A Rapid Methodology for Multi-mode Communication Circuit Generation

L. Tang, Jorgen Peddersen, S. Parameswaran
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引用次数: 6

Abstract

The need to integrate multiple wireless communication protocols into a single low-cost, low power hardware platform is prompted by the increasing number of emerging communication protocols and applications. This paper presents an efficient methodology for integrating multiple wireless protocols in an ASIC which minimizes resource occupation. A hierarchical data path merging algorithm is developed to find common shareable components in two different communication circuits. The data path merging approach will build a combined generic circuit with inserted multiplexers (MUXes) which can provide the same functionality of each individual circuit. The proposed method is orders of magnitude faster (well over 1000 times faster for realistic circuits) than the existing data path merging algorithm (with an overhead of 3% additional area) and can switch communication protocols on the fly (i.e. it can switch between protocols in a single clock cycle), which is a desirable feature for seemingly simultaneous multi-mode wireless communication. Wireless LAN (WLAN) 802.11a, WLAN802.11b and Ultra Wide Band (UWB) transmission circuits are merged to prove the efficacy of our proposal.
多模通信电路的快速生成方法
越来越多的新兴通信协议和应用促使人们需要将多种无线通信协议集成到一个低成本、低功耗的硬件平台中。本文提出了一种将多个无线协议集成到ASIC中的有效方法,该方法最大限度地减少了资源占用。为了在两种不同的通信电路中找到共同的可共享组件,提出了一种分层数据路径合并算法。数据路径合并方法将构建一个具有插入多路复用器(mux)的组合通用电路,该电路可以提供每个单独电路的相同功能。所提出的方法比现有的数据路径合并算法(具有3%额外面积的开销)快几个数量级(对于实际电路快1000倍以上),并且可以在飞行中切换通信协议(即它可以在单个时钟周期内在协议之间切换),这是看似同时多模无线通信的理想特征。无线局域网(WLAN) 802.11a、无线局域网(WLAN) 802.11b和超宽带(UWB)传输电路的合并证明了我们的建议的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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