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Performance of Orthogonal and Non-Orthogonal Space Time Block Code Through the Underwater Wireless Optical Channels
Multiple input multiple output (MIMO) schemes have been integrated with the space-time (ST) codes to enhance the reliability of information transfer across the wireless channel. Due to their rich algebraic structure, space time block codes (STBCs) such as orthogonal STBCs (OSTBC), quasi-orthogonal S...
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creator | Naik, Ramavath Prasad Mans, Raghavendra Acharya, U Shripathi Shetty C. S., Savidhan |
description | Multiple input multiple output (MIMO) schemes have been integrated with the space-time (ST) codes to enhance the reliability of information transfer across the wireless channel. Due to their rich algebraic structure, space time block codes (STBCs) such as orthogonal STBCs (OSTBC), quasi-orthogonal STBC (QOSTBC), and non-orthogonal STBCs (NOSTBC), offer efficient implementation of a reliable communication system. The underwater wireless optical communication (UWOC) channel is perturbed by the weak turbulence and fading (referred as scintillation), and shares many properties with a wireless channel. In this paper, we have designed OSTBC/QOSTBC and NOSTBC schemes for UWOC system, which can significantly improve the integrity of information transfer across the underwater optical wireless channels. These codes have been suitably conditioned to operate with an UWOC system employing intensity modulation. Monte-Carlo bit error rate simulations of the proposed schemes are plotted and presented with respect to the available transmit power in dB. |
doi_str_mv | 10.1109/ANTS59832.2023.10469512 |
format | conference_proceeding |
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S., Savidhan</creatorcontrib><title>Performance of Orthogonal and Non-Orthogonal Space Time Block Code Through the Underwater Wireless Optical Channels</title><title>2023 IEEE International Conference on Advanced Networks and Telecommunications Systems (ANTS)</title><addtitle>ANTS</addtitle><description>Multiple input multiple output (MIMO) schemes have been integrated with the space-time (ST) codes to enhance the reliability of information transfer across the wireless channel. Due to their rich algebraic structure, space time block codes (STBCs) such as orthogonal STBCs (OSTBC), quasi-orthogonal STBC (QOSTBC), and non-orthogonal STBCs (NOSTBC), offer efficient implementation of a reliable communication system. The underwater wireless optical communication (UWOC) channel is perturbed by the weak turbulence and fading (referred as scintillation), and shares many properties with a wireless channel. In this paper, we have designed OSTBC/QOSTBC and NOSTBC schemes for UWOC system, which can significantly improve the integrity of information transfer across the underwater optical wireless channels. These codes have been suitably conditioned to operate with an UWOC system employing intensity modulation. Monte-Carlo bit error rate simulations of the proposed schemes are plotted and presented with respect to the available transmit power in dB.</description><subject>Adaptive optics</subject><subject>Bit error rate</subject><subject>Codes</subject><subject>MIMO</subject><subject>Non-orthogonal STBC</subject><subject>Orthogonal STBC</subject><subject>Quality of service</subject><subject>Quasi-orthogonal STBC</subject><subject>Telecommunications</subject><subject>Throughput</subject><subject>UWOC</subject><subject>Wireless communication</subject><issn>2153-1684</issn><isbn>9798350307672</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2023</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><recordid>eNpNUNFKAzEQjIJgqf0DwfzA1WRzl1we66FWKD2hLT6WeNnrnV6TkpyIf29ABWcfhhlmB3YJueFszjnTt4v1dlPoUsAcGIg5Z7nUBYczMtMq2QUTTEkF52QCvBAZl2V-SWYxvrEEAZopNiHxGUPrw9G4BqlvaR3Gzh-8MwM1ztK1d9k_a3MyKbbtj0jvBt-808rbpLvgPw4dHTukO2cxfJoRA33pAw4YI61PY9-k7aozzuEQr8hFa4aIs1-ekt3D_bZaZqv68alarLKecz1m2pY6Ry6MBCEkgwYVMPmK6RquZC4LqxsomZAKCwuWc1BW6bzENo1pQEzJ9U9vj4j7U-iPJnzt__4kvgEhpl0x</recordid><startdate>20231217</startdate><enddate>20231217</enddate><creator>Naik, Ramavath Prasad</creator><creator>Mans, Raghavendra</creator><creator>Acharya, U Shripathi</creator><creator>Shetty C. 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The underwater wireless optical communication (UWOC) channel is perturbed by the weak turbulence and fading (referred as scintillation), and shares many properties with a wireless channel. In this paper, we have designed OSTBC/QOSTBC and NOSTBC schemes for UWOC system, which can significantly improve the integrity of information transfer across the underwater optical wireless channels. These codes have been suitably conditioned to operate with an UWOC system employing intensity modulation. Monte-Carlo bit error rate simulations of the proposed schemes are plotted and presented with respect to the available transmit power in dB.</abstract><pub>IEEE</pub><doi>10.1109/ANTS59832.2023.10469512</doi><tpages>6</tpages></addata></record> |
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subjects | Adaptive optics Bit error rate Codes MIMO Non-orthogonal STBC Orthogonal STBC Quality of service Quasi-orthogonal STBC Telecommunications Throughput UWOC Wireless communication |
title | Performance of Orthogonal and Non-Orthogonal Space Time Block Code Through the Underwater Wireless Optical Channels |
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