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Titlebook: Reconfigurable Networks-on-Chip; Sao-Jie Chen,Ying-Cherng Lan,Yu-Hen Hu Book 2012 Springer Science+Business Media, LLC 2012 Bi-directional

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楼主: Conjecture
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Fault Tolerance in BiNoCanging routing rules between normal and fault-tolerant operation modes is needless. Accordingly, it is possible for BFT-NoC to perform better in both resource utilization and application feasibility compared with other detour-based schemes.
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Energy-Aware Application Mapping for BiNoCcommunication scheduling algorithm is proposed with a unique feature of utilizing the configurability of a bidirectional channel to trade the data transmission time for power expenditure. Extensive simulations are performed to compare the proposed algorithm against conventional Earliest-Deadline First (EDF) based algorithm on NoC.
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Performance-Energy Tradeoffs for Noc Reliabilityl of reliability when the power consumption of the re-transmission buffers is factored into the equation. This new finding leads to the conclusion that FEC error control strategy is more suitable for NoC implementation compared to ARQ.
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Bidirectional Noc ArchitectureA Bidirectional channel Network-on-Chip (BiNoC) architecture is proposed in this chapter to enhance the performance of on-chip communication. In a BiNoC, each communication channel allows itself to be dynamically reconfigured to transmit flits in either direction.
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