Radio base station and reception method at radio base station
11804881 ยท 2023-10-31
Assignee
Inventors
- Tomoki Murakami (Musashino, JP)
- Toshiro Nakahira (Musashino, JP)
- Riku Omiya (Musashino, JP)
- Koichi Ishihara (Musashino, JP)
- Takafumi Hayashi (Musashino, JP)
Cpc classification
H01Q3/24
ELECTRICITY
H04B7/043
ELECTRICITY
International classification
H01Q3/24
ELECTRICITY
Abstract
A characteristic variable antenna configured to be able to select or switch antenna characteristics in accordance with a predetermined periodic variable timing, an RF unit configured to perform a reception process on a signal received by the characteristic variable antenna, an ADC unit configured to sample the analog signal input from the RF unit at a sampling period corresponding to the variable timing of the antenna characteristics of the characteristic variable antenna, a signal dividing unit configured to divide the digital signal input from the ADC unit into different digital signals in accordance with the antenna characteristics and output the divided different digital signals, a MIMO-OFDM demodulation unit configured to receive inputs of the different digital signals divided by the signal dividing unit and perform a demodulation process of predetermined MIMO-OFDM, and a control unit configured to periodically select or switch the antenna characteristics of the characteristic variable antenna in accordance with the sampling period of the ADC unit are included.
Claims
1. A radio base station that receives an uplink multi-user MIMO signal according to OFDM modulation, the radio base station comprising: a characteristic variable antenna configured to periodically switch antenna characteristics, wherein the timing at which the antenna characteristics switch is triggered by a timing signal and the characteristic variable antenna includes only one antenna element; an RF unit configured to perform a reception process on a signal received by the characteristic variable antenna and output an analog signal on which the reception process has been performed; an ADC unit configured to convert the analog signal input from the RF unit into a digital signal by sampling the analog signal at a sampling period and output the digital signal; a signal dividing circuit configured to divide the digital signal input from the ADC unit into different digital signals in accordance with the antenna characteristics and output the divided different digital signals; a MIMO-OFDM demodulation unit configured to receive inputs of the different digital signals divided by the signal dividing circuit and perform a demodulation process of predetermined MIMO-OFDM; and a control circuit interfaces with the ADC unit and is configured to generate the timing signal based on the sampling period from the ADC unit.
2. The radio base station according to claim 1, further includes a movable unit configured to switch the antenna characteristics by moving, vibrating, or rotating the antenna element at a speed according to the timing signal.
3. A reception method at radio base station for receiving an uplink multi-user MIMO signal according to OFDM modulation, the reception method at radio base station comprising: receiving the uplink multi-user MIMO signal by a characteristic variable antenna capable of switching antenna characteristics; performing a reception process, by an RF unit, on a signal received by the characteristic variable antenna and outputting, by the RF unit, an analog signal on which the reception process has been performed; converting, by an ADC unit, the analog signal input from the RF unit into a digital signal by sampling the analog signal at a sampling period; dividing, by a signal dividing circuit, the digital signal input from the ADC unit into different digital signals in accordance with the antenna characteristics and outputting divided different digital signals by the signal dividing unit; receiving, by a MIMO-OFDM demodulation unit, inputs of the divided different digital signals from the signal dividing circuit and performing a demodulation process of predetermined MIMO-OFDM by the MIMO-OFDM demodulation unit; generating, by a control circuit, a timing signal based on the sampling period of the ADC unit; and periodically switching antenna characteristics of the characteristic variable antenna, wherein the timing at which the antenna characteristics switch is triggered by the timing signal and the characteristic variable antenna includes only one antenna element.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
DESCRIPTION OF EMBODIMENTS
(6)
(7) The wireless base station 10 includes a characteristic variable antenna 11, an RF unit 12, an ADC unit 13, a signal dividing unit 14, a MIMO-OFDM demodulation unit 15, and a control unit 16. Here, functional blocks that are generally mounted in a base station are omitted.
(8) The characteristic variable antenna 11 is an antenna that periodically switches antenna characteristics (directivity, an output, a phase, and the like) in accordance with a control signal input from the control unit 16. For example, the characteristic variable antenna 11 corresponds to a component that periodically performs switching, by using a single switch SW, to one of antennas 51-1 to 51-4 of the related art illustrated in
(9) The RF unit 12 performs processing such as amplification, frequency changing, filtering, and the like on a signal input from the characteristic variable antenna 11 and outputs the processed signal to the ADC unit 13. In other words, the RF unit 12 has the function of an RF front end of a general radio device. The ADC unit 13 converts an analog signal input from the RF unit 12 into a digital signal and outputs the converted digital signal to the signal dividing unit 14. In addition, the ADC unit 13 notifies the control unit 16 of a sampling period of the ADC unit. The signal dividing unit 14 divides a signal input from the ADC unit 13 in synchronization with the sampling period and outputs divided signals to the MIMO-OFDM demodulation unit 15. The MIMO-OFDM demodulation unit 15 performs a demodulation process of the MIMO-OFDM defined in a wireless LAN system or the like on the signals divided by the signal dividing unit 14.
(10) Here, in a case where the characteristic variable antenna 11 periodically performs switching of antenna characteristics, for example, by periodically selecting one of four antennas, the ADC unit 13 outputs signals D1 to D4 corresponding to respective antenna characteristics in a time divisional manner at a period that is four times the sampling period of the ADC unit 53 of the related art illustrated in
(11) In addition, signals may be sampled more finely through oversampling by the ADC unit 13, and a signal of a short period may be generated by combining such signals.
(12) The switch SW of the characteristic variable antenna 11 may simultaneously select a plurality of antennas and output a combined signal to the RF unit 12.
(13) Each of the wireless terminal stations 20-1 and 20-2 includes a MIMO-OFDM modulation unit 21, a DAC unit 22, an RF unit 23, and an antenna 24 and is similar to a configuration of the related art. Here, functional blocks that are generally mounted in a terminal station are omitted.
(14) The MIMO-OFDM modulation unit 21 performs a modulation process of the MIMO-OFDM defined in a wireless LAN system or the like and outputs a modulated signal to the DAC unit 22. The DAC unit 22 converts a digital signal input from the MIMO-OFDM unit 21 into an analog signal and outputs the analog signal to the RF unit 23. The RF unit 23 performs processing such as amplification, frequency changing, filtering, and the like on the signal input from the DAC unit 22 and outputs a processed signal to the antenna 24. In other words, the RF unit 23 has the function of an RF front end of a general radio device. The antenna 24 emits a signal that is input from the RF unit 23 into the air.
(15)
(16) In
(17) Next, each of the wireless terminal stations 20-1 and 20-2 that have received the trigger signal generates an OFDM signal for uplink multi-user MIMO transmission in accordance with the trigger signal under synchronization of various parameters and transmits the generated OFDM signal to the wireless base station 10. On the other hand, by employing the configuration illustrated in
(18) The trigger signal and the response check signal may be transmitted by selecting and fixing one of the four antennas of the characteristic variable antenna 11 or may be transmitted using a dedicated antenna having predetermined antenna characteristics.
(19)
(20) The characteristic variable antenna 11 illustrated in
(21) The characteristic variable antenna 11 illustrated in
(22)
(23) In addition, the characteristic variable antenna 11 using the combination unit 111 illustrated in
REFERENCE SIGNS LIST
(24) 10 Wireless base station 11 Characteristic variable antenna 12 RF unit 13 ADC unit 14 Signal dividing unit 15 MIMO-OFDM demodulation unit 16 Control unit 20 Wireless terminal station 21 MIMO-OFDM modulation unit 22 DAC unit 23 RF unit 24 Antenna 111 Combination unit 112, 113 Feed antenna element 114 Parasitic antenna element