In-Depth Analysis of Ka-Band Integrated Commercial Beamformer Non-Idealities in Phased Array Calibration and Pattern Prediction Methods for 5G Scenarios

被引:0
作者
Maeso, Jorge Calatayud [1 ]
Sun, Xiaoliang [1 ]
Muriel-Barrado, Alfonso Tomas [2 ]
Varela, Fernando Rodriguez [3 ,4 ]
Sanchez-Olivares, Pablo [1 ]
Fernandez-Gonzalez, Jose-Manuel [1 ]
Castaner, Manuel Sierra [1 ]
机构
[1] Univ Politecn Madrid, Informat Proc & Telecommun Ctr, ETSI Telecomunicac, Madrid 28040, Spain
[2] Univ Autonoma Madrid, Escuela Politecn Super, Grp Radio Frequency Circuits Antennas & Syst RFCAS, Madrid 28049, Spain
[3] Univ Rey Juan Carlos, Dept Signal Theory & Commun, Madrid 28032, Spain
[4] Univ Rey Juan Carlos, Telemat Syst & Comp Grp Microwave Engn & Radiocomm, Madrid 28032, Spain
来源
IEEE ACCESS | 2025年 / 13卷
关键词
Phased arrays; Calibration; Phase shifters; Couplings; Antenna measurements; Radio frequency; Encoding; Adaptive arrays; Probes; Integrated circuit modeling; Integrated circuits; active phased arrays; calibration; pattern estimation; antenna integrated circuit; antenna measurements; peripheral probe calibration; ANTENNA; TRANSMITTER;
D O I
10.1109/ACCESS.2025.3555140
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper comprehensively examines the non-idealities inherent in commercially available beamformers and explores their implications in the calibration procedures for phased array antennas. The non-ideal nature of the beamformer is meticulously modeled and assessed through extensive S-Parameter measurements to discern its impact on analyzed excitation retrieval methods. The Rotating-element Electric-field Vector (REV) and Control Circuit Encoding (CCE) methods are simulated using a synthetic array with spherical wave expansion driven by output coefficients measured from the beamformer. Simulations are executed to compare the REV method with a Selective-REV variant, designed to enhance coefficient prediction accuracy by leveraging a priori knowledge of phase-shifter amplitude deviations. Additionally, amplitude, phase, and complex CCE encodings are employed to determine the encoding technique that best accommodates beamformer non-idealities. Finally, anechoic chamber measurements assess the pattern prediction capabilities of the analyzed methods, and an iterative calibration scheme is proposed to compensate for the studied beamformer errors due to its behavior.
引用
收藏
页码:55442 / 55455
页数:14
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