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Reconfigurable design for NBF based on optimal area utilization model

机译:基于最优区域利用模型的NBF可重新配置设计

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In this paper, to solve the problem that there are shortage of united frameworks or the frameworks do not match very well with the process for NBFs in sequence cryptograms, we analyzed the processing of sequence cryptograms, describe the abstract model and devise a reconfigurable framework for the existing NBFs. In particular, in order to get excellent area utilization, we firstly study on the proposed model about the influence of LUT (look-up table) and cluster on FPGA (field programmable gate array), which is widely accepted by industry. With the features of sequence cryptograms in mind, we focus on the critical component named ACLM (adaptive cryptographic logic module) in proposed structure after analyzing the effect of LUT size and cluster size on the area utilization. Having researched the specific features of NBFs, we determine the LUT size, ACLM size and ACLM input ports are 4, 4 and 10. Finally, our results show that the designed framework can clock the data path at 241MHz, and the area utilization of ACLM exceeds 90% mostly and can even achieve 100% for some NBFs or cryptograms.
机译:在本文中,为了解决联合框架短缺的问题,或者框架与序列密码中的NBFS的过程不匹配,我们分析了序列密码的处理,描述了抽象模型并设计了一个可重构的框架现有的NBFS。特别是为了获得优异的地区利用,我们首先研究了关于LUT(查找表)和集群对FPGA(现场可编程门阵列)影响的建议模型,该模型由行业广泛接受。考虑到序列加密的功能,我们在分析LUT大小和簇大小对区域利用率的影响之后,专注于所提出的结构中的关键组件。研究了NBFS的具体特征,我们确定LUT尺寸,ACLM大小和ACLM输入端口为4,4和10.最后,我们的结果表明,设计的框架可以在241MHz的数据路上时钟,以及ACLM的区域利用率。超过90%,甚至可以为某些NBFS或密码达到100%。

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