ENERGY-EFFICIENT SOFTWARE-DEFINED RADIO SOLUTIONS FOR MIMO-BASED BROADBAND COMMUNICATION

European Signal Processing Conference(2007)

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摘要
Multi-antenna transmission over multi-input, multi-output (MIMO) channels are considered in almost all recent broadband wireless communication standards. Besides, the fast-pacing diver- sity and evolution of those standards, next to the deep submicron integration cost explosion, urges multi-mode reconfigurable solu- tions. Software Defined Radio (SDR) is envisioned to enable low-cost, high-volume multi-mode baseband modems both for base-station and user terminals. Yet, supporting high-throughput MIMO standard with limited energy budget as in user terminals is a challenge for SDR architectures. With Space Division Multi- plexing (SDM) for instance, N being the number of antennas, the computation load is multiplied by >N2. Capitalizing on a low complexity SDM-OFDM functional archi- tecture, a heterogeneous multi-processor SoC platform with DSP cores delivering 50 to 250MOPS/mW and an integrated software development flow, we demonstrate the SDR implementation of 100Mbps+ SDM-OFDM with 3.6 nJ/bit energy efficiency (383mW average power).
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关键词
MIMO communication,antenna arrays,broadband networks,diversity reception,energy conservation,software radio,space division multiplexing,MIMO-based broadband communication,SDM-OFDM functional architecture,broadband wireless communication standards,computation load,energy-efficient software-defined radio solutions,fast-pacing diversity,heterogeneous multiprocessor SoC platform,high-volume multimode baseband modems,multiantenna transmission,multimode reconfigurable solutions,space division multiplexing,submicron integration cost explosion,
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