Optimal Ber Minimum Precoder Design for OTFS-Based ISAC Systems

This paper investigates the bit error rate (BER) minimum precoder design for an orthogonal time frequency space (OTFS)-based integrated sensing and communications (ISAC) system, which is considered as a promising technique for enabling future wireless networks. In particular, the BER minimum problem...

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Published in:Proceedings of the ... IEEE International Conference on Acoustics, Speech and Signal Processing (1998) pp. 12966 - 12970
Main Authors: Wu, Jun, Yuan, Weijie, Wei, Zhiqiang, Yan, Jinjin, Ng, Derrick Wing Kwan
Format: Conference Proceeding
Language:English
Published: IEEE 14.04.2024
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ISSN:2379-190X
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Abstract This paper investigates the bit error rate (BER) minimum precoder design for an orthogonal time frequency space (OTFS)-based integrated sensing and communications (ISAC) system, which is considered as a promising technique for enabling future wireless networks. In particular, the BER minimum problem takes into account the maximized available transmission power and the required sensing performance. We devise the precoder from the perspective of delay-Doppler (DD) domain by exploiting the equivalent DD channel. To address the non-convex design problem, we resort to minimizing the lower bound of the derived average BER. Afterwards, we propose a computationally iterative method to solve the dual problem at low cost. Simulation results verify the effectiveness of our proposed precoder and reveal the interplay between sensing and communication for dual-functional precoder design.
AbstractList This paper investigates the bit error rate (BER) minimum precoder design for an orthogonal time frequency space (OTFS)-based integrated sensing and communications (ISAC) system, which is considered as a promising technique for enabling future wireless networks. In particular, the BER minimum problem takes into account the maximized available transmission power and the required sensing performance. We devise the precoder from the perspective of delay-Doppler (DD) domain by exploiting the equivalent DD channel. To address the non-convex design problem, we resort to minimizing the lower bound of the derived average BER. Afterwards, we propose a computationally iterative method to solve the dual problem at low cost. Simulation results verify the effectiveness of our proposed precoder and reveal the interplay between sensing and communication for dual-functional precoder design.
Author Yan, Jinjin
Wu, Jun
Ng, Derrick Wing Kwan
Yuan, Weijie
Wei, Zhiqiang
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  organization: Southern University of Science and Technology,Department of Electrical and Electronic Engineering,Shenzhen,China
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  givenname: Weijie
  surname: Yuan
  fullname: Yuan, Weijie
  organization: Southern University of Science and Technology,Department of Electrical and Electronic Engineering,Shenzhen,China
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  organization: Xi'an Jiaotong University,School of Mathematics and Statistics,Xi'an,China
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  givenname: Jinjin
  surname: Yan
  fullname: Yan, Jinjin
  organization: Harbin Engineering University,Innovation and Development Center,Qingdao,China
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  givenname: Derrick Wing Kwan
  surname: Ng
  fullname: Ng, Derrick Wing Kwan
  organization: University of New South Wales,School of Electrical Engineering and Telecommunications,Sydney,Australia
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Snippet This paper investigates the bit error rate (BER) minimum precoder design for an orthogonal time frequency space (OTFS)-based integrated sensing and...
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StartPage 12966
SubjectTerms BER
Bit error rate
Costs
ISAC
Iterative methods
OTFS
precoder
Sensors
Speech processing
Time-frequency analysis
Wireless networks
ZF/MMSE equalization
Title Optimal Ber Minimum Precoder Design for OTFS-Based ISAC Systems
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