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| United States Patent | 6,334,219 |
| Hill ,   et al. | December 25, 2001 |
A method for monitoring at least one telephony communication n-bit channel, wherein one of the bits is a parity bit, includes sampling the parity bit of the n-bit channel. A probable bit error rate is derived from the sampling of the parity bit. The probable bit error rate can be compared to a pre-determined bit error rate value to determine if the at least one telephony communication n-bit channel is corrupted. If the at least one telephony communication n-bit channel is corrupted, the at least one telephony communication n-bit channel is re-allocated to an uncorrupted and unallocated telephony communication n-bit channel. Further, at least one unallocated telephony communication channel can be periodically monitored and error data accumulated to indicate the quality thereof.
| Inventors: | Hill; Terrance J. (Fairfield, OH); Roberts; Harold A. (Eden Prairie, MN); Anderson; Brian D. (Plymouth, MN); Brede; Jeffrey (Eden Prairie, MN); Wadman; Mark S. (Eden Prairie, MN); Kirscht; Robert J. (Savage, MN); Herrmann; James J. (Eagan, MN); Fort; Michael J. (Eagan, MN); Buska; Steven P. (Minnetonka, MN); Solum; Jeff (Bloomington, MN); Enfield; Debra Lea (Chaska, MN); Berg; Darrell (Bloomington, MN); Smigelski; Thomas (Lake Zurich, MN); Tucker; Thomas C. (Chapel Hill, NC); Hall; Joe (Bloomington, MN); Logajan; John M. (Arden Hills, MN); Boualouang; Somvay (Bloomington, MN); Lou; Heng (Bloomington, MN); Elpers; Mark D. (Elk River, MN); Downs; Matt (Bloomington, MN); Ferris; Tammy (Bloomington, MN); Opoczynski; Adam (Plano, TX); Russell; David S. (Minneapolis, MN); Nelson; Calvin G. (Shorewood, MN); Samant; Niranjan R. (Middletown, CT); Chiappetta; Joseph F. (Trumbull, CT); Sarnikowski; Scott (San Jose, CA) |
| Assignee: | ADC Telecommunications Inc. (Minnetonka, MN) |
| Appl. No.: | 673002 |
| Filed: | June 28, 1996 |
| Current U.S. Class: | 725/106; 341/100; 370/280; 375/235; 375/286 |
| Intern'l Class: | H04H 009/00; H03M 009/00; H04J 003/00; H03H 007/30 |
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TABLE 1
Subband 21 frames 41 frames 81 frames
0 0 0 0
1 0 0 1
2 0 1 2
3 0 1 3
4 1 2 4
5 1 2 5
6 1 3 6
7 1 3 7
8 2 4 8
9 2 4 9
10 2 5 10
11 2 5 11
12 3 6 12
TABLE 2
Band Number of Tones
Allocation or Carriers Modulation Capacity Bandwidth
Synch 24 tones(2 synch BPSK n/a 216 kHz
Band tones at each end
and 10 guard
tones at each end)
Payload 480 (240 DSO + 32 QAM 19.2 MBPS 4.32 MHz
Data channels)
IOC 48 (2 every 20 BPSK 384 kbps 432 kHz
data channels or
24 IOC
channels)
Intra-band Remainder on n/a n/a 1.032 MHz
guard each end (516 kHz at
each end)
Composite 552 n/a n/a 6.0 MHz
Signal
TABLE 3
Bit Error Rate Probability
Maximum Average
Bit Errors Monitored Frame Errors/ Frame Errors/
per Frame Parity Monitored Monitored Probability of
Error Errors Parity Error (x) Parity Error (.mu.) BER <-
10.sup.-3
8 2 4 1.6 98%
3 3 2.4 78%
4 2 3.2 38%
1 8 8 6.4 80%
9 7 7.2 56%
10 7 8.0 45%
TABLE 4
Service Maximum Errored Monitoring
type: BER: Integration Time: seconds Period:
POTS 10.sup.-3 1 second
ISDN 10.sup.-6 157 seconds 8% 1 hour
DDS 10.sup.-7 157 seconds 0.5% 1 hour
DS1 10.sup.-9 15,625 seconds 0.04% 7 hours
TABLE 5
FFT Clock required to perform a transform in 125 microseconds
Clock Frequency for 125
Clock cycles per .mu.Sec conversion rate
Transform Size conversion (MHz)
1024 3845 30.8
512 1925 15.4
256 775 6.2
128 390 3.1
64 150 1.2
32 80 0.64
TABLE 6
Typical processing states of memory banks.
State BANK A BANK B BANK C
0 Input Convert Output
1 Convert Output Input
2 Output Input Convert
TABLE 7
Read Cycle for output RAM bank 2253
Symbol Parameters Condition Nom
Tcc Clock Cycle Time Pulse Minimum 20 ns
Width
Tchpw Minimum Positive CK Minimum 6 ns
Pulse Width
Tclpw Minimum Negative CK Minimum 6 ns
Pulse Width
Tavch Address valid to CK high Minimum 4 ns
Tchax CK high to address change Minimum 1.0 ns
Tchdox CK high to Data Output Minimum 2 ns
change
Tcd CK high to data valid Maximum 15 ns
Toe Output Enable time Minimum 0 ns
Toz Output Disable time Maximum 7 ns
NOTE: The RAM clocks for the input and output banks are limited to 10.24
MHz.
TABLE 8
Write Cycle for input RAM bank 2251
Symbol Parameters Condition Nom
Tcc Clock Cycle time Minimum 20 ns
Tchpw Minimum positive CK Minimum 6 ns
pulse width
Tclpw Minimum negative CK Minimum 6 ns
pulse width
Tavch Address valid to CK low Minimum 4 ns
Tchax CK low to address change Minimum 1 ns
Twch .about.WE low to CK low Minimum 4 ns
Tchw CK low to .about.WE high Minimum 1 ns
Tdivch Data Input valid to CK low Minimum 4 ns
Tchdix CK low to Data input Minimum 1 ns
change
Tchdov CK low to Data Output Maximum 15 ns
valid
Tchdox CK low to Data Output Minimum 2 ns
change
NOTE: The RAM clocks for the input and output banks are limited to 10.24
MHz.
TABLE 9
Upstream Ninth Bit Signaling
Bit Contents Description
1 "1" Sync Pattern
2 "1" Sync Pattern
3 "1" Sync Pattern
4 "1" Sync Pattern
5 "0" Sync Pattern
6 "0" Sync Pattern
7 D[8] Order Number, Bit 8 [MSB]
8 D[8]* Inv. Order Number, Bit 8 [MSB]
9 D[7] Order Number, Bit 7
10 D[7]* Inv. Order Number, Bit 7
11 D[6] Order Number, Bit 6
12 D[6]* Inv. Order Number, Bit 6
13 D[5] Order Number, Bit 5
14 D[5]* Inv. Order Number, Bit 5
15 D[4] Order Number, Bit 4
16 D[4]* Inv. Order Number, Bit 4
17 D[3] Order Number, Bit 3
18 D[3]* Inv. Order Number, Bit 3
19 D[2] Order Number, Bit 2
20 D[2]* Inv. Order Number, Bit 2
21 D[1] Order Number, Bit 1
22 D[1]* Inv. Order Number, Bit 1
23 "0" Sync Pattern
24 "0" Sync Pattern
TABLE 10
"Data Dial Tone" Downstream Ninth Bit Signaling
Bit Contents Description
1 "1" Sync Pattern
2 "1" Sync Pattern
3 "1" Sync Pattern
4 "1" Sync Pattern
5 "0" Sync Pattern
6 "0" Sync Pattern
7 CMD[15] Command Bit 15, MSB
8 CMD[14] Command Bit 14
9 CMD[13] Command Bit 13
10 CMD[12] Command Bit 12
11 CMD[11] Command Bit 11
12 CMD[10] Command Bit 10
13 CMD[9] Command Bit 9
14 CMD[8] Command Bit 8
15 CMD[7] Command Bit 7
16 CMD[6] Command Bit 6
17 CMD[5] Command Bit 5
18 CMD[4] Command Bit 4
19 CMD[3] Command Bit 3
20 CMD[2] Command Bit 2
21 CMD[1] Command Bit 1
22 CMD[0] Command Bit 0, LSB
23 "0" Sync Pattern
24 "0" Sync Pattern
TABLE 11
Bit Error Rate Probability
Maximum Average
Bit Errors Monitored Frame Errors/ Frame Errors/
per Frame Parity Monitored Monitored Probability of
Error Errors Parity Error (x) Parity Error (.mu.) BER <-
10.sup.-3
8 2 4 1.6 98%
3 3 2.4 78%
4 2 3.2 38%
1 8 8 6.4 80%
9 7 7.2 56%
10 7 8.0 45%
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