TY - JOUR
T1 - A Framework on Order-Reduction Optimization for Array-Assisted Communication Networks
AU - Li, Yihan
AU - Xing, Chengwen
AU - Gong, Shiqi
AU - Zhao, Nan
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2026
Y1 - 2026
N2 - Antenna arrays are the fundamental component of modern high-throughput wireless networks. The diversity of array structures and system functionalities results in strong non-convexity of the related optimization problems, making it difficult to derive optimal solutions and thereby limiting network performance. To address this issue, the order-reduction optimization plays an important role, providing a trade-off between system performance and computational complexity. In this paper, we propose a comprehensive and systematic framework on order-reduction optimization, which has a wide range of application scenarios and satisfactory performance. We first discuss the construction of order-reduction inequalities and related properties in terms of three mathematical paradigms: the log-trace-based identity, the positive definite identity, and the tangent identity. Then we propose order-reduction algorithms applied to constant-modulus (CM) constrained optimization problems. Specifically, the hybrid digital-analog system, the reconfigurable intelligent surface (RIS)-aided system, and the holographic metasurface antenna (HMA)-aided system are investigated, respectively. In addition, we consider the application of the proposed order-reduction algorithms to different functional systems, where integrated sensing and communication (ISAC) and the physical layer security (PLS) are included.
AB - Antenna arrays are the fundamental component of modern high-throughput wireless networks. The diversity of array structures and system functionalities results in strong non-convexity of the related optimization problems, making it difficult to derive optimal solutions and thereby limiting network performance. To address this issue, the order-reduction optimization plays an important role, providing a trade-off between system performance and computational complexity. In this paper, we propose a comprehensive and systematic framework on order-reduction optimization, which has a wide range of application scenarios and satisfactory performance. We first discuss the construction of order-reduction inequalities and related properties in terms of three mathematical paradigms: the log-trace-based identity, the positive definite identity, and the tangent identity. Then we propose order-reduction algorithms applied to constant-modulus (CM) constrained optimization problems. Specifically, the hybrid digital-analog system, the reconfigurable intelligent surface (RIS)-aided system, and the holographic metasurface antenna (HMA)-aided system are investigated, respectively. In addition, we consider the application of the proposed order-reduction algorithms to different functional systems, where integrated sensing and communication (ISAC) and the physical layer security (PLS) are included.
KW - Analog-digital hybrid structure
KW - HMA
KW - RIS
KW - order-reduction optimization
UR - https://www.scopus.com/pages/publications/105043751098
U2 - 10.1109/TNSE.2026.3708972
DO - 10.1109/TNSE.2026.3708972
M3 - Article
AN - SCOPUS:105043751098
SN - 2327-4697
VL - 13
SP - 10388
EP - 10407
JO - IEEE Transactions on Network Science and Engineering
JF - IEEE Transactions on Network Science and Engineering
ER -