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Low-Power VLSI Architectures for DCT/DWT: Precision vs Approximation for HD Video, Biomedical, and Smart Antenna Applications

机译:适用于DCT / DWT的低功耗VLSI架构:高清视频,生物医学和智能天线应用的精度与近似值

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The DCT and the DWT are used in a number of emerging DSP applications, such as, HD video compression, biomedical imaging, and smart antenna beamformers for wireless communications and radar. Of late, there has been much interest on fast algorithms for the computation of the above transforms using multiplier-free approximations because they result in low power and low complexity systems. Approximate methods rely on the trade-off of accuracy for lower power and/or circuit complexity/chip-area. This paper provides a detailed review of VLSI architectures and CAS implementations for both DCT/DWTs, which can be designed either for higher-accuracy or for low-power consumption. This article covers both recent theoretical advancements on discrete transforms in addition to an overview of existing VLSI architectures. The paper also discusses error free VLSI architectures that provides high accuracy systems and approximate architectures that offer high computational gain making them highly attractive for real-world applications that are subject to constraints in both chip-area as well as power. The methods discussed in the paper can be used in the design of emerging low-power digital systems having lowest complexity at the cost of a loss in accuracy?the optimal trade-off of computational accuracy for lowest possible complexity and power. A complete synopsis of available techniques, algorithms and FPGA/VLSI realizations are discussed in the paper.
机译:DCT和DWT用于许多新兴的DSP应用中,例如高清视频压缩,生物医学成像以及用于无线通信和雷达的智能天线波束形成器。最近,对于使用无乘数逼近来计算上述变换的快速算法引起了极大的兴趣,因为它们导致低功耗和低复杂度的系统。近似方法依赖于精度的折衷,以降低功耗和/或电路复杂度/芯片面积。本文对DCT / DWT的VLSI架构和CAS实现进行了详细的回顾,它们既可以设计用于更高精度,也可以用于低功耗。除了概述现有的VLSI体系结构之外,本文还介绍了有关离散变换的最新理论进展。本文还讨论了无错误的VLSI架构,该架构提供了高精度系统,而近似架构则提供了很高的计算增益,这使其在现实应用中受到了芯片面积和功耗的限制,因此具有很高的吸引力。本文讨论的方法可用于设计具有最低复杂性的新兴低功耗数字系统,但会以准确性损失为代价-为尽可能降低复杂性和功耗而对计算精度进行最佳权衡。本文讨论了可用技术,算法和FPGA / VLSI实现的完整提要。

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