Claims
- 1. A receiving apparatus for a smart antenna system for transmission/reception of frequency division multiplexed transmission and reception signals in a mobile communication base station, said apparatus comprising:a plurality of array antennas for receiving said reception signals; a plurality of means for down-converting each signal received from said array antennas into a different frequency, respectively; means for combining said converted signals into one signal; means for down-converting said combined one signal into a base frequency band; means for converting said down-converted base frequency band signal into a digital signal; a plurality of digital dividing means for dividing said digital signal into different digital signals; and a plurality of beam forming modules for receiving, one by one, said digital signals divided by each of said digital dividing means for forming an adaptive beam (400), wherein said down-converting means for down-converting each of the signals which are received from said array antennas into different frequencies respectively is an antenna front-end units (AFEUs), each of which is connected respectively to one of said respective antennas.
- 2. The receiving apparatus as set forth in claim 1, wherein each of said AFEUs comprising:a receiver band-pass filter for receiving said reception signal from said antenna; a low noise amplifier for amplifying said reception signal passing through said receiver band-pass filter; a frequency generator for generating a different frequency to identify each said AFEU; a frequency mixer for mixing said reception signal amplified by said low noise amplifier and the output signal generated by said frequency generator in order to down-convert said mixed signals into an intermediate band frequency by a difference between the frequency of the signal amplified by said low noise amplifier and the frequency of the signal generated by said frequency generator; and a receiver band-pass filter for filtering said intermediate band frequency signal passing through said frequency mixer into a particular passband frequency and providing said filtered passband frequency signal to said combining means.
- 3. The receiving apparatus as set forth in claim 2, wherein said down-converted signal by said frequency mixer is characterized by a center of frequency corresponding to the difference between the frequency of the signal amplified by said low noise amplifier and the frequency of the signal generated by said frequency generator.
- 4. The receiving apparatus as set forth in claims 1 or 2, wherein said combining means for combining said signals converted by said down-converting means into one signal is a power combiner.
- 5. The receiving apparatus as set forth in claim 3, wherein said means for down-converting said combined signal into a base frequency band is a wide-band transceiver.
- 6. The receiving apparatus as set forth in claim 5, wherein the frequency band width of the combined signal down-converted by the wide-band transceiver does not overlap the frequency band widths of the signals from each of said AFEUs.
- 7. The receiving apparatus as set forth in claim 5, wherein said means for converting said down-converted signal into a digital signal is a wide band analog-to-digital converter.
- 8. The receiving apparatus as set forth in claim 6, wherein said digital dividing means for dividing said converted digital signal into different digital signals is a plurality of digital filters.
- 9. A transmitting apparatus for a smart antenna system for transmission/reception of frequency division multiplexed transmission and reception signals in a mobile communication base station, said apparatus comprising:a plurality of beam forming modules having a respective weight for providing different signals by multiplying each said transmission signal by said weight; a plurality of signal adders for adding said different signals provided by each of said beam forming modules; a plurality of digital modulators for up-converting said output signals added by each of said signal adders into varying frequencies, respectively; a digital signal combiner for combining said modulated frequency by said digital modulators into a digital signal; a wide band digital-to-analog converter for converting said digital signal combined by said digital signal combiner into an analog signal; a wide-band transceiver for up-converting said analog signal from said wide band digital-to-analog converter; a power divider for dividing the output signal of said wide-band transceiver into one of different intermediate band frequency transmission signal; a plurality of antenna front-end units (AFEUs), each serving to convert one of said different transmission signals from said power divider into a transmission frequency; and a plurality of array antennas for transmitting said transmission frequency signal from each of said antenna front-end units (AFEUs).
- 10. The transmitting apparatus as set forth in claim 9, wherein each said AFEU comprising:a power divider band-pass filter for filtering one of said signals divided by said power divider into a particular frequency band; a frequency generator for generating a different frequency which is different from those of other frequency generators to identify each said AFEU; a frequency mixer for mixing the signal generated by said frequency generator and the signal filtered by said power divider band-pass filter; a high power amplifier for amplifying an output signal of said frequency mixer; and a transmit band-pass filter for receiving an output signal of said high power amplifier and providing the filtered signal to said array antennas.
- 11. The transmitting apparatus as set forth in claim 10, wherein said up-converted signal from said frequency mixer is characterized by a center frequency corresponding to the mixture of the signal filtered by said power divider band-pass filter by the signal generated by said frequency generator.
- 12. A transceiver arrangement for a smart antenna system for transmission/reception of frequency division multiplexed transmission and reception signals in a mobile communication base station, said transceiver arrangement comprising:a plurality of array antennas for transmission and reception of said transmission signal and said reception signals; a plurality of antenna front-end units capable of down-converting the signals received from said array antennas to a different intermediate band frequency and for up-converting different intermediate band frequency signals into a radio transmission frequency for transmitting via said antennas; a power combiner for combining said down-converted intermediate band frequency signals from said antenna front-end units into one signal; a power divider for providing one of different intermediate band frequency transmission signals to said antenna front-end units, respectively; a wide-band transceiver coupled to said power combiner and said power divider for down-converting a receiving signal combined by said power combiner into a base frequency band and for up-converting a receiving analog signal which is then supplied to said power divider; a wide band analog-to-digital converter coupled to said wide-band transceiver for converting the receiving signal down-converted by said wide-band transceiver into a digital signal; a plurality of digital filters for dividing said converted digital signal from said wide band analog-to-digital converter into different digital signals; a wide band digital-to-analog converter coupled to said wide-band transceiver for converting a digital transmission signal into an analog signal and for providing said analog signal to said wide-band transceiver; and a plurality of beam forming modules having a respective weight for forming an adaptive beam in receiving one of the digital receiving signals divided by said digital filters and for providing different signals by multiplying each transmission signal by said weight.
- 13. The transceiver arrangement as set forth in claim 12, further comprising:a plurality of signal adders for adding said transmission signals each of which is provided by each said beam forming module; a plurality of digital modulators for up-converting said transmission signal added by each of said signal adders into varying frequencies, respectively; and a digital signal combiner for combining said different signals modulated frequency by said digital modulators into a digital signal and for transmitting the combined signal to said wide band digital-to-analog converter.
- 14. The transceiver arrangement as set forth in claim 13, wherein said antenna front-end unit comprising:a receiver band-pass filter for receiving a signal from said antenna; a low noise amplifier for amplifying the signal passing through said receiver band-pass filter; a frequency generator for generating a different frequency to identify each AFEU; a first frequency mixer for mixing said signal amplified by said low noise amplifier and the signal generated by said frequency generator to down-convert said mixed signal into an intermediate band frequency by a difference between the frequency of said amplified signal and the frequency of said signal generated by said frequency generator; a first band-pass filter for filtering said signal passing through said first frequency mixer into a particular passband frequency and providing said filtered signal to said power combiner; a second band-pass filter for filtering one of said signals divided by said power divider into a particular frequency band; a second frequency mixer for mixing the output signal generated by said second frequency generator and the output signal filtered by said second band-pass filter; a high power amplifier for amplifying the output signal of said frequency mixer; and a transmit band-pass filter for receiving the output signal of said high power amplifier and providing the filtered signal to said array antenna.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98-23623 |
Jun 1998 |
KR |
|
CLAIM OF PRIORITY
This application makes reference to, incorporates the same herein, and claims all benefits accruing under 35 U.S.C. §119 arising from an application entitled, A TRANSCEIVER FOR SMART ANTENNA SYSTEM OF MOBILE TELECOMMUNICATION BASE STATIONS, earlier filed in the Korean Industrial Property Office on Jun. 23, 1998, and there duly assigned Serial No. 1998-23623.
US Referenced Citations (7)