Method and apparatus for detecting a three-state signal in a base station in a wireless communications system
First Claim
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1. A method of determining a transmitted symbol from among a plurality of possible transmitted symbols, the method comprising:
- receiving a signal representing one of the possible transmitted symbols;
successively eliminating as the determined transmitted symbol at least one of the plurality of possible transmitted symbols by sequentially applying to the received signal a plurality of decision rules that maximize network throughput by minimizing a sum of weighted costs of making a decision based on a magnitude of the received signal, the cost of making a decision being associated with the effect on overall throughput performance due to choosing a particular symbol as the most likely transmitted symbol when the same or a different symbol was actually transmitted, wherein in the sum, each cost is weighted by an a priori probability that a particular symbol was actually sent multiplied by an a posteriori conditional probability of a decision made on the received signal based on its received magnitude.
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Abstract
A decision as to whether a mobile terminal has transmitted an ACK, a NACK or a NULL from a received signal at a base station is made by successively eliminating one of the three possible transmitted symbols by sequentially applying decision rules that maximize network throughput by minimizing the sum of the weighted costs of making a decision based on the magnitude of the received signal.
27 Citations
8 Claims
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1. A method of determining a transmitted symbol from among a plurality of possible transmitted symbols, the method comprising:
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receiving a signal representing one of the possible transmitted symbols; successively eliminating as the determined transmitted symbol at least one of the plurality of possible transmitted symbols by sequentially applying to the received signal a plurality of decision rules that maximize network throughput by minimizing a sum of weighted costs of making a decision based on a magnitude of the received signal, the cost of making a decision being associated with the effect on overall throughput performance due to choosing a particular symbol as the most likely transmitted symbol when the same or a different symbol was actually transmitted, wherein in the sum, each cost is weighted by an a priori probability that a particular symbol was actually sent multiplied by an a posteriori conditional probability of a decision made on the received signal based on its received magnitude. - View Dependent Claims (2, 3, 4)
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5. A multi-state detector for determining a most likely transmitted symbol from among a plurality of possible transmitted symbols comprising:
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means for receiving a signal representing one of the possible transmitted symbols; and means for successively eliminating as the determined transmitted symbol at least one of the plurality of possible transmitted symbols by sequentially applying to the received signal a plurality of decision rules that maximize network throughput by minimizing a sum of weighted costs of making a decision based on a magnitude of the received signal, the cost of making a decision being associated with the effect on overall throughput performance due to choosing a particular symbol as the most likely transmitted symbol when the same or a different symbol was actually transmitted, wherein in the sum each such cost is weighted by an a priori probability that a particular symbol was actually sent multiplied by an a posteriori conditional probability of a decision made on the received signal based on its received magnitude. - View Dependent Claims (6, 7, 8)
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Specification