Low-Complexity Wideband Interference Mitigation for UWB ToA Estimation

Author:

Hechenberger Stefan12ORCID,Tertinek Stefan3ORCID,Arthaber Holger12ORCID

Affiliation:

1. Institute of Electrodynamics, Microwave and Circuit Engineering, TU Wien, 1040 Vienna, Austria

2. Christian Doppler Laboratory for Location-Aware Electronic Systems, 8010 Graz, Austria

3. NXP Semiconductors, 8101 Gratkorn, Austria

Abstract

Reliable time of arrival (ToA) estimation in dense multipath (DM) environments is a difficult task, especially when strong interference is present. The increasing number of multiple services in a shared spectrum comes with the demand for interference mitigation techniques. Multiple receiver elements, even in low-energy devices, allow for interference mitigation by processing coherent signals, but computational complexity has to be kept at a minimum. We propose a low-complexity, linearly constrained minimum variance (LCMV) interference mitigation approach in combination with a detection-based ToA estimator. The performance of the method within a realistic multipath and interference environment is evaluated based on measurements and simulations. A statistical analysis of the ToA estimation error is provided in terms of the mean absolute error (MAE), and the results are compared to those of a band-stop filter-based interference blocking approach. While the focus is on receivers with only two elements, an extension to multiple elements is discussed as well. Results show that the influence of strong interference can be drastically reduced, even when the interference bandwidth exceeds 60% of the signal bandwidth. Moreover, the algorithm is robust to uncertainties in the angle of arrival (AoA) of the desired signal. Based on these results, the proposed mitigation method is well suited when the interference bandwidth is large and when computational power is a critical resource.

Funder

the Austrian Federal Ministry for Digital and Economic Affairs

the National Foundation for Research, Technology and Development

the Christian Doppler Research Association

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference32 articles.

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5. (2020). On the Harmonised Use of the Frequency Band 5945-6425 MHz for Wireless Access Systems Including Radio Local Area Networks (WAS/RLAN) (Standard No. ECC decision (20)01).

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