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HFSS simulation, experimental investigation and optimisation of heat sink EMI

机译:HFSS仿真,散热器EMI的实验研究和优化

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This study presents the approach for the minimisation of electromagnetic radiation from the heat sink by optimising the heat sink geometry parameters using Taguchi's design of experiments (DOE) technique. The heat sink is modelled using Ansoft HFSS software version 12 and the value of the emitted radiation is obtained by simulation. Experimental investigation was performed in a semi-anechoic chamber for a selected heat sink to observe the radiated emissions from it at a distance of 3 m. The simulation model was thus validated with the experimental results and hence, the simulation was continued for the combinations generated by the L27 (six factors, three levels) orthogonal array generated using Taguchi's DOE using the Minitab software. The factors considered for optimisation are the length and width of the heat sink, fin height, base height, number of fins and fin thickness. The analysis of variance test was carried out for finding out the contribution and impact of each heat sink design factor towards the radiations emitted by the heat sink. Additionally, a decision support for selecting the heat sink parameters for predicting the emitted radiations has been presented using the linear regression analysis and the results are compared with HFSS simulation results.
机译:这项研究提出了一种通过使用Taguchi的实验设计(DOE)技术优化散热器几何参数来最小化散热器电磁辐射的方法。使用Ansoft HFSS软件版本12对散热器进行建模,并通过仿真获得辐射值。在半消声室中对选定的散热器进行了实验研究,以观察3 m处的辐射所产生的辐射。因此,通过实验结果验证了仿真模型,因此,对于使用Taguchi DOE和Minitab软件生成的L27(六个因子,三个级别)正交阵列所生成的组合,可以继续进行仿真。优化考虑的因素是散热器的长度和宽度,散热片高度,底座高度,散热片数量和散热片厚度。进行方差分析测试,以找出每个散热器设计因素对散热器发出的辐射的贡献和影响。另外,已经使用线性回归分析提供了用于选择散热器参数以预测所发射辐射的决策支持,并将结果与​​HFSS仿真结果进行了比较。

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