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    • 7. 发明专利
    • METHOD AND DEVICE FOR CONTROLLING SIGNAL, POWER IN RADIO COMMUNICATION SYSTEM
    • JP2001103004A
    • 2001-04-13
    • JP2000270154
    • 2000-09-06
    • LUCENT TECHNOLOGIES INC
    • NANDA SANJIVREGE KIRAN MWEAVER CARL FRANCIS
    • H04B1/04H04B7/005H04B7/26
    • PROBLEM TO BE SOLVED: To provide a method and a device which control signal power in a radio communication system. SOLUTION: An Eb/N0 detector 330 measures the quality measured value (Eb/N0) of a signal received by a receiver 320 in the base station 210 of the radio communication system, a processor 350 calculates an effective signal quality measured value for a certain time length, a 1st comparator 360 compares a model target signal quality measured value with the effective signal quality measured value, and an aggregating device 370 increases a target quality measured value only by one step-up size, when the effective signal quality measured value is smaller than the model target quality measured value or reduces the target quality measured value only by one step-down size, when the effective quality measured value is larger than the model target quality measured value to adjust the target signal quality measured value, while corresponding to a fact that the effective signal quality measured value is different from the model target signal quality measured value. A 2nd comparator compares the target signal quality measured value with a received signal quality measured value and sends the adjustment request of the signal power from a mobile terminal to the mobile terminal.
    • 8. 发明专利
    • METHOD FOR EXECUTING SOFT HAND-OFF
    • JPH11136730A
    • 1999-05-21
    • JP24241098
    • 1998-08-28
    • LUCENT TECHNOLOGIES INC
    • KUMAR SARATHKUO WEN-YIREGE KIRAN M
    • H04W36/18H04Q7/22H04Q7/28H04Q7/36
    • PROBLEM TO BE SOLVED: To improve the successful rate of soft hand-off by transmitting a message on a second communication channel belonging to a candidate base station and hearing it by a mobile telephone set. SOLUTION: The base station of an active set uses a forward traffic channel and synchronously transmits the copy of an HD message. The candidate base station uses the paging channel of the candidate base station and transmits the HD message with the identification number of the mobile telephone set to the mobile telephone set. At the time of setting up the network connection of soft hand-off, the mobile telephone set moves from a position R to a position R2. At the position R2, the ratio of a signal to noise on the signal transmitted by the base station 26-4 of the active set drops and the ratio of the signal to noise on the signal transmitted by the base station 26-3 increases. At that time, probability that the HD message transmitted from the candidate base station 26-3 is more precisely received compared with the HD message transmitted from the base station 26-4 of the active set becomes higher.
    • 10. 发明专利
    • POWER CONTROL WITH EFFECTIVE EB/NO
    • CA2316722A1
    • 2001-03-07
    • CA2316722
    • 2000-08-25
    • LUCENT TECHNOLOGIES INC
    • WEAVER CARL FRANCISNANDA SANJIVREGE KIRAN M
    • H04B1/04H04B7/005H04B7/26H04Q7/36
    • A method and apparatus to quickly adjust a targeted E b/N0 (270, 470) in a wireless communication system by using an effective E b/N0 (310, 510) for each frame. The E b/N0 distribution of a frame produces a certain frame error rate. Effective E b/N 0 (310, 510) is the E b/N0 that would produce the same frame error rate in a model channel, such as an additive white Gaussian noise (AWGN) channel. The effective E b/N0 (310, 510) for eac h frame is obtained and compared to a model targeted E b/N0 (250, 480). The E b/N0 for all of the power control groups in one frame compose the vector E b/N0 (300, 500). The effective E b/N0 (310, 510) for the frame is obtained by mapping a vector E b/N0 (300, 500) into a scalar. The model targeted E b/N0 (280, 480) is the E b/N0 value that produces a desired frame error rate in the model channel. The targeted E b/N0 (270, 280) is increased by one up step si ze when the effective E b/N0 (310, 510) is smaller than the model targeted E b/N0 (280, 480) and i s decreased by one down step size when the effective E b/N0 (310, 510) is larger than the model targeted E b/N0 (280, 480). E b/N0 (290, 490) are measured for each power control group in a frame . The wireless communication system includes a transmitter (400) to transmit a signal, a receiver (320) to receive the signal, and an outer control loop (250, 450) to adjust the targeted E b/N0 (270, 470) based on a comparison of the effective E b/N0 (310, 510) of the signal to th e model targeted E b/N0 (280, 480). Preferably, the outer control loop (250, 450) is implemented in software, although it can be implemented in hardware. Obtaining an effective E b/N0 (310, 510) for each time period allows quicker adjustments of the targeted E b/N0 (270, 470). Th is permits the targeted E b/N0 (270, 470) to be closer to an E b/N0 that produces a desired frame error rate, especially if the mobile is moving. This allows the transmitted power to be closer to the power needed to produce the desired frame error rate, permitting an increase in th e capacity of the wireless communication system while still maintaining an acceptable number o f errors.