A Resilient 2-D Waveguide Communication Fabric for Hybrid Wired-Wireless NoC Design

被引:28
作者
Agyeman, Michael Opoku [1 ]
Quoc-Tuan Vien [2 ]
Ahmadinia, Ali [3 ]
Yakovlev, Alexandre [4 ]
Tong, Kin-Fai [5 ]
Mak, Terrence [6 ]
机构
[1] Univ Northampton, Comp & Immers Technol, Northampton NN2 6JB, England
[2] Middlesex Univ, Sch Sci & Technol, London NW4 4BT, England
[3] Calif State Univ San Marcos, Dept Comp Sci, San Marcos, CA 92096 USA
[4] Univ Newcastle Tyne, Sch EECE, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
[5] UCL, Dept Elect & Elect Engn, London NE1 7RU, England
[6] Univ Southampton, Sch Elect & Comp Sci, Southampton NE1 7RU, Hants, England
关键词
Hybrid wired-wireless Network-on-Chip; reliability; surface wave; mm-Wave; WiNoC; waveguide; wireless channel; NETWORKS;
D O I
10.1109/TPDS.2016.2575836
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Hybrid wired-wireless Network-on-Chip (WiNoC) has emerged as an alternative solution to the poor scalability and performance issues of conventional wireline NoC design for future System-on-Chip (SoC). Existing feasible wireless solution for WiNoCs in the form of millimeter wave (mm-Wave) relies on free space signal radiation which has high power dissipation with high degradation rate in the signal strength per transmission distance. Moreover, over the lossy wireless medium, combining wireless and wireline channels drastically reduces the total reliability of the communication fabric. Surface wave has been proposed as an alternative wireless technology for low power on-chip communication. With the right design considerations, the reliability and performance benefits of the surface wave channel could be extended. In this paper, we propose a surface wave communication fabric for emerging WiNoCs that is able to match the reliability of traditional wireline NoCs. First, we propose a realistic channel model which demonstrates that existing mm-Wave WiNoCs suffers from not only free-space spreading loss (FSSL) but also molecular absorption attenuation (MAA), especially at high frequency band, which reduces the reliability of the system. Consequently, we employ a carefully designed transducer and commercially available thin metal conductor coated with a low cost dielectric material to generate surface wave signals with improved transmission gain. Our experimental results demonstrate that the proposed communication fabric can achieve a 5 dB operational bandwidth of about 60 GHz around the center frequency (60 GHz). By improving the transmission reliability of wireless layer, the proposed communication fabric can improve maximum sustainable load of NoCs by an average of 20: 9 and 133: 3 percent compared to existing WiNoCs and wireline NoCs, respectively.
引用
收藏
页码:359 / 373
页数:15
相关论文
共 30 条
[1]  
Agyeman M. O., IEEE T PARALLEL DIST
[2]   HETEROGENEOUS 3D NETWORK-ON-CHIP ARCHITECTURES: AREA AND POWER AWARE DESIGN TECHNIQUES [J].
Agyeman, Michael O. ;
Ahmadinia, Ali ;
Shahrabi, Alireza .
JOURNAL OF CIRCUITS SYSTEMS AND COMPUTERS, 2013, 22 (04)
[3]   Efficient routing techniques in heterogeneous 3D Networks-on-Chip [J].
Agyeman, Michael Opoku ;
Ahmadinia, Ali ;
Shahrabi, Alireza .
PARALLEL COMPUTING, 2013, 39 (09) :389-407
[4]  
[Anonymous], INT WORKSH NETW CHIP
[5]  
[Anonymous], 2001, Wireless Communications: Principles and Practice
[6]  
[Anonymous], P 9 INT S NETW CHIP
[7]  
[Anonymous], 2010, PROC 3 INT WORKSHOPN
[8]  
[Anonymous], 2011, 2011 IEEE 54 INT MID
[9]   ANALYSIS AND DESIGN OF NEW ACTIVE QUASI CIRCULATOR AND CIRCULATORS [J].
Bahri, R. ;
Abdipour, A. ;
Moradi, G. .
PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, 2009, 96 :377-395
[10]   The PARSEC Benchmark Suite: Characterization and Architectural Implications [J].
Bienia, Christian ;
Kumar, Sanjeev ;
Singh, Jaswinder Pal ;
Li, Kai .
PACT'08: PROCEEDINGS OF THE SEVENTEENTH INTERNATIONAL CONFERENCE ON PARALLEL ARCHITECTURES AND COMPILATION TECHNIQUES, 2008, :72-81