Pareto Optimal Hybrid Beamforming for Short-Packet Millimeter-Wave Integrated Sensing and Communication
Jitendra Singh, Banda Naveen, Suraj Srivastava, Aditya K. Jagannatham,, and Lajos Hanzo

TL;DR
This paper develops a Pareto optimal framework for balancing radar sensing accuracy and communication rate in short-packet millimeter-wave systems, crucial for 6G applications, using advanced joint optimization techniques.
Contribution
It introduces a novel two-layer bisection search algorithm and optimization methods for RF and baseband precoders, addressing the complex non-convex joint optimization problem in SP mmWave ISAC.
Findings
Enhanced RBE-rate trade-off performance over benchmarks
Effective joint RF and baseband precoding optimization
Demonstrated system parameter impacts through simulations
Abstract
Pareto optimal solutions are conceived for radar beamforming error (RBE) and sum rate maximization in short-packet (SP) millimeter-wave (mmWave) integrated sensing and communication (ISAC). Our ultimate goal is to realize ultra-reliable low-latency communication (uRLLC) and real-time sensing capabilities for 6G applications. The ISAC base station (BS) transmits short packets in the downlink (DL) to serve multiple communication users (CUs) and detect multiple radar targets (RTs). We investigate the performance trade-off between the sensing and communication capabilities by optimizing both the radio frequency (RF) and the baseband (BB) transmit precoder (TPC), together with the block lengths. The optimization problem considers the minimum rate requirements of the CUs, the maximum tolerable radar beamforming error (RBE) for the RTs, the unit modulus (UM) elements of the RF TPC, and the…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Microwave Engineering and Waveguides · Antenna Design and Optimization
MethodsBalanced Selection
