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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Design and Implementation of a Power-aware FFT Core for OFDM-based DSA-enabled Cognitive Radios
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Design and Implementation of a Power-aware FFT Core for OFDM-based DSA-enabled Cognitive Radios

机译:基于OFDM的DSA认知无线电的功率感知FFT核的设计与实现

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This research work presents the design and the physical implementation of a power aware FFT core for OFDM-based, dynamic spectrum access (DSA) enabled cognitive radios. The FFT core is equipped with a pruning engine that allows the run-time removal of dummy operations (e.g. multiplications by a zero term) related to the pruning of sub-carriers of the communication systems. The pruning algorithm introduced by this research work utilizes a reduced size configuration matrix, which limits the memory requirements' overhead. Finally, the physical implementation of the FFT on a 45 nm technology node showed that, for a 8 % area overhead, the total power saving settles around 10 % when in the presence of a medium to high pruning level, justifying the silicon area overhead introduced by the pruning unit.
机译:这项研究工作介绍了基于OFDM,启用动态频谱访问(DSA)的认知无线电的功率感知FFT核的设计和物理实现。 FFT核心配备有修剪引擎,该修剪引擎允许在运行时移除与通信系统的子载波的修剪有关的虚拟操作(例如,乘以零项)。这项研究工作引入的修剪算法利用了尺寸减小的配置矩阵,这限制了内存需求的开销。最后,在45 nm技术节点上进行的FFT物理实现表明,对于8%的面积开销,当存在中到高修剪水平时,总的功耗节省约为10%,这证明了引入的硅面积开销是合理的由修剪单元。

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