A new reconfigurable Linear FeedBack Shift Register organization to improve SDR design

Laurent Alaus, D. Noguet, J. Palicot
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引用次数: 3

Abstract

In the context of Software Defined Radio (SDR), parametrization is an interesting approach in the design of multi-standard terminals. Compared to Software based approaches, the Techniques of Parameterization limit the size of the software to a limited set of parameters thereby decreasing the radio reconfiguration time. Many current functions such as Scrambling, Convolutional Coding, CRC and even Cordic or Fast Fourier Transform can be derived as Linear Feedback Shift Registers (LFSR). We have already defined four LFSR architectures to execute such operations [9]. They can achieve one by one, the entire LFSR operations of a specific tri-standard terminal (3GPP LTE, IEEE802.16e and IEEE802.11g). However, instances and sizes of LFSR change for each operation to execute. As a consequence, the definition of a single type of operator and the scheduling of these different instances are the curbs in the deployment of one generic LFSR. To overcome this issue, we present in this article a special architecture of LFSR, able to execute one or several LFSR of different sizes at the same time. Applied in the context of the Common Operator Technique presented in [1], the Structure allows us to create a reconfigurable design, which avoids the scheduling issue though optimizing the Hardware complexity up to 50%.
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一种新的可重构线性反馈移位寄存器结构以改进SDR设计
在软件定义无线电(SDR)的背景下,参数化是设计多标准终端的一个有趣的方法。与基于软件的方法相比,参数化技术将软件的大小限制在有限的一组参数中,从而减少了无线电重新配置的时间。许多当前的功能,如置乱,卷积编码,CRC,甚至Cordic或快速傅立叶变换可以导出为线性反馈移位寄存器(LFSR)。我们已经定义了四种LFSR架构来执行这些操作[9]。它们可以逐个实现特定三标准终端(3GPP LTE、IEEE802.16e和IEEE802.11g)的整个LFSR操作。但是,LFSR的实例和大小会随着每次操作的执行而变化。因此,单一类型操作符的定义和这些不同实例的调度是部署通用LFSR的限制因素。为了克服这个问题,我们在本文中提出了一个特殊的LFSR架构,能够同时执行一个或多个不同大小的LFSR。应用于[1]中提出的公共算子技术的背景下,该结构允许我们创建一个可重构的设计,通过优化高达50%的硬件复杂性来避免调度问题。
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