Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.

In this paper, we propose an anti-jam GPS receiver which suppresses interference by projecting the received signal on the noise subspace obtained via subspace tracking. The resulting interference-free signal is then processed by a beamformer, whose weight vector is obtained by maximizing the signal-...

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Main Authors: Sun, Wei., Amin, Moeness G.
Format: Villanova Faculty Authorship
Language:English
Published: 2005
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spelling Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
Sun, Wei.
Amin, Moeness G.
In this paper, we propose an anti-jam GPS receiver which suppresses interference by projecting the received signal on the noise subspace obtained via subspace tracking. The resulting interference-free signal is then processed by a beamformer, whose weight vector is obtained by maximizing the signal-tonoise ratio at the beamformer output. It is shown that the proposed receiver can effectively eliminate interfere and enhance the GPS signals at the receiver output.
2005
Villanova Faculty Authorship
vudl:173423
Proceedings of the IEEE International Conference on Acoustics, Speech, and Signal Processing, Philadelphia, PA, March 2005.
en
dc.title_txt_mv Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
dc.creator_txt_mv Sun, Wei.
Amin, Moeness G.
dc.description_txt_mv In this paper, we propose an anti-jam GPS receiver which suppresses interference by projecting the received signal on the noise subspace obtained via subspace tracking. The resulting interference-free signal is then processed by a beamformer, whose weight vector is obtained by maximizing the signal-tonoise ratio at the beamformer output. It is shown that the proposed receiver can effectively eliminate interfere and enhance the GPS signals at the receiver output.
dc.date_txt_mv 2005
dc.format_txt_mv Villanova Faculty Authorship
dc.identifier_txt_mv vudl:173423
dc.source_txt_mv Proceedings of the IEEE International Conference on Acoustics, Speech, and Signal Processing, Philadelphia, PA, March 2005.
dc.language_txt_mv en
author Sun, Wei.
Amin, Moeness G.
spellingShingle Sun, Wei.
Amin, Moeness G.
Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
author_facet Sun, Wei.
Amin, Moeness G.
dc_source_str_mv Proceedings of the IEEE International Conference on Acoustics, Speech, and Signal Processing, Philadelphia, PA, March 2005.
format Villanova Faculty Authorship
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dc_date_str 2005
dc_title_str Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
description In this paper, we propose an anti-jam GPS receiver which suppresses interference by projecting the received signal on the noise subspace obtained via subspace tracking. The resulting interference-free signal is then processed by a beamformer, whose weight vector is obtained by maximizing the signal-tonoise ratio at the beamformer output. It is shown that the proposed receiver can effectively eliminate interfere and enhance the GPS signals at the receiver output.
title Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
title_full Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
title_fullStr Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
title_full_unstemmed Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
title_short Maximum signal-to-noise ratio GPS anti-jam receiver with subspace tracking.
title_sort maximum signal-to-noise ratio gps anti-jam receiver with subspace tracking.
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