Title :
Design Optimization of Directly Grid-Connected PM Machines for Wind Energy Applications
Author :
Potgieter, Johannes H. J. ; Kamper, Maarten J.
Author_Institution :
Dept. of Eng. Sci., Univ. of Oxford, Oxford, UK
Abstract :
The focus of the study in this paper is on the design of unconventional directly grid-connected PM wind generators without power electronic converters. As a case study, this analysis is based on a novel direct-drive wind generator system known as a slip-synchronous permanent-magnet (PM) wind generator. Attention is given to the definition of the design requirements of the directly grid-connected synchronous-generator unit from the relevant grid code specifications and to find the optimum design subject to these requirements. Due to the direct-grid connection, there are clear differences in the design requirements of this machine and those of conventional PM wind generators connected to the grid via a converter. Four different generator topologies are evaluated with regard to the ease of manufacturing, active mass, PM content, and suitability for direct-grid connection. Both simulated and measured results are given for an experimental direct-grid slip-synchronous PM generator.
Keywords :
permanent magnet machines; power convertors; power electronics; synchronous machines; wind power; wind power plants; direct-drive wind generator system; direct-grid slip-synchronous PM generator; grid-connected PM machines; power electronic converters; slip-synchronous permanent-magnet wind generator; wind energy; wind generators; Generators; Permanent magnets; Topology; Torque; Wind power generation; Wind turbines; Windings; Permanent magnet machines; Permanent-magnet (PM) machines; Power grids; Wind energy generation; Wind energy integration; power grids; wind energy generation; wind energy integration;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2015.2394506