Placement of synchronized measurements for power system observability during cascaded outages. International Journal of Emerging Electric Power Systems, 18(6) doi:10.1515/ijeeps-2017-0040 |
Abstract: | Cascaded outages often result in power system islanding followed by a blackout and therefore considered as a severe disturbance. Maintaining the observability of each island may help in taking proper control actions to preserve the stability of individual islands thus, averting system collapse. With this intent, a strategy for placement of synchronized measurements, which can be obtained from phasor measurement units (PMU), has been proposed in this paper to keep the system observable during cascaded outages also. Since, all the cascaded failures may not lead to islanding situations, therefore, failures leading to islanding as well as non-islanding situations have been considered. A topology based algorithm has been developed to identify the islanding/non-islanding condition created by a particular cascaded event. Additional contingencies such as single line loss and single PMU failure have also been considered after the occurrence of cascaded events. The proposed method is further extended to incorporate the measurement redundancy, which is desirable for a reliable state estimation. The proposed scheme is tested on IEEE 14-bus, IEEE 30-bus and a practical Indian 246-bus networks. The numerical results ensure the observability of the power system under system intact as well as during cascaded islanding and non-islanding disturbances. © 2017 Walter de Gruyter GmbH, Berlin/Boston. |
URI: | https://doi.org/10.1515/ijeeps-2017-0040 https://dspace.iiti.ac.in/handle/123456789/5896 |
ISSN: | 2194-5756 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Electrical Engineering |
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