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Journal ArticleDOI

Analysis and design of electronic transformers for electric power distribution system

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TLDR
In this paper, the concept of electronic transformers is further extended and explored for its suitability in power distribution systems, and it is shown that a transformer with a conventional grain-oriented silicon-steel core can process three times the power at 1 kHz operating frequency as compared to 60 Hz.
Abstract
A transformer performs many functions such as voltage transformation, isolation and noise decoupling, and it is an indispensable component in electric power distribution systems. However, at low frequencies (60/50 Hz), it is a bulky and expensive component. In this paper, the concept of electronic transformers is further extended and explored for its suitability in power distribution systems. It should be noted that from the input/output behavior, the electronic transformer and the conventional transformer are identical. Possible topologies employing static converters connected on the primary and secondary sides are explored to realize high-frequency operation of the magnetic core. To assist the commutation process, a four-step switching has been developed which does not require the use of snubbers. Reduced size, losses, higher efficiency, and better voltage regulation are some of the advantages of this approach. A 10 kVA design example along with experiment results are discussed. It is shown that a transformer designed with a conventional grain-oriented silicon-steel core can process three times the power at 1 kHz operating frequency as compared to 60 Hz. The proposed method is scalable in voltage/current with the currently available insulated gate bipolar transistor (IGBT) devices connected in series without special snubbers.

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Citations
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Journal ArticleDOI

Review of Solid-State Transformer Technologies and Their Application in Power Distribution Systems

TL;DR: In this article, the authors present a systematical technology review essential for the development and application of SST in the distribution system, including high-voltage power devices, high-power and high-frequency transformers, ac/ac converter topologies, and future research directions.
Journal ArticleDOI

Research on voltage and power balance control for cascaded modular solid-state transformer

TL;DR: In this article, a single-phase d-q vector-based common duty-ratio control method for the multilevel rectifier, and a voltage feedforward and feedback based controller for the modular DAB converter are presented.
Journal ArticleDOI

A Power Electronic-Based Distribution Transformer

TL;DR: In this paper, a new kind of distribution transformer is proposed for the twenty-first century, one that can be made self-regulating, oil-free, and able to correct power quality problems.
Journal ArticleDOI

High-Frequency Transformer Isolated Bidirectional DC–DC Converter Modules With High Efficiency Over Wide Load Range for 20 kVA Solid-State Transformer

TL;DR: In this paper, a high-frequency transformer isolated bidirectional dc-dc converter modules connected in input-series-output-parallel (ISOP) for 20kVA-solid-state transformer is presented.
Journal ArticleDOI

Applicability of Solid-State Transformers in Today’s and Future Distribution Grids

TL;DR: It is found that SSTs are less efficient than low-frequency transformers (LFTs), yet their prospective prices are significantly higher, and four essential challenges in detail are discussed, distilled into an applicability flowchart for SST technology.
References
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Patent

Power converter circuits having a high frequency link

TL;DR: In this article, a phase shift circuit coupled to the control circuit is proposed to render conductive the primary and secondary current paths at a selected phase angle one with respect to the other, whereby to control the output voltage.
Journal ArticleDOI

Phase-Modulated Resonant Power Conversion Techniques for High-Frequency Link Inverters

TL;DR: In this article, a novel control principle using two high-frequency inverters modulated in phase to produce a dc isolated carrier containing wanted output on its sidebands is discussed, which results in sinusoidal outputs at utility frequencies.
Proceedings ArticleDOI

An approach to realize higher power PWM AC controller

TL;DR: A four step switching strategy for repeated on/off operation of bidirectional switches in an AC controller permits safe transition of inductive load current at all power factors from one bidirectionAL switch to another, even in the presence of source side stray inductance.
Proceedings Article

Intelligent transformer

TL;DR: The size of a power transformer of commercial frequency is miniaturized by introducing a modulator and various functions, such as constant voltage, constant power and power factor correction are realized by a phase control system.
Journal ArticleDOI

Phase-controlled DC-AC converter with high-frequency switching

TL;DR: In this article, an analysis of the phase-controlled DC-AC converter is presented, where a pair of switches in each side of the primary and the secondary of the isolation transformer are controlled by the phase difference between the two switches.
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