Wireless ATM metropolitan area network
First Claim
1. A wireless metropolitan area network including:
- at least one base station having a plurality of sector antennas and a MAC controller, said station transmitting and receiving based on frequency division duplex (FDD) by means of said sector antennas;
a plurality of subscriber terminals (STs) located within a sector area, each ST including;
a directional antenna,a MAC processor, andcircuitry for requesting bandwidth through a plurality of contention slots, said circuitry receiving transmission grants from said MAC controller and transmitting ATM cells including a MAC overhead and forward error correction per ATM cell to said base station;
wherein each ST transmits one ATM-cell burst per ATM-type grant received from the base station, said grant information including a grant type, and said ATM-cell burst is received by the base station at a fixed time interval from the transmission of a corresponding grant from the base station to the ST.
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Accused Products
Abstract
The present invention provides an efficient point-to-multipoint microwave ATM network including a base station (BS) broadcasting a continuous transmission with a sector antenna. The system uses time division multiplex (TDM) for downstream transmission and time division multiple access (TDMA) for upstream transmission. The downstream transmission consists of ATM cells encapsulated in MAC protocol data units (PDUs) for forward error correction (FEC) and synchronization. Small Subscriber Terminals (STs), including Subscriber Radio Units (SRUs), receive the broadcast and pass it to a Subscriber Access System (SAS) that drops the ATM cells addressed only to them. To allow strong FEC protection and to maintain the same symbol rate as the downstream transmission without sacrificing bandwidth, a modified trellis code modulation technique, which incorporates Reed Solomon coding, is used during upstream transmission.
381 Citations
13 Claims
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1. A wireless metropolitan area network including:
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at least one base station having a plurality of sector antennas and a MAC controller, said station transmitting and receiving based on frequency division duplex (FDD) by means of said sector antennas; a plurality of subscriber terminals (STs) located within a sector area, each ST including; a directional antenna, a MAC processor, and circuitry for requesting bandwidth through a plurality of contention slots, said circuitry receiving transmission grants from said MAC controller and transmitting ATM cells including a MAC overhead and forward error correction per ATM cell to said base station; wherein each ST transmits one ATM-cell burst per ATM-type grant received from the base station, said grant information including a grant type, and said ATM-cell burst is received by the base station at a fixed time interval from the transmission of a corresponding grant from the base station to the ST. - View Dependent Claims (2, 3, 4)
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5. A subscriber terminal (ST) for a wireless ATM metropolitan area network including:
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subscriber interfaces; a MAC framing and timing processor for transmission of ATM cells; forward error correction circuits; and a radio unit having an enclosure, mounting and alignment hardware, and an attached lens horn antenna, wherein the ST transmits one ATM-cell burst per ATM-type grant received from a base station, said grant information including a grant type, and said ATM-cell burst is received by the base station at a fixed time interval from the transmission of a corresponding grant from the base station to the ST. - View Dependent Claims (6, 7)
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8. A method of for transmitting constant bit rate ATM cells over a point-to-multipoint network including the steps of:
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(a) transmitting a grant to a subscriber terminal within a first fixed time window of the ideal transmission time for a virtual circuit; and (b) having said grant be used by said virtual circuit that also maintains a second time window only if said second time window has not expired. - View Dependent Claims (9, 10, 11)
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12. A method for scheduling transmission of ATM cells for CBR services from subscriber terminals to a base station over a point-to-multipoint network over a shared medium wherein said base station can grant the time slot of said transmission to any CBR virtual circuit, the method including the steps of:
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(a) creating grants for multiple CBR virtual circuits at the base station, wherein each grant is first scheduled for a time slot that minimizes cell delay variation for a corresponding virtual circuit; and (b) if two or more grants are scheduled for a first time slot, re-scheduling at least one of said grants to a second time slot; wherein each ST transmits one ATM-cell burst per ATM-type grant received from the base station, said grant information including a grant type, and said ATM-cell burst is received by the base station at a fixed time interval from the transmission of a corresponding grant from the base station to the ST. - View Dependent Claims (13)
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Specification