Claims
- 1. A method for synchronization in intertransponder communication TDMA networks, comprising:
- partitioning TDMA burst frame periods into IN GROUP and CROSS GROUP sub-periods to be used respectively by plural groups of stations assigned to different transponders for intra-group and inter-group communications in TDMA mode;
- at individual radio transceiving nodes, in plural groups of nodes associated with said groups of stations, transmitting bursts of information signals in TDMA slots in each of said sub-periods; signal bursts transmitted from any node in either sub-period being carried as modulation only on one outgoing radio carrier frequency associated with the respective group; each group having a different associated outgoing carrier frequency, each node having no more than one radio transmitter;
- relaying signal bursts from each group of nodes through an associated transponder segment of a satellite repeater on an associated incoming carrier frequency; each group having a different associated transponder segment having a unique pair of outgoing and incoming carrier frequencies;
- at individual nodes of each group, selectively receiving signals relayed by said repeater; each node receiving the incoming frequency associated with the respective group during IN GROUP sub-periods and the incoming carrier frequencies associated with other groups during the CROSS GROUP sub-periods; nodes in one of said groups thereby being capable of exchanging signals with each other by means of bursts communicated in the IN GROUP sub-periods and with nodes in other groups by means of bursts communicated in the CROSS GROUP sub-periods;
- transmitting frame reference information signals from a predetermined one of said nodes through said repeater to all of said nodes; said reference signals designating a variable crossover time representing a partition boundary in each frame period between the IN GROUP and CROSS GROUP sub-periods of that period;
- detecting said frame reference signals at all of said nodes; and
- keying transmissions from said nodes in both sub-periods of each period to times of detection of said frame reference signals and crossover times designated in said reference signals;
- transmitting said frame reference signals from a predetermined reference node in one of said groups in a time slot contiguous in time to both the IN GROUP and CROSS GROUP sub-periods;
- receiving said frame reference signals at nodes in said one of said groups as an integral part of signals representing IN GROUP transmissions relative to said one group; and
- receiving said frame reference signals at nodes in groups other than said one group as an integral part of the signals representing CROSS GROUP transmissions relative to said other groups.
- 2. A method for acquisition of synchronization in intertransponder communication TDMA networks, comprising:
- partitioning TDMA burst frame periods into IN GROUP and CROSS GROUP sub-periods to be used respectively by plural groups of stations assigned to different transponders for intra-group and inter-group communications in TDMA mode;
- at individual radio transceiving nodes, in plural groups of nodes associated with said groups of stations, transmitting bursts of information signals in TDMA slots in each of said sub-periods; signal bursts transmitted from any node in either sub-period being carried as modulation only on one outgoing radio carrier frequency associated with the respective group; each group having a different associated outgoing carrier frequency, each node having no more than one radio transmitter;
- relaying signal bursts from each group of nodes through an associated transponder segment of a satellite repeater on an associated incoming carrier frequency; each group having a different associated transponder segment having a unique pair of outgoing and incoming carrier frequencies;
- at individual nodes of each group, selectively receiving signals relayed by said repeater; each node receiving the incoming frequency associated with the respective group during IN GROUP sub-periods and the incoming carrier frequencies associated with other groups during the CROSS GROUP sub-periods; nodes in one of said groups thereby being capable of exchanging signals with each other by means of bursts communicated in the IN GROUP sub-periods and with nodes in other groups by means of bursts communicated in the CROSS GROUP sub-periods;
- transmitting frame reference information signals from a predetermined one of said nodes through said repeater to all of said nodes; said reference signals designating a variable crossover time representing a partition boundary in each frame period between the IN GROUP and CROSS GROUP sub-periods of that period;
- detecting said frame reference signals at all of said nodes;
- keying transmissions from said nodes in both sub-periods of each period to times of detection of said frame reference signals and crossover times designated in said reference signals;
- transmitting from each node a respective transmit reference burst signal in a respective preassigned XRB time slot in said IN GROUP sub-periods;
- detecting the respective XRB signals relayed by said satellite repeater, in association with said frame reference signals, at the respective node;
- locking transmissions of the respective XRB signals from the respective node in fixed time relation to the detection of said frame reference signals; and
- locking transmissions of signals other than the XRB signals from the respective node, in both of said sub-periods in a fixed time relation to the transmissions of the respective XRB signals.
Parent Case Info
This is a continuation of application Ser. No. 47,951 filed June 8, 1979 which was a continuation of Ser. No. 842,016 filed Oct. 11, 1977, now abandoned.
US Referenced Citations (5)
Continuations (2)
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Number |
Date |
Country |
Parent |
47951 |
Jun 1979 |
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Parent |
842016 |
Oct 1977 |
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