DocumentCode :
3286000
Title :
Deterministic subarray feed line adjustment method for array antennas
Author :
Takemura, N. ; Ohtsuka, M. ; Miyashita, H. ; Makino, Shigeru
Author_Institution :
Mitsubishi Electr. Corp., Kanagawa, Japan
fYear :
2003
fDate :
15-17 Oct. 2003
Firstpage :
136
Lastpage :
137
Abstract :
The authors propose a deterministic subarray feed line adjustment method for array antennas. In a typical base-station antenna with subarray feed cables, lengths of fine-tuning cables are adjusted to obtain the designed radiation characteristics after the antenna is provided. However, determination of the lengths is normally a time-consuming effort because the array excitation deviates from the designed value by the multi-reflection etc. between the components. The Rotating Element electric field Vector (REV) method is known as a phased array calibration method, however it cannot be used for such structures. In this paper, we describe the optimization theory of subarray feed line and the optimization procedure of the proposed method that determines the lengths of the fine-tuning cables with the least-square method by using S-parameters of array antenna components. We confirm the validity of this theory by simulation results. In this way, we can determine the optimal lengths at once and can realize desired array excitation with the multi-reflections of subarray feed circuits taken into consideration.
Keywords :
S-parameters; antenna arrays; antenna feeds; antenna radiation patterns; electric fields; electromagnetic wave reflection; least squares approximations; mobile radio; optimisation; REV method; Rotating Element electric field Vector; S-parameters; array antennas; base-station antenna; deterministic subarray feed line adjustment; fine-tuning cable lengths; least-square method; multi-reflection; optimization theory; radiation characteristics; subarray feed cables; subarray feed circuits; Antenna accessories; Antenna arrays; Antenna feeds; Antenna theory; Cables; Calibration; Circuit simulation; Optimization methods; Phased arrays; Scattering parameters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communication Technology, 2003. IEEE Topical Conference on
Print_ISBN :
0-7803-8196-3
Type :
conf
DOI :
10.1109/WCT.2003.1321457
Filename :
1321457
Link To Document :
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