Design of AXI bus based MPSoC on FPGA
Fu-ming Xiao, Dongsheng Li, Gaoming Du, Yukun Song, Duoli Zhang, Minglun Gao · 2009
While the computational core is becoming faster and faster, the communication efficiency between the processors has become a bottleneck which limits the performance of multiprocessor system-on-chip (MPSoC). This paper focuses on design and implementation of AXI bus protocol-based MPSoC architecture. Firstly, the RTL models of 4 NIOS II processors using AXI communication architecture are developed. Then the MPSoC was implemented in Altera Stratix II EP2S180 FPGA. Lastly, the performance was evaluated using matrix operation benchmark and compared with previous in-house designed architecture. Experiments showed that the proposed prototype could run at 100 MHz requiring 8963 adaptive look-up table (ALUTs) and the maxim speedup ratio can be up to 3.81, and performs better than the traditional bus (AHB bus) and 2-D mesh NoC architecture.