Factors Affecting Voice Quality - Cisco 521SG - Unified IP Phone VoIP Administration Manual

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Getting Started
Ensuring Voice Quality
Cisco Small Business SPA300 Series, SPA500 Series, and WIP310 IP Phone Administration Guide
The table approximates the bandwidth budget for each side of the conversation
(in each direction) using different codecs and the number of calls the network
might support. The table is based on the following assumptions:
Bandwidth calculated with no silence suppression, as the use of silence
suppression can reduce the average bandwidth budget by 30 percent or
more.
20 millisecond of payload per RTP packet
Codec
Estimated
Bandwidth
G.711
110 kbps
G.722
110 kbps
G.726-40
87 kbps
G.726-32
79 kbps
G.726-24
71 kbps
G.726-16
63 kbps
G.729
55 kbps
For more information about bandwidth calculation, refer to the following web sites:
http://www.erlang.com/calculator/lipb/
http://www.packetizer.com/voip/diagnostics/bandcalc.html

Factors Affecting Voice Quality

The following factors contribute to voice quality:
Audio compression algorithm—Speech signals are sampled, quantized,
and compressed before they are packetized and transmitted to the other
end. For IP Telephony, speech signals are usually sampled at 8000 samples
per second with 12–16 bits per sample. The compression algorithm plays a
large role in determining the voice quality of the reconstructed speech
signal at the other end. Cisco SPA IP phones support popular audio
compression algorithms for IP Telephony: G.711 a-law and u-law, G.726,
G.729a, G.722 (not supported on Cisco WIP310) and G.723. 1 . (not
supported on the Cisco SPA525G or Cisco SPA525G2 or Cisco WIP310.)
2 Calls
4 Calls
220 kbps
440 kbps
220 kbps
440 kbps
174 kbps
348 kbps
158 kbps
316 kbps
142 kbps
284 kbps
126 kbps
252 kbps
110 kbps
220 kbps
1
6 Calls
8 Calls
660 kbps
880 kbps
660 kbps
880 kbps
522 kbps
696 kbps
474 kbps
632 kbps
426 kbps
568 kbps
378 kbps
504 kbps
330 kbps
440 kbps
32

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