arXiv:2603.20072quant-phcs.LG2026-03

量子混合优化提升天线阵列波束成形效率与精度

Antenna Array Beamforming Based on a Hybrid Quantum Optimization Framework

  • 结合量子启发搜索与梯度优化,处理相位和幅度联合优化问题
  • 32单元阵列下得分461.58,接近基准分两倍,满足多约束条件
  • 适合未来无线通信系统中大规模天线波束成形研究者参考

本文提出一种混合量子优化框架,用于大规模天线阵列的波束成形,同时优化离散相位与连续幅度。方法融合量子启发搜索与经典梯度精调,针对相位优化引入格雷码与奇数组合编码,避免高阶伊辛模型复杂度爆炸;针对幅度优化采用几何自旋组合编码与两阶段策略,先粗搜后细调。为提升解的质量与多样性,设计彩虹量子算法,集成多优化器并行探索,并通过层次聚类进行候选解精炼。此外,提出双外积法及其增强版本,高效构建耦合矩阵与偏置向量,提升数值精度与实现效率。在第七届全国量子计算黑客松评分规则下,32元素天线阵列仿真显示,该方法在近主波瓣旁瓣、宽角旁瓣、波束宽度及优化时间等约束下得分达461.58,近乎基准分两倍。该框架为未来无线通信系统的波束成形优化提供了有效参考。

原文摘要 · Abstract (English)

This paper proposes a hybrid quantum optimization framework for large-scale antenna-array beamforming with jointly optimized discrete phases and continuous amplitudes. The method combines quantum-inspired search with classical gradient refinement to handle mixed discrete-continuous variables efficiently. For phase optimization, a Gray-code and odd-combination encoding scheme is introduced to improve robustness and avoid the complexity explosion of higher-order Ising models. For amplitude optimization, a geometric spin-combination encoding and a two-stage strategy are developed, using quantum-inspired optimization for coarse search and gradient optimization for fine refinement. To enhance solution diversity and quality, a rainbow quantum-inspired algorithm integrates multiple optimizers for parallel exploration, followed by hierarchical-clustering-based candidate refinement. In addition, a double outer-product method and an augmented version are proposed to construct the coupling matrix and bias vector efficiently, improving numerical precision and implementation efficiency. Under the scoring rules of the 7th National Quantum Computing Hackathon, simulations on a 32-element antenna array show that the proposed method achieves a score of 461.58 under constraints on near-main-lobe sidelobes, wide-angle sidelobes, beamwidth, and optimization time, nearly doubling the baseline score. The proposed framework provides an effective reference for beamforming optimization in future wireless communication systems.

波束成形量子优化天线阵列混合算法

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