Hyghly efferent and fault tolerance for distributed energy systems (Q84159): Difference between revisions

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(‎Removed claim: summary (P836): The development of distribution of distribution of energy systems (DES), including the growing number of the renewable energy sources demand the change of different energy sources design the distribution of factors eg. loads/sources/energy stands.Used for this purpose contract are fair only.Due to the nature of extremely different types of energy sources, loads and simple differential treatment in DES new solution.The proposed resolution is th...)
(‎Created claim: summary (P836): The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturban...)
Property / summary
 
The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturbances occurring in DES new solution is demanded. The proposed solution is the application of multifunctional power electronics Smart Transformer (ST), that is able to not only meet current requirements of DES integration, but also respond to the future challenges, defined by the constant progress of an electricity consumption in all fields of life. The aim of this project is to develop an Innovate technology of highly efficient and fault tolerant SiC-based ST, including design and control of ST with optimal energy flow management of its units. (English)
Property / summary: The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturbances occurring in DES new solution is demanded. The proposed solution is the application of multifunctional power electronics Smart Transformer (ST), that is able to not only meet current requirements of DES integration, but also respond to the future challenges, defined by the constant progress of an electricity consumption in all fields of life. The aim of this project is to develop an Innovate technology of highly efficient and fault tolerant SiC-based ST, including design and control of ST with optimal energy flow management of its units. (English) / rank
 
Normal rank
Property / summary: The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturbances occurring in DES new solution is demanded. The proposed solution is the application of multifunctional power electronics Smart Transformer (ST), that is able to not only meet current requirements of DES integration, but also respond to the future challenges, defined by the constant progress of an electricity consumption in all fields of life. The aim of this project is to develop an Innovate technology of highly efficient and fault tolerant SiC-based ST, including design and control of ST with optimal energy flow management of its units. (English) / qualifier
 
point in time: 14 October 2020
Timestamp+2020-10-14T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
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After0

Revision as of 14:36, 14 October 2020

Project in Poland financed by DG Regio
Language Label Description Also known as
English
Hyghly efferent and fault tolerance for distributed energy systems
Project in Poland financed by DG Regio

    Statements

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    3,499,833.0 zloty
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    839,959.92 Euro
    13 January 2020
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    3,499,833.0 zloty
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    839,959.92 Euro
    13 January 2020
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    100.0 percent
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    1 December 2016
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    31 May 2020
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    POLITECHNIKA WARSZAWSKA
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    The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturbances occurring in DES new solution is demanded. The proposed solution is the application of multifunctional power electronics Smart Transformer (ST), that is able to not only meet current requirements of DES integration, but also respond to the future challenges, defined by the constant progress of an electricity consumption in all fields of life. The aim of this project is to develop an innovate technology of highly efficient and fault tolerant SiC-based ST, including design and control of ST with optimal energy flow management of its units. (Polish)
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    The rapid development of distributed energy systems (DES), including fast increasing number of the renewable energy sources demand the change of classical grid into new smart grids integrating all distributed elements eg. loads/sources/energy storages. Used for this purpose conventional transformers are capable only to adjust the voltage level. Due to the nature of extremely different types of energy sources, loads and frequent voltage disturbances occurring in DES new solution is demanded. The proposed solution is the application of multifunctional power electronics Smart Transformer (ST), that is able to not only meet current requirements of DES integration, but also respond to the future challenges, defined by the constant progress of an electricity consumption in all fields of life. The aim of this project is to develop an Innovate technology of highly efficient and fault tolerant SiC-based ST, including design and control of ST with optimal energy flow management of its units. (English)
    14 October 2020
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    Identifiers

    POIR.04.04.00-00-1A92/16
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