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Load identification of different Halbach-array topologies on permanent magnet synchronous generators using the coupled field-circuit FE methodology

机译:使用耦合场电路有限元方法对永磁同步发电机上不同的Halbach阵列拓扑进行负载识别

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In this paper, the influence of gap consideration on load identification under various Halbach-array-based topologies (HABOs) is investigated while the system is on-duty. The load characteristics of a radial flux generator with closed-slots and the exterior rotor topology is discussed, where the effect of eddy-currents are observed. This comparative study deals with the consideration of the combined moment of inertia calculation that demonstrates how electromagnetic-based post processing calculations are estimated without the aid of nominal machine parameter values. The analysis was performed using a 2-D finite-element simulation of different HABOs with the gap consideration between the segments. Additionally, a comprehensive comparison with no gap is considered. Also, the dynamic analysis using an uncontrolled conventional rectifier model is used to derive effected key output parameters such as torque, output power, power factor, and line-to-line voltage. The major objective of the study is to determine corresponding load results in order to employ the most suitable and capable magnetization topology from the load perspective in the PM synchronous generator (PMSGs). Accordingly, the maximum power (MP) point was carried out to maximize the output DC power. With respect to the combined moment of inertia estimation, the load parameter estimation is verified experimentally on a surface-mounted PMSG using different magnetization topologies. Furthermore, commercial and environmental issues of the project are considered to reduce CO2 emissions as part of green power generation development. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,研究了间隙考虑对在基于Halbach阵列的各种拓扑(HABO)下工作时负载识别的影响。讨论了具有闭槽和外部转子拓扑的径向磁通发生器的负载特性,在其中观察到涡流的影响。这项比较研究涉及对惯性矩组合计算的考虑,该组合惯性矩计算演示了如何在不借助名义机器参数值的情况下估算基于电磁的后处理计算。使用不同HABO的二维有限元模拟进行了分析,并考虑了段之间的间隙。另外,考虑了没有差距的全面比较。此外,使用不受控制的常规整流器模型进行动态分析可得出受影响的关键输出参数,例如扭矩,输出功率,功率因数和线间电压。该研究的主要目的是确定相应的负载结果,以便从负载角度考虑在PM同步发电机(PMSG)中采用最合适,最有效的磁化拓扑。因此,执行最大功率(MP)点以最大化输出DC功率。对于组合的惯性矩估计,使用不同的磁化拓扑在表面安装的PMSG上通过实验验证了负载参数估计。此外,该项目的商业和环境问题被认为是减少二氧化碳排放的一部分,是绿色发电发展的一部分。 (C)2017 Elsevier B.V.保留所有权利。

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