A wireless communication method in a system in which subscriber stations are each operable for communication with a base station is provided. The base station is capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each c
A wireless communication method in a system in which subscriber stations are each operable for communication with a base station is provided. The base station is capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conforming with a layered protocol of said system. The packets include a first portion for defining physical layer (PHY) parameters and a second portion for defining media access layer (MAC) parameters. Furthermore, communications between the subscriber stations and the base station are performed wholly or partly through at least one relay station. In this system, the method includes, in the relay station, receiving a plurality of packets from the subscriber stations, detecting the second portion of each of the packets, combining the detected second portions to form a second portion of at least one new packet, and transmitting the new packet to the base station.
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1. A wireless communication method in a system in which subscriber stations are each operable for communication with a base station, the base station being capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conform
1. A wireless communication method in a system in which subscriber stations are each operable for communication with a base station, the base station being capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conforming with a layered protocol of said system, the packets comprising a first portion for defining physical layer (PHY) parameters and a second portion for defining media access layer (MAC) parameters, and communications between the subscriber stations and the base station being performed wholly or partly through at least one relay station, the method comprising steps of, in the relay station: receiving a plurality of packets from the subscriber stations;detecting the second portion of each of the packets;combining the detected second portions to form a second portion of at least one new packet; andtransmitting the new packet to the base station, wherein:the second portion of each packet includes error-checking information, and said detecting step comprises checking the error-checking information of packets received from the subscriber stations and discarding any packets thereby found to have been incorrectly received; andthe combining comprises removing the error-checking information from the second portion of each received packet and linking the remainder of each second portion to form the second portion of the new packet. 2. A wireless communication system in which subscriber stations are each operable for communication with a base station, the base station being capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conforming with a layered protocol of said system, the packets comprising a first portion for defining physical layer (PHY) parameters and a second portion for defining media access layer (MAC) parameters, and communications between the subscriber stations and the base station being performed wholly or partly through at least one relay station, wherein the relay station comprises: a receiver arranged to receive a plurality of packets from the subscriber stations;a detector arranged to detect the second portion of each of the packets;a processor arranged to combine the detected second portions to form a second portion of at least one new packet; anda transmitter for transmitting the new packet to the base station, wherein:the second portion of each packet includes error-checking information, and said detector is arranged to check the error-checking information of packets received from the subscriber stations and discard any packets thereby found to have been incorrectly received; andthe processor is arranged to remove the error-checking information from the second portion of each received packet and link the remainder of each second portion to form the second portion of the new packet. 3. A relay station for use in a wireless communication method in a system in which subscriber stations are each operable for communication with a base station, the base station being capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conforming with a layered protocol of said system, the packets comprising a first portion for defining physical layer (PHY) parameters and a second portion for defining media access layer (MAC) parameters, and communications between the subscriber stations and the base station being performed wholly or partly through the relay station, the relay station comprising: a receiver for receiving a plurality of packets from the subscriber stations;a detector for detecting the second portion of each of the packets;a processor for combining the detected second portions to form a second portion of at least one new packet; anda transmitter for transmitting the new packet to the base station, wherein:the second portion of each packet includes error-checking information, and said detector is arranged to check the error-checking information of packets received from the subscriber stations and discard any packets thereby found to have been incorrectly received, andthe processor is arranged to remove the error-checking information from the second portion of each received packet and link the remainder of each second portion to form the second portion of the new packet. 4. A base station for use in a wireless communication method in a system in which subscriber stations are each operable for communication with the base station, the base station being capable of performing simultaneous communications with a plurality of the subscriber stations simultaneously by exchange of packets each conforming with a layered protocol of said system, the packets comprising a first portion for defining physical layer (PHY) parameters and a second portion for defining media access layer (MAC) parameters, and communications between the subscriber stations and the base station being performed wholly or partly through at least one relay station which receives a plurality of packets from the subscriber stations, detects the second portion of each of the packets, combines the detected second portions to form a second portion of at least one new packet, and transmits the new packet to the base station; wherein the base station comprises: a receiver for receiving the or each new packet sent from the relay station; anda decoder for decoding the second portion of the new packet, whereinthe second portion of each packet includes error-checking information, and said decoder includes means for checking the error-checking information of the or each new packet sent from the relay station, and discarding any packet found to have been incorrectly received. 5. The base station according to claim 4, wherein the second portion of every packet contains a connection ID identifying an active connection in the system, and the base station monitors connection IDs of its own active connections. 6. The base station according to claim 5, wherein said decoder checks the connection IDs of received packets and discards any packet having an unknown connection ID. 7. The base station according to claim 1, wherein the new packet sent from the relay station includes linked second portions of the packets received from the plurality of subscriber station, and the decoder is arranged to fragment said linked second portions.
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이 특허에 인용된 특허 (8)
Young Charles David, Dynamic distributed, multi-channel time division multiple access slot assignment method for a network of nodes.
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