EP2139071B1

Adaptive array antenna transceiver apparatus

Abstract

This record has no abstract on file.

EP2139071B1, drawing sheet 1
Sheet 1 of 101

Term

Term ended

Expired 14 December 2020, 5.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

6 claims: 1 independent, 5 dependent

  1. 1
    An adaptive array antenna transceiver apparatus comprising N antenna elements (111), N is an integral number and shows three or more; N transmitters (121) and receivers (118); a common-use device (113) that connects said transmitters (121) and receivers (118) to each of the antenna elements (111); characterized in that it further comprises a radiation pattern control processor (125) that controls the radiation pattern of said array antenna by synthesizing the output of the plurality of receivers by weighting the amplitude and phase with respect to a signal input from each of the respective antenna elements (111) into said plurality of receivers, and at the same time, the reception frequency of said array antenna to be used in communication and the transmitting frequency are different, and :a local signal generator (126) that outputs a signal having a frequency that corresponds to the difference between the reception frequency f2 of said receivers and the transmitting frequency f1 of said transmitters ;N transmitters (121) for which the frequency of the transmitted signal is identical to the reception frequency of said array antenna;a first frequency converter (123) that converts the frequency of signals transmitted by each of said N transmitters to the transmitted frequency of said array antenna;N dividing devices (112) that extract a signal from the output of each of said N transmitters before conversion by said first frequency converter;N receivers (118) for which the frequency of the reception signal is identical to the reception frequency of said array antenna;a second frequency converter (116) that converts a signal having a frequency identical to the transmitted frequency of said array antenna to a frequency identical to the reception frequency of said array antenna;N first common-use devices (113) provided between the output of said first frequency converter, the input of the receiver, and each of said antenna elements;N second common-use devices (114) provided between the output of said dividing device, the input of said second frequency converter, and each of said antenna elements;at least one additional antenna (128) that can be connected to any one of said N transmitters or N receivers;a first switch (112) provided on each antenna element that connects either one of said antenna elements or the additional antenna to either one of said first common-use device or said second common-use device;a second switch (117) provided on each receiver and connected to the input of said receivers and selectively inputs into said receivers either one of the reception signals from said first common-use device or the reception signals output by said second frequency converter;a third switch (129) that connects said additional antenna to any one of the first switches;and a calibration control circuit (124) that controls the first switch, second switch, and third switch, and at the same time, finds the calibration value of the amplitude and phase between branches of the array antenna based on the amplitude and phase values obtained from each of said receivers.
  2. 2
    An adaptive array antenna transceiver apparatus according to Claim 1, wherein the calibration control circuit (124):controls the first switch, second switch, and third switch, and selects from among said N transmitters the first transmitter or the second transmitter respectively included in branches of two antenna elements that have equal distances from said additional antenna, and at the same time, selects from among said N receivers one calibration receiver included in a branch differing from that of said first transmitter and second transmitter, connects the third switch to one calibration receiver included in a branch differing from that of said first transmitter and second transmitter;transmits the signal that is the signal output by said first transmitter and frequency converted by said first frequency converter from the antenna element of the branch included in the first transmitter;inputs the output that is the signal from said first transmitter received by said, additional antenna and frequency converted by said second frequency, converter into the said calibration receiver, and detects a first measured value obtained at said calibration receiver;transmits the signal that is the signal output from the second transmitter and frequency converted by said first frequency converter from the antenna element included in the second transmitter;inputs the output that is the signal from said second transmitter and received by said additional antenna and frequency converted by said second frequency converter into said calibration receiver and detects the second measured value obtained at said calibration receiver;calculates the ratio of said second measured value and said first measured value to serve as the first calibration valve;finds the first calibration value for the respective plurality of branches based on the first measured value and the second measured value measured by respectively switching in sequence the selection of the first transmitter an the second transmitter;and calibrates the first calibration value of the relevant branch using the first calibration value obtained at the other branches for branches other than the reference branch assigned in advance, and calculates the first calibration value as a relative value with respect to the reference branch.
  3. 3
    An adaptive array antenna transceiver apparatus according to Claim 1, wherein the calibration control circuit (124);controls said first switch, second switch, and third switch, and selects from among said N transmitters the first transmitter or the second transmitter respectively included in branches of two antenna elements that have equal distances from said additional antenna, and at the same time, selects from among N transmitters one calibration transmitter included in a branch different from that of said first receiver and second receiver;transmits the signal output by said calibration transmitter from said additional antenna via said dividing device, the second common-use device, the first switch, and the third switch;inputs the signal from said calibration transmitter received by the antenna element of the branches included in said first receiver into said first receiver and detects the first measured value obtained at said first receiver;inputs the signal from said calibration transmitter received by the antenna element of the branch included in said second receiver into said second receiver and detects a second measured value obtained at said second receiver;calculates the ratio of said second measurement value and first measurement value as a first calibration value;finds the first calibration values of the respective plurality of branches based on the first measured value and the second measured value respectively measured by switching in sequence the selection of said first receiver and second receiver;and calibrates the fist calibration value of the relevant branch using the first calibration value obtained at the other branches, and calculates the first calibration value as a relative value with respect to the reference branch.
  4. 4
    An adaptive array antenna transceiver apparatus according to Claim 1, wherein said N antenna elements (111) are disposed at an equal distance on one straight line, and at the same time, said additional antenna (128) is disposed at a position at the middle of two antenna elements.
  5. 5
    An adaptive array antenna transceiver apparatus according to Claim 1, wherein N antenna elements (111) are disposed at equal distances on a circle, and at the same time, said additional antenna (128) at the center position of said circle.
  6. 6
    An adaptive array antenna transceiver apparatus according to Claim 1, wherein:a combiner that combines the received signal from said first common-use device and the received signal output by said second frequency converter, and outputs this signal to said receiver is provided instead of said second switch;a calibration/reception signal separation circuit separates/outputs the reception signal from said first common-use device and the received signal output by said second frequency converter is further provided;and wherein said calibration control circuit (124) controls the connection state of said first switch, inputs the received signal output by said second frequency converter separated by said calibration/reception signal separating circuit, and finds the calibration value of each of the branches of said array antenna.