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Journal ArticleDOI

Development of a New Permanent-Magnet BLDC Generator Using 12-Phase Half-Wave Rectifier

TLDR
This paper proposes and implements a new permanent-magnet brushless dc (BLDC) generator using 12-phase half-wave rectifier, and it is shown that the current stress of diodes in 12- Phase rectification system is less than half of that in double-star rectifier system, and the output voltage fluctuation between the two different rectification systems is similar.
Abstract
Six-phase double-star armature windings of a synchronous generator are essentially equivalent to 12-phase symmetrical windings displaced in turn by 30deg. This paper proposes and implements a new permanent-magnet brushless dc (BLDC) generator using 12-phase half-wave rectifier. Characteristic of output voltage is analyzed according to the star graph of slot potential, and the design constraints of armature windings are provided. Simulation models of 12-phase synchronous generator with half-wave rectifier and double-star synchronous generator with bridge rectifier are established separately. Field-circuit-coupled analysis is accomplished, and conducted modes of rectified diodes and output characteristic are obtained. It is shown that the current stress of diodes in 12-phase rectification system is less than half of that in double-star rectification system, and the output voltage fluctuation between the two different rectification systems is similar. Experimental results on prototype machine, which agree well with the simulation analysis, also verify the feature of the proposed BLDC generator system.

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Citations
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Journal ArticleDOI

Recent Advances in the Design, Modeling, and Control of Multiphase Machines—Part II

TL;DR: The main objective of the two-part survey named ‘Recent Advances in the Design, Modeling, and Control of Multiphase Machines’ is to present relevant contributions to encourage and guide new advances and developments in the field.
Journal ArticleDOI

Axial Flux PM Machines With Concentrated Armature Windings: Design Analysis and Test Validation of Wind Energy Generators

TL;DR: After a general analysis of the model and design features of this kind of machine, the attention is focused on wind power generation: the main sizing equations are defined, and the most relevant figures of merit are examined by means of a suitable parametric analysis.
Journal ArticleDOI

Operation of a Six-Phase Induction Machine Using Series-Connected Machine-Side Converters

TL;DR: The operation of a multiphase system, which is aimed at both variable-speed drive and generating applications, using back-to-back converter structure with dual three-phase machine-side converters, is discussed, proving that it is possible to achieve satisfactory dc-link voltage control under various operating scenarios.
Journal ArticleDOI

Analysis and Test of Diode Rectifier Solutions in Grid-Connected Wind Energy Conversion Systems Employing Modular Permanent-Magnet Synchronous Generators

TL;DR: This paper deals with the ac-dc interface conversion in grid-connected wind energy conversion systems based on modular permanent-magnet synchronous generators by considering several connections, which are allowed by the inherent modularity of the considered generators.
Journal ArticleDOI

Influence of the Amount of Permanent-Magnet Material in Fractional-Slot Permanent-Magnet Synchronous Machines

TL;DR: It is observed that the amount of PM material can vary in a wide range with a minor influence on the efficiency, torque density, and torque ripple and with a limited demagnetization risk.
References
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Journal ArticleDOI

Fault Tolerant and Minimum Loss Control of Double-Star Synchronous Machines Under Open Phase Conditions

TL;DR: Simulation and experimental results confirm the efficiency of the proposed method for filtering the torque pulsations for double-star permanent magnet synchronous machines under fault conditions.
Journal ArticleDOI

Interior Permanent Magnet Motors With Reduced Torque Pulsation

TL;DR: Three-phase interior permanent magnet brushless DC motors are analyzed and the effect of magnetization direction, number of stator slots, winding distribution, skew angle, current waveform, and advance angle on torque pulsation is examined.
Journal ArticleDOI

Principle of Operation and Feature Investigation of a New Topology of Hybrid Excitation Synchronous Machine

TL;DR: In this paper, a new topology of a hybrid excitation synchronous machine (HESM) was presented and operational principles and features of the new configuration were described using the radial/axial distribution of the magnetic field.
Journal ArticleDOI

A Transient Cosimulation Approach to Performance Analysis of Hybrid Excited Doubly Salient Machine Considering Indirect Field-Circuit Coupling

TL;DR: To predict the electromagnetic performances of the machine more accurately, a new transient cosimulation approach considering indirect field-circuit coupling is proposed, which is not only more efficient and flexible, but also more accurate and stable, which can be used in analyzing other electric machine and drive systems.
Journal ArticleDOI

Analysis of Fault-Tolerant Performance of a Doubly Salient Permanent-Magnet Motor Drive Using Transient Cosimulation Method

TL;DR: It is examined that the DSPM motor is a new class of fault-tolerant machines, a potential candidate for many applications where reliability and power density are of importance and a fault compensation strategy is proposed.
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