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Transformer and inductor design handbook

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TLDR
In this paper, the authors present a theoretical analysis of transformer-inductor design, including the following: AC Inductor Design Powder Core. DC Inductor design Gap Core. Forward Converter Transformer and Inductor Development.
Abstract
Fundamentals of Magnetics. Magnetic Materials and Their Characteristics. Magnetic Cores, Iron Alloy and Ferrites. Window Utilization and Magnet Wire. Transformer-Inductor Design. Transformer-Inductor Efficiency, Regulation, and Temperature Rise. Power Transformer Design. DC Inductor Design Gap Core. DC Inductor Design Powder Core. AC Inductor Design. Constant Voltage Transformer Design (CVT). Three Phase Transformer Design. Flyback Converter Design. Forward Converter Transformer and Inductor Design. Input Filter Design. Current Transformer Design. Winding Capacitance and Leakage Inductance. Quiet Converter Design. Rotary Transformer Design. Planar Transformers. Derivation for the Design Equations. Index.

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Citations
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Estimation of Design Parameters of Single-Phase Distribution Transformers from Terminal Measurements

Reza Kazemi
TL;DR: In this paper, a novel method is proposed for the estimation of the design parameters of single-phase distribution transformers using data acquired from terminal measurements along with nameplate data and external tank dimensions.
Journal ArticleDOI

A Single DC-Source Seven-Level Inverter for Utility Equipment of Metro Railway, Power-Land Substations

TL;DR: In this paper, a medium-power seven-level inverter that utilizes a single dc source and a three-phase transformer to generate high performance 7-level voltage waveforms without complex cascade H-bridges with isolated dc supplies or neutral-point-clamped circuits with capacitor balancing techniques is presented.
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A comprehensive review on magnetically controllable reactor: Modelling, applications and future prospects

TL;DR: Considering MCR’s development status, this paper provides a detailed theoretical analysis of MCR and its configurations, and voltage and reactive power control mechanisms and other associated economic and technical factors and relevant application selection are explained in detail.
Journal ArticleDOI

Optimal Design of Medium-Frequency Fe-Based Amorphous Transformer Based on Genetic Algorithm

TL;DR: In this paper, an optimal design method of medium-frequency Fe-based amorphous transformer based on multiobjective postdecision genetic algorithm was proposed to solve the traditional transformer's design problem of repetitive calculation.
Journal ArticleDOI

Design and development of a multi-winding high-frequency magnetic link for grid integration of residential renewable energy systems

TL;DR: The reluctance network modeling as a fast analytical method is used to design a three winding magnetic link and a prototype of the magnetic link was developed for application in a residential renewable energy system using amorphous magnetic materials.