Title :
Bio-inspired NoC fault tolerant techniques
Author :
Sethi, Muhammad Athar Javed ; Hussin, Fawnizu Azmadi ; Hamid, Nor Hisham
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. Teknol. PETRONAS, Tronoh, Malaysia
Abstract :
The incorporation of processing elements which include processor cores, memories, configurable components and DSP cores on Network on Chip (NoC) have made the communication structure of NoC very complex. To support the complexity of NoC, the physical device sizes are scaled down. However, the interconnects are not scaled at the same rate as the device. Interconnects have contributed to faults, system delay and high power consumptions. Interconnects of NoC are more vulnerable to faults. Many fault tolerant routing techniques have been proposed but they still have the energy, power, congestion problems and they lack the adaptiveness and robustness. In this work, two novel bio-inspired NoC techniques are analyzed. The bio-inspired mechanism of “synaptogenesis” and “sprouting” is adopted in the NoC algorithm and architecture. With the help of this the algorithm is robust and NoC is fault tolerant. In sprouting algorithm, the average throughput and average packet latency was increased by 8.56% and 4.65% respectively while average bandwidth was efficiently utilized by 0.23% as compared to synaptogenesis algorithm. The bio-inspired algorithms improved the average throughput and accepted traffic by 72.12% as compared to the literature technique.
Keywords :
fault tolerant computing; integrated circuit interconnections; network-on-chip; DSP cores; NoC interconnects; average packet latency; bio-inspired NoC fault tolerant techniques; communication structure; configurable components; fault tolerant routing techniques; high power consumptions; memories; network on chip; physical device sizes; processing elements; processor cores; sprouting algorithm; synaptogenesis algorithm; system delay; Algorithm design and analysis; Bandwidth; Fault tolerance; Fault tolerant systems; Heuristic algorithms; Neurons; Routing; Bio-inspired Techniques; Fault tolerant; Network on Chip (NoC); Processing Elements (PE´s);
Conference_Titel :
Intelligent and Advanced Systems (ICIAS), 2014 5th International Conference on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4799-4654-9
DOI :
10.1109/ICIAS.2014.6869449