Simultaneous Channel Estimation for Pulsed-Modulation Optical Wireless Communications
In this paper, suitable estimation sequences and algorithms for the simultaneous channel estimation in an optical wireless communication system are assessed. We focus on a multi-user-MISO setup and an on-off-keying based pulsed-modulation physical layer. The performance of the tested configurations...
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Published in: | ICC 2022 - IEEE International Conference on Communications pp. 565 - 570 |
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16-05-2022
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Abstract | In this paper, suitable estimation sequences and algorithms for the simultaneous channel estimation in an optical wireless communication system are assessed. We focus on a multi-user-MISO setup and an on-off-keying based pulsed-modulation physical layer. The performance of the tested configurations is evaluated using simulations under the constraints of imperfect time synchronization between the transmitters and band-pass distortions. Furthermore, a new family of binary channel estimation sequences, named Variable Sampling Factor (VSF) sequences, is proposed with the goal of enabling simultaneous estimation even between terminals using different sample clock rates. Despite a high variance of channel gains in the used model, the best presented algorithm is able to detect 6 out of 8 transmitters on average. |
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AbstractList | In this paper, suitable estimation sequences and algorithms for the simultaneous channel estimation in an optical wireless communication system are assessed. We focus on a multi-user-MISO setup and an on-off-keying based pulsed-modulation physical layer. The performance of the tested configurations is evaluated using simulations under the constraints of imperfect time synchronization between the transmitters and band-pass distortions. Furthermore, a new family of binary channel estimation sequences, named Variable Sampling Factor (VSF) sequences, is proposed with the goal of enabling simultaneous estimation even between terminals using different sample clock rates. Despite a high variance of channel gains in the used model, the best presented algorithm is able to detect 6 out of 8 transmitters on average. |
Author | Bober, Kai Lennert Freund, Ronald Schostak, Jonathan Hinrichs, Malte Jungnickel, Volker |
Author_xml | – sequence: 1 givenname: Jonathan surname: Schostak fullname: Schostak, Jonathan email: jonathan.schostak@hhi.fraunhofer.de organization: Heinrich Hertz Institute,Photonic Networks and Systems, Fraunhofer Institute for Telecommunications,Berlin,Germany – sequence: 2 givenname: Malte surname: Hinrichs fullname: Hinrichs, Malte organization: Heinrich Hertz Institute,Photonic Networks and Systems, Fraunhofer Institute for Telecommunications,Berlin,Germany – sequence: 3 givenname: Kai Lennert surname: Bober fullname: Bober, Kai Lennert organization: Heinrich Hertz Institute,Photonic Networks and Systems, Fraunhofer Institute for Telecommunications,Berlin,Germany – sequence: 4 givenname: Ronald surname: Freund fullname: Freund, Ronald organization: Heinrich Hertz Institute,Photonic Networks and Systems, Fraunhofer Institute for Telecommunications,Berlin,Germany – sequence: 5 givenname: Volker surname: Jungnickel fullname: Jungnickel, Volker organization: Heinrich Hertz Institute,Photonic Networks and Systems, Fraunhofer Institute for Telecommunications,Berlin,Germany |
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Snippet | In this paper, suitable estimation sequences and algorithms for the simultaneous channel estimation in an optical wireless communication system are assessed.... |
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SubjectTerms | amplitude shift keying Channel estimation digital communication digital signal processing Estimation Interference cancellation Large scale integration LiFi Optical distortion Optical receivers optical wireless communications physical layer visible light communication Wireless communication |
Title | Simultaneous Channel Estimation for Pulsed-Modulation Optical Wireless Communications |
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