[1] M. Bennis, M. Debbah, H. V. Poor, “Ultra-Reliable and Low-Latency Wireless Communication Tail, Risk and Scale,” in IEEE Trans. On Information Theory, Vol. 106, no. 10, pp.1834-1853, Oct. 2018 [2] C. Mahapatra, et al., “A Reliable & Energy Efficient IoT Data Transmission Scheme for Smart Cities based on Redundant Residue based Error Correction Coding,” in Proc. SECON, June 2015 [3] Z. Ding, et al., “On the Performance of Non-Orthogonal Multiple Access in 5G Systems with Randomly Deployed Users”, in IEEE Signal Processing Letters, Vol. 21, no. 12, pp. 1501-1505, Dec. 2014 [4] Z. Ding, M. Peng, H. Vincent Poor, “Cooperative NOMA in 5G systems,” in IEEE Commun. Letters, Vol.19, no.8, pp. 1462-1465, Aug. 2015 [5] Z. Chen, Z. Ding, X. Dai, and R. Zhang, “An optimization perspective of the superiority of NOMA compared to conventional OMA,” in IEEE Trans. On Signal Processing, Vol. 65, no. 19, pp. 5191-5202, Oct. 2017 [6] Z. Yang, et al., “A General Power Allocation Scheme to Guarantee Quality of Service in Downlink and Uplink NOMA”, IEEE Trans. On Wireless Commun., Vol.15, no. 11, pp. 7244-7257, Nov. 2016. [7] S.M. Islam, et al., “Power-Domain Non-Orthogonal Multiple Access (NOMA) in 5G Systems: Potentials and Challenges,” in IEEE commun. Surveys & tutorials, Vol. 19, no. 2, pp. 721-742, 2017 [8] H. Nikopour and H. Baligh, “Sparse code multiple access,” in Proc. PIMRC, pp. 332-336, Sep. 2013 [9] Z. Yuan, et al., “Multi-user shared access for internet of things,” in IEEE Vehicular Tech. Conference, pp. 1-5, May 2016 [10] N.A. Khan Beigi, M.R. Soleymani, “Interference management using cooperative NOMA in multibeam satellite systems,” in Proc. ICC, May 2018 [11] A. Haghighat, et al., ‘On the performance of IDMA-based NOMA schemes,’ in IEEE Vehicular Tech. Conference, Sept. 2017 [12] M. Mohammadkarami, M. Ahmad Raza, O.A. Dobre, “Signature-based non-orthogonal massive multiple access for future wireless networks,” in IEEE Vehicular Tech. Magazine, Vol. 13, no. 4, pp. 40-50, Dec. 2018 [13] A. Avranas, M. Kountouris, P. Ciblat, “Energy-Latency Tradeoff in Ultra-Reliable Low-Latency Communication with Retransmissions,” in IEEE J. on Selected Areas, Vol. 36, no. 11, pp. 2475-2485, May 2018. [14] M. Sartipi, F. Fekri, “Distributed source coding using short to moderate length rate-compatible LDPC codes: the entire Slepian-wolf rate region,” in IEEE Trans on Commun., Vol. 56, no. 3, pp. 400-411, March 2008 [15] S. S. Pradhan and K. Ramchandran, “Distributed source coding: symmetric rates and applications to sensor networks,” in Proc. IEEE Data Compression Conference, pp. 363–372, Mar. 2000. [16] A. D. Murugan, P. K. Gopala, H. El Gamal, “Correlated Sources over wireless channels: cooperative source-channel coding,” in IEEE Journal on selected areas in commun., vol. 22, no. 6, pp. 988-998, Aug. 2004 [17] A. E. Mostafa, Y. Zhou, V. Wong, “Connectivity Maximization for narrowband IoT systems with NOMA,’ in Proc. ICC, May 2017 [18] M. Shirvanimoghaddam, M. Dohler, S. J. Johnson, “Massive Non-Orthogonal Multiple Access for Cellular IoT: Potentials and Limitations,” in IEEE Commun. Magazine, Vol, 55, no.9, pp. 55-61, Sept 2017 [19] H. Haci, H. Zhu, J. Wang, ‘Performance of NOMA with a Novel Asynchronous Interference Cancellation Technique’, in IEEE Trans on Commun., Vol. 65, no. 3, pp. 1319-1335, March 2017 [20] M. Yemini, A.S. Baruch, A. Leshem, ‘On the multiple access channel with asynchronous cognition,’ in IEEE Trans. on information theory, Vol. 62, no. 10, pp. 5643-5663, Oct. 2016 [21] J. Cui, et al., ‘Asynchronous NOMA for downlink transmission,’ in IEEE Communication letters, Vol. 21, no.2, pp. 402-405, Feb.2017 [22] X. Wang, F. Labeau, L. Mei, ‘Asynchronous uplink NOMA with cyclic prefix’, IEEE wireless commun. & networking conf., April 2018 [23] M.Chen, Y. Miao, Y. Hao, K. Hwang, “Narrow band internet of things,” in IEEE Access, Vol. 5, pp. 20557-20577, Sept. 2017 [24] H. Ji, et al., “URLLC Communications in 5G Downlink: Physical Layer Aspects,” in IEEE Trans on wireless commun., Vol. 25, no. 3, pp. 124-130, June 2018 [25] T. M. Cover and J. A. Thomas, Elements of Information Theory, 2nd ed. New York, NY, USA: Wiley-Interscience, 1991 [26] Abbas El Gamal and Young-Han Kim, Network Information Theory, Cambridge University Press, 2012 [27] Z. ding, et al., “A survey on NOMA for 5G networks: research challenges and future trends,” in IEEE Journal on Selected Areas in Commun., Vol. 35, no. 10, pp. 2181-2195, Oct. 2017 [28] L. Welch, ‘‘Lower bounds on the maximum cross correlation of signals,’’ in IEEE Trans. Inf. Theory, vol. 20, no. 3, pp. 397-399, May 1974. [29] D. Slepian, J. Wolf, “Noiseless coding of correlated information sources,” in IEEE Trans. Inform. Theory, vol. 19, no. 4, pp.471-480, July 1973. [30] J. Kim, I. Lee, “Capacity analysis of cooperative relaying systems using non-orthogonal multiple access,” in IEEE Commun. Letters, Vol.19, no.11, pp. 1949-1952, Nov. 2015 [31] S. Luo and K. C. Teh, “Adaptive transmission for cooperative NOMA system with buffer-aided relaying,” in IEEE Commun. Lett., vol. 21, no. 4, pp. 937–940, Apr. 2017. [32] S. Verdu, ‘The capacity region of symbol-asynchronous Gaussian multiple-access channel’, IEEE Trans. On Information Theory, Vol. 35, no. 4, pp.733-751, July 1989 [33] R.S. Cheng, S. Verdu, ‘Gaussian multi-access channels with ISI: capacity region and multiuser water-filling’, IEEE Trans. On Information Theory, Vol. 39, no.3, pp. 773-785, May 1993 [34] C. Zeng, et al., ‘Optimal water-filling algorithms for a Gaussian multi-access channel with inter-symbol interference’, in Proc. ICC, June 2001 [35] X. Wang, H. Vincent Poor, “Iterative (turbo) soft interference cancellation and decoding for coded CDMA,” in IEEE Trans on Commun, Vol. 47, no. 7, pp. 1046-1061, July 1999 [36] M. Al-Imari, et al, “Uplink NOMA for 5G Wireless Networks,” in Proc. ISWCS, Aug. 2014 [37] A. Benjebbour, et al, “NOMA: From Concept to Standardization,” in Proc. CSCN, Oct. 2015 [38] T. M. Cover, A. El-Gamal, M. Salehi, “Multiple Access Channels with Arbitrarily Correlated Sources”, in IEEE Trans. On Information Theory, Vol. 26, no.6, pp. 648-657, Nov. 1980 [39] C. Fragouli, et al., “Wireless network coding: opportunities and challenges,” in IEEE Military Commun. Conf., Feb. 2008 [40] S. Verdu, Multi-user detection, Cambridge Univ. Press, UK, 1998 [41] Katona, Z., et al., “ Performance, cost analysis, and ground segment design of ultra high throughput multi-spot beam satellite networks applying different capacity enhancing techniques,” in Int. J. Satellite Communication Network, 2016, vol. 34, pp. 547–573. [42] M. Angelone, et al., “Performance of a combined dynamic rate adaptation and adaptive coding modulation technique for a DVB-RCS2 system,” in Adv. Sat. Multimedia Sys. Conf., Sept. 2012, pp. 124– 131 [43] F. Lombardo, et al. “Throughput distribution analysis of return link multi-gateway interference cancellation strategies for multi-beam broadband satellite systems”, in 2012 IEEE Globecom, pp. 95-99. [44] M. Caus, et al., "An innovative interference mitigation approach for high throughput satellite systems," in IEEE International Workshop of Signal Processing Advances in Wireless Comm., 2015, pp. 515-519 [45] G. Colavolpe, et al., "On the application of multiuser detection in multibeam satellite systems," in IEEE Intern. Conf. Commun., June 15 [46] G. Colavolpe, et al., "Multiuser detection in multibeam satellite systems: Theoretical analysis and practical schemes," in Proc. Inter. Workshop on Signal Proc. Advances for Wireless Commun., June 2015 [47] Z. Ding, L. Dai, H.V. Poor, “MIMO-NOMA design for small packet transmission in the Internet of Things,” in IEEE Access, 2016 [48] Z. Ding, P. Fan, H.V. Poor, “Impact of user pairing on 5G NOMA downlink transmissions,” in IEEE TVT, 2016. [49] Z. Ding, L. Dai, H.V. Poor, “Relay selection for Cooperative NOMA,” in IEEE Wireless Communication Letters, Vol. 5, no, 4, pp. 416-419, August 2016 [50] M. F. Hanif, Z. Ding, T. Ratnarajah, G. K. Karagiannidis, “A Minorization-Maximization Method for Optimizing Sum Rate in Non-Orthogonal Multiple Access Systems”, IEEE Transactions on signal processing, vol. 64, no. 1, pp. 76-88, Jan. 2016 [51] Z. Ding, F. Adachi and H. V. Poor, “The Application of MIMO to Non-Orthogonal Multiple Access”, IEEE Transactions on signal communications, vol. 15, no. 1, pp. 537-552, Jan. 2016 [52] Z. Ding, L. Dai and H. V. Poor, “MIMO-NOMA Design for Small Packet Transmission in the Internet of Things”, IEEE Access, Vol. 4, pp. 1393-1405, April 2016. [53] Z. Ding, P. Fan & H. V. Poor, “Random Beamforming in Millimeter-Wave NOMA Networks”, IEEE Access, vol. 5, pp. 7667-7681, 2017. [54] Y. Liu, Z. Ding, M. Elkashlan & H. V. Poor, “Cooperative Non-Orthogonal Multiple Access with Simultaneous Wireless Information and Power Transfer”, IEEE Journal on Selected Areas in Communication, Vol. 34, no. 4, pp. 938-953, April 2016. [55] X. Zhu, C. Jiang, L. Kuang, N. Ge, J. Lu, “Non-Orthogonal Multiple Access Based Integrated Terrestrial-Satellite Networks,” in IEEE Journal on Selected Areas in Communication, Vol. 35, no. 10, pp. 2253-2267, July 2017. [56] H. Chaouech, R. Bouallegue, “Channel estimation and detection for multibeam satellite communications”, in IEEE Asia Pacific Conf. on Circuits and Systems, 2010, pp. 366-369 [57] W. Gappmir, M. Bergmann, B. S. Rechberger, “New results on location aware channel estimation for multibeam satellite links”, in IEEE Communications Letters, vol. 18, No. 8, Aug 2014, pp.1355-1358 [58] L. Xiao, L. Cottatellucci, “Contention resolution and channel estimation in satellite random access channels”, in IEEE Int. Conf. on Communications in China, 2012, pp.562-567 [59] N. Nonaka, A. Benjebbour, K. Higuchi, “System level throughput of NOMA using intra-beam superposition coding and SIC in MIMO downlink when channel estimation error exists”, in IEEE Int. Conf. on Communications Systems, 2014, pp. 202-206 [60] ETSI EN 302 307 v1.2.1, “Digital Video Broadcasting (DVB); Second generation framing structure, channel coding and modulation systems for Broadcasting, Interactive Services, News Gathering and other broadband satellite applications (DVB-S2).” [61] Yang, Z. Ding, P. Fan, G. Karagiannidis, “On the Performance of Non-Orthogonal Multiple Access Systems with Partial Channel Information”, IEEE Transactions on communications, vol. 64, no. 2, pp. 654-667, Dec. 2015. [62] N. Jindal, et al., “On the Duality between General Multiple-Access/Broadcast Channels,” in ISIT 2003, June 2003, pp. 313 [63] B.F. Beidas, H. El Gamal, S. Kay, “Iterative interference cancellation for high spectral efficiency satellite communications,” in IEEE Trans on Communications, vol. 50, no. 1, pp. 31-36, Jan 2002. [64] Z. Ding, et al., “On the performance of NOMA in 5G systems with randomly deployed users,” in IEEE Sig. Proc. Let., Vol 21, No.2, 2014 [65] Z. Ding, M. Peng, H. Vincent Poor, “Cooperative non-orthogonal multiple access in 5G systems,” in IEEE Commun. Letters, Vol.19, No.8, Aug. 2017, pp. 1462-1465 [66] J. Kim, I. Lee, “Capacity analysis of cooperative relaying systems using non-orthogonal multiple access,” in IEEE Commun. Letters, Vol.19, No.11, Nov. 2015, pp. 1949-1952. [67] M. J. Hagh and M.R. Soleymani, “Raptor coding for non-orthogonal multiple access channels,” in IEEE ICC 2011 proceedings, pp. 1-6. [68] N. Khanbeigi, M. R. Soleymani, “Increasing Bandwidth Efficiency in Multibeam Satellite Systems Under Interference Limited Condition Using Overlay Coding”, in IEEE Vehicular Tech. Conf., June 2017 [69] N. Khan Beigi, M.R. Soleyamni, “Channel Estimation for Overlay Coding in Multibeam Satellite Systems,” in IEEE VTC, Sept. 2017 [70] Digital Video Broadcasting (DVB), “Implementation guidelines for the second generation system for Broadcasting, Interactive Services, News Gathering and other broadband satellite applications; Part 2 S2 Extensions (DVB-S2X),” DVB Document A171-2, March 2015 [71] P. Kyritsi, A. Valenzuela, D. C. Fox, “Channel and capacity estimation errors”, in IEEE Commun. Letters, Vol. 6, No. 12, Dec. 2002 [72] P. Marsch, G. Fettweis, "Uplink CoMP under a Constrained Backhaul and Imperfect Channel Knowledge," in IEEE Trans. on Wireless Commun., Vol. 10, No. 6, pp. 1730-1742, June 2011 [73] Irmer et al., “CoMP: Concepts, performance, and field trial results,” IEEE Commun. Mag., vol. 49, no. 2, pp. 102–111, Feb. 2011. [74] Z. Wei, C. Masouros, K Wong, X. Kang, “Multi-Cell Interference Exploitation: Enhancing the Power Efficiency in Cell Coordination,” in IEEE Trans on Wireless Commun, Vol. 19, No. 1, 2020 [75] M. Khoshnevisan et al., “5G Industrial networks with CoMP for URLLC and time sensitive network architecture”, in IEEE Journal of Selected Areas, Vol. 37, No. 4, pp. 947-959, April 2019 [76] X. Yu, Q. Cui, M. Haenggi, “Coherent joint transmission in downlink heteroheneous cellular networks,” in IEEE wireless commun. Letters, Vol. 7, No. 2, pp. 274-277, April 2018 [77] H. Pilaram, M. Kiamari, B. H. Khalaj, “Distributed Synchronization and Beamforming in Uplink Relay Asynchronous OFDMA CoMP Networks,” in IEEE Trans on Wireless Commun, Vol. 14, No. 6, 2015 [78] A. M. Hamza, J.W. Mark, E.A. Sourour, “Interference Analysis and mitigation for time-asynchronous OFDM COMP Systems,” in IEEE Trans. On Wireless Commun., Vol. 17, No. 7, pp. 4780-4791, July 2018 [79] S. Wu, Y. Qi, “Centralized and distributed schedulers for non-coherent joint transmission,” in IEEE Globecom workshops, 2018 [80] R. Tanbourgi, S. Singh, J. G. Andrews, F. K. Jondral, “Analysis of non-coherent joint transmission cooperation in heterogeneous cellular networks,” in IEEE International Conference on Commun.(ICC), 2014 [81] R. Tanbourgi, S. Singh, J. G. Andrews, F. K. Jondral, “A tractable model for noncoherent joint-transmission base station cooperation,” in IEEE Trans. On Wireless Commun., Vol. 13, No. 9, pp. 4959-4973, Sept. 2014 [82] M. Shipon Ali, E. Hossain, A. Al-Dweik, D. In Kim, “Downlink power allocation for CoMP-NOMA in multi-cell networks,” in IEEE Trans. On Commun., Vol. 66, No. 9, pp. 3982-3998, Sept. 2018 [83] S. Misara, A. Swami, L. Tong, “Cutoff rate optimal binary inputs with imperfect CSI,” in IEEE Trans on Wireless Commun, Vol. 5, No. 10, 2006 [84] R1-1903043, “Multi-TRP Enhancement,” in 3GPP TSG-RAN WG1, #96, Qualcomm Incorporated, Feb. 2019 [85] N. A. Khan Beigi, M.R. Soleymani, “Ultra-Reliable Energy-Efficient Cooperative Scheme in Asynchronous NOMA with Correlated Sources,” in IEEE IoT Journal, Vol. 6, No. 5, April 2019. [86] M. Medard, “The effect upon channel capacity in wireless communications of perfect and imperfect knowledge of the channel,” IEEE Trans. Inf. Theory, vol. 46, no. 3, pp. 933–946, May 2000 [87] T. Yoo and A. Goldsmith, “Capacity and power allocation for fading MIMO channels with channel estimation error,” IEEE Trans. Inf. Theory, vol. 52, no. 5, pp. 2203–2214, May 2006 [88] A. Shaverdian and M. R. Nakhai, “Robust distributed beamforming with interference coordination in downlink cellular networks,” IEEE Trans. Commun., vol. 62, no. 7, pp. 2411–2421, Jul. 2014. [89] D. J. Ramirez, M. Koutouris, E. Hardouin, “Coordinated multi-point transmission with imperfect CSI and other-cell interference,” in IEEE Trans. On wireless Commun., Vol. 14, No. 4, pp. 1882-1896, April 2015 [90] P. Baracca, F. Boccardi, V. Braun, “A dynamic joint clustering scheduling algorithm for downlink CoMP systems with limited CSI,” in International Symp. On Wireless Commun. Systems, Aug. 2012 [91] N. Jindal, S. Vishwanath, A. Goldsmith, “On the duality of Gaussian multiple access and broadcast channels,” in IEEE Trans. on Information Theory, Vol. 50, No. 5, pp. 768-783, May 2004 [92] Erik Dahlman, Stefan Parkvall, Johan Skold, 4G, LTE-Advanced Pro and the Road to 5G, 3rd ed., Elsevier, Academic Press, 2016 [93] F. M. L. Tavares, G. Berardinelli, N. H. Mehmood, T. B. Sorensen, P. Mogensen, “On the Potential of Interference Rejection Combining in B4G Networks,” in IEEE Vehicular Tech. Conf., Fall, 2013 [94] N. Khan Beigi, A. Haghighat, “On Kurtosis of Spreading Sequences for NOMA,” in Consumer Commun. & Netwroking Conf., Jan. 2020 [95] L. Fay, et al., “An overview of the ATSC 3.0 physical layer specification,” in IEEE Trans. On Broadcasting, vol. 62, no.1, pp. 159-171, March 2016 [96] W. Li, et al., “Using LDM to achieve seamless local service insertion and local program coverage in SFN environment,” in IEEE Trans. On Broadcasting, vol. 63, no. 1, pp. 250-259, March 2017 [97] J. L. Carcel, J. J. Gimenez, D. Gomez-Barquero, “Zero-Guard OFDM Performance in SFN with ATSC 3.0 Ultra-Robust Transmission Modes,” in IEEE Int. Symp. On Broadband Multimedia Systems & Broadcasting, June 2017 [98] M. Fuentes, et al., “Physical Layer Performance Evaluation of LTE-Advanced Pro Broadcast and ATSC 3.0 Systems,” in IEEE Trans. On Broadcasting, Vol. 65, no. 3, Sept. 2019 [99] W. Li, et al., “Coverage Study of ATSC 3.0 Under Strong Co-Channel Interference Environments,” in in IEEE Trans. On Broadcasting, Vol. 65, no. 1, March 2019 [100] S. I. Park, et al., “Low Complexity Layered Division Multiplexing for ATSC 3.0,” in IEEE Trans. On Broadcasting, vol. 62, no. 2, Mar. 2016 [101] E. Garro, et al., “Layered Division Multiplexing with distributed multiple-input single-otput schemes” in IEEE Trans. On Broadcasting, vol. 65, no. 1, Mar. 2019 [102] J. Y. Lee, et al., “Layered Division Multiplexing for ATSC 3.0: implementation and memory use aspects,” in IEEE Trans. On Broadcasting, vol. 65, no. 3, Sept. 2019 [103] J. Hamkins, “Performance of low-density parity-check coded modulation,” in Proc. IEEE Aerospace Conf., pp. 1–14, Mar. 2010 [104] X. Cao, Yi Liu, D. Hu, “Simplified LLR algorithm for M-QAM demodulation,” in the Journal of Engineering, vol. 2019, no. 21, pp. 7370-7375, Nov. 2019 [105] J. Aulin, et al., “Terahertz Communication for Vehicular Networks,’ in IEEE Trans on Veh. Tech.., Vol. 66, no. 7, pp. 5617-5625, July 2017 [106] K. M. S. Huq, et al., “Terahertz-Enabled Wireless System for Beyond-5G Ultra-Fast Networks: A Brief Survey,” in IEEE Network, Vol. 33, no. 4, pp. 89-95, July/August 2019 [107] H. Zhang, L. Song, Z. Han, H.V. Poor, “Cooperation techniques for a cellular internet of unmanned aerial vehicles,” in IEEE Wireless Commun. Vol. 26, No. 5, pp.167–173, October 2019 [108] M. Elsaadany, A. Ali, W. Hamouda, “Cellular LTE-A technologies for the future IoT: Physical layer features and challenges,” in IEEE commun. Surveys & Tutorials, Vol. 19, No. 4, 4th quarter 2017. [109] Y. Zeng, Q. Wu, Rui Zhang, “Accessing from the sky: a tutorial on UAV communications for 5G and beyond,” in Proceedings of the IEEE, Vol. 107, No. 12, pp. 2327-2357, Dec. 2019 [110] M. Y. Arafat, S. Moh, “Localization and clustering based on swarm intelligence in UAV networks for emergency communications”, in IEEE IoT Journal, Vol. 6, No. 5, pp. 8958-8976, Oct. 2019. [111] Z. Wei, Z. Feng, H. Zhou, L. Wang, H. Wu, “Capacity and delay of unmanned aerial vehicle networks with mobility” in IEEE IoT Journal, Vol. 6, No. 2, pp. 1640-1653, April 2019 (store-carry-and-forward (SCF) [112] L. Xie, J. Xu, R. Zhang, “Throughput maximization for UAV-enabled wireless powered communication networks,” in IEEE IoT Journal, Vol. 6, No. 2, pp. 1690-1703, April 2019 (hover and fly) [113] S. Zhang, H. Zhang, B. Di, L. Song, “Cellular cooperative unmanned aerial vehicle networks with sense-and-send protocol,” in IEEE IoT Journal, Vol. 6, No. 2, pp. 1754-1767, April 2019 [114] Y. Chen, N. Zhao, Z. Ding, M.S. Alouini, “Multiple UAVs as Relays: Multi-Hop Single Link Versus Multiple Dual-Hop Links,” IEEE Trans. Wireless Commun., vol. 17, no. 9, pp. 6348–59, Sept. 2018 [115] Z. Li, J. Xu, Q. Guo, “Information fusion algorithm based on Intelligent Algorithm for multiple UAVs information interaction deception,” in IEEE Inter. Conf. on Cloud Computing & Intell. Systems, Nov. 2018 [116] C. Teuliere, E. Marchand, L. Eck, “3D model-based tracking for UAV indoor localization,” in IEEE Trans. On Cybernetics, Vol. 45, No. 5, pp. 869-879, May 2015. [117] M. Elloumi, et al., “Monitoring Road Traffic with a UAV-based System,” in IEEE Wireless Commun. & Networking Conf., April 2018. [118] H. Niu, N. Gonzalez-Prelcic, R. W. Heath, “A UAV-based Traffic Monitoring System,” in IEEE Vehicular Tech. Conf., June 2018. [119] M. Hossain, Md. A. Hossain, F. A. Sunny, “A UAV-Based Traffic Monitoring System for Smart Cities,” in Intern. Conf. on Sustainable Technologies for Industry 4.0, Dec. 2019 [120] J. Luo, K. R. Pattipati, P. K. Willet, “A Sliding Window PDA for Asynchronous CDMA, and a Proposal for Deliberate Asynchronicity” in IEEE Trans. On Communications, Vol. 51, No.12, pp.1970-1974, Dec. 2003 [121] M. Al-Imari, P. Xiao, M. A. Imran, “Receiver and Resource Allocation Optimization for Uplink NOMA in 5G Wireless Networks” in Int. Symposium On Wireless Communication Systems, Aug. 2015 [122] M.Y. Tsai, S. Yousefi, “Improved Iterative Joint Detection and Decoding of Coded V-BLAST Systems,” in IEEE Communications Letters, Vol. 13, No.1, pp. 19-21, Jan. 2009 [123] Y. Zhang, R. S. Blum, “Iterative Multiuser Detection for Turbo-Coded Synchronous CDMA in Gaussian and Non-Gaussian Impulsive Noise” in IEEE Trans. On Communications, Vol. 49, No.3, pp. 397-400, March 2001 [124] A. M. Hamza and J. W. Mark, “Closed-form expressions for the BER/SER of OFDM systems with an integer time offset,” IEEE Trans. Commun., vol. 63, no. 11, pp. 4461–4473, Nov. 2015.