[1] Hao Wanming, Zeng Ming, Sun Gangcan, et al. Edge cache-assisted secure low-latency millimeter-wave transmission[J]. IEEE Internet of Things Journal, 2020, 7(3):1815-1825. [2] Chen Yiyun, He Shiwen, Huang Yongming, et al. Robust multigroup multicast beamforming design for backhaul-limited cloud radio access network[J]. IEEE Signal Processing Letters, 2019, 26(1):189-193. [3] Dai Binbin, Yu Wei. Sparse beamforming and user-centric clustering for downlink cloud radio access network[J]. IEEE Access, 2017, 2:1326-1339. [4] Tao Meixia, Chen Rrkai, Zhou Hao, et al. Content-centric sparse multicast beamforming for cache-enabled cloud RAN[J]. IEEE Transactions on Wireless Communications, 2016, 15(9):6118-6131. [5] Dai Binbin, Liu Yafeng, Yu Wei. Optimized base-station cache allocation for cloud radio access network with multicast backhaul[J]. IEEE Journal on Selected Areas in Communications, 2018, 36(8):1737-1750. [6] He Shiwen, Ren Ju, Wang Jiaheng, et al. Cloud-edge coordinated processing:low-latency multicasting transmission[J]. IEEE Journal on Selected Areas in Communications, 2019, 37(5):1144-1158. [7] Song P, Scutari G, Facchinei F, et al. D3m:distributed multi-cell multigroup multicasting[C]//IEEE International Conference on Acoustics, Speech and Signal Processing(ICASSP). Shanghai:IEEE, 2016:3741-3745. [8] Hao Wanming, Sun Gangcan, Zeng Ming, et al. Joint beamforming and power splitting design for C-RAN with multicast fronthaul[J]. IEEE Wireless Communications Letters, 2020, 9(4):571-575. |