TY - JOUR
T1 - Phase-Shifter-Free Reconfigurable Array Architecture Using Phase Modulation—Part Ⅱ
T2 - Applications and Measurements
AU - Zheng, Shuxin
AU - Qian, Bingyi
AU - Wei, Jianchuan
AU - Wang, Bo
AU - Chen, Xiaoming
AU - Kishk, Ahmed A.
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Part II investigates phase modulation as a low-complexity alternative to conventional phase shifters in pattern-reconfigurable antenna arrays. In the proposed architecture, phase formation originates from the direct reconfiguration of the driven radiation current and the induced parasitic current within each radiating element. This is achieved through a dual-phase control mechanism that independently tunes the intrinsic and deflection phases using separately biased PIN diodes integrated into the feeding branches and parasitic comb structures. The resulting discrete phase states provide a phase tuning range of up to 116° and enable subarray-level beamforming without continuous element-wise phase synthesis. Based on this concept, a 6-element discretized subarray is developed as the fundamental beamforming unit, offering three fixed beam states with simplified bias control. By adopting subarray-level beam-state selection, an 8×24 sparse dual-polarized array is constructed, enabling wide-angle two-dimensional scanning (±60° azimuth, ±10° elevation) while significantly reducing the number of RF chains. Despite the reduced channel count, the proposed architecture maintains comparable channel capacity, as validated through simulations and measurements, demonstrating its practicality for large-scale base station antenna arrays.
AB - Part II investigates phase modulation as a low-complexity alternative to conventional phase shifters in pattern-reconfigurable antenna arrays. In the proposed architecture, phase formation originates from the direct reconfiguration of the driven radiation current and the induced parasitic current within each radiating element. This is achieved through a dual-phase control mechanism that independently tunes the intrinsic and deflection phases using separately biased PIN diodes integrated into the feeding branches and parasitic comb structures. The resulting discrete phase states provide a phase tuning range of up to 116° and enable subarray-level beamforming without continuous element-wise phase synthesis. Based on this concept, a 6-element discretized subarray is developed as the fundamental beamforming unit, offering three fixed beam states with simplified bias control. By adopting subarray-level beam-state selection, an 8×24 sparse dual-polarized array is constructed, enabling wide-angle two-dimensional scanning (±60° azimuth, ±10° elevation) while significantly reducing the number of RF chains. Despite the reduced channel count, the proposed architecture maintains comparable channel capacity, as validated through simulations and measurements, demonstrating its practicality for large-scale base station antenna arrays.
KW - 2-D scanning
KW - channel capacity
KW - Element-embedded phase control
KW - pattern-reconfigurable antenna array
KW - RF-chain reduction
UR - https://www.scopus.com/pages/publications/105031477606
U2 - 10.1109/TAP.2026.3666059
DO - 10.1109/TAP.2026.3666059
M3 - 文章
AN - SCOPUS:105031477606
SN - 0018-926X
JO - IEEE Transactions on Antennas and Propagation
JF - IEEE Transactions on Antennas and Propagation
ER -