A System View on Iterative MIMO Detection: Dynamic Sphere Detection versus Fixed Effort List Detection
Author(s) -
Christina Gimmler-Dumont,
Frank Kienle,
Bin Wu,
Guido Masera
Publication year - 2012
Publication title -
vlsi design
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.123
H-Index - 24
eISSN - 1065-514X
pISSN - 1026-7123
DOI - 10.1155/2012/826350
Subject(s) - mimo , spatial multiplexing , detector , 3g mimo , multiplexing , computer science , electronic engineering , multi user mimo , channel (broadcasting) , wireless , communications system , reliability (semiconductor) , real time computing , control theory (sociology) , telecommunications , engineering , artificial intelligence , control (management) , power (physics) , physics , quantum mechanics
Multiple-antenna systems are a promising approach to increase the data rate of wireless communication systems. One efficient possibility is spatial multiplexing of the transmitted symbols over several antennas. Many different MIMO detector algorithms exist for this spatial multiplexing. The major difference between different MIMO detectors is the resultingcommunications performance and implementation complexity, respectively. Particularly closed-loop MIMO systems have attained a lot of attention in the last years. In a closed-loop system,reliability information is fed back from the channel decoder to the MIMO detector. In this paper, we derive a basic framework to compare different soft-input soft-output MIMO detectors in open- and closed-loop systems. Within this framework, we analyze a depth-first sphere detector and a breadth-first fixed effort detector for different application scenarios and their effects on area and energy efficiency on the whole system. We present all system components under open- and closed-loop system aspects and determine the overall implementation cost for changing an open-loop system in a closed-loop system
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