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Butterfly framework of LPCC ASIC design for friendly HMI in speaker identification

机译:用于说话人识别的友好HMI的LPCC ASIC设计的蝴蝶框架

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This work proposes a friendly and affordable speaker identification system using a low-cost linear prediction cepstral coefficients (LPCC) in a application-specific integrated circuit (ASIC) design. To achieve the advantages for human-machine interface (HMI), this system requires the feature performing in a fast responding time and a low cost design on the embedded platform. Consequently, two modes, that is, the butterfly architecture (BA) mode and the multiply-accumulate-tree (MAT) mode, are proposed to be switchable in the LPCC ASIC design. The MAT mode employs the butterfly architecture to reach the lower access time and the smaller controller area compared to the LPCC baseline. The BA mode provides the capability of resource sharing and parallel processing to lessen the computation burden. In contrast to the baseline, the simulation results indicate that the proposed accelerator is capable of decreasing 37% of area cost, 58% of responding time, and an accuracy rate in 90%. Experiments exhibit the entire performance of the proposed work is greater than the baseline, and thereby demonstrates the effectiveness of the proposed work.
机译:这项工作提出了一种在专用集成电路(ASIC)设计中使用低成本线性预测倒谱系数(LPCC)的友好且价格合理的说话人识别系统。为了实现人机界面(HMI)的优势,该系统要求该功能在嵌入式平台上以快速响应时间和低成本设计来执行。因此,在LPCC ASIC设计中,建议可切换两种模式,即蝶形架构(BA)模式和乘累加树(MAT)模式。 MAT模式采用蝶形架构,与LPCC基线相比,访问时间更短,控制器面积更小。 BA模式提供资源共享和并行处理的能力,以减轻计算负担。与基线相比,仿真结果表明,所提出的加速器能够降低37%的面积成本,58%的响应时间以及90%的准确率。实验表明,拟议工作的整体性能大于基线,从而证明了拟议工作的有效性。

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