Title
Efficient Initialization of Iterative Linear Massive MIMO Uplink Detectors by Binary Jacobi Synthesis
Abstract
In this paper, we propose a decentralized feedforward initialization approach for iterative equalization methods, that decomposes a massive MIMO system into multiple smaller subsystems, where successively combining pairs of these systems and their solutions using the Jacobi method results in a high quality initial estimate for a following iterative detection method. In contrast to existing methods, this approach allows a computation of an initial estimate while the Gram matrix and matched filter output vector is not fully available. The BER performances show the effectiveness of this initialization method compared to approaches like maximum-ratio combining at high basestationto- client antenna ratios.
Year
Venue
Field
2019
WSA 2019; 23rd International ITG Workshop on Smart Antennas
Computer science,Algorithm,MIMO,Initialization,Detector,Telecommunications link,Binary number
DocType
ISBN
Citations 
Conference
978-3-8007-4939-3
0
PageRank 
References 
Authors
0.34
0
4
Name
Order
Citations
PageRank
Pascal Seidel101.35
Daniel Gregorek253.50
Steffen Paul314240.96
Jochen Rust43212.51