AMT-70/AMT-73/AMT-75 Installation and Operation
Mode
Modulation
Rates
Intelsat 308/309
BPSK, QPSK
OQPSKI / OQPSKQ
Rates:
½, ¾ and 7/8 are valid along with
the option of Reed-Solomon OFF/
219 or 126
Intelsat 310
8PSK
Rates:
2/3 and again with the option of
Reed-Solomon OFF/ 219 or 126
DVB-S QPSK
OQPSKI / OQPSKQ
Rates:
½, 2/3, ¾, 5/6 and 7/8
DVB-DSNG
8PSK and 16QAM
Rates
2/3, 5/6 8/9 in 8PSK and ¾ and
7/8 in 16QAM.
DVB-S2S
QPSK, 8PSK, 16APSK
Rates
¼, 1/2. 3/5 2/3, ¾, 4/5, 5/6, 8/9
DVB-S2N
QPSK, 8PSK, 16APSK
Rates
1/2. 3/5 2/3, ¾, 4/5, 5/6, 8/9, 9/10,
1/4
TPC4K
PSK,QPSK, oQPSK, 8PSK
and 16QAM
Rate 4/5 and 3/4
TPC16K BPSK,QPSK,
oQPSK,
8PSK and 16QAM
Rate 2/5, 3/5, 8/9, 7/8 and 19/20.
OM73
BPSK, oQPSK and QPSK
and NONE
NONE, 1/2 and 3/4
Figure 5: FEC / MODE / RATE Configuration Chart
3.2.3
Link Budget Analysis and Eb/No (Viterbi and Viterbi R/S)
46
There are many satellites available that operate in C or Ku Bands with different transmission
parameters (power, bandwidth, sensitivity, etc.); different tariffs for their use; different operational
requirements and under different regulatory environments. The link budget problem normally consists
of determining the optimum economic solution for the particular network requirements, given the
satellite parameters, the price for utilization of power and bandwidth and the operational restrictions
that may apply.
The link budget should always guarantee a minimum E
b
/N
0
for worst-case conditions, as a function of
the availability requirements of the network, typically resulting in a BER of 10
-7
.
The figure on the next page illustrates the minimum E
b
/N
0
required for different bit rates and code rates
for Intelsat Viterbi with and without Reed Solomon and the DVB-S and DVB-DSNG formatted Viterbi
with RS.
Onto this value must be added link margin; this includes rain margin, pointing loss, etc. For example, if
a -3 dB rain margin is added, the link will normally be operating at better than 10
-10
BER under clear sky
conditions. The figure also shows examples of the allocated bandwidth (or channel spacing) for each of
the carrier types.
Out-of-beam emission limits or downlink emission limits as defined by the regulatory environment in the
country where the network is being installed are also an issue: there may be a limit on the minimum or
maximum antenna size to be used.
Содержание AMT-70
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Страница 148: ...AMT 70 AMT 73 AMT 75 Installation and Operation 148 Figure 76 QPSK at 256kbps at 104dBm Hz Input Power...
Страница 149: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 77 QPSK 3MBps at 104dBm Hz Input Power 149...
Страница 150: ...AMT 70 AMT 73 AMT 75 Installation and Operation 150 Figure 78 QPSK at 10Mbps at 104dBm Hz Input Power...
Страница 151: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 79 QPSK at 35Mbps at 104dBm Hz Input Power 151...
Страница 152: ...AMT 70 AMT 73 AMT 75 Installation and Operation 152 Figure 80 8PSK at 150kbps at 104dBm Hz Input Power...
Страница 153: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 81 8PSK at 400kbps at 104dBm Hz Input Power 153...
Страница 154: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 82 8PSK at 16Mbps at 104dBm Hz Input Power 154...
Страница 155: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 83 8PSK at 55Mbps at 104dBm Hz Input Power 155...
Страница 156: ...AMT 70 AMT 73 AMT 75 Installation and Operation 156 Figure 84 16QAM at 512kbps at 104dBm Hz Input Power...
Страница 157: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 85 16QAM at 6Mbps at 104dBm Hz Input Power 157...
Страница 158: ...AMT 70 AMT 73 AMT 75 Installation and Operation 158 Figure 86 16QAM at 20Mbps at 104dBm Hz Input Power...
Страница 159: ...AMT 70 AMT 73 AMT 75 Installation and Operation Figure 87 16QAM at 70Mbps at 104dBm Hz Input Power 159...