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Sizing Optimization Methodology of a Surface Permanent Magnet Machine-Converter System Over a Torque-Speed Operating Profile: Application to a Wave Energy Converter

机译:转矩-速度运行曲线上的表面永磁电机系统的尺寸优化方法:在波能转换器中的应用

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This paper sets forth a sizing optimization methodology of a surface permanent magnet machine-converter system over a torque-speed operating profile. The two optimization objectives are to minimize the cost of the machine-converter system and to minimize (or maximize) electrical energy consumption (or generation). The optimization parameters serve to describe both the machine geometry and the electrical ratings of the electronic power converter. Each operating point of the profile is treated independently, and current control is optimized at every operating point to not only minimize machine drive losses but also satisfy several constraints and then implicitly considering flux-weakening possibility. This optimization methodology is generic and is applied to a particular case: a direct-drive conversion chain for a wave energy converter (WEC). We show that taking into account both the sizing parameters of the converter and the flux-weakening control, in addition to the classical sizing parameters of the machine, has a strong impact on the machine-converter system optimal results. Moreover, the strong coupling with the WEC through damping parameters plays also a crucial role on the sizing results.
机译:本文提出了在转矩-速度运行曲线上的表面永磁电机-变频器系统的尺寸优化方法。两个优化目标是使机器变频器系统的成本最小化,并使电能消耗(或发电量)最小化(或最大化)。优化参数用于描述电子功率转换器的机器几何形状和电气额定值。曲线的每个工作点都得到独立处理,并且在每个工作点上均对电流控制进行了优化,不仅可以最大程度地减少机器驱动损耗,还可以满足几个约束条件,然后隐式考虑磁通减弱的可能性。这种优化方法是通用的,适用于特定情况:波能转换器(WEC)的直接驱动转换链。我们表明,除了转换器的经典尺寸参数外,同时考虑转换器的尺寸参数和弱磁通控制对机器-转换器系统的最佳结果有很大的影响。此外,通过阻尼参数与WEC的强耦合在定型结果中也起着至关重要的作用。

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