Publication: Index modulation-based flexible waveform design
| dc.contributor.coauthor | Tusha, Seda | |
| dc.contributor.coauthor | Tusha, Armed | |
| dc.contributor.coauthor | Arslan, Hüseyin | |
| dc.contributor.department | Department of Electrical and Electronics Engineering | |
| dc.contributor.facultymember | Yes | |
| dc.contributor.kuauthor | Başar, Ertuğrul | |
| dc.contributor.schoolcollegeinstitute | College of Engineering | |
| dc.date.accessioned | 2024-11-09T23:44:14Z | |
| dc.date.issued | 2020 | |
| dc.description.abstract | The service limitations of conventional orthogonal frequency division multiplexing (OFDM)-based technologies have motivated academia and industry to seek for new solutions in order to support the emerging services and use cases of future wireless networks. In this chapter, promising frequency-domain index modulation (IM) options, i.e., OFDM with IM (OFDM-IM), generalized OFDM with index modulation (OFDM-GIM), dual-mode OFDM (DM-OFDM), OFDM with interleaved subcarrier IM (OFDM-ISIM), are considered as complementary waveforms of classical OFDM. In frequency-domain IM, data information is sent not only via modulated subcarriers but also via proper activation of the subcarriers resulting in higher spectral efficiency (SE) and better error performance compared with OFDM-based schemes. Furthermore, features of OFDM, including intelligent subcarrier selection and adaptive activation ratio, are assessed. Lastly, the flexible utilization of these features is discussed to control channel effects, hardware impairments, asynchronicity, and to serve wide range requirements of fifth generation (5G) and beyond networks. | |
| dc.description.fulltext | No | |
| dc.description.harvestedfrom | Manual | |
| dc.description.indexedby | WOS | |
| dc.description.indexedby | Scopus | |
| dc.description.openaccess | NO | |
| dc.description.peerreviewstatus | N/A | |
| dc.description.publisherscope | International | |
| dc.description.readpublish | N/A | |
| dc.description.sponsoredbyTubitakEu | N/A | |
| dc.description.sponsorship | Scientific and Technological Research Council of Turkey (TUBITAK) [218E035] This work was supported in part by The Scientific and Technological Research Council of Turkey (TUBITAK) under Grant 218E035. | |
| dc.description.studentonlypublication | No | |
| dc.description.studentpublication | No | |
| dc.description.version | N/A | |
| dc.identifier.WoSQuartile | N/A | |
| dc.identifier.embargo | N/A | |
| dc.identifier.endpage | 194 | |
| dc.identifier.grantno | 2.18E+37 | |
| dc.identifier.isbn | 9781839530807 | |
| dc.identifier.isbn | 9781839530791 | |
| dc.identifier.scopus | 2-s2.0-85115724743 | |
| dc.identifier.startpage | 175 | |
| dc.identifier.uri | https://hdl.handle.net/20.500.14288/13629 | |
| dc.identifier.wos | 000721696700021 | |
| dc.keywords | Spectral efficiency | |
| dc.keywords | Adaptive waveforms | |
| dc.keywords | Subcarrier activation | |
| dc.language.iso | eng | |
| dc.publisher | Inst Engineering Tech-Iet | |
| dc.relation.affiliation | Koç University | |
| dc.relation.collection | Koç University Institutional Repository | |
| dc.relation.ispartof | Flexible and Cognitive Radio Access Technologies for 5g and Beyond | |
| dc.relation.openaccess | N/A | |
| dc.rights | N/A | |
| dc.subject | Engineering | |
| dc.subject | Electrical and Electronic | |
| dc.subject | Telecommunications | |
| dc.title | Index modulation-based flexible waveform design | |
| dc.type | Book Chapter | |
| dspace.entity.type | Publication | |
| local.contributor.kuauthor | Başar, Ertuğrul | |
| relation.isOrgUnitOfPublication | 21598063-a7c5-420d-91ba-0cc9b2db0ea0 | |
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| relation.isParentOrgUnitOfPublication | 8e756b23-2d4a-4ce8-b1b3-62c794a8c164 | |
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