2010Unpublished venueRequires access

The design and implementation of arbiters for Network-on-chips

Zhizhou Fu, Xiang Gui Ling

Open publisher page 18 citations

Abstract

Round robin arbiter and matrix arbiter mechanism are widely used in Network-on-chips. These two mechanisms are implemented in this paper. The performances in 2D-mesh topology are tested in a FPGA platform. The resource consumption and throughput between Round-robin arbiter and Matrix-arbiter are compared. Through the experiment result, we found that the Matrix-arbiter has higher throughput than the Round-robin arbiter. However the Round-robin arbiter can save much more resources than Matrix arbiter. Thus a tradeoff between the two mechanisms should be considered when design networks-on-chip arbiters.

About this research paper

What this paper is about

Round robin arbiter and matrix arbiter mechanism are widely used in Network-on-chips. These two mechanisms are implemented in this paper. The performances in 2D-mesh topology are tested in a FPGA platform. The resource consumption and throughput between Round-robin arbiter and Matrix-arbiter are compared. Through the experiment result, we found that the Matrix-arbiter has higher throughput than the Round-robin arbiter. However the Round-robin arbiter can save much more resources than Matrix arbiter. Thus a tradeoff between the two mechanisms should be considered when design networks-on-chip arbiters.

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OpenAlex reports 18 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Round robin arbiter and matrix arbiter mechanism are widely used in Network-on-chips. These two mechanisms are implemented in this paper. The performances in 2D-mesh topology are tested in a FPGA platform. The resource consumption and throughput between Round-robin arbiter and Matrix-arbiter are compared. Through the experiment result, we found that the Matrix-arbiter has higher throughput than the Round-robin arbiter. However the Round-robin arbiter can save much more resources than Matrix arbiter. Thus a tradeoff between the two mechanisms should be considered when design networks-on-chip arbiters.

Key concepts: Arbiter, Computer science, Throughput, Matrix (chemical analysis), Network on a chip, Chip, Field-programmable gate array, Embedded system

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