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Efficiency optimization of an Axial Flux Permanent Magnet Synchronous Generator for low speed wind power applications

机译:用于低速风力发电应用的轴向磁通永磁同步发电机的效率优化

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This study discusses the optimized design of a low speed Axial Flux Permanent Magnet (AFPM) Synchronous Generator (1 kW, 100 rpm) with TORUS-S structure to be used in direct drive wind turbine applications to obtain DC voltage. Optimization problems usually deal with two main questions: namely, what the best choice for an objective function is and which parameters have the most influence on the selected objective. The present study provides discussion on how the suitable parameters were selected as genes to be used in Genetic Algorithm (GA) method for efficiency optimization. Afterwards, using GA from MATLAB's optimization toolbox, an initial design was optimized. Finally, the results were verified by finite element analysis and simulated using Maxwell 14.0 software. To obtain the desired DC voltage as the output, a diode rectifier was utilized, whereby the simulation results met the expected results.
机译:本研究讨论了具有TORUS-S结构的低速轴向磁通永磁体(AFPM)同步发电机(1 kW,100 rpm)的优化设计,该结构可用于直接驱动风力涡轮机应用中以获得直流电压。优化问题通常涉及两个主要问题:目标函数的最佳选择是什么,以及对所选目标影响最大的参数。本研究提供了有关如何选择合适的参数作为基因以供遗传算法(GA)方法用于效率优化的讨论。之后,使用MATLAB优化工具箱中的GA,对初始设计进行了优化。最后,通过有限元分析验证了结果,并使用Maxwell 14.0软件进行了仿真。为了获得所需的直流电压作为输出,使用了一个二极管整流器,由此仿真结果达到了预期的结果。

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