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Surveys Tuts., vol.24, no.2, pp.1117-1174, Second Quart. 2022. 10.1109\/comst.2022.3151028","DOI":"10.1109\/COMST.2022.3151028"},{"key":"17","unstructured":"[17] 3GPP TR 45.820, \u201cCellular system support for ultra-low complexity and low throughput Internet of Things,\u201d v13.1.0, Nov. 2015."},{"key":"18","unstructured":"[18] 3GPP TR 36.819, \u201cCoordinated multi-point operation for LTE physical layer aspects,\u201d v11.2.0, Sept. 2013."},{"key":"19","doi-asserted-by":"publisher","unstructured":"[19] C.-L. I, J. Huang, R. Duan, C. Cui, J. Jiang, and L. Li, \u201cRecent progress on C-RAN centralization and cloudification,\u201d IEEE Access, vol.2, pp.1030-1039, Aug. 2014. 10.1109\/access.2014.2351411","DOI":"10.1109\/ACCESS.2014.2351411"},{"key":"20","doi-asserted-by":"publisher","unstructured":"[20] F. Jiang, B. Wang, and C. 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