Amplify-and-Forward Relaying in Communication Systems
First Claim
1. A method in a node for a cellular communication system of relaying respective first wireless signals from a plurality of mobile stations to a base station and a second wireless signal from the base station to the plurality of mobile stations, comprising:
- receiving the first and second wireless signals through at least two antennas in the node during a first time slot of two successive time slots, wherein each of the first wireless signals includes a respective symbol and the second wireless signals includes a plurality of symbols;
generating respective estimates of the symbols in the first and second wireless signals received during the first time slot, wherein generating includes canceling interference between symbols based on respective first estimates of a channel characteristic of respective first communication channels between the mobile stations and the node and on a second estimate of a channel characteristic of a second communication channel between the base station and the node;
generating a first relay signal based on the estimates of the symbols of the first wireless signals and a second relay signal based on the estimates of the plurality of symbols of the second wireless signal, wherein generating includes;
precoding the estimates of the symbols in the first and second wireless signals received during the first time slot, wherein precoding includes amplifying estimates by a gain factor, and canceling interference between the symbols;
providing the gain factor to the plurality of mobile stations; and
providing the first estimates of the channel characteristic to the base station.
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Abstract
Improved amplify-and-forward relaying in a communication network is described, including an example network of multiple single-antenna mobile stations, a multi-antenna relay station, and a multi-antenna base station. Bi-directional communication with improved transmission efficiency is enabled by suitable transmit/receive processing at the relay station without drawbacks of current relaying techniques. Linear transmit and receive processing matrices are disclosed, and it is shown that the numbers of antennas at the relay station and the base station can be substantially the same without reducing network capacity, closely matching the performance for low and high signal to noise ratios of current techniques that require the relay station to have twice as many antennas as the base station.
34 Citations
26 Claims
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1. A method in a node for a cellular communication system of relaying respective first wireless signals from a plurality of mobile stations to a base station and a second wireless signal from the base station to the plurality of mobile stations, comprising:
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receiving the first and second wireless signals through at least two antennas in the node during a first time slot of two successive time slots, wherein each of the first wireless signals includes a respective symbol and the second wireless signals includes a plurality of symbols; generating respective estimates of the symbols in the first and second wireless signals received during the first time slot, wherein generating includes canceling interference between symbols based on respective first estimates of a channel characteristic of respective first communication channels between the mobile stations and the node and on a second estimate of a channel characteristic of a second communication channel between the base station and the node; generating a first relay signal based on the estimates of the symbols of the first wireless signals and a second relay signal based on the estimates of the plurality of symbols of the second wireless signal, wherein generating includes; precoding the estimates of the symbols in the first and second wireless signals received during the first time slot, wherein precoding includes amplifying estimates by a gain factor, and canceling interference between the symbols; providing the gain factor to the plurality of mobile stations; and providing the first estimates of the channel characteristic to the base station. - View Dependent Claims (2, 3, 4, 5, 6)
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7. An apparatus for a relay station for a wireless communication network, for relaying first wireless signals from mobile stations to a base station and a second wireless signal from the base station to the mobile stations, comprising:
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a receiver configured for receiving the first and second wireless signals through at least two antennas during a first time slot of two successive time slots, wherein each of the first wireless signals includes a respective symbol and the second wireless signals includes a plurality of symbols; a programmable control circuit configured for generating respective estimates of the symbols in the first and second wireless signals received during the first time slot by at least canceling interference between symbols based on respective first estimates of a channel characteristic of respective first communication channels between the mobile stations and the relay station and on a second estimate of a channel characteristic of a second communication channel between the base station and the relay station; wherein the programmable control circuit is further configured for generating a first relay signal based on the estimates of the symbols of the first wireless signals and a second relay signal based on the estimates of the plurality of symbols of the second wireless signal by precoding the estimates of the symbols in the first and second wireless signals received during the first time slot, the precoding including amplifying estimates by a gain factor and canceling interference between the symbols; and a transmitter configured for providing the gain factor to the plurality of mobile stations and the first estimates of the channel characteristic to the base station. - View Dependent Claims (8, 9, 10, 11, 12)
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13. An apparatus for a mobile station for a wireless communication network, wherein a first wireless signal from the mobile station is relayed by a relay station to a base station and a second wireless signal from the base station is relayed by the relay station to the mobile station, comprising:
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an antenna for transmitting the first wireless signal during a first time slot of two successive time slots and for receiving the second wireless signal during a second time slot of the two successive time slots, wherein the first wireless signal includes an amplified symbol and the second wireless signal includes a plurality of symbols; a receiver configured for extracting information from a received second wireless signal; an electronic control circuit configured for determining, based on information extracted by the receiver, a gain factor of the relay station;
for extracting a symbol intended for the mobile station from the second wireless signal;
for generating a channel estimate of a communication channel between the mobile station and the relay station;
for canceling self-interference from the symbol intended for the mobile station based on the gain factor and the channel estimate; and
for generating the amplified symbol for the first wireless signal in a first time slot; anda transmitter configured for generating the first wireless signal including the amplified symbol. - View Dependent Claims (14, 15, 16)
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17. A method in a mobile station for a wireless communication network, wherein a first wireless signal from the mobile station is relayed by a relay station to a base station and a second wireless signal from the base station is relayed by the relay station to the mobile station, the method comprising:
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transmitting the first wireless signal during a first time slot of two successive time slots and receiving the second wireless signal during a second time slot of the two successive time slots, wherein the first wireless signal includes an amplified symbol and the second wireless signal includes a plurality of symbols; extracting information from a received second wireless signal; determining, based on information extracted, a gain factor of the relay station; extracting a symbol intended for the mobile station from the second wireless signal; generating a channel estimate of a communication channel between the mobile station and the relay station; canceling self-interference from the symbol based on the gain factor and the channel estimate; and generating the amplified symbol for the first wireless signal in a first time slot. - View Dependent Claims (18, 19, 20)
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21. An apparatus for a base station for a wireless communication network, wherein a first wireless signal from the base station is relayed by a relay station to a plurality of mobile stations and a plurality of wireless signals from the plurality of mobile stations is relayed by the relay station in a second wireless signal to the base station, comprising:
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at least two antennas configured for transmitting the first wireless signal during a first time slot of two successive time slots and receiving the second wireless signal during a second time slot of the two successive time slots, wherein the first wireless signal includes a plurality of symbols, each intended for a respective mobile station; a receiver configured for extracting information from a received second wireless signal; an electronic control circuit configured for determining, based on information extracted by the receiver, respective channel estimates for communication channels between the relay station and the plurality of mobile stations;
for generating respective precoded symbols for the plurality of mobile stations for the first wireless signal in the first time slot; and
for canceling interference and self-interference between symbols in the received second wireless signal based on the respective channel estimates; anda transmitter configured for generating the first wireless signal including the precoded symbols. - View Dependent Claims (22, 23)
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24. A method in a base station for a wireless communication network, wherein a first wireless signal from the base station is relayed by a relay station to a plurality of mobile stations and a plurality of wireless signals from the plurality of mobile stations is relayed by the relay station as a second wireless signal to the base station, comprising:
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transmitting the first wireless signal during a first time slot of two successive time slots and receiving the second wireless signal during a second time slot of the two successive time slots, wherein the first wireless signal includes a plurality of symbols, each intended for a respective mobile station; extracting information from a received second wireless signal; determining, based on information extracted by the receiver, respective channel estimates for communication channels between the relay station and the plurality of mobile stations; generating respective precoded symbols for the plurality of mobile stations for the first wireless signal in the first time slot; canceling interference and self-interference between symbols in the received second wireless signal based on the respective channel estimates; and generating the first wireless signal including the precoded symbols. - View Dependent Claims (25, 26)
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Specification