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PHY Layer Anonymous Precoding: Sender Detection Performance and Diversity- Multiplexing Tradeoff

  • Zhongxiang Wei
  • , Christos Masouros
  • , Xu Zhu
  • , Ping Wang*
  • , Athina P. Petropulu
  • *Corresponding author for this work
  • Tongji University
  • University College London
  • Harbin Institute of Technology Shenzhen
  • Rutgers - The State University of New Jersey, New Brunswick

Research output: Contribution to journalArticlepeer-review

Abstract

Departing from traditional data security-oriented designs, the aim of anonymity is to conceal the transmitters' identities during communications to all possible receivers. In this work, joint anonymous transceiver design at the physical (PHY) layer is investigated. We first present sender detection error rate (DER) performance analysis, where closed-form expression of DER is derived for a generic precoding scheme applied at the transmitter side. Based on the tight DER expression, a fully DER-tunable anonymous transceiver design is demonstrated. An alias channel-based combiner is first proposed, which helps the receiver find a Euclidean space that is close to the propagation channel of the received signal for high quality reception, but does not rely on the recognition of the real sender's channel. Then, two novel anonymous precoders are proposed under a given DER requirement, one being able to provide full multiplexing performance, and the other flexibly adjusting the number of multiplexing streams with further consideration of the receive-reliability. Simulation demonstrates that the proposed joint transceiver design can always guarantee the subscribed DER performance, while well striking the trade-off among the multiplexing, diversity and anonymity performance.

Original languageEnglish
Pages (from-to)4531-4545
Number of pages15
JournalIEEE Transactions on Wireless Communications
Volume23
Issue number5
DOIs
StatePublished - 1 May 2024
Externally publishedYes

Keywords

  • Physical layer anonymity
  • anonymous transceiver design
  • multiplexing and diversity trade-off
  • tunable DER

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