Page 34 - Kaleidoscope Academic Conference Proceedings 2024
P. 34

[8] IITH, “DMRS design for power domain
            SE         Spectral Efficiency
                                                                  enhancements,” TR R1- 2301635, TSG RAN WG1
            SCS        Sub-Carrier Spacing                        #112, 3rd Generation Partnership Project (3GPP),
                                                                  2023.
            SRS        Sounding Reference Signals
                                                              [9] I. P. Nasarre et al., “Enhanced Uplink Coverage for 5G
            TDD        Time Division Duplex                       NR: Frequency Domain Spectral Shaping With
                                                                  Spectral Extension,” IEEE Open J. of the Commun.
            TDL        Tapped Delay Line                          Soc., vol. 2, pp. 1188–1204, 2021. doi:
                                                                  https://doi.org/10. 1109/OJCOMS.2021.3082688.
            TPR        Test Performance Requirements
                                                              [10] L. Electronics, “PAPR comparison of uplink MA
            UE         User Equipment                             schemes,” TR R1- 050475, TSG-RAN WG1 Meeting
                                                                  #41, 3rd Generation Partnership Project (3GPP), May
            UL         Uplink                                     2005.

            WLAN       Wireless Local-Area Network            [11] Ericsson, “Evolved UTRA: Uplink transmission
                                                                  scheme,” TR R1- 050254, TSG-RAN WG1 Meeting
                                                                  #40, 3rd Generation Partnership Project (3GPP), April
           Table 11 – List of acronyms                            2005.

                            REFERENCES                        [12] O. Mauritz and B. M. Popovic, “Optimum family of
                                                                  spectrum-shaping functions for papr reduction of dft-
           [1] ITU-R, “Future technology trends of terrestrial    spread ofdm signals,” in IEEE Veh. Technol. Conf.,
               International Mobile Telecommunications systems    pp.1–5,2006.doi:https://doi.org/10.1109/VTCF.2006.
               towards 2030 and beyond,” Report ITU-R M.2516-0,   294.
               ITU-R, Nov 2022.
                                                              [13] S. Malkowsky, J. Vieira, L. Liu, P. Harris, K. Nieman,
           [2] ITU-R report on “Minimum requirements related to   N. Kundargi, I. C. Wong, F. Tufvesson, V. Owall, and
               technical performance for IMT-2030 radio interface(s)”  O. Edfors, ‘‘The world’s first realtime testbed for
               for IMT-2030 Radio Interface(s) Technologies (RIT),  massive MIMO: Design, implementation, and
               ITU-R WP5D#45 meeting, 18 Jan 2024                 validation,’’ IEEE Access, vol. 5, pp. 9073–9088,
                                                                  2017.
           [3] ITU-R, “Mapping between capabilities and usage
               scenarios,”, ITU-R WP5D#45 meeting, 18 Jan 2024  [14] C. Shepard, H. Yu, N. Anand, E. Li, T. Marzetta, R.
                                                                  Yang, and L. Zhong, ‘‘Argos: Practical many-antenna
           [4] Koteswara Rao G et al., “Pre-dft multiplexing of   base stations,’’ in Proc. 18th Annu. Int. Conf. Mobile
               reference signals and data in dft-s-ofdm systems,”  Comput. Netw., Aug. 2012, pp. 53–64.
               IEEE Open J. of the Commun. Soc., vol. 5, pp. 514–
               525,2024. doi: https://doi.org/10.1109/OJCOMS.2023.  [15] G. Xu, Y. Li, J. Yuan, R. Monroe, S. Rajagopal, S.
               3348190.                                           Ramakrishna, Y. H. Nam, J.-Y. Seol, J. Kim, M. M. U.
                                                                  Gul, A. Aziz, and J. Zhang, ‘‘Full dimension MIMO
           [5] Sahin, Alphan and others, “DFT-Spread OFDM with    (FD-MIMO): Demonstrating commercial feasibility,’’
               Frequency Domain Reference Symbols,” in IEEE       IEEE J. Sel. Areas Commun., vol. 35, no. 8, pp. 1876–
               Global Telecommun. Conf. (GLOBECOM), pp. 1–6,      1886, Aug. 2017.
               2017. doi: https://doi.org/10.1109/GLOCOM.2017.
               8254241.                                       [16] J. Jeon, G. Lee, A. A. I. Ibrahim, J. Yuan, G. Xu, J.
                                                                  Cho, E. Onggosanusi, Y. Kim, J. Lee, and J. C. Zhang,
           [6] N. DoCoMo et al., “DFT-Spread OFDM with Pulse      ‘‘MIMO evolution toward 6G: Modular massive
               Shaping Filter in Frequency Domain in Evolved UTRA  MIMO in low-frequency bands,’’ IEEE Commun.
               Uplink,” TR R1-050702 , TSG RAN WG1 #42 on         Mag., vol. 59, no. 11, pp. 52–58, Nov. 2021.
               LTE, 3rd Generation Partnership Project (3GPP), Aug
               2005.                                          [17] S. Bisoyi, P. Muralimohan, H. K. Dureppagari, P. R.
                                                                  Manne, S. Amuru and K. Kuchi, "Massive MIMO
           [7] IITH,  “DMRS design for power domain               With Circular Antenna Array: Design, Implementation,
               enhancements”, TR R1-2303777, 3GPP TSG RAN         and Validation," in IEEE Access, vol. 12, pp. 21070-
               WG1 #112-bis-e, online, April 17 th – April 26 th ,  21083, 2024, doi: 10.1109/ACCESS.2024.3362245
               2023.








                                                          – xxx –
   29   30   31   32   33   34   35   36   37   38   39