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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A New CDMA Encoding/Decoding Method for on-Chip Communication Network
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A New CDMA Encoding/Decoding Method for on-Chip Communication Network

机译:片上通信网络的一种新的CDMA编码/解码方法

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摘要

As a high performance on-chip communication method, the code division multiple access (CDMA) technique has recently been applied to networks on chip (NoCs). We propose a new standard-basis-based encoding/decoding method to leverage the performance and cost of CDMA NoCs in area, power assumption, and network throughput. In the transmitter module, source data from different senders are separately encoded with an orthogonal code of a standard basis and these coded data are mixed together by an XOR operation. Then, the sums of data can be transmitted to their destinations through the on-chip communication infrastructure. In the receiver module, a sequence of chips is retrieved by taking an AND operation between the sums of data and the corresponding orthogonal code. After a simple accumulation of these chips, original data can be reconstructed. We implement our encoding/decoding method and apply it to a CDMA NoC with a star topology. Compared with the state-of-the-art Walsh-code-based (WB) encoding/decoding technique, our method achieves up to 67.46% power saving and 81.24% area saving together with decrease of 30%–50% encoding/decoding latency. Moreover, the CDMA NoC with different sizes applying our encoding/decoding method gains power saving, area saving, and maximal throughput improvement up to 20.25%, 22.91%, and 103.26%, respectively, than the WB CDMA NoC.
机译:作为高性能的片上通信方法,码分多址(CDMA)技术最近已应用于片上网络(NoC)。我们提出了一种新的基于标准的编码/解码方法,以利用CDMA NoC在面积,功率假设和网络吞吐量方面的性能和成本。在发送器模块中,来自不同发送器的源数据用标准的正交码分别编码,并且这些编码的数据通过XOR操作混合在一起。然后,数据总和可以通过片上通信基础结构传输到它们的目的地。在接收器模块中,通过在数据总和与相应的正交码之间进行“与”运算来检索码片序列。对这些芯片进行简单累加后,即可重建原始数据。我们实施编码/解码方法,并将其应用于具有星形拓扑的CDMA NoC。与最新的基于沃尔什码(WB)的编码/解码技术相比,我们的方法可实现高达67.46%的功耗节省和81.24%的面积节省,并减少了30%–50%的编码/解码延迟。此外,与我们的WB CDMA NoC相比,采用我们的编码/解码方法的不同大小的CDMA NoC分别节省了功率,节省了面积,并最大提高了吞吐量,分别达到20.25%,22.91%和103.26%。

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