Terrestrial communications system
First Claim
1. A base station for a terrestrial communications system, said base station comprisinga plurality of signal receiving ports, each receiving port being disposed at a terrestrial location to receive energy at a predetermined receiving frequency from only a respective one of a plurality of regions forming a system service region, said predetermined receiving frequency being the same for more than one of said plurality of signal receiving ports,a plurality of signal transmitting ports, each transmitting port being disposed at said terrestrial location to transmit energy at a predetermined transmitting frequency to only an associated one of said plurality of regions forming said system service region, said predetermined transmitting frequency being the same for more than one of said plurality of signal transmitting ports,each region in said system service region being defined by a directional antenna pattern emanating from said base station, the totality of directional antenna patterns defining said system service region,at least one transmitter,at least one receiver, andmeans for respectively interconnecting said transmitter and receiver to a selected one of said signal transmitting and signal receiving ports during a time slot in a sequence of time slots forming a time division multiplexed frame.
1 Assignment
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Accused Products
Abstract
A terrestrial radio system which utilizes spot beams, time division multiple access and frequency reuse to provide communications services from a base station to remote customers within a system service region. The base station advantageously is arranged with multistage switching so as to permit the respective sharing of radio transmitters and receivers over larger number of antenna transmitting and receiving ports.
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Citations
15 Claims
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1. A base station for a terrestrial communications system, said base station comprising
a plurality of signal receiving ports, each receiving port being disposed at a terrestrial location to receive energy at a predetermined receiving frequency from only a respective one of a plurality of regions forming a system service region, said predetermined receiving frequency being the same for more than one of said plurality of signal receiving ports, a plurality of signal transmitting ports, each transmitting port being disposed at said terrestrial location to transmit energy at a predetermined transmitting frequency to only an associated one of said plurality of regions forming said system service region, said predetermined transmitting frequency being the same for more than one of said plurality of signal transmitting ports, each region in said system service region being defined by a directional antenna pattern emanating from said base station, the totality of directional antenna patterns defining said system service region, at least one transmitter, at least one receiver, and means for respectively interconnecting said transmitter and receiver to a selected one of said signal transmitting and signal receiving ports during a time slot in a sequence of time slots forming a time division multiplexed frame.
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7. A communication subsystem comprising
a plurality of signal receiving ports each disposed at a terrestrial location to receive electromagnetic energy from a different data source, each data source being in a respective one of a plurality of regions forming a system service region, a plurality of receivers, a plurality of signal transmitting ports, each disposed at said terrestrial location to transmit electromagnetic energy to a data destination, each data destination being in an associated one of said plurality of regions forming said system service region, each region in said system service region being defined by a directional antenna pattern emanating from said terrestrial location, the totality of directional antenna patterns defining said system service region, a plurality of transmitters, and means responsive to a supervisory signal for simultaneously connecting different ones of said receiving ports to different ones of said transmitting ports, said connecting means precluding the interconnection of receiving ports and transmitting ports whose simultaneous transmission of data would interfere with one another based on a predetermined interference pattern.
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8. A base station for a terrestrial communications system, said base station comprising
a plurality of signal receiving ports, each disposed at a terrestrial location to receive electromagnetic energy from a different region of a system service region and said receiving ports being arranged into receiving port groups wherein each group comprises a plurality of receiving ports, a plurality of signal transmitting ports, each disposed at said terrestrial location to transmit electromagnetic energy to said different regions of said system service region, and said transmitting ports being arranged into transmitting port groups wherein each transmitting port group comprises a plurality of transmitting ports, a plurality of transmitters arranged into groups with each transmitter group being associated with a different one of said transmitting port groups and each transmitter group having a number of transmitters which is not more than the number of transmitting ports in said associated transmitter port group, a plurality of radio receivers arranged into groups with each receiver group being associated with a different one of said receiving port groups and each group of radio receivers comprising a number of receivers which is not more than the number of receiving ports in said associated receiving port group, first switching means for interconnecting designated receiving ports to different receivers in said associated receiver group, second switching means for interconnecting designated transmitting ports to different transmitters in said associated transmitter group, and third switching means for interconnecting the interconnections formed by said first and second switching means so as to form designated communications paths through said base station.
Specification