Download - Worksheet in AWS

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Page 1: Worksheet in AWS

Input OutputNetwork Settings RE Distribution in DL

Cyclic Prefix: Total Number of REs in Downlink:Normal 42000

PDCCH Overhead: Total Number of Reference Signal REs:2 4000

PUCCH Overhead: Total Number of S-SCH REs:2 144

Cell Configuration Total Number of P-SCH REs:Frequency Band: 144

FDDTotal Number of PBCH REs:

Channel Bandwidth: 2645

Total Number of PDCCH REs:TDD Frame Configuration: 5000

D-UUD DDDDDTotal Number of PDSCH REs:

Number of Transmission Antenna Ports: 324482

RE Distribution in ULTotal Number of REs in Uplink:

38640

Total Number of SRS REs:2760

Total Number of DRS REs:5520

Total Number of PUSCH REs:30360

Bearer Efficiency DL Peak RLC Throughput UL Peak RLC ThroughputQPSK 1/12 0.1523 494,183.04 462,382.80QPSK 1/9 0.2344 760,581.12 711,638.40QPSK 1/6 0.3770 1,223,289.60 1,144,572.00QPSK 1/3 0.6016 1,952,071.68 1,826,457.60QPSK 1/2 0.8770 2,845,689.60 2,662,572.00QPSK 3/5 1.1758 3,815,235.84 3,569,728.8016QAM 1/3 1.4766 4,791,271.68 4,482,957.6016QAM 1/2 1.9141 6,210,871.68 5,811,207.6016QAM 3/5 2.4063 7,807,962.24 7,305,526.8064QAM 1/2 2.7305 8,859,926.40 8,289,798.0064QAM 1/2 3.3223 10,780,199.04 10,086,502.80For Efficiency 4 4.0000 12,979,200.00 12,144,000.0064QAM 3/4 4.5234 14,677,528.32 13,733,042.4064QAM 5/6 5.1152 16,597,800.96 15,529,747.2064QAM 11/12 5.5547 18,023,890.56 16,864,069.20

Page 2: Worksheet in AWS

FDD Normal 1 0 D-UUU D-UUUTDD Extended 2 1 D-UUD D-UUD

4 2 D-UDD D-UDD3 D-UUU DDDDD

D-UUD DDDDDD-UDD DDDDD

Frequency Band

Cyclic Prefix

Number of Transmission Antenna Ports

PDCCH Overhead

TDD Frame Configuration

Page 3: Worksheet in AWS

2 6 1.4 6 04 4 3 15 16 2 5 25 26 3 10 50 37 2 15 75 48 1 20 100

Number of DL Subframes

Number of UL Subframes

Channel Bandwidths

Number of Frequency

Blocks

PUCCH Overhead

Page 4: Worksheet in AWS

LegendConstantsDetermined from InputIntermediate ResultOutput

ConstantsResource Block Width (Hz):

180000

Number of Slots per Subframe:2

Number of CCH Frequency Blocks:6

Frame Duration (s):0.01

Subcarrier/Frequency Block ConfigurationSubcarrier Width (Hz):

15000

Number of Subcarriers per Frequency Block:12

Number of Symbol Durations per Slot:7

Number of Frequency Blocks per Channel:25

Total Number of REs in 1 RB:168

Total DL Cell ResourcesNumber of Downlink Subframes:

10

Total Number of REs in Downlink:42000

Control Channel OverheadsNumber of Reference Signal REs in 1 RB:

16

Total Number of Reference Signal REs:4000

Total Number of S-SCH REs:144

Total Number of P-SCH REs:144

Page 5: Worksheet in AWS

Total Number of PBCH REs:264

Total Number of PDCCH REs:5000

Effective DL Cell ResourcesTotal Number of PDSCH REs:

32448

Total UL Cell ResourcesNumber of Uplink Subframes:

10

Total Number of REs in Uplink:38640

Control Channel OverheadsNumber of Sounding Reference Signal REs in the frame:

2760

Number of Demodulation Reference Signal REs in the frame:5520

Effective UL Cell ResourcesTotal Number of PUSCH REs:

30360

Page 6: Worksheet in AWS

180 kHz fixed by 3GPP

2 fixed by 3GPP

6 fixed by 3GPP

10 ms fixed by 3GPP

15 kHz defined by 3GPP, fixed in Atoll

180 kHz / 15 kHz

Depends on the cyclic prefix (see Source for the mapping)

Depends on the channel bandwidth (see Source for the mapping)

Number of subcarriers in 1 frequency block * Number of symbol durations per slot * Number of slots per subframe

Depends on the frequency band type and the TDD frame configuration (see Source for the mappings)

Number of resource elements in 1 RB * Number of frequency blocks per channel * Number of subframes per frame

8 if number of antennas = 1, 16 if number of antennas = 2, 24 if number of antennas = 4

Total number of reference signal REs in 1 frame, i.e, Number of reference signal REs in 1 RB * Total number of REs in downlink / Total number of REs in 1 RB

Number of slots over which the S-SCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Number of slots over which the P-SCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Page 7: Worksheet in AWS

Number of slots over which the PBCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Number of PDCCH REs excluding any reference signal REs that fall within the PDCCH (depends on the number of antennas and the PDCCH symbol durations)

Total number of REs in 1 frame - all CCH overheads

Depends on the frequency band type and the TDD frame configuration (see Source for the mappings)

Number of resource elements in 1 RB * Number of frequency blocks per channel less the PUCCH frequency blocks * Number of subframes per frame

Number of SRS REs in 1 RB (12) * Number of REs in UL / Number of REs in 1 RB

Number of DRS REs in 1 RB (24) * Number of REs in UL / Number of REs in 1 RB

Total number of REs in 1 frame - all CCH overheads

Page 8: Worksheet in AWS

Number of subcarriers in 1 frequency block * Number of symbol durations per slot * Number of slots per subframe

Depends on the frequency band type and the TDD frame configuration (see Source for the mappings)

Number of resource elements in 1 RB * Number of frequency blocks per channel * Number of subframes per frame

Total number of reference signal REs in 1 frame, i.e, Number of reference signal REs in 1 RB * Total number of REs in downlink / Total number of REs in 1 RB

Number of slots over which the S-SCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Number of slots over which the P-SCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Page 9: Worksheet in AWS

Number of slots over which the PBCH is transmitted in 1 frame (2) * Number of subcarriers per frequency block * Number of CCH frequency blocks (6)

Number of PDCCH REs excluding any reference signal REs that fall within the PDCCH (depends on the number of antennas and the PDCCH symbol durations)

Depends on the frequency band type and the TDD frame configuration (see Source for the mappings)

Number of resource elements in 1 RB * Number of frequency blocks per channel less the PUCCH frequency blocks * Number of subframes per frame


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