Abstract:
Two innovations multiple access technologies for efficient spectrum use in future wireless communications standards, non-orthogonal multiple access (NOMA) and cognitive r...Show MoreMetadata
Abstract:
Two innovations multiple access technologies for efficient spectrum use in future wireless communications standards, non-orthogonal multiple access (NOMA) and cognitive radio (CR). The NOMA is one of the most promising performance improvement methods in 5G cells and CR will make the most of dynamic spectrum access and diversity throughout the broad spectrum possible, to alleviate the spectrum scarcity problem and meet the huge demands for wireless connectivity. The paper aims to look and survey at methods and techniques that maximize spectrum efficiency and performance. In order to evaluate the important functions of spectrum optimization techniques, a descriptive approach was used. We found that these are effective methods to solve the problems of a specific frequency spectrum and additional spectral efficiency benefits would be provided. combining NOMA and CR can meet 5G standards. This article discusses the basic principle of NOMA, the basic concept of cognitive radio, the spectrum sharing way, and the advantages and challenges of NOMA and CR spectrum sharing.
Published in: 2021 IEEE International Conference on Smart Information Systems and Technologies (SIST)
Date of Conference: 28-30 April 2021
Date Added to IEEE Xplore: 29 June 2021
ISBN Information:
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- IEEE Keywords
- Index Terms
- Non-orthogonal Multiple Access ,
- Non-orthogonal Multiple Access Technique ,
- Spectrum Sharing ,
- 5G Techniques ,
- Wireless Networks ,
- Frequency Spectrum ,
- Availability Of Technologies ,
- Multiple Access ,
- Spectrum Efficiency ,
- Cognitive Radio ,
- Data Rate ,
- Frequency Band ,
- White Noise ,
- Gaussian Noise ,
- Multiplexing ,
- Additive Noise ,
- Base Station ,
- Multiple Users ,
- Low Latency ,
- Cognitive Networks ,
- Orthogonal Multiple Access ,
- Code Division Multiple Access ,
- Secondary Users ,
- Successive Interference Cancellation ,
- Frequency Division Multiple Access ,
- Time Division Multiple Access ,
- Unlicensed Spectrum ,
- Wireless Services ,
- Co-channel Interference ,
- Code Domain
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Non-orthogonal Multiple Access ,
- Non-orthogonal Multiple Access Technique ,
- Spectrum Sharing ,
- 5G Techniques ,
- Wireless Networks ,
- Frequency Spectrum ,
- Availability Of Technologies ,
- Multiple Access ,
- Spectrum Efficiency ,
- Cognitive Radio ,
- Data Rate ,
- Frequency Band ,
- White Noise ,
- Gaussian Noise ,
- Multiplexing ,
- Additive Noise ,
- Base Station ,
- Multiple Users ,
- Low Latency ,
- Cognitive Networks ,
- Orthogonal Multiple Access ,
- Code Division Multiple Access ,
- Secondary Users ,
- Successive Interference Cancellation ,
- Frequency Division Multiple Access ,
- Time Division Multiple Access ,
- Unlicensed Spectrum ,
- Wireless Services ,
- Co-channel Interference ,
- Code Domain
- Author Keywords