Enhancing reliability of power supply systems with distributed generation plants

The article present results of studies aimed at emergency control methods development in power supply systems equipped with distributed generation plants. The main purpose of emergency control is ensuring postemergency mode dead-beat stability and high quality of dynamic transitions for electrical n...

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Main Authors: Yuri Bulatov, Andrey Kryukov
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20185801006
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author Yuri Bulatov
Andrey Kryukov
author_facet Yuri Bulatov
Andrey Kryukov
author_sort Yuri Bulatov
collection DOAJ
description The article present results of studies aimed at emergency control methods development in power supply systems equipped with distributed generation plants. The main purpose of emergency control is ensuring postemergency mode dead-beat stability and high quality of dynamic transitions for electrical network load-shedding. Control actions were formed by changing the vector of controlled parameters along a path corresponding to the shortest distance to the hypersurface of the limit modes. The dynamic processes quality when implementing the control actions was ensured based on the special settings of excitation and frequency automatic regulators. Based on computer-aided modelling, it is shown that the effective in-troduction of a postemergency mode to the stability region can be performed based on generalized equations of the limit loads while using the start algorithm ensuring mode’s entering the stability region’s neighboring boundary. The application of the fuzzy control algorithms for tuning regulators allows formation of a qualitative dynamic transition while load-shedding distributed generation plants in the postemergency mode.
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spelling doaj.art-01ffcc3ea1074741b20e24b8aecce3432022-12-21T22:24:04ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01580100610.1051/e3sconf/20185801006e3sconf_rses2018_01006Enhancing reliability of power supply systems with distributed generation plantsYuri Bulatov0Andrey Kryukov1Bratsk State University, Faculty of Power Engineering and AutomationIrkutsk State Transport University, Irkutsk National Research Technical University, Power Supply and Electrical Equipment DepartmentThe article present results of studies aimed at emergency control methods development in power supply systems equipped with distributed generation plants. The main purpose of emergency control is ensuring postemergency mode dead-beat stability and high quality of dynamic transitions for electrical network load-shedding. Control actions were formed by changing the vector of controlled parameters along a path corresponding to the shortest distance to the hypersurface of the limit modes. The dynamic processes quality when implementing the control actions was ensured based on the special settings of excitation and frequency automatic regulators. Based on computer-aided modelling, it is shown that the effective in-troduction of a postemergency mode to the stability region can be performed based on generalized equations of the limit loads while using the start algorithm ensuring mode’s entering the stability region’s neighboring boundary. The application of the fuzzy control algorithms for tuning regulators allows formation of a qualitative dynamic transition while load-shedding distributed generation plants in the postemergency mode.https://doi.org/10.1051/e3sconf/20185801006
spellingShingle Yuri Bulatov
Andrey Kryukov
Enhancing reliability of power supply systems with distributed generation plants
E3S Web of Conferences
title Enhancing reliability of power supply systems with distributed generation plants
title_full Enhancing reliability of power supply systems with distributed generation plants
title_fullStr Enhancing reliability of power supply systems with distributed generation plants
title_full_unstemmed Enhancing reliability of power supply systems with distributed generation plants
title_short Enhancing reliability of power supply systems with distributed generation plants
title_sort enhancing reliability of power supply systems with distributed generation plants
url https://doi.org/10.1051/e3sconf/20185801006
work_keys_str_mv AT yuribulatov enhancingreliabilityofpowersupplysystemswithdistributedgenerationplants
AT andreykryukov enhancingreliabilityofpowersupplysystemswithdistributedgenerationplants