Title :
A Wideband, Wide Scanning Tightly Coupled Dipole Array With Integrated Balun (TCDA-IB)
Author :
Doane, Jonathan P. ; Sertel, Kubilay ; Volakis, J.L.
Author_Institution :
ElectroScience Lab., Ohio State Univ., Columbus, OH, USA
Abstract :
A key challenge in the design of wideband dipole phased arrays is the design of equally wideband baluns which are sufficiently compact to fit within the unit cell (typically in the linear dimension at low frequencies). In this paper, we exploit the reactance of a compact Marchand balun as an impedance matching network for each array element. The elimination of bulky external baluns results in a significant reduction of size, weight and cost, while the bandwidth is simultaneously improved by over 30%, compared to standard feeding techniques. In this manner, a tightly coupled dipole array with an integrated balun (TCDA-IB) is developed which achieves 7.35:1 bandwidth (0.68 - 5.0 GHz) while scanning to ±45° in all directions, subject to . In a dual-polarization configuration, the TCDA-IB has low cross polarization of over the majority of the band. Measured results are presented for a prototype 8 × 8 element TCDA-IB, showing good agreement with simulation.
Keywords :
antenna feeds; antenna phased arrays; baluns; broadband antennas; dipole antenna arrays; electromagnetic wave polarisation; impedance matching; TCDA-IB; array element; compact Marchand balun reactance; cost reduction; dual-polarization configuration; frequency 0.68 GHz to 5.0 GHz; impedance matching network; integrated balun; linear dimension; low-cross polarization; size reduction; standard feeding technique; weight reduction; wideband balun; wideband dipole phased array design; wideband wide-scanning tightly-coupled dipole array; Antenna arrays; broadband antennas; impedance matching; phased arrays;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2267199