Nova Patents
USRE39677E

Local multipoint distribution system

Claim Score by NHIP

Read claim 13, the broadest

Abstract

A local multipoint distribution system having a head end coupled to a plurality of base stations with each base station constituting a cell. Each base station has a plurality of sector beam antennas, each sector beam antenna illuminating a predetermined sector of the cell with RF communication signals. A plurality of RF subscriber stations for each sector of a cell, with each subscriber station having a high gain antenna with a narrow beam width oriented toward the sector beam antenna oriented toward its assigned sector. Time division multiple access control is provided at each subscriber station operated such that each subscriber transmits at a time different from the other subscribers in its sector so that the subscribers in a given sector do not interfere with each others' transmissions, respectively. The power level transmitted by the subscribers are adjusted or controlled so that the subscriber signals arrive at the respective base stations at about the same power level. The cells can be hexagonally shaped and the sectors arranged such that the subscribers do not radiate directly into the three db beam width of base stations of immediately adjacent cells. Alternatively, the cells can be rectangularly shaped and the sectors of the cells arranged such that the subscribers do not radiate directly into the three db beam width of base stations of immediately adjacent cells.

Term

Term ended

Expired 14 September 2020, 6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

31 claims: 6 independent, 25 dependent

  1. 1
    A local multipoint distribution system comprising:a head end coupled to a plurality of base stations, each base station constituting a cell, each base station having a plurality of sector beam antennas, each sector beam antenna illuminating a predetermined sector of said cell with RF communication signals, a plurality of RF subscriber stations for each sector of a cell, each subscriber station having a high gain antenna with a narrow beam width oriented toward the sector beam antenna oriented toward its assigned sector, time division multiple access control means at each subscriber station operated such that each subscriber transmits at a time different from the other subscribers in its sector so the subscribers in a given sector do not interfere with each others transmissions, respectively, means controlling the transmitted power level such that all subscriber signals arrive at their respective base stations at about the same power level, means controlling the transmit signal timing such that all subscriber signals arrive at their respective base stations at the exclusively assigned time thereby minimizing the possibilities of mutual interference and means controlling the transmit signal frequency such that all subscriber signals operate at their proper assigned frequency and are orthogonal to all other carrier frequencies received by the base station, and wherein each subscriber station first, in order to initiate operation, is operated in a receive-mode only to detect a stable downstream frequency from a head end signal and detect any received frequency error and adjust its initial frequency of operation in accordance therewith.
  2. 2
    A local multipoint distribution system comprising:a head end coupled to a plurality of base stations, each base station constituting a cell, each base station having a plurality of sector beam antennas, each sector beam antenna illuminating a predetermined sector of said cell with RF communication signals, a plurality of RF subscriber stations for each sector of a cell, each subscriber station having a high gain antenna with a narrow beam width oriented toward the sector beam antenna oriented toward its assigned sector, time division multiple access control means at each subscriber station operated such that each subscriber transmits at a time different from the other subscribers in its sector so the subscribers in a given sector do not interfere with each others transmissions, respectively, and means controlling the transmitted power level such that all subscriber signals arrive at their respective base stations at about the same power level wherein each subscriber station first, in order to initiate operation, is operated in the receive mode only to detect a stable downstream frequency from a head end signal, and detect any received frequency error and adjust its initial frequency of operation in accordance therewith.
  3. 6
    A cellular wireless communications system, comprising:at least one sector defined in at least one cell;a base station associated with each said cell;for each said sector, a corresponding sector beam antenna coupled to said base station and oriented to illuminate said sector to which said sector beam antenna corresponds with wireless communications signals;a plurality of subscriber stations in each said sector, each subscriber station having an antenna with a narrow beam width oriented toward said corresponding sector beam antenna;time division multiple access control at each subscriber station of each said sector operated such that each subscriber station in any given sector transmits signals at timeslots different from other subscriber stations in said given sector so the plurality subscriber stations in said given sector do not interfere with each other's signals;transmit power level control such that the signals transmitted by said plurality of subscriber stations in any given said sector arrive at the base station of the cell in which said given sector is defined at about a same power level;transmit signal timing control such that the signals transmitted by any given subscriber station in each said sector in a given timeslot arrive at the base station synchronized to a reference signal provided by the base station;transmit signal frequency control such that the signals transmitted by the plurality of subscriber stations each operates substantially at an assigned frequency;and wherein each subscriber station, in order to initiate operation in the system, first operates in a receive - mode only to detect a downstream signal having a stable frequency from the base station, and adjusts its initial frequency of operation in accordance with any measured error between the detected stable frequency and a local frequency reference.
  4. 13
    Broadest claimClaim Score 58, broad(NHIP)A subscriber station for use in a cellular communication system comprising a cell, a base station associated with said cell, said base station transmitting a downstream communication signal through an antenna associated with said base station, said subscriber station communicating with said base station via an upstream communication signal and said subscriber station comprising a local antenna oriented towards said antenna to receive said downstream communication signal and to transmit to said base station said upstream communication signal, wherein during initiation of operation of said subscriber station, said subscriber station first operates in a receive- only mode to detect said downstream communication signal having a stable downstream frequency, then detects any received frequency error in said downstream communication signal and then adjusts frequency characteristics of said upstream communication signal utilizing said received frequency error.
  5. 19
    A method of initiating operation of a subscriber station for use in a cellular communication system comprising a sector, a base station associated with said sector, a plurality of sector beam antennas associated with said base station, said subscriber station located in said sector, said subscriber station communicating with said base station via an upstream communication signal in a time division multiple access manner, said subscriber station having a narrow width transmission beam antenna oriented towards said given sector beam antenna, said subscriber station communicating with said base station through a given sector beam antenna of said plurality of sector beam antennas, said method comprising initially operating said subscriber station in a receive - only mode to detect a downstream communication signal having a stable downstream frequency from said base station, then testing for a frequency error in said downstream communication signal and then adjusting frequency characteristics of said upstream communication signal to said base station signals utilizing said frequency error.
  6. 26
    A cellular wireless communications system comprising:a cell defining a region for wireless communications, said cell having at least one sector;a base station associated with said cell;a sector beam antenna coupled to said base station and oriented to illuminate said sector with wireless communications signals;a plurality of subscriber stations in said sector, each subscriber station of said plurality of subscriber stations having an antenna in communication with said sector beam antenna;time division multiple access control at said each subscriber station such that every subscriber station of said plurality of subscriber stations transmits signals at a timeslot different from all other subscriber stations of said plurality of subscriber stations;transmit power level control at said each subscriber station such that signals transmitted by said every subscriber station arrive at said base station at about a same power level as signals transmitted by said other subscriber stations;transmit signal timing control at said each subscriber station such that signals transmitted by said every subscriber station arrive at said base station synchronized to a reference signal provided by said base station;transmit signal frequency control at said each subscriber station such that signals transmitted by said every subscriber station operates substantially at an assigned frequency;and adjustment control at said each subscriber station to periodically adjust at least one of frequency, timing and power of signals transmitted by said each subscriber station to said base station.