Motorola Inc. 2007. Spectrum Analysis for Future LTE Deployments. A white
[10] ETSI TS 136 101 V10.5.0 Release 10. January 2012. LTE Evolved Universal
REFERENCES
81
[11] 3GPP TS 124.301 V10.4.0 Release 10. October 2011. Technical Specification
Group Core Network and Terminals: Non-Access-Stratum (NAS) protocol for
Evolved Packet System (EPS); Stage 3
[12] 3GPP ETSI TS 136 304 V8.10.0 Release 8. June 2011. LTE Evolved Universal
Terrestrial Radio Access (E-UTRA): User Equipment (UE) procedures in idle
mode
[13] 3GPP ETSI TS 123 401 V8.14.0 Release 8. June 2011. LTE General Packet Ra-
dio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Ac-
cess Network (E-UTRAN) access Section 5.3.3. Page Number 63
[14] Kurjenniemi, J., Henttonen, T. & Kaikkonen, J. 2008. Suitability of RSRQ Meas-
urement for Quality Based Inter-Frequency Handover in LTE. IEEE International
Symposium on Wireless Communication Systems
[15] 3GPP ETSI TS 123 401 V8.14.0 Release 8. June 2011. LTE General Packet Ra-
dio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Ac-
cess Network (E-UTRAN) access. Section 5.5.1.2.2 Page Number 119
[16] 3GPP ETSI TS 136 331 V10.3.0 Release 10. November 2011. LTE Evolved Uni-
versal Terrestrial Radio Access (E-UTRA): Radio Resource Control (RRC) Pro-
tocol specification
[17] 3GPP ETSI TS 136 213 V10.5.0 Release 10. March 2012. LTE Evolved Univer-
sal Terrestrial Radio Access (E-UTRA): Physical layer procedures
[18] 3GPP ETSI TS 136 214 V10.1.0 Release 10. April 2011. LTE Evolved Universal
Terrestrial Radio Access (E-UTRA) Physical layer Measurements
[19] Dahlman, E., Parkvall, S. & Sk
ö
ld, J. and Beming, P. 2008. 3G Evolution HSPA
and LTE for Mobile Broadband. Elsevier Limited
[20] 3GPP ETSI TS 125 215 V10.0.0 Release 10. April 2011. Universal Mobile Tele-
communications System (UMTS): Physical layer Measurements (FDD) Section
5.1.1, 5.1.17 & 5.1.19
[21] Salo, J., Nur-Alam, M. & Chang, K. 2010. Practical Introduction to LTE Radio
Planning. A white paper on basics of radio planning for 3GPP LTE in interfer-
ence limited and coverage limited scenarios, European Communications Engi-
neering (ECE) Ltd, Espoo, Finland
REFERENCES
82
[22] Holma, H. & Toskala, A. 2009. LTE for UMTS OFDMA and SC-FDMA based
Radio Access. John Wiley and Sons Ltd.
[23] Chiang, M., Hande, P., Lan, T. & Tan, C.W. 2008. Power Control in wireless
cellular networks. From the journal Foundations and Trends® in Networking.
Now Publishers Inc.
[24] Castellanos, C.U., Villa, D.L., Rosa, C., Pedersen, K.I., Calabrese, F.D., Michael-
sen, P.H. and Michel, J. Spring 2008. Performance of Uplink Fractional Power
Control in UTRAN LTE. IEEE Vehicular Technology Conference
[25] Li, J. Bose, A and Zhao, Y.Q. 2005. Rayleigh flat fading channels’ capacity, Pro-
ceedings of the 3
rd
Annual IEEE Communication Networks and Services Re-
search Conference
[26] Matlab DCMC Capacity.
http://users.ecs.soton.ac.uk/rm/resources/matlabcapacity/
[27] Molisch, A.F. 2011. Wireless Communications, Second Edition John Wiley &
Sons, Ltd
[28] Shuttle RADAR Topography Mission (SRTM) 90m Digital Elevation Database
v4.1.
ftp://e0srp01u.ecs.nasa.gov/srtm/version2/SRTM3/
[29] Fujitsu. Enhancing LTE Cell-Edge Performance via PDCCH ICIC. A white paper
on challenges of optimizing cell-edge SINR and various strategies to enhance the
cell-edge performance of PDCCH using the existing LTE standard.
[30] PCTEL. April 2011. Maximizing LTE Performance Through MIMO Optimiza-
tion. A white paper on capabilities and challenges posed by MIMO in LTE net-
works