1. “Studies on frequency-related matters for International Mobile Telecommunications identification including possible additional allocations to the mobile services on a primary basis in portion(s) of the frequency range between 24.25 and 86 GHz for the future development of International Mobile Telecommunications for 2020 and beyond”, Resolution 238, World Radiocommunication Conference (WRC-15), Geneve (CH), 2–27 Nov. 2015;
2. G. McCartney, T.S. Rappaport, S. Sun, S. Deng,, “Indoor Office Wideband Millimetre-Wave Propagation Measurements and Channel Models at 28 and 73 GHz for Ultra-Dense 5G Wireless Networks”, IEEE Access, Vol.3, pp. 2388–2424, Dec. 2015;
3. IEEE 802.11ad International Standard for Information technology--Telecommunications and information exchange between systems-Local and metropolitan area networks--Specific requirements-Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications Amendment 3: Enhancements for Very High Throughput in the 60 GHz Band, March 2014. http://www.ieee802.org/11/ ;
4. S.K. Saha, A. Garg, D. Koutsonikolas, “A first look at TCP performance in indoor IEEE 802.11ad WLANs”, IEEE Conf. on Computer Communications Workshops (INFOCOM WKSHPS), Hong Kong, pp. 63–64, Apr. 26 – 1 May 2015;
5. T. S. Rappaport, S. Sun, R. Mayzus, H. Zhao, Y. Azar, K. Wang, G. N. Wong, J. K. Schulz, M. Samimi, and F. Gutierrez, “Millimeter wave mobile communications for 5G cellular: It will work!”, IEEE Access, Vol. 1, pp. 335–349, May 2013;