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Soft-switching solid state transformer (S4T)

2016 IEEE Energy Conversion Congress and Exposition (ECCE), 2016
This paper presents a new topology for a fully bidirectional soft-switching solid state transformer (S4T). The minimal topology, featuring 12 main devices and a high-frequency transformer, does not use an intermediate DC voltage link, and provides sinusoidal input and output voltages. The S4T can be configured to interface with two-or multi-terminal DC,
Hao Chen, Deepak Divan
openaire   +1 more source

Auxiliary power supply for solid state transformers

2016 IEEE International Conference on Electronics, Circuits and Systems (ICECS), 2016
This paper discusses different ways to obtain an auxiliary power supply (APS) to a solid state transformer (SST) that utilizes the modular AC-DC-DC-AC configuration. A local distributed source, that consists of two APS per module, one for medium voltage (MV) side and another one for low voltage (LV) side is proposed.
Leandro B. Kehler   +5 more
openaire   +1 more source

Review on the Development of Solid State Transformer

2021
According to future renewable electric energy distribution and management (FREEDM) system, solid state transformers play an important role in smart grid technologies. They have several advantages over conventional transformers such as bi-directional power flow, light in weight, compact size, etc.
Bharat Bhushan Khare   +3 more
openaire   +1 more source

Middle Frequency Transformer Investigation for Solid-State Transformer

2018 International Conference on Smart Grid (icSmartGrid), 2018
This paper investigates the middle frequency transformer for the solid-state transformer. It is expected to be used in the traffic and power system. One of the key technologies is the solid-state transformer. The 3kHz, 5kVA transformers with some different core materials are manufactured.
Noriyuki Kimura, Toshimitsu Morizane
openaire   +1 more source

A solid-state relay for transformer switching

International Journal of Electronics, 1986
A static relay, which can distinguish the magnetizing inrush current from the short-circuit current of a transformer is suggested. This eliminates the use of the desensitizing arrangement or the costly harmonic-current-restraint relay but preserves the inherent features of an over-current relay and the advantages of a static relay.
M. S. JAMIL-ASGHAR   +2 more
openaire   +1 more source

Solid-State Transformations

2016
Abstract Eutectoid and peritectoid transformations are classified as solid-state invariant transformations. This article focuses primarily on the structures from eutectoid transformations with emphasis on the classic iron-carbon system of steel. It reviews peritectoid phase equilibria that are very common in several binary systems.
openaire   +1 more source

Crystal to crystal transformation in the solid state

CrystEngComm, 2004
Either co-milling or simple mixing of benzoquinone (BQ) and diol crystals of varied melting point temperature produces adduct crystals through very slow and gradual molecular diffusion processes in the solid state. Their formation process was compared and discussed based on the crystal structures of the starting diols and the diol–BQ adducts.
Reiko Kuroda   +3 more
openaire   +1 more source

Solid-State Transformations

2012
Abstract This chapter discusses the characteristics of eutectoid transformations, a type of solid-state transformation associated with invariant reactions, focusing on the iron-carbon system of steel. It describes the compositions, characteristics, and properties of ferrite, eutectoid, hypoeutectoid, and hypereutectoid structures and how
openaire   +1 more source

Solid-state transformer topology selection

2009 IEEE International Conference on Industrial Technology, 2009
This paper considers the design criteria of the solid-state transformer circuit, with special focus on the high voltage side. Three plausible multilevel converter configurations are identified and compared in terms of cost and voltage balance requirements.
Wim van der Merwe, Toit Mouton
openaire   +1 more source

Solid State Phase Transformations

2004
The crystal structure of a metal is not necessarily stable at all temperatures below the melting temperature. This is due to the fact that the solid always assumes the crystal structure with the lowest Gibbs free energy, even if there are other crystal structures with a slightly higher free energy.
openaire   +1 more source

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