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Design of Multistandard Channelization Accelerators for Software Defined Radio Handsets

机译:软件定义无线电手机的多标准信道化加速器设计

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This paper presents a novel multistandard channelization accelerator design methodology for the digital front-end of a software defined radio (SDR) handset. Dedicated hardware (HW) accelerator cores have a power efficiency which is several orders higher than a software implementation and hence, have been extensively used for accelerating the computationally intensive tasks like channelization. However, these cores are generally inflexible and optimized for a single standard. The growing need for supporting multiple wireless standards with heterogeneous throughput and mobility requirements in a small form factor mobile handset with a limited silicon area, requires the accelerator cores to be flexible and reusable in addition to being power efficient. The proposed methodology exploits commonalities in the channelization specifications to hardwire and reuse a significant portion of the accelerator, across multiple standards. The resulting accelerator is area efficient and scalable for supporting an arbitrary number of standards.
机译:本文为软件定义的无线电(SDR)手机的数字前端提供了一种新颖的多标准信道化加速器设计方法。专用硬件(HW)加速器内核的电源效率比软件实现高几个数量级,因此已被广泛用于加速诸如信道化之类的计算密集型任务。但是,这些内核通常不灵活并且针对单个标准进行了优化。在具有有限硅面积的小型移动电话中,越来越需要支持具有异构吞吐量和移动性要求的多种无线标准,除了具有高功率效率之外,加速器内核还必须灵活且可重复使用。所提出的方法利用信道化规范中的共性来跨多种标准硬连接和重用加速器的重要部分。最终的加速器具有高效的面积和可扩展性,可支持任意数量的标准。

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