Abstract :
ABSTRACT
Recently time the Increasing of datarates and better performance is to
be one fundamental aspect in implementation of technology
telecommunication. The increasing of datarates which is higher made
technology telecommunication is rapidly advanced. One of the existing
technology is Long Term Evolution- Advanced (LTE-Advanced). LTE-Advanced
is a technology that released by 3GPP that focus on higher capacity and better
performance. It has datarates 3 Gbps in downlink and 1.5 in uplink. One of
fiture from LTE-advanced is Carrier Aggregation (CA) that is about technique
to aggregate two component carrier with maximum bandwith 100 MHz in same
band or opposite it. The implementation of this fiture to optimization the
different frequency band problem and capacity utility. In this thesis use three
scenario CADS1, CADS2, CADS3. These scenario use 2300 MHz as primary
cell with bandwith 15 MHz and second is 850 MHz as seconday cell using 5
MHz bandwith. The design parameter of this planning is Radio Receive Power
Signal (RSRP), Carrier Interference to Noise Ratio (CINR), Throughput and
User Rejection value. The result of this planning first is about RSRP value that
show in without CA scenario is -65.5 dBm, CADS 1 : -65.5 dBm, CADS2 :
-54.42 dBm, CADS3 : -54.42 dBm. For CINR value , withhout CA scenario
resulting 8.34 dB, CADS 1 : 8.07 dB, CADS 2 : 8.46 dB and CADS 3 : 8.25 dB.
Last, one the value of throughput, without CA has 27.035 Mbps, CADS 1 :
53.194 Mbps, CADS 2 : 42.274 Mbps, and CADS 3 : 42.274 Mbps. The best
value of user rejection is on CADS 1 that have value 11.5 %.
Keywords: LTE, LTE-Advanced, Carrier Aggregation, Link Budget, Coverage
Planning, Capacity Planning.