Method and device for fixed in time adaptive antenna combining weights
First Claim
1. A method of operating a communication system comprising:
- providing at least one Doppler channel estimate for at least one transmitter and a spatial covariance matrix of a corrupting environment;
computing a Null Doppler spatial covariance matrix, as a function of the Doppler channel estimates;
computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix; and
computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the at least one Doppler channel for the at least one transmitter.
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Accused Products
Abstract
A receiving device and method for operating a communication system are provided. The receiving device receives at least one Doppler channel estimate for at least one transmitter and a spatial covariance matrix of a corrupting environment. The Doppler channel estimates are used to create a Null Doppler spatial covariance matrix. A total Doppler spatial covariance matrix is created as a sum of the spatial covariance matrix of the corrupting environment, plus the Doppler spatial covariance matrix. A combining weight for at least one transmitter and at least one Doppler channel is created from the total Doppler spatial covariance and the at least one Doppler channel for the at least one transmitter.
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Citations
18 Claims
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1. A method of operating a communication system comprising:
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providing at least one Doppler channel estimate for at least one transmitter and a spatial covariance matrix of a corrupting environment;
computing a Null Doppler spatial covariance matrix, as a function of the Doppler channel estimates;
computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix; and
computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the at least one Doppler channel for the at least one transmitter. - View Dependent Claims (2, 3, 4)
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5. A method of operating a communication system including at least one receiver comprising:
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providing the Doppler channel estimates for at least one transmitter;
determining a Doppler channel matrix for the at least one transmitter G(k), using the Doppler channel estimates; and
computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the Doppler channel matrix for all desired transmitters. - View Dependent Claims (6, 7)
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8. A method of operating a communication system including at least one receiver comprising:
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providing at least one Doppler channel estimate for at least one transmitter, and a spatial covariance matrix of a computing environment;
providing a frequency correlation function;
computing a Doppler spatial covariance matrix as a function of the Doppler channel estimate and the frequency correlation function;
computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix;
computing a Doppler steering vector for the at least one transmitter and at least one Doppler channel as a function of the Doppler channel estimates and the frequency correlation function; and
computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the Doppler steering vector for the at least one transmitter and at least one Doppler channel. - View Dependent Claims (9, 10, 11, 12)
wherein the frequency correlation function, α
b(v) is
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10. The method of claim 8 wherein a total Doppler spatial covariance matrix for at least one receiver is computed according to RT(k)=R(k)+Rc(k) wherein Rc(k) is the spatial correlation matrix of the corrupting environment.
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11. The method of claim 8 wherein a Doppler steering vector for at lest one transmitter and at least one Doppler channel is computed according to
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( k ) = ∑ b = 1 B ∑ w = - V V H u , w ( k ) α b ( w - v ) .
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12. The method of claim 8 wherein a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel is computed according to wu,v(k)=(RT(k))−
- 1pu,v(k).
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13. A receiver for a wireless communication system comprising:
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means for providing at least one Doppler channel estimate for at least one transmitter and a spatial covariance matrix of a corrupting environment;
means for computing a Null Doppler spatial covariance matrix, as a function of the Doppler channel estimates;
means for computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix; and
means for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the at least one Doppler channel for the at least one transmitter.
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14. A receiver for a wireless communication system comprising:
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means for providing the Doppler channel estimates for at least one transmitter;
means for determining a Doppler channel matrix for the at least one transmitter G(k), using the Doppler channel estimates; and
means for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the Doppler channel matrix for all desired transmitters.
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15. A receiver for a wireless communication system comprising:
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means for providing at least one Doppler channel estimate for at least one transmitter, and a spatial covariance matrix of a computing environment;
means for providing a frequency correlation function;
means for computing a Doppler spatial covariance matrix as a function of the Doppler channel estimate and the frequency correlation function;
means for computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix;
means for computing a Doppler steering vector for the at least one transmitter and at least one Doppler channel as a function of the Doppler channel estimates and the frequency correlation function; and
means for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the Doppler steering vector for the at least one transmitter and at least one Doppler channel.
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16. A computer readable medium storing a computer program comprising:
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computer readable program code for providing at least one Doppler channel estimate for at least one transmitter and a spatial covariance matrix of a corrupting environment;
computer readable program code for computing a Null Doppler spatial covariance matrix, as a function of the Doppler channel estimates;
computer readable program code for computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the computing environment plus the Doppler spatial covariance matrix; and
computer readable program code for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the at least one Doppler channel for the at least one transmitter.
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17. A computer readable medium storing a computer program comprising:
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computer readable program code for providing the Doppler channel estimates for at least one transmitter;
computer readable program code for determining a Doppler channel matrix for the at least one transmitter G(k), using the Doppler channel estimates; and
computer readable program code for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the Doppler channel matrix for all desired transmitters.
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18. A computer readable medium storing a computer program comprising:
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computer readable program code for providing at least one Doppler channel estimate for at least one transmitter, and a spatial covariance matrix of a computing environment;
computer readable program code for providing a frequency correlation function;
computer readable program code for computing a Doppler spatial covariance matrix as a function of the Doppler channel estimate and the frequency correlation function;
computer readable program code for computing a total Doppler spatial covariance matrix as a sum of the spatial covariance matrix of the corrupting environment plus the Doppler spatial covariance matrix;
computer readable program code for computing a Doppler steering vector for the at least one transmitter and at least one Doppler channel as a function of the Doppler channel estimates and the frequency correlation function; and
computer readable program code for computing a combining weight at subcarrier k for at least one transmitter and at least one Doppler channel as a function of the total Doppler spatial covariance and the Doppler steering vector for the at least one transmitter and at least one Doppler channel.
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Specification