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Power Electronic System

2020
A power electronic system, transforms energy given by an electric source, into the desired form to, for example run a process, or store energy. In order to provide a multi-functional power electronic system, flexibility within the whole conversion chain is required, including bidirectional power flow. The multi-functional concept, targets compatibility
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Power electronic systems using versatile power electronic cell: UPEC

2002 IEEE 33rd Annual IEEE Power Electronics Specialists Conference. Proceedings (Cat. No.02CH37289), 2003
Power converters form the main part of any power electronic system. They consist of power semiconductors, energy storage components and microelectronic components. For each application a suitable converter is separately designed increasing the engineering cost.
A.M. Khambadkone   +3 more
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Dynamic power management of electronic systems

Proceedings of the 1998 IEEE/ACM international conference on Computer-aided design - ICCAD '98, 1998
Dynamic power management is a design methodology aiming at controlling performance and power levels of digital circuits and systems, with the goal of extending the autonomous operation time of battery-powered systems, providing graceful performance degradation when supply energy is limited, and adapting power dissipation to satisfy environmental ...
BENINI L   +2 more
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ELECTRONICS IN FUTURE POWER SYSTEMS

IFAC Proceedings Volumes, 1980
Abstract After making a general survey of the applications of electronics in power systems today, the author gives his view on future trends. Compared with conventional heavy electrical equipment, the cost of power electronic systems will continue to decrease, thus opening the way to new applications.
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Power electronics in effective power systems

Conference Record of the Power Conversion Conference - Yokohama 1993, 2002
Power electronics is a key technology toward the information society in the 21st century. It supports all the intelligent and sophisticated controls of electric energy. Power electronics applications to effective power systems are steadily enlarging year by year. The author describes the status and future prospects of those in Japan. >
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Power Electronics Building Blocks (PEBB) in Aerospace Power Electronic Systems

SAE Technical Paper Series, 1999
<div class="htmlview paragraph">One driving factor that is critical to aerospace power electronic systems is the reduction in weight and size. A key focus of power electronic building blocks (PEBB) is the reduction of size and weight and, hence, increased integration of power electronic systems.
Malik E. Elbuluk, M. David Kankam
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Power system operation with power electronic inverter–dominated microgrids

2021
Electric grid modernization urges the development of power systems with increasing penetration of power electronics interfaced resources (e.g., photovoltaics [PVs], wind turbines, batteries, etc.). To effectively manage distributed resources interfaced with power electronic inverters and energize local loads, especially at critical infrastructures ...
Du, Yuhua   +2 more
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Power electronic systems

2003
The computer implementation of power electronic devices in electromagnetic transient programs has taken much of the development effort in recent years, aiming at preserving the elegance and efficiency of the EMTP algorithm. The main feature that characterises power electronic devices is the use of frequent periodic switching of the power components ...
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Virtual inertia emulating in power electronic–based power systems

2021
The concept of virtual inertia is adopted from the moment of inertia of synchronous generator (SG) rotating masses. The conventional power systems profit from the inertial function of numerous existing SGs to solve or improve the frequency challenges, e.g., low damping and high nadir due to the load/generation disturbances.
Khayat, Yousef   +3 more
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Integrated Power Electronic Systems

2018
The expression ‘power electronic system’ is used in different contexts with different meanings. Whereas the term “power electronic system” in the Introductory Chap. 1 refers to a complete converter system, it should be clear to the reader that such converter systems comprise many sub-systems.
Josef Lutz   +3 more
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