Title :
Energy-efficient VFI-partitioned multicore design using wireless NoC architectures
Author :
Kim, Ryan ; Guangshuo Liu ; Wettin, Paul ; Marculescu, Radu ; Marculescu, Diana ; Pande, Partha Pratim
Author_Institution :
Sch. of EECS, Washington State Univ., Pullman, WA, USA
Abstract :
In recent years, multiple Voltage Frequency Island (VFI)-based designs have increasingly made their way into both commercial and research multicore platforms. On the other hand, the wireless Network-on-Chip (WiNoC) architecture has emerged as an energy-efficient and high bandwidth communication backbone for massively integrated multicore platforms. It becomes therefore possible to exploit the small-world effects induced by the wireless links of a WiNoC to achieve efficient inter-VFI data exchanges. In this work, we demonstrate that WiNoCs can provide better latency and energy profiles compared to traditional mesh-like architecture for VFI-partitioned multicore designs. The performance gains and energy efficiency are achieved due to the low-power wireless shortcuts in conjunction with the small-world architecture. Indeed, our experimental results show energy improvements as large as 40% for multithreaded application benchmarks.
Keywords :
energy conservation; multiprocessing systems; network-on-chip; power aware computing; VFI-based design; commercial multicore platform; energy efficiency; energy-efficient VFI-partitioned multicore design; inter-VFI data exchange; low-power wireless shortcuts; massively integrated multicore platform; multithreaded application benchmark; performance gain; research multicore platform; voltage frequency island; wireless NoC architecture; wireless network-on-chip; Benchmark testing; Energy efficiency; Multicore processing; Ports (Computers); Routing; Wireless communication; NoC, Wireless, Multicore, VFI, low; power;
Conference_Titel :
Compilers, Architecture and Synthesis for Embedded Systems (CASES), 2014 International Conference on
Conference_Location :
Jaypee Greens
DOI :
10.1145/2656106.2656120