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  ITU-T A.5 justification information for referenced document ETSI TR 138 900 V15.0.0 in draft E.806
1. Clear description of the referenced document:
Name: ETSI TR 138 900 V15.0.0
Title: LTE; 5G; Study on channel model for frequency spectrum above 6 GHz
2. Status of approval:
Approved in July 2018
3. Justification for the specific reference:
Contains information on propagation models referenced in this Recommendation
4. Current information, if any, about IPR issues:
See https://ipr.etsi.org/
5. Other useful information describing the "Quality" of the document:
Approved in July 2018
6. The degree of stability or maturity of the document:
Stable
7. Relationship with other existing or emerging documents:
See explicit references
8. Any explicit references within that referenced document should also be listed:
[1] 3GPP TR 21.905: "Vocabulary for 3GPP Specifications"./
[2] 3GPP TD RP-151606: "Study on channel model for frequency spectrum above 6 GHz "./
[3] 3GPP TR 36.873 (V12.2.0): "Study on 3D channel model for LTE"./
[4] 3GPP RP-151847: "Report of RAN email discussion about >6GHz channel modelling", Samsung/
[5] 3GPP R1-163408: "Additional Considerations on Building Penetration Loss Modeling for 5G/
System Performance Evaluation," Straight Path Communications/
[6] METIS channel model, METIS 2020,ICT-317667-METIS/D1.4, Feb, 2015/
[7] A S. Glassner, An introduction to ray tracing. Elsevier, 1989/
[8] J. W. McKown, R. L. Hamilton. "Ray tracing as a design tool for radio networks," Network, IEEE, 1991(6): 27-30./
[9] T. Kurner, D. J. Cichon, W.Wiesbeck, "Concepts and results for 3D digital terrain-based wave/
propagation models: An overview," IEEE J.Select. Areas Commun., vol. 11, pp. 1002–1012, 1993./
[10] M. Born, E. Wolf, Principles of optics: electromagnetic theory of propagation, interference and/
diffraction of light. CUP Archive, 2000/
[11] H. Friis, "A note on a simple transmission formula," proc. IRE, vol. 34, no. 5, pp. 254–256, 1946/
[12] R. G. Kouyoumjian and P. H. Pathak, "A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface," Proc. IEEE, vol. 62, pp. 1448–1461, Nov. 1974./
[13] P. Pathak, W. Burnside, and R. Marhefka, "A Uniform GTD Analysis of the Diffraction of/
Electromagnetic Waves by a Smooth Convex Surface," IEEE Transactions on Antennas and/
Propagation, vol. 28, no. 5, pp. 631–642, 1980/
[14] IST-WINNER II Deliverable 1.1.2 v.1.2, "WINNER II Channel Models", IST-WINNER2, Tech. Rep., 2007 (http://www.ist-winner.org/deliverables.html). /
[15] 3GPP TR36.101: "User Equipment (UE) radio transmission and reception"/
[16] 3GPP TR36.104: "Base Station (BS) radio transmission and reception"/
[17] H. Asplund et al., "A simplified approach to applying the 3GPP spatial channel model", in Proc. Of PIMRC 2006/
[18] ITU-R Rec. P.1816: "The prediction of the time and the spatial profile for broadband land mobile services using UHF and SHF bands"/
[19] 3GPP TR 38.901: "Study on channel model for frequencies from 0.5 to 100 GHz"./
9. Qualification of ETSI:
ETSI is recognized under the provisions of ITU-T Recommendations A.5 and A.6. Qualifying information is on file at TSB.
10. Other (for any supplementary information):
None
Note: This form is based on Recommendation ITU-T A.5