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Proceedings ArticleDOI

Synthesis and Integration of Future Electronic Power Distribution Systems

TLDR
In this article, the authors consider possible future ac and dc electronic power system architectures, which fully decouple the dynamics between sources, distribution system, and loads by using separate source-, load-, and distribution-converters.
Abstract
Future advanced electric power systems will have practically all loads interfaced to energy sources through power electronics equipment. Furthermore, all alternative, sustainable, and distributed energy sources, as well as energy storage systems, can be only connected to electric grid through power electronics converters. This will require new concepts for electronic control of all power flows in order to improve energy availability, power density, and overall energy and power efficiency in all electrical systems, from portable devices to cars, airplanes, ships, homes, data centers, and the power grid. Starting from the example of a computer power system, the paper contemplates possible future ac and dc electronic power system architectures, which fully decouple the dynamics between sources, distribution system, and loads by using separate source-, load-, and distribution-converters. Several ideas and possible methodologies for modeling, analysis, and system-level design of such systems, including power flow control, protection, stability, and subsystem interactions, are presented.

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Citations
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Journal ArticleDOI

Intergrid: A Future Electronic Energy Network?

TL;DR: In this paper, a hierarchical dynamic decoupling of generation, distribution, and consumption by using bidirectional electronic power converters as energy control centers is discussed. But, the authors do not consider the potential for the use of new power electronics technologies in electrical energy generation and consumption.
Journal ArticleDOI

A review of nanogrid topologies and technologies

TL;DR: In this paper, the authors discuss the control topologies and techniques which enable the intelligent control of the nanogrid, before presenting the hardware platform used to ensure the efficient operation of a small scale distributed generation system.
Proceedings ArticleDOI

A survey of distributed power system — AC versus DC distributed power system

TL;DR: In this article, the authors discuss the current developing stage of dc distributed power system by the following contents: the basic structure and characteristics; the benefits of the dc distribution system; the development of current techniques adopted in DPS and its analysis of protection and system interaction.
Journal ArticleDOI

Impedance Identification Procedure of Three-Phase Balanced Voltage Source Inverters Based on Transient Response Measurements

TL;DR: In this paper, a new impedance identification procedure for three-phase balanced voltage source inverters is proposed, which is based on the transient response of the inverter to simple passive load step tests.
Journal ArticleDOI

Black-Box Modeling of Three-Phase Voltage Source Inverters for System-Level Analysis

TL;DR: A large-signal black-box modeling technique of three-phase voltage source inverters, which is oriented to perform system-level analysis and is fully parameterized from the transient response of the converter, thus keeping the confidentiality of the manufacturer.
References
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Journal ArticleDOI

Power electronics as efficient interface in dispersed power generation systems

TL;DR: In this article, power electronics, the technology of efficiently processing electric power, play an essential part in the integration of the dispersed generation units for good efficiency and high performance of the power systems.
Journal Article

Power Electronics as Efficient Interface in Dispersed Power Generation Systems

TL;DR: In this article, power electronics, the technology of efficiently processing electric power, play an essential part in the integration of the dispersed generation units for good efficiency and high performance of the power systems.
Journal ArticleDOI

Active Harmonic Filters

TL;DR: This paper deals with general pure active filters for power conditioning, and specific hybridactive filters for harmonic filtering of three-phase diode rectifiers.
Journal ArticleDOI

Harmonic sources and filtering approaches

TL;DR: In this article, 22 configurations of power filters for the harmonic compensation of nonlinear loads are presented, some of which are novel and result from the newly discovered characteristics of non linear loads and circuitry duality, while the others are well known and used in practice.