Claims
- 1. A method for calibrating a smart antenna array comprising N receiving and transmitting links, each link comprising an antenna unit and a radio frequency transceiver connected via a feeder cable, the method comprising:
providing a calibration link comprising a coupling structure, a feeder cable and a pilot transceiver, wherein the coupling structure is coupled with N antenna units of the smart antenna array and the pilot transceiver is connected to a baseband processor of a base station by a digital bus; calibrating the coupling structure before the smart antenna array is put into operation recording its receiving transmission coefficient and its transmitting transmission coefficient, respectively; selecting at least one link of the smart antenna array as a reference link and measuring the receiving transmission coefficient and the transmitting transmission coefficient thereof; calibrating receiving by the links of the smart antenna array by equalizing the amplitude of the receiving transmission coefficient of the other of the receiving links of the smart antenna array with the receiving transmission coefficient of the reference link, and obtaining the phase difference Φ between each link and the reference link, for use when the smart antenna is put into operation; and calibrating transmitting by the links of the smart antenna array by equalizing the amplitude of the transmitting transmission coefficient of the other of the transmitting links of the smart antenna links with the transmitting transmission coefficient of the reference link, and obtaining the phase difference ψ between each link and the reference link for use when the smart antenna is put into operation.
- 2. The method for calibrating a smart antenna array according to claim 1, wherein said coupling structure is calibrated using a vector network analyzer.
- 3. The method for calibrating a smart antenna array according to claim 2, wherein calibrating the coupling structure with a vector network analyzer comprises:
setting a pilot antenna in spatial coupling mode; connecting said vector network analyzer to said pilot antenna and to an antenna unit of a link to be calibrated; connecting an antenna unit of at least another link to a matched load; measuring and recording the receiving and transmitting transmission coefficient of the link to be calibrated under each necessary working carrier frequency; and repeating each of these steps until the receiving and transmitting transmission coefficients of N links have been measured and recorded.
- 4. The method for calibrating a smart antenna array according to claim 3, wherein said pilot antenna is located in a working main lobe of a radiation directivity diagram of N antenna units of the smart antenna array and the vector network analyzer is connected to said pilot antenna via an antenna terminal comprising a feeder line terminal of a pilot signal.
- 5. The method for calibrating a smart antenna array according to claim 3, wherein the antenna units comprising the smart antenna array are omni-directional antenna and the pilot antenna is located at any position of a near field region of each antenna unit.
- 6. The method for calibrating a smart antenna array according to claim 1, wherein the step of calibrating receiving by the links of the smart antenna array further comprises:
transmitting a defined voltage level signal at a set working carrier frequency by an analog transmitter located in the pilot transceiver; setting N receiving links located in a base station to be calibrated in a receiving state; detecting the output of each receiving link using a baseband processor in the base station and calculating the ratio of the transmission coefficient of each link to the transmission coefficient of the reference link during receiving, according to the output of each receiving link; controlling the output of each receiving link by controlling a variable gain amplifier located in an analog receiver in each link, so that the amplitude ratio of the transmission coefficient of each link to the transmission coefficient of the reference link during receiving equals 1; and recording and storing the phase difference Φ between each receiving link and the reference link in the baseband processor.
- 7. The method for calibrating a smart antenna array according to claim 1, wherein the step of calibrating transmitting by the links of the smart antenna array further comprises:
setting one link in a transmitting state at the same time all other transmitting links are in a closing state; receiving signals coming from each transmitting link at a set working carrier frequency by an analog receiver located in the pilot transceiver, respectively; processing the signals by the baseband processor of the base station and calculating the ratio of the transmission coefficient of each link to the transmission coefficient of the reference link during transmission; controlling the output of each transmitting link by controlling a variable gain amplifier located in an analog transmitter in each link, so that the amplitude ratio of the transmission coefficient of each link to the transmission coefficient of the reference link equals 1, during transmitting; and recording and storing the phase difference ψ between each transmitting link and the reference link in the baseband processor.
- 8. The method for calibrating a smart antenna array according to claim 2, wherein calibrating the coupling structure with a vector network analyzer comprises:
providing a passive network coupling structure consisting of N couplers and a 1:N passive distributor/combiner connected with N couplers, wherein the N couplers are connected with an antenna terminal of the N antenna units of the smart antenna array, respectively, and the output of the passive distributor/combiner is a feeder line terminal of a pilot signal; connecting the vector network analyzer to the feeder line terminal of the pilot signal and a terminal of the antenna unit of the link to be calibrated; connecting an antenna unit of at least one other link with a matched load; measuring and recording the receiving transmission coefficient and transmitting transmission coefficient of the link to be calibrated under each necessary working carrier frequency; and repeating the steps above until all receiving transmission coefficients and transmitting transmission coefficients of the N links have been measured and recorded.
- 9. A device for calibrating a smart antenna array, wherein the device comprises a calibrated coupling structure, a feeder cable and a pilot transceiver, wherein the coupling structure is coupled with N antenna units of the smart antenna array, the feeder cable is connected to the coupling structure and the pilot transceiver, and the pilot transceiver is connected to a baseband processor in a base station by a digital bus.
- 10. The device for calibrating a smart antenna array according to claim 9, wherein said coupling structure is a pilot antenna with a spatial coupling mode; the pilot antenna is in the working main lobe of a radiation directivity diagram of the N antenna units of the smart antenna array; and the pilot antenna comprises an antenna terminal comprising a feeder line terminal of a pilot signal.
- 11. The device for calibrating a smart antenna array according to claim 10, wherein the N antenna units of the smart antenna array are omni-directional antenna, and the pilot antenna is located at any position of a near field region of each antenna unit.
- 12. The device for calibrating a smart antenna array according to claim 9, wherein said coupling structure is a passive network comprising N couplers, corresponding with the N antenna units of said smart antenna array and a 1:N passive distributor/combiner connected to the N couplers, wherein each of the N couplers is connected to an antenna terminal of the antenna unit, respectively, and the output of the passive distributor/combiner is a feeder line terminal of a pilot signal.
- 13. The device for calibrating a smart antenna array according to claim 9, wherein said pilot transceiver has the same structure as the radio frequency transceiver of the base station, and includes a duplexer, an analog receiver connected to the duplexer, an analog transmitter connected to the duplexer, an analog-to-digital converter connected to the analog receiver and a digital-to-analog converter connected to the analog transmitter; wherein the duplexer includes a radio frequency interface connected with a feeder cable of the coupling structure, and the analog-to-digital converter and digital-to-analog converter are connected to the digital bus.
- 14. The device for calibrating a smart antenna array according to claim 13, wherein said analog receiver comprises a variable gain amplifier, controlled by software, which is set for controlling gain; and wherein said analog transmitter comprises a variable gain amplifier, controlled by software, which is set for controlling gain.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation application of PCT/CN00/00178, filed Jun. 26, 2000, which is incorporated herein by reference in its entirety.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/CN00/00178 |
Jun 2000 |
US |
Child |
10073566 |
Feb 2002 |
US |