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Six-phase synchronous machines have been used in special-purpose applications such naval and aircraft power systems, and are now being considered in renewable energy systems due to their advantages such as lower power per phase, less mechanical stress, and higher reliability compared to three-phase machines. This paper is focused on techniques for modeling six-phase synchronous machines in transient...
Wind power generation with permanent magnet synchronous machines (PMs) has been made possible using power electronic converters. With the increasing use of such systems, the numerically efficient modeling and simulation are of critical importance. As an alternative to traditional qd models, the coupled-circuit phase-domain (CCPD) and voltage-behind-reactance (VBR) models have been recently proposed...
Six-phase synchronous machines are utilized in special applications, such as naval and aircraft power systems, due to lower power per-phase, less mechanical stress, and higher reliability compared to three-phase machines. The voltage-behind-reactance (VBR) machine models offer advantages in transient simulation programs such as capability of interfacing with arbitrary networks without snubber circuits...
Modeling renewable energy generation systems with electrical machines has been an active area of research, wherein interfacing the machine models with power electronic converters is a known challenge area. As an alternative to traditional qd models, the coupled-circuit phase-domain (CCPD) and voltage-behind-reactance (VBR) models have been recently proposed. The permanent magnet (PM) generator has...
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