Performance evaluation of mm wave single carrier systems with a novel NLOS channel model
In this paper, we evaluate the performance of a low-complexity 60 GHz system in a realistic non-line-of sight indoor environment. We consider a single-carrier transmission system that does not employ equalization, but only uses forward error correction. The channel model was created from measurement...
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oai:animorepository.dlsu.edu.ph:faculty_research-90692023-02-22T06:00:50Z Performance evaluation of mm wave single carrier systems with a novel NLOS channel model Baykas, Tuncer Materum, Lawrence Y. Kato, Shuzo In this paper, we evaluate the performance of a low-complexity 60 GHz system in a realistic non-line-of sight indoor environment. We consider a single-carrier transmission system that does not employ equalization, but only uses forward error correction. The channel model was created from measurements in a conference room in which a non-line-of-sight environment is created through a human-sized blocking object, and in which beamforming is applied at the receiver to track and obtain reflected paths. We obtained the bit error rate performance using channel impulse responses obtained from measurements and from the resulting channel model. Our evaluation indicates that the system can achieve the target bit error rate. As a result, we not only verified the new channel model but also show that complex equalization methods are not necessary to achieve reliable communication in indoor 60 GHz scenarios. 2013-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/8408 Faculty Research Work Animo Repository Millimeter wave communication systems Line-of-sight radio links Systems and Communications |
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Millimeter wave communication systems Line-of-sight radio links Systems and Communications Baykas, Tuncer Materum, Lawrence Y. Kato, Shuzo Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
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In this paper, we evaluate the performance of a low-complexity 60 GHz system in a realistic non-line-of sight indoor environment. We consider a single-carrier transmission system that does not employ equalization, but only uses forward error correction. The channel model was created from measurements in a conference room in which a non-line-of-sight environment is created through a human-sized blocking object, and in which beamforming is applied at the receiver to track and obtain reflected paths. We obtained the bit error rate performance using channel impulse responses obtained from measurements and from the resulting channel model. Our evaluation indicates that the system can achieve the target bit error rate. As a result, we not only verified the new channel model but also show that complex equalization methods are not necessary to achieve reliable communication in indoor 60 GHz scenarios. |
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Baykas, Tuncer Materum, Lawrence Y. Kato, Shuzo |
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Baykas, Tuncer Materum, Lawrence Y. Kato, Shuzo |
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Baykas, Tuncer |
title |
Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
title_short |
Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
title_full |
Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
title_fullStr |
Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
title_full_unstemmed |
Performance evaluation of mm wave single carrier systems with a novel NLOS channel model |
title_sort |
performance evaluation of mm wave single carrier systems with a novel nlos channel model |
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Animo Repository |
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2013 |
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https://animorepository.dlsu.edu.ph/faculty_research/8408 |
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