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2021 | OriginalPaper | Chapter

1. Introduction

Authors : Anirban Bhowal, Rakhesh Singh Kshetrimayum

Published in: Advanced Spatial Modulation Systems

Publisher: Springer Singapore

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Abstract

This chapter deals with the basic introduction to the concept of spatial modulation and advanced spatial modulation. The chapter also lists out the various forms of communication to which such spatial modulation schemes can be applied. Performance metrics are also discussed which would be used for analyzing the systems in the subsequent chapters.

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Literature
1.
go back to reference M. Cheffena, M. Mohamed, The application of lognormal mixture shadowing model for B2B channels. IEEE Sens. Lett. 2(3), 1–4 (2018)CrossRef M. Cheffena, M. Mohamed, The application of lognormal mixture shadowing model for B2B channels. IEEE Sens. Lett. 2(3), 1–4 (2018)CrossRef
2.
go back to reference M. Cheffena, Time-varying on-body wireless channel model during walking. EURASIP J. Wirel. Commun. Netw. 2014(29), 1–11 (2014) M. Cheffena, Time-varying on-body wireless channel model during walking. EURASIP J. Wirel. Commun. Netw. 2014(29), 1–11 (2014)
3.
go back to reference R. Khan, M.M. Alam, Body-to-body communication: Applications, system design aspects and performance evaluation, in 2018 12th International Symposium on Medical Information and Communication Technology (ISMICT), March 2018, pp. 1–2 R. Khan, M.M. Alam, Body-to-body communication: Applications, system design aspects and performance evaluation, in 2018 12th International Symposium on Medical Information and Communication Technology (ISMICT), March 2018, pp. 1–2
4.
go back to reference X. Yang, S.A. Shah, A. Ren, N. Zhao, Z. Zhang, D. Fan, J. Zhao, W. Wang, M. Ur-Rehman, Freezing of gait detection considering leaky wave cable. IEEE Trans. Antennas Propag. 67(1), 554–561 (2019)CrossRef X. Yang, S.A. Shah, A. Ren, N. Zhao, Z. Zhang, D. Fan, J. Zhao, W. Wang, M. Ur-Rehman, Freezing of gait detection considering leaky wave cable. IEEE Trans. Antennas Propag. 67(1), 554–561 (2019)CrossRef
5.
go back to reference S. Sangodoyin, A.F. Molisch, A measurement-based model of BMI impact on UWB multi-antenna PAN and B2B channels. IEEE Trans. Commun. 66(12), 6494–6510 (2018)CrossRef S. Sangodoyin, A.F. Molisch, A measurement-based model of BMI impact on UWB multi-antenna PAN and B2B channels. IEEE Trans. Commun. 66(12), 6494–6510 (2018)CrossRef
6.
go back to reference X. Yang, S.A. Shah, A. Ren, N. Zhao, D. Fan, F. Hu, M. Ur Rehman, K.M. vonDeneen, J. Tian, Wandering pattern sensing at S-band. IEEE J. Biomed. Health Inform. 22(6), 1863–1870 (2018) X. Yang, S.A. Shah, A. Ren, N. Zhao, D. Fan, F. Hu, M. Ur Rehman, K.M. vonDeneen, J. Tian, Wandering pattern sensing at S-band. IEEE J. Biomed. Health Inform. 22(6), 1863–1870 (2018)
7.
go back to reference X. Yang, S.A. Shah, A. Ren, D. Fan, N. Zhao, S. Zheng, W. Zhao, W. Wang, P.J. Soh, Q.H. Abbasi, S-band sensing-based motion assessment framework for cerebellar dysfunction patients. IEEE Sens. J. 1–1 (2019) X. Yang, S.A. Shah, A. Ren, D. Fan, N. Zhao, S. Zheng, W. Zhao, W. Wang, P.J. Soh, Q.H. Abbasi, S-band sensing-based motion assessment framework for cerebellar dysfunction patients. IEEE Sens. J. 1–1 (2019)
8.
go back to reference A. Samanta, Y. Li, Distributed pricing policy for cloud-assisted body-to-body networks with optimal QoS and energy considerations. IEEE Trans Serv Comput 1–1 (2018) A. Samanta, Y. Li, Distributed pricing policy for cloud-assisted body-to-body networks with optimal QoS and energy considerations. IEEE Trans Serv Comput 1–1 (2018)
9.
go back to reference A. Meharouech, J. Elias, A. Mehaooua, Moving towards body-to-body sensor networks for ubiquitous applications: a survey. J. Sensor Actuator Netw. 8(2), 1–27 (2019) A. Meharouech, J. Elias, A. Mehaooua, Moving towards body-to-body sensor networks for ubiquitous applications: a survey. J. Sensor Actuator Netw. 8(2), 1–27 (2019)
10.
go back to reference Y. Fu, J. Liu, Monitoring system for sports activities using body area networks, in Proceedings of the 8th International Conference on Body Area Networks, ser. BodyNets ’13 (2013), pp. 408–413 Y. Fu, J. Liu, Monitoring system for sports activities using body area networks, in Proceedings of the 8th International Conference on Body Area Networks, ser. BodyNets ’13 (2013), pp. 408–413
11.
go back to reference H.A. Willebrand, B.S. Ghuman, Fiber optics without fiber. IEEE Spectrum 38(8), 40–45 (2001)CrossRef H.A. Willebrand, B.S. Ghuman, Fiber optics without fiber. IEEE Spectrum 38(8), 40–45 (2001)CrossRef
12.
go back to reference W.P.Z. Ghassemloo, S. Rajbhandari, Optical Wireless Communications: System and channel modelling with Matlab (CRC Press, 2013) W.P.Z. Ghassemloo, S. Rajbhandari, Optical Wireless Communications: System and channel modelling with Matlab (CRC Press, 2013)
13.
go back to reference M.R. Bhatnagar, Z. Ghassemlooy, Performance analysis of \(g\)amma \(g\)amma fading FSO MIMO links with pointing errors. J. Lightwave Technol. 34(9), 2158–2169 (2016) M.R. Bhatnagar, Z. Ghassemlooy, Performance analysis of \(g\)amma \(g\)amma fading FSO MIMO links with pointing errors. J. Lightwave Technol. 34(9), 2158–2169 (2016)
14.
go back to reference I.S. Ansari, M.M. Abdallah, M.S. Alouini, K.A. Qaraqe, Outage performance analysis of underlay cognitive RF and FSO wireless channels, in 3rd International Workshop in Optical Wireless Communications (IWOW), pp. 6–10 (2014) I.S. Ansari, M.M. Abdallah, M.S. Alouini, K.A. Qaraqe, Outage performance analysis of underlay cognitive RF and FSO wireless channels, in 3rd International Workshop in Optical Wireless Communications (IWOW), pp. 6–10 (2014)
15.
go back to reference E. Friedman, L. John, Miller, Photonics Rules of Thumb (McGraw-Hill Professional, 2003) E. Friedman, L. John, Miller, Photonics Rules of Thumb (McGraw-Hill Professional, 2003)
16.
go back to reference H. Weichel, Laser Beam Propagation in the Atmosphere (SPIE, Bellingham, WA, 1990) H. Weichel, Laser Beam Propagation in the Atmosphere (SPIE, Bellingham, WA, 1990)
17.
go back to reference D. Chadha, Terrestrial Optical Wireless Communication (McGraw-Hill, 2013) D. Chadha, Terrestrial Optical Wireless Communication (McGraw-Hill, 2013)
18.
go back to reference W. Popoola, Subcarrier intensity modulated free space optical communication systems. Ph.D. thesis (2009) W. Popoola, Subcarrier intensity modulated free space optical communication systems. Ph.D. thesis (2009)
19.
go back to reference P. Kaur, V.K. Jain, S. Kar, Performance analysis of FSO array receivers in presence of atmospheric turbulence. IEEE Photonics Technol. Lett. 26(12), 1165–1168 (2014)CrossRef P. Kaur, V.K. Jain, S. Kar, Performance analysis of FSO array receivers in presence of atmospheric turbulence. IEEE Photonics Technol. Lett. 26(12), 1165–1168 (2014)CrossRef
20.
go back to reference Z. Zeng, S. Fu, H. Zhang, Y. Dong, J. Cheng, A survey of underwater optical wireless communications. IEEE Commun. Surv. Tutori. 19(1), 204–238 Firstquarter (2017) Z. Zeng, S. Fu, H. Zhang, Y. Dong, J. Cheng, A survey of underwater optical wireless communications. IEEE Commun. Surv. Tutori. 19(1), 204–238 Firstquarter (2017)
21.
go back to reference W. Cox, Simulation, modeling, and design of underwater optical communication systems. North Carolina State University, Raleigh: Ph.D. dissertation (2012) W. Cox, Simulation, modeling, and design of underwater optical communication systems. North Carolina State University, Raleigh: Ph.D. dissertation (2012)
22.
go back to reference M.A. Khalighi, C. Gabriel, T. Hamza, S. Bourennane, P. Léon V. Rigaud, Underwater wireless optical communication; recent advances and remaining challenges, in 2014 16th International Conference on Transparent Optical Networks (ICTON), July 2014, pp. 1–4 M.A. Khalighi, C. Gabriel, T. Hamza, S. Bourennane, P. Léon V. Rigaud, Underwater wireless optical communication; recent advances and remaining challenges, in 2014 16th International Conference on Transparent Optical Networks (ICTON), July 2014, pp. 1–4
23.
go back to reference D. Pompili, I.F. Akyildiz, Overview of networking protocols for underwater wireless communications. IEEE Commun. Mag. 47(1), 97–102 (2009)CrossRef D. Pompili, I.F. Akyildiz, Overview of networking protocols for underwater wireless communications. IEEE Commun. Mag. 47(1), 97–102 (2009)CrossRef
24.
go back to reference L.J. Johnson, F. Jasman, R.J. Green, M.S. Leeson, Recent advances in underwater optical wireless communications. Underwater Technol. 32(3), 167–175 (2014)CrossRef L.J. Johnson, F. Jasman, R.J. Green, M.S. Leeson, Recent advances in underwater optical wireless communications. Underwater Technol. 32(3), 167–175 (2014)CrossRef
25.
go back to reference W.O. Popoola, Z. Ghassemlooy, BPSK subcarrier intensity modulated free-space optical communications in atmospheric turbulence. J. Lightwave Technol. 27(8), 967–973 (2009)CrossRef W.O. Popoola, Z. Ghassemlooy, BPSK subcarrier intensity modulated free-space optical communications in atmospheric turbulence. J. Lightwave Technol. 27(8), 967–973 (2009)CrossRef
26.
go back to reference D.W. Dawoud, F. Heliot, M.A. Imran, R. Tafazolli, Spatial quadrature modulation for visible light communication in indoor environment, in 2017 IEEE International Conference on Communications (ICC), May 2017, pp. 1–6 D.W. Dawoud, F. Heliot, M.A. Imran, R. Tafazolli, Spatial quadrature modulation for visible light communication in indoor environment, in 2017 IEEE International Conference on Communications (ICC), May 2017, pp. 1–6
27.
go back to reference B. Cochenour, L. Mullen, A. Laux, Phase coherent digital communications for wireless optical links in turbid underwater environments, in OCEANS 2007, September 2007, pp. 1–5 B. Cochenour, L. Mullen, A. Laux, Phase coherent digital communications for wireless optical links in turbid underwater environments, in OCEANS 2007, September 2007, pp. 1–5
28.
go back to reference A.C. Boucouvalas, K.P. Peppas, K. Yiannopoulos, Z. Ghassemlooy, Underwater optical wireless communications with optical amplification and spatial diversity. IEEE Photonics Technol. Lett. 28(22), 2613–2616 (2016)CrossRef A.C. Boucouvalas, K.P. Peppas, K. Yiannopoulos, Z. Ghassemlooy, Underwater optical wireless communications with optical amplification and spatial diversity. IEEE Photonics Technol. Lett. 28(22), 2613–2616 (2016)CrossRef
29.
go back to reference B. Majlesein, A. Gholami, Z. Ghassemlooy, A complete model for underwater optical wireless communications system, in 2018 11th International Symposium on Communication Systems, Networks Digital Signal Processing (CSNDSP), July 2018, pp. 1–5 B. Majlesein, A. Gholami, Z. Ghassemlooy, A complete model for underwater optical wireless communications system, in 2018 11th International Symposium on Communication Systems, Networks Digital Signal Processing (CSNDSP), July 2018, pp. 1–5
30.
go back to reference A. Huang, L. Tao, Q. Jiang, BER performance of underwater optical wireless MIMO communications with spatial modulation under weak turbulence, in 2018 OCEANS - MTS/IEEE Kobe Techno-Oceans (OTO), May 2018, pp. 1–5 A. Huang, L. Tao, Q. Jiang, BER performance of underwater optical wireless MIMO communications with spatial modulation under weak turbulence, in 2018 OCEANS - MTS/IEEE Kobe Techno-Oceans (OTO), May 2018, pp. 1–5
31.
go back to reference O.V. Sinkin, A.V. Turukhin, Y. Sun, H.G. Batshon, M.V. Mazurczyk, C.R. Davidson, J. Cai, W.W. Patterson, M.A. Bolshtyansky, D.G. Foursa, A.N. Pilipetskii, SDM for power-efficient undersea transmission. J. Lightwave Technol. 36(2), 361–371 (2018)CrossRef O.V. Sinkin, A.V. Turukhin, Y. Sun, H.G. Batshon, M.V. Mazurczyk, C.R. Davidson, J. Cai, W.W. Patterson, M.A. Bolshtyansky, D.G. Foursa, A.N. Pilipetskii, SDM for power-efficient undersea transmission. J. Lightwave Technol. 36(2), 361–371 (2018)CrossRef
32.
go back to reference M.V. Jamali, J.A. Salehi, F. Akhoundi, Performance studies of underwater wireless optical communication systems with spatial diversity: MIMO scheme. IEEE Trans. Commun. 65(3), 1176–1192 (2017)CrossRef M.V. Jamali, J.A. Salehi, F. Akhoundi, Performance studies of underwater wireless optical communication systems with spatial diversity: MIMO scheme. IEEE Trans. Commun. 65(3), 1176–1192 (2017)CrossRef
33.
go back to reference V.V. Mai, A.T. Pham, Adaptive multi-rate designs for hybrid FSO/RF systems over fading channels, in 2014 IEEE Globecom Workshops (GC Wkshps), December 2014, pp. 469–474 V.V. Mai, A.T. Pham, Adaptive multi-rate designs for hybrid FSO/RF systems over fading channels, in 2014 IEEE Globecom Workshops (GC Wkshps), December 2014, pp. 469–474
34.
go back to reference H. Dahrouj, A. Douik, F. Rayal, T.Y. Al-Naffouri, M. Alouini, Cost-effective hybrid RF/FSO backhaul solution for next generation wireless systems. IEEE Wirel. Commun. 22(5), 98–104 (2015)CrossRef H. Dahrouj, A. Douik, F. Rayal, T.Y. Al-Naffouri, M. Alouini, Cost-effective hybrid RF/FSO backhaul solution for next generation wireless systems. IEEE Wirel. Commun. 22(5), 98–104 (2015)CrossRef
35.
go back to reference T. Rakia, H. Yang, M. Alouini, F. Gebali, Outage analysis of practical FSO/RF hybrid system with adaptive combining. IEEE Commun. Lett. 19(8), 1366–1369 (2015)CrossRef T. Rakia, H. Yang, M. Alouini, F. Gebali, Outage analysis of practical FSO/RF hybrid system with adaptive combining. IEEE Commun. Lett. 19(8), 1366–1369 (2015)CrossRef
36.
go back to reference Y.F. Al-Eryani, A.M. Salhab, S.A. Zummo, M. Alouini, Protocol design and performance analysis of multiuser mixed RF and hybrid FSO/RF relaying with buffers. IEEE/OSA J. Optical Commun. Netw. 10(4), 309–321 (2018)CrossRef Y.F. Al-Eryani, A.M. Salhab, S.A. Zummo, M. Alouini, Protocol design and performance analysis of multiuser mixed RF and hybrid FSO/RF relaying with buffers. IEEE/OSA J. Optical Commun. Netw. 10(4), 309–321 (2018)CrossRef
37.
go back to reference L. Kong, W. Xu, L. Hanzo, H. Zhang, C. Zhao, Performance of a free-space-optical relay-assisted hybrid RF/FSO system in generalized \(m\)-distributed channels. IEEE Photonics J. 7(5), 1–19 (2015)CrossRef L. Kong, W. Xu, L. Hanzo, H. Zhang, C. Zhao, Performance of a free-space-optical relay-assisted hybrid RF/FSO system in generalized \(m\)-distributed channels. IEEE Photonics J. 7(5), 1–19 (2015)CrossRef
38.
go back to reference A. Touati, A. Abdaoui, F. Touati, M. Uysal, A. Bouallegue, On the effects of combined atmospheric fading and misalignment on the hybrid FSO/RF transmission. IEEE/OSA J. Optical Commun. Netw. 8(10), 715–725 (2016)CrossRef A. Touati, A. Abdaoui, F. Touati, M. Uysal, A. Bouallegue, On the effects of combined atmospheric fading and misalignment on the hybrid FSO/RF transmission. IEEE/OSA J. Optical Commun. Netw. 8(10), 715–725 (2016)CrossRef
39.
go back to reference L. Chen, W. Wang, C. Zhang, Multiuser diversity over parallel and hybrid FSO/RF links and its performance analysis. IEEE Photonics J. 8(3), 1–9 (2016) L. Chen, W. Wang, C. Zhang, Multiuser diversity over parallel and hybrid FSO/RF links and its performance analysis. IEEE Photonics J. 8(3), 1–9 (2016)
40.
go back to reference G.K. Karagiannidis, N.C. Sagia, T. Mathiopoulos, The N-Nakagami fading channel model, in 2005 2nd International Symposium on Wireless Communication Systems, September 2005, pp. 185–189 G.K. Karagiannidis, N.C. Sagia, T. Mathiopoulos, The N-Nakagami fading channel model, in 2005 2nd International Symposium on Wireless Communication Systems, September 2005, pp. 185–189
41.
go back to reference F. Gong, Cooperative mobile-to-mobile communications over double nakagami-M fading channel. IET Commun. 6(18), 3165–3175 F. Gong, Cooperative mobile-to-mobile communications over double nakagami-M fading channel. IET Commun. 6(18), 3165–3175
42.
go back to reference M.O. Hasna, M.S. Alouini, End-to-end performance of transmission systems with relays over Rayleigh-fading channels. IEEE Trans. Wirel. Commun. 2(6), 1126–1131 (2003)CrossRef M.O. Hasna, M.S. Alouini, End-to-end performance of transmission systems with relays over Rayleigh-fading channels. IEEE Trans. Wirel. Commun. 2(6), 1126–1131 (2003)CrossRef
43.
go back to reference L. Xu, Performance analysis of the IAF relaying M2M cooperative networks over N-nakagami fading channels. J. Commun. 10(3), 185–191 L. Xu, Performance analysis of the IAF relaying M2M cooperative networks over N-nakagami fading channels. J. Commun. 10(3), 185–191
44.
go back to reference G. Ozcan, M.C. Gursoy, Effective capacity analysis of fixed-gain and variable-gain af two-way relaying, in 2013 IEEE 78th Vehicular Technology Conference (VTC Fall), September 2013, pp. 1–5 G. Ozcan, M.C. Gursoy, Effective capacity analysis of fixed-gain and variable-gain af two-way relaying, in 2013 IEEE 78th Vehicular Technology Conference (VTC Fall), September 2013, pp. 1–5
45.
go back to reference S. Liew, Physical-layer network coding: tutorial, survey and beyond. Elsevier J. Phys. Commun. 6(3), 4–42 S. Liew, Physical-layer network coding: tutorial, survey and beyond. Elsevier J. Phys. Commun. 6(3), 4–42
Metadata
Title
Introduction
Authors
Anirban Bhowal
Rakhesh Singh Kshetrimayum
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-9960-6_1