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Simplex FastICA: An Accelerated and Low Complex Architecture Design Methodology for $n$ D FastICA

机译:Simplex FastICA:用于 $ n $ D FastICA的加速且低复杂度的体系结构设计方法

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This paper proposes an n-dimensional Simplex FastICA (FICA), an accelerated and low complex architectural design methodology for FICA to attain high computation speed targeted for resource-constrained applications. This is achieved by exploiting the algorithmic redundancies of FICA that make the proposed Simplex FICA faster than the conventional FICA without adding any extra architectural complexities. The proposed methodology has been verified and validated by applying it for separating 6D EEG signals. Subsequently, the corresponding hardware has been designed using Verilog HDL. It is synthesized using UMC 90-nm technology resulting in 0.5703-mW power and 0.495 mm(2) area at 1.08 V. The computation time saving for 4D-12D FICA was computed by varying the number of iterations of convergence for the nth stage from 2 to 4 for 4096 samples. The average percentage of computation time saved for nth stage achieved with the proposed methodology in comparison to the state of the art varies from 99.783% to 99.891%. The overall average percentage of computation time saving for the proposed design with the aforementioned specifications varies from 9.14% to 16.6%.
机译:本文提出了一种n维的Simplex FastICA(FICA),这是一种针对FICA的加速且低复杂度的体系结构设计方法,旨在针对资源受限的应用实现较高的计算速度。这是通过利用FICA的算法冗余实现的,该算法使拟议的Simplex FICA比常规FICA更快,而没有增加任何额外的体系结构复杂性。通过将其用于分离6D EEG信号,已验证并验证了所提出的方法。随后,已使用Verilog HDL设计了相应的硬件。它使用UMC 90-nm技术合成,在1.08 V下产生0.5703-mW功率和0.495 mm(2)面积。通过改变第n个阶段的收敛迭代次数,可以计算4D-12D FICA节省的计算时间。 4096个样本为2至4。与现有技术相比,通过所提出的方法实现的第n阶段节省的平均计算时间百分比为99.783%至99.891%。具有上述规范的拟议设计节省的总计算时间平均百分比在9.14%至16.6%之间。

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