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Decentralized multi-agent algorithm for voltage control

Panasetsky D., Tomin N., Sidorov D. et al. Decentralized multi-agent algorithm for voltage control // Asia-Pacific Power and Energy Engineering Conference, APPEEC. Vol.Decem. 2016. P.852-856. ISBN 9781509054183. DOI: 10.1109/APPEEC.2016.7779615. In recent years, due to liberalization, power systems are being operated closer and closer to their limits. At the same time, they have increased in size and complexity. Both factors increase the risk of major power outages and blackouts. Most of the existing...

Теги: automatic voltage control , emergency control , multi-agent systems , power system control , reactive power control , fault tolerance , multi agent systems , power control , reactive power , software agents , voltage control , development and testing , multi-agent al
Integral models for control of smart power networks

Suslov K., Solodusha S., Gerasimov D. Integral models for control of smart power networks // IFAC-PapersOnLine. Vol.49. No.27. 2016. P.439-444. DOI: 10.1016/j.ifacol.2016.10.772 The presence of a great number of technical facilities that form a base of the intelligent network in the modern electric power systems require a principally new approach to the research into the dynamic operating conditions of these systems. Currently consumers impose higher requirements for the quality of electricity and...

Теги: control systems , distributed power generation , electric power systems , electric power transmission networks , power control , power quality , quality control , smart power grids , emergency conditions , inp
Actions generation for online power system control

Glazunova A.M., Aksaeva E.S. Actions generation for online power system control // Proc. of Int. Conf. IEEE Power Tech 29 June - 2 July, 2015, Eindhoven, Netherlands. 29 June-02 July 2015. 1 p. ISBN (print): 9781479976. DOI: 10.1109/PTC.2015.7232366 The research addresses a problem of online generation of control actions for electric power system dispatch control. The problem is solved using an unconventional approach to the state estimation. © 2015 IEEE. входит

Теги: electric power systems , measurements , power control , state estimation , control actions , electric power , on-line generation , power system controls , total transfer capability , unconventional approaches


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