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On the Performance of Spatial Modulations over Multimode Optical Fiber Transmission Channels

  • University of Waterloo

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, we analyze the performance of coded and uncoded spatial modulations over multi-mode fiber optic channels with the mode-dependent loss (MDL) under the maximum likelihood (ML) and zero-forcing (ZF) detection schemes. We focus on the multi-dimensional modulations that satisfy certain orthogonality criteria such as the Threaded Algebraic Space-Time (TAST) codes. In particular, we link the post-detection signal-to-noise ratio (SNR) to the orthogonality defect factor (ODF) of the equivalent channel matrix by deriving their closed-form expressions as well as characterizing their statistical properties. Using the post-detection SNR and ODF properties, we develop upper and ad-hoc tight bounds on the error probabilities, which illustrate how these 'orthogonal' spatial modulations mitigate the MDL under both the ML and ZF detection schemes. The obtained properties also allow us to propose a modification to the detection algorithm such that it still achieves an essentially optimal performance but at a much smaller cost than exhaustive or tree search algorithms. The theoretical results are validated numerically and by simulations.

Original languageEnglish
Article number8631193
Pages (from-to)3470-3481
Number of pages12
JournalIEEE Transactions on Communications
Volume67
Issue number5
DOIs
Publication statusPublished - 1 May 2019

Keywords

  • Multi-mode fiber optic channels
  • maximum likelihood detection
  • spatial division multiplexing

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