Skip to content

Design of Multiple ISL-Aware Waveforms With SINR Guarantees for Integrated Sensing and Multi-User Communications

2026 · IEEE Signal Processing Letters · Vol 33, pp. 3267-3271 · 0 citations · 24 references
Computer Science

Abstract

We investigate waveform optimization for integrated sensing and multi-user communications. The key idea is to minimize the integrated sidelobe level of the multiple transmit waveforms while ensuring that the signal-to-interference-plus-noise ratio of each communication user remains above a prescribed threshold. Moreover, by exploiting the available spatial degrees of freedom, we enforce identical effective channel gains for all desired noise-free symbols. This design decouples the signal strength from spatial beamforming and simplifies symbol detection at the users. The main challenge lies in handling a non-convex quartic objective with multiple coupled constraints, where the weight vector appears inside correlation terms, making the problem difficult to solve directly. To address this issue, we resort to the majorization-minimization (MM) technique to convert the objective into a tractable form. We then derive a series of surrogate functions and supporting results for the MM steps, enabling the solution to be obtained iteratively. Simulation results demonstrate the effectiveness of the proposed waveform design.

View source

Similar papers

2026

Transmit Beamforming Design for MIMO-ISAC Systems: A Sensing Mutual Information Optimization Perspective

In this paper, we investigate the transmit beamforming design for a general multiple-input multiple-output integrated sensing and communication (MIMO-ISAC) system, where a dual-functional base station (BS) simultaneously communicates with multiple multi-antenna communication users (CUs) and detects the multiple targets...

Kai Yang, Jin Xu, Xiao-Feng Tao et al. · 0 citations
2026

Clutter-Aware Waveform Design for Multi-Cell Integrated Sensing and Communication Systems

To address the challenges of inter-cell interference/reflection and static clutter, a clutter-aware waveform design for a multi-cell multiple-input multiple-output (MIMO) integrated sensing and communication (ISAC) system is proposed. Various levels of coordination among base stations (BSs) are investigated to enhance...

Yves Fidele Aikoun, Gordon Owusu Boateng, Zhao-Lin Wang et al. · 0 citations
Preprint Sep 2026

Energy-Efficient Waveform Design for ISAC Systems: An Ambiguity-Domain QoS Perspective

Integrated sensing and communication (ISAC) requires transmit waveforms that simultaneously preserve communication quality, provide reliable sensing, and remain compatible with practical radio-frequency front ends. This paper considers a discrete-time ISAC waveform design problem that minimizes transmit power from the...

Ngoc-Son Duong, Trung-Hieu Nguyen, Quang-Truong Can · 0 citations
Preprint Aug 2026

Robust Beamforming Design for Integrated Sensing and Communications with Mutual Coupling Effect

Integrated sensing and communications (ISAC) is a key technology for next-generation wireless networks, enabling communication and radar sensing over shared spectral and hardware resources. In practical multi-user multiple-input multiple-output (MU-MIMO) ISAC transmitters, however, mutual coupling (MC) between antenna...

J. Maeng, Kawon Han · 0 citations
2026

MIMO Radar Waveform Design for Transmit Beampattern and Correlation Tradeoff via Manifold-Projection Iteration

The broad transmit beampattern of orthogonal multiple-input multiple-output radar makes it vulnerable to spatial interference. To address this issue while preserving the advantages of orthogonality, this article investigates the tradeoff between the transmit beampattern and waveform correlation. A biobjective optimizat...

Ming-Jian Ren, Xin-Yu Zhang, Wei-Dong Jiang et al. · 0 citations
2026

Robust Beamforming Design for Cell-Free MIMO ISAC Systems With Imperfect CSI

Cell-Free MIMO integrated sensing and communication (CF-ISAC) systems can improve the capabilities of communication and sensing by utilizing distributed access points (APs). However, the imperfect channel state information (CSI) weakens the efforts of beamforming designs, resulting in performance degradation of CF-ISAC...

Bo-Han Yang, Wen-Yue Zhou, Ze-Qiong Tan et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.