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Implementation of fractional slot concentrated winding technique to large salient-pole synchronous generators & development with permanent magnets

机译:分数槽集中绕组技术在大型凸极同步发电机上的实现以及永磁体的开发

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This paper presents an implementation of the fractional slot concentrated winding (FSCW) technique into large salient-pole synchronous generators (SPSGs) and the development of the generators by using additional permanent magnets (PMs). Compared to conventional synchronous generators, the FSCW technique makes it possible to achieve lighter, cheaper and higher-efficiency generators with a simpler structure. To overcome saturation of the rotor pole-body problem well known in the SPSGs, the designed FSCW SPSG has been developed by inserting PMs between the rotor-pole shoes. The insertion of PMs between rotor poles increases the generator power output while reducing magnetic saturation in the rotor pole body. Using these features of the PMs, more compact generators can be designed while keeping the same output parameters. In order to achieve these objectives, the FSCW and PM-FSCW SPSGs are designed by using finite element simulation software (MAXWELL~®). Furthermore, designed machines are compared with conventional SPSGs in order to realize the degree of the improvement. The machines are modeled not only by using MAXWELL~® but also by using a simple nonlinear magnetic circuit to describe the effects of PMs. Simple theoretical expressions and detailed comparisons of performance characteristics of the designed machines are presented.
机译:本文介绍了分数槽集中绕组(FSCW)技术在大型凸极同步发电机(SPSG)中的实现以及通过使用附加永磁体(PM)进行发电机的开发。与传统的同步发电机相比,FSCW技术可以用更简单的结构实现更轻,更便宜和更高效率的发电机。为了克服SPSG中众所周知的转子磁极体问题的饱和,已通过在转子磁极靴之间插入PM来开发设计的FSCW SPSG。在转子磁极之间插入PM可以增加发电机的输出功率,同时降低转子磁极体内的磁饱和。利用PM的这些功能,可以设计出更紧凑的发电机,同时保持相同的输出参数。为了实现这些目标,通过使用有限元模拟软件(MAXWELL〜)设计FSCW和PM-FSCW SPSG。此外,将设计的机器与常规SPSG进行比较,以实现改进程度。这些机器不仅通过使用MAXWELL〜®进行建模,还通过使用简单的非线性磁路来描述PM的影响。给出了简单的理论表达式和所设计机器性能特征的详细比较。

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