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A novel approach to multi-objective efficiency optimisation for a distribution transformer based on the Taguchi method

机译:基于Taguchi方法的配电变压器多目标效率优化的新方法

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In this paper a new approach to multi-objective design optimisation of a distribution transformer is proposed. It is based on a combined pattern search optimisation technique and the Taguchi methodology. The objective was to increase the transformer efficiency by reducing the total transformer loss, coupled with the aim to minimise the iron and copper mass, and hence to attain a new, more efficient, lower cost product. The transformer that was selected for this research work was an existing oil immersed three-phase, 50 kVA, 20/0.4 kV unit from the production line of the Rade Koncar factory in Skopje. The Taguchi method and the Design of Experiments (DoE) were employed to achieve the optimisation objective and to minimise the total mass of the active materials. A non-linear mathematical model of the transformer was developed and an objective function, presenting the efficiency, was derived. Pattern search optimisation technique for higher efficiency, lower loss, and lower overall mass was invoked; and the outcome was an optimal transformer design. The results, both analytical and numerical using 3D FEM, have been validated through measurements from a new prototype. They show very good agreement, and prove the new approach was effective and accurate.
机译:本文提出了一种配电变压器多目标设计优化的新方法。它基于组合模式搜索优化技术和Taguchi方法。目的是通过减少变压器的总损耗来提高变压器效率,同时最大程度地减少铁和铜的质量,从而获得一种新的,更有效的,成本更低的产品。选择用于该研究工作的变压器是斯科普里Rade Koncar工厂生产线中现有的油浸式三相50 kVA,20 / 0.4 kV装置。采用Taguchi方法和实验设计(DoE)来达到优化目的并使活性物质的总质量最小化。建立了变压器的非线性数学模型,并推导了表示效率的目标函数。调用了模式搜索优化技术以实现更高的效率,更低的损失和更低的整体质量;结果是最佳的变压器设计。使用3D FEM进行分析和数值计算的结果均已通过新原型的测量得到验证。他们表现出很好的一致性,并证明了新方法是有效和准确的。

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