G4 Receiver Procedures in C#.NET

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G4 Receiver Procedures
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A user receiving dialed digits is expected to regenerate dialed-digit signals according to the parameters conveyed to the best of the user s ability At most one signal will be played at any given time Transitions are explicitly
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Six
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indicated, and a new dialed-digit signal implicitly turns off the old one Transitions to silence are explicit and triply redundant, like all others When regenerated, the two frequencies of a tone pair and their relative levels should be within the tolerances for the local environment The total power level should be as indicated In order to make full use of triple redundancy without introducing extra delay variation, the receiver should wait before indicating dialed digits until such time as it should have received all three copies of a transition Although transmitted three times, it only requires one subframe to be received correctly for a new dialed digit or silence transition to be recognized A user receiving dialed digits should not filter the duration of transitions before reproducing them If, despite triple redundancy, one or more transitions are lost, a user will continue to play out the preceding tone It is an option to indicate the end of a tone if no further dialed-digit packets are received within a period of two seconds
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MPLS Forum VoMPLS Implementation Agreement
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Annex H: CAS Bits
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(This annex forms an integral part of the Implementation Agreement)
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H1 General
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This annex defines the packet format and procedures that are used to transport CAS bits over an MPLS connection in a control subframe The concepts of CAS are defined in ITU-T Recommendation G704 see Section 31/G704 for the 1,554-Kbps interface and Section 51/G704 for the 2,048Kbps interface The transmission of CAS control subframes is optional
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H2 CAS Control Subframes
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CAS control subframes are sent with triple redundant transmission (see Section 674) The format of CAS control subframes is shown in Figure 6-26 The fields designated A, B, C, and D contain the current value of the corresponding CAS bits
H3 Transmitter Procedures
When a transmitter wants to convey to the receiver a change in state of the ABCD bits, the CAS control subframe is sent with triple redundancy at intervals of 5 ms Every five seconds thereafter the CAS control subframe is sent to refresh the ABCD state (with the Redundancy field coded as value 3) Procedures to debounce CAS bits at the transmitter are outside the scope of this Implementation Agreement Within certain limits, transient changes in the state of the CAS bits can be considered insignificant
Figure 6-26 CAS bits transfer frame format
0 1 2 3 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 CID value Redundancy Payload type = 241 Reserved A B C D Timestamp Reserved 0 1
Six
If a new state change is conveyed before the triple redundancy of a previous state change has completed, the transmitter stops sending control subframes for the previous state in order to avoid the interleaving of two different timestamps If an external interface supplies fewer than four independent CAS bits; for example, 1,554-Kbps with the 12-frame multiframe, the transmitting user aggregates and maps the supplied bits to the four ABCD bits that the control subframe transfers In particular, the sequence {A, B, A', B'} will be transferred as C A', D B', and the sequence {A, A', A", A'"} will be transferred as B A', C A", D A"'
H4 Receiver Procedures
If a receiver is interpreting the semantics of signaling, it should filter out (debounce) insignificant transient changes in the state of the CAS bits In order to make full use of triple redundancy without introducing extra delay variation, the receiver should wait before indicating changes in the state of the CAS bits until the time it should have received all three copies of a transition Although it is transmitted three times, it only requires one packet to be received correctly for a change in the state of the CAS bits to be recognized
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