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Journal Article
IEEE Photonics Technology Letters, ISSN 1041-1135, 10/2009, Volume 21, Issue 20, pp. 1511 - 1513
Journal Article
IEEE Transactions on Signal Processing, ISSN 1053-587X, 11/2013, Volume 61, Issue 22, pp. 5536 - 5549
Journal Article
Journal of Lightwave Technology, ISSN 0733-8724, 12/2012, Volume 30, Issue 24, pp. 3824 - 3835
Journal Article
2010, 1, ISBN 0470745053, 62
This chapter contains sections titled: Basic Principles of Bandpass Modulation PSK MSK QAM OFDM References 
data modulating a radio frequency bearer ‐ as a sinusoid, or carrier wave | signal representation as a vector ‐ in orthonormal signal space | Hilbert space, distinguishing Hilbert space from vector space ‐ inner product, except multiplication and addition and completeness | orthogonal frequency division multiplexing (OFDM) ‐ frequency division multiplexing (FDM) technique extension | modulation, transferring a source data ‐ over a channel suitable for channel | bandpass modulation ‐ based on modifying parameters | Additive white Gaussian noise (AWGN) ‐ linear combination of basis functions as signals | wireless communication system ‐ as a cascade of filters | Hilbert space ‐ called signal space | symbol error probability under conditions of AWGN channel – calculations, with the same technique for calculating error probability for QPSK | Data modulating a radio frequency bearer-as a sinusoid, or carrier wave | Data modulating a radio frequency bearer - as a sinusoid, or carrier wave | Hilbert space, distinguishing Hilbert space from vector space-inner product, except multiplication and addition and completeness | Additive white Gaussian noise (AWGN) - linear combination of basis functions as signals | Hilbert space, distinguishing Hilbert space from vector space - inner product, except multiplication and addition and completeness | Modulation, transferring a source data - over a channel suitable for channel | Wireless communication system - as a cascade of filters | Bandpass modulation - based on modifying parameters | Symbol error probability under conditions of AWGN channel - calculations, with the same technique for calculating error probability for QPSK | Orthogonal frequency division multiplexing (OFDM)-frequency division multiplexing (FDM) technique extension | Signal representation as a vector - in orthonormal signal space | Orthogonal frequency division multiplexing (OFDM) - frequency division multiplexing (FDM) technique extension | Symbol error probability under conditions of AWGN channel-calculations, with the same technique for calculating error probability for QPSK | Modulation, transferring a source data-over a channel suitable for channel | Additive white Gaussian noise (AWGN)-linear combination of basis functions as signals | Hilbert space - called signal space | Hilbert space-called signal spaceSignal representation as a vector-in orthonormal signal space | Wireless communication system-as a cascade of filters | Bandpass modulation-based on modifying parameters
Book Chapter
IEEE Transactions on Communications, ISSN 0090-6778, 07/2018, Volume 66, Issue 7, pp. 2947 - 2957
Journal Article
IEEE Transactions on Communications, ISSN 0090-6778, 01/2019, Volume 67, Issue 1, pp. 350 - 363
Journal Article
IEEE Transactions on Vehicular Technology, ISSN 0018-9545, 08/2018, Volume 67, Issue 8, pp. 7429 - 7436
Journal Article
IEEE Communications Surveys & Tutorials, ISSN 1553-877X, 2018, Volume 20, Issue 1, pp. 629 - 646
Fifth generation (5G) wireless networks face various challenges in order to support large-scale heterogeneous traffic and users, therefore new modulation and... 
Wireless communication | NOMA | 5G mobile communication | OFDM | Modulation | Tutorials | non-orthogonal multiple access | modulation | INTERFERENCE ALIGNMENT | CAPACITY | PERFORMANCE | COMPUTER SCIENCE, INFORMATION SYSTEMS | TELECOMMUNICATIONS | COGNITIVE RADIO | 5G | MULTIUSER DETECTION | TRANSMISSION | SYSTEMS | SPECTRUM | MIMO-NOMA
Journal Article
IEEE Communications Letters, ISSN 1089-7798, 08/2014, Volume 18, Issue 8, pp. 1447 - 1450
Orthogonal frequency division multiplexing with index modulation (OFDM-IM) is a recently developed technique which modulates part of the information bits using... 
orthogonal frequency division multiplexing | OFDM | Bit error rate | Euclidean distance | Interleaved subcarrier-index modulation | Binary phase shift keying | maximum-likelihood detection | Indexes | TELECOMMUNICATIONS
Journal Article
Journal of Lightwave Technology, ISSN 0733-8724, 01/2015, Volume 33, Issue 1, pp. 117 - 125
Journal Article
IEEE Transactions on Wireless Communications, ISSN 1536-1276, 10/2015, Volume 14, Issue 10, pp. 5350 - 5359
Journal Article
IEEE Transactions on Signal Processing, ISSN 1053-587X, 04/2016, Volume 64, Issue 8, pp. 1919 - 1932
Journal Article
IEEE Communications Letters, ISSN 1089-7798, 04/2017, Volume 21, Issue 4, pp. 761 - 764
Dual-mode index modulation aided orthogonal frequency division multiplexing (DM-OFDM) is recently proposed, where subcarriers are partitioned into OFDM... 
Fading channels | maximum likelihood detection | interleaving technique | OFDM | Modulation | Detectors | Receivers | Indexes | log-likelihood ratio based detection | Niobium | index modulation | Orthogonal frequency division multiplexing (OFDM) | TELECOMMUNICATIONS
Journal Article
Journal Article
IEEE Transactions on Vehicular Technology, ISSN 0018-9545, 09/2018, Volume 67, Issue 9, pp. 8192 - 8204
Journal Article
IEEE Access, ISSN 2169-3536, 2016, Volume 4, pp. 2580 - 2593
Journal Article
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