scholarly journals Ultra-Wideband Angle of Arrival Estimation Based on Angle-Dependent Antenna Transfer Function

Sensors ◽  
2019 ◽  
Vol 19 (20) ◽  
pp. 4466 ◽  
Author(s):  
Anton Ledergerber ◽  
Raffaello D’Andrea

Ultra-wideband radio signals are used in communication, indoor localization and radar systems, due to the high data rates, the high resilience to fading and the fine temporal resolution that can be achieved with a large bandwidth. This paper introduces a new method to estimate the angle of arrival of ultra-wideband radio signals with which existing time-of-flight based localization and radar systems can be augmented at no additional hardware cost. The method does not require multiple transmitter or receiver antennas, or relative motion between transmitter and receiver. Instead, it is solely based on the angle-dependent impulse response function of ultra-wideband antennas. Datasets on which the method is evaluated are publicly available. The method is further applied to a localization problem and it is shown how a robot can self-localize solely based on these angle of arrival estimates, and how they can be combined with time-of-flight measurements. Even though existing angle of arrival techniques that use multiple antennas show better accuracy, the method presented herein looks promising enough to be developed further and could potentially lead to electronically and mechanically simpler angle of arrival estimation technology.

2008 ◽  
Vol 20 (11) ◽  
pp. 945-947 ◽  
Author(s):  
R. Llorente ◽  
T. Alves ◽  
M. Morant ◽  
M. Beltran ◽  
J. Perez ◽  
...  

Navigation ◽  
2013 ◽  
Vol 60 (2) ◽  
pp. 97-111 ◽  
Author(s):  
Junlin Yan ◽  
Christian C. J. M. Tiberius ◽  
Giovanni Bellusci ◽  
Gerard J. M. Janssen

2018 ◽  
Vol 14 (4) ◽  
pp. 290-297 ◽  
Author(s):  
Gaurav Bansal ◽  
Anupma Marwaha ◽  
Amanpreet Singh ◽  
Rajni Bala ◽  
Sanjay Marwaha

Objective: The next generation wireless communication systems are a major research concern of THz systems. The THz band offers very large bandwidth which is required for applications involving ultra high data rates. The objective of this research paper is therefore, greatly focused on the design and analysis of an ultra wideband antenna providing bandwidth enhancement. The use of graphene patch as conducting material in the antenna possesses enormous potential to enhance gain, radiation efficiency, radiated power and bandwidth on account of extraordinary electromagnetic properties and functionalities of the graphene material. Method: The graphene based nano-antenna has been accurately designed using finite element method (FEM) based high frequency simulator (HFSS) software. This design introduces truncated corners/edges in square nano-patch antenna with semi-circular radius of 0.7 µm to the microstrip feeding line on SiO2 as substrate with thickness of 1.8 µm and permittivity of εr= 4 in THz region. Result: The proposed design achieves the impedance bandwidth of 1.39 THz at 13.0 THz, 1.36 THz at 15.0 THz and more than 5THz at 18.0 THz. The 3D plot depicts gain and directivity, having maximum value of 7.1011 dB and 7.2781 dB respectively at the resonant frequency. Truncations in the antenna introduce co polarization and cross polarization. Further the radiation efficiency for graphene based arc truncated square patch antenna on silicon dioxide substrate is determined as a function of frequency for operating frequency band and has been observed to be more than 90% at respective resonant frequencies. Conclusion: The performance of graphene based antenna has been evaluated considering equally truncated arcs on its opposite corners and their effect on antenna characteristics is analyzed by determining different parameters including bandwidth, return loss, VSWR, directivity, gain, radiation efficiency, 2D and 3D radiation patterns. The antenna provides improved impedance bandwidth of more than 5 THz in the band of operation from 10 to 20 THz. Moreover the gain, directivity and radiation efficiency achieved are much improved for the proposed graphene antenna.


Author(s):  
Nadia Ghariani ◽  
Mohamed Salah Karoui ◽  
Mondher Chaoui ◽  
Mongi Lahiani ◽  
Hamadi Ghariani

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