This study describes the design of a dual-band microstrip antenna with four isolated outputs. The proposed antenna has been optimised to operate in the E5a/E5b and E1 bands of the European satellite navigation system Galileo. Each pair of outputs delivers the signal in only one of the operating bands; hence the antenna operates also as a diplexer. The operation principle, the design procedure and measured results are presented and discussed. It is demonstrated by means of measured results that the designed antenna exhibits high isolation between its output ports and that good performance in terms of radiation pattern and polarisation purity was obtained.Peer Reviewe
A dual-band MIMO antenna with a high isolation is presented in this paper. The proposed MIMO antenna...
The evolution of the Global Navigation Satellite System (GNSS) is aiming to provide more benefits in...
[[abstract]]In this paper, a new design of an integrated antenna for the applications of GPS and UMT...
This study describes the design of a dual-band microstrip antenna with four isolated outputs. The pr...
The design of robust navigation systems requires the receiver to be nearly immune against interferen...
This Master Thesis presents the design of a novel antenna geometry for Galileo satellite navigation ...
This paper presents the results of the development of a microstrip antenna that presents dual-band o...
Projecte fet en col.laboració amb l'empresa DLRThis Master Thesis presents the design of a novel ant...
Projecte fet en col.laboració amb l'empresa DLRThis Master Thesis presents the design of a novel ant...
This master’s thesis introduces to the reader with a modern antenna type the microstrip patch antenn...
[[abstract]]The design of an integrated dual-band antenna for global positioning system (GPS) and un...
This article proposes a novel feeding mechanism to improve the isolation characteristics in the GPS ...
For precise satellite navigation, the reception of more than one frequency band of the whole GPS/Gal...
Abstract- In various applications, Dual-frequency/Dual-bands are desirable. Dual Band patch antennas...
Compact multi-band antenna suitable for Global Navigation Satellite Systems is proposed in this pape
A dual-band MIMO antenna with a high isolation is presented in this paper. The proposed MIMO antenna...
The evolution of the Global Navigation Satellite System (GNSS) is aiming to provide more benefits in...
[[abstract]]In this paper, a new design of an integrated antenna for the applications of GPS and UMT...
This study describes the design of a dual-band microstrip antenna with four isolated outputs. The pr...
The design of robust navigation systems requires the receiver to be nearly immune against interferen...
This Master Thesis presents the design of a novel antenna geometry for Galileo satellite navigation ...
This paper presents the results of the development of a microstrip antenna that presents dual-band o...
Projecte fet en col.laboració amb l'empresa DLRThis Master Thesis presents the design of a novel ant...
Projecte fet en col.laboració amb l'empresa DLRThis Master Thesis presents the design of a novel ant...
This master’s thesis introduces to the reader with a modern antenna type the microstrip patch antenn...
[[abstract]]The design of an integrated dual-band antenna for global positioning system (GPS) and un...
This article proposes a novel feeding mechanism to improve the isolation characteristics in the GPS ...
For precise satellite navigation, the reception of more than one frequency band of the whole GPS/Gal...
Abstract- In various applications, Dual-frequency/Dual-bands are desirable. Dual Band patch antennas...
Compact multi-band antenna suitable for Global Navigation Satellite Systems is proposed in this pape
A dual-band MIMO antenna with a high isolation is presented in this paper. The proposed MIMO antenna...
The evolution of the Global Navigation Satellite System (GNSS) is aiming to provide more benefits in...
[[abstract]]In this paper, a new design of an integrated antenna for the applications of GPS and UMT...