Proceedings ArticleDOI
Set-partitioning based forward/backward soft decision algorithms for MIMO detection
Rakesh Malladi,Kiran Kuchi,R. David Koilpillai +2 more
- pp 1-5
TLDR
This algorithm is shown to be near optimal and the computational complexity to implement it is estimated and it is shown that applying the well known max-log approximation on this algorithm results in nearly same performance at much lower complexity.Abstract:
A near maximum a posteriori (MAP)-optimal soft detector that outputs a posteriori probabilities (APP's) for multiple-input multiple-output (MIMO) systems in flat fading channels is proposed. This is referred to as ‘reduced state maximum a posteriori (RSMAP)’ algorithm. This detection algorithm is based on BCJR algorithm and also uses ideas from reduced state sequence estimation (RSSE) and set partitioning. This algorithm is shown to be near optimal and the computational complexity to implement it is estimated. Finally we also show that applying the well known max-log approximation on this algorithm results in nearly same performance at much lower complexity.read more
Citations
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Journal ArticleDOI
An Iterative DFE Receiver for MIMO SC-FDMA Uplink
TL;DR: Simulations show that the proposed DFE receiver variant based on parallel interference cancelation with maximum likelihood detection (MLD) and ordered SIC (OSIC) principles to suppress ISI and MSI performs better than the existing SIC and DFE based receivers and achieves the matched filter bound (MFB) for both coded and uncoded systems.
Journal ArticleDOI
Generalized reduced-state vector sequence detection
TL;DR: The inclusion of RST algorithm for spatial multi-symbol detection provides a common framework for designing receivers for both flat-fading and frequency-selective fading MIMO channels.
Proceedings ArticleDOI
Reduced-state soft-output equalization for MIMO-ISI systems employing HOM
TL;DR: A reduced complexity soft-output joint equalization scheme for MIMO-ISI systems employing Higher Order Modulation (HOM) and generates soft information using only the forward recursion of the Max-Log-MAP algorithm, referred to as the Forward-Only algorithm.
Journal ArticleDOI
A Cost-Effective Adaptive Overlapped Cluster-Based MIMO Detector in a Frequency Domain Reconfigurable Modem
Yuan-Te Liao,Terng-Yin Hsu +1 more
TL;DR: An adaptive overlapped cluster (AOC) scheme to balance detection error and computing cost is built for multiple-input multiple-output (MIMO) detection and is ported to a reconfigurable frequency-domain (FD) modem.
Proceedings ArticleDOI
Reduced state MAP algorithm with modified branch metric
TL;DR: A detection algorithm at the receiver is developed, for a wireless system employing multiple antennas at both the transmitter and receiver, where the knowledge of channel is not available at the transmitter (a.k.a open-loop system).
References
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Journal ArticleDOI
Low-complexity adaptive tree search algorithm for MIMO detection
Kuei-Chiang Lai,Li-Wei Lin +1 more
TL;DR: A reduced-complexity multiple-input multiple-output (MIMO) detector for the spatial multiplexing systems is described and an algorithm that adapts the number of partitions based on the channel conditions is proposed to achieve a better tradeoff between complexity and performance.
Proceedings ArticleDOI
Breadth first algorithms for APP detectors over MIMO channels
TL;DR: A reduced complexity detector based on breadth first algorithms, which can provide a good list of candidates for the APP calculation by exploiting the a priori information delivered from the outer decoder, is proposed.
Journal ArticleDOI
Reduced-state MIMO sequence detection with application to EDGE systems
TL;DR: It is shown that two elements are essential in achieving the desired complexity and performance tradeoff for the proposed JRSSD algorithm: a proper multisymbol set-partition and an efficient space-time structure that effectively decouples the spatial and temporal processing.
Journal ArticleDOI
Coset detection in MIMO systems based on spatial multiplexing
TL;DR: The principle of reduced state sequence detection, based on mapping by set partitioning, is applied to perform detection in spatial multiplexing MIMO systems based on non-binary constellations to show the benefits of this proposal.
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