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K E Martin - One of the best experts on this subject based on the ideXlab platform.
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Synchrophasor Measurements Under the IEEE Standard C37.118.1-2011 With Amendment C37.118.1a
IEEE Transactions on Power Delivery, 2015Co-Authors: K E MartinAbstract:Synchrophasor Standards have evolved since the first one was introduced in 1995, IEEE 1344-1995. IEEE Standard C37.118-2005 introduced the evaluation of measurement accuracy under steady state conditions and interference rejection. It also defined a messaging system for communication of phasor data. In 2009, the IEEE started a joint project with IEC to harmonize real time communications defined in C37.118 with the IEC 61850 communication Standard. This led to the need to split the C37.118 into two Standards, one for communication and one for measurements. This paper presents an overview of IEEE Standard C37.118.1-2011, which includes the measurement part of the previous Standard. This Standard strengthens the 2005 steady-state requirements and extends them to include measurement performance under dynamic system conditions. Frequency and rate of change of frequency (ROCOF) measurement was defined and requirements for these measurements were also added. Amendment IEEE Std. C37.118.1a-2014 modified some performance requirements. These changes are also included in this paper.
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An overview of the IEEE Standard C37.118.2 - Synchrophasor data transfer for power systems
IEEE Transactions on Smart Grid, 2014Co-Authors: K E Martin, Herbert Falk, P. D. Bui, V. Gharpure, Gabriel Benmouyal, Giorgio Brunello, Galina Antonova, M. G. Adamiak, Miroslav Begovic, A GoldsteinAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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An overview of the IEEE Standard C37.118.2 — Synchrophasor Data Transfer for Power Systems
2014 IEEE PES General Meeting | Conference & Exposition, 2014Co-Authors: K E Martin, Giorgio BrunelloAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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exploring the IEEE Standard c37 118 2005 synchrophasors for power systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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Exploring the IEEE Standard C37.118–2005 Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
A Goldstein - One of the best experts on this subject based on the ideXlab platform.
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An overview of the IEEE Standard C37.118.2 - Synchrophasor data transfer for power systems
IEEE Transactions on Smart Grid, 2014Co-Authors: K E Martin, Herbert Falk, P. D. Bui, V. Gharpure, Gabriel Benmouyal, Giorgio Brunello, Galina Antonova, M. G. Adamiak, Miroslav Begovic, A GoldsteinAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
Giorgio Brunello - One of the best experts on this subject based on the ideXlab platform.
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An overview of the IEEE Standard C37.118.2 - Synchrophasor data transfer for power systems
IEEE Transactions on Smart Grid, 2014Co-Authors: K E Martin, Herbert Falk, P. D. Bui, V. Gharpure, Gabriel Benmouyal, Giorgio Brunello, Galina Antonova, M. G. Adamiak, Miroslav Begovic, A GoldsteinAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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An overview of the IEEE Standard C37.118.2 — Synchrophasor Data Transfer for Power Systems
2014 IEEE PES General Meeting | Conference & Exposition, 2014Co-Authors: K E Martin, Giorgio BrunelloAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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exploring the IEEE Standard c37 118 2005 synchrophasors for power systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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Exploring the IEEE Standard C37.118–2005 Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
Gabriel Benmouyal - One of the best experts on this subject based on the ideXlab platform.
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An overview of the IEEE Standard C37.118.2 - Synchrophasor data transfer for power systems
IEEE Transactions on Smart Grid, 2014Co-Authors: K E Martin, Herbert Falk, P. D. Bui, V. Gharpure, Gabriel Benmouyal, Giorgio Brunello, Galina Antonova, M. G. Adamiak, Miroslav Begovic, A GoldsteinAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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exploring the IEEE Standard c37 118 2005 synchrophasors for power systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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Exploring the IEEE Standard C37.118–2005 Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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IEEE Standard inverse-time characteristic equations for overcurrent relays
IEEE Transactions on Power Delivery, 1999Co-Authors: Gabriel Benmouyal, M. Meisinger, J. Burnworth, W.a. Elmore, K. Freirich, P.a. Kotos, P.r. Leblanc, P.j. Lerley, J.e. Mcconnell, J. MizenerAbstract:This paper introduces the new Standard "IEEE Standard inverse-time characteristic equations for overcurrent relays". It provides an analytic representation of typical electromechanical relays operating characteristic curve shapes in order to facilitate coordination when using microprocessor-type relays.
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IEEE Standard for Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 1998Co-Authors: K E Martin, Gabriel Benmouyal, M. G. Adamiak, Miroslav Begovic, R.o. Burnett, K.r. Carr, A. Cobb, J.a. Kusters, Stanley H. Horowitz, G.r. JensenAbstract:IEEE Standard 1344, Synchrophasors for Power Systems, was completed in 1995. It sets parameters required to ensure that phasor measurement will be made and communicated in a consistent manner. It specifies requirements for the timing signal used for phasor synchronization and the time code needed for input to a measurement unit. GPS is the recommended time source and IRIG-B is the basic format used for time communication. The Standard requires correlating phasors computed from unsynchronized and synchronized sampling to a common basis. Timetagging accurately and consistently is essential for wide area comparison of phase. The Standard specifies information exchange and control message formats. These include data output, configuration, and command messages. It includes 7 annexes that discuss the concepts covered in the body of the Standard.
Miroslav Begovic - One of the best experts on this subject based on the ideXlab platform.
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An overview of the IEEE Standard C37.118.2 - Synchrophasor data transfer for power systems
IEEE Transactions on Smart Grid, 2014Co-Authors: K E Martin, Herbert Falk, P. D. Bui, V. Gharpure, Gabriel Benmouyal, Giorgio Brunello, Galina Antonova, M. G. Adamiak, Miroslav Begovic, A GoldsteinAbstract:Synchrophasor Standards have evolved since the introduction of the first one, IEEE Standard 1344, in 1995. IEEE Standard C37.118-2005 introduced measurement accuracy under steady state conditions as well as interference rejection. In 2009, the IEEE started a joint project with IEC to harmonize real time communications in IEEE Standard C37.118-2005 with the IEC 61850 communication Standard. These efforts led to the need to split the C37.118 into 2 different Standards: IEEE Standard C37.118.1-2011 that now includes performance of synchrophasors under dynamic systems conditions; and IEEE Standard C37.118.2-2011 Synchrophasor Data Transfer for Power Systems, the object of this paper.
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exploring the IEEE Standard c37 118 2005 synchrophasors for power systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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Exploring the IEEE Standard C37.118–2005 Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 2008Co-Authors: K E Martin, Gabriel Benmouyal, Giorgio Brunello, M. G. Adamiak, Miroslav Begovic, D. Hamai, S. Anderson, J. Burger, J.y. Cai, B. DickersonAbstract:IEEE Standard 1344-1995 [1] on measurement of synchronized phasors of power system currents and voltages has been revised and published as IEEE Standard C37.118-2005 [2]. This paper has been prepared by the IEEE Working Group who developed the revised version. The purpose of the paper is to acquaint the power engineering community of the availability and content of this new Standard, highlight some of the key differences between the old and new versions, and introduce several applications of this powerful technology.
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IEEE Standard for Synchrophasors for Power Systems
IEEE Transactions on Power Delivery, 1998Co-Authors: K E Martin, Gabriel Benmouyal, M. G. Adamiak, Miroslav Begovic, R.o. Burnett, K.r. Carr, A. Cobb, J.a. Kusters, Stanley H. Horowitz, G.r. JensenAbstract:IEEE Standard 1344, Synchrophasors for Power Systems, was completed in 1995. It sets parameters required to ensure that phasor measurement will be made and communicated in a consistent manner. It specifies requirements for the timing signal used for phasor synchronization and the time code needed for input to a measurement unit. GPS is the recommended time source and IRIG-B is the basic format used for time communication. The Standard requires correlating phasors computed from unsynchronized and synchronized sampling to a common basis. Timetagging accurately and consistently is essential for wide area comparison of phase. The Standard specifies information exchange and control message formats. These include data output, configuration, and command messages. It includes 7 annexes that discuss the concepts covered in the body of the Standard.