The present invention relates to a base station that performs wireless communication and a wireless communication method.
As a frequency band of PHS (Personal Handy-phone System), 1884.5 MHz to 1915.7 MHz are allocated. In the frequency band, 1893.5 MHz to 1906.1 MHz are a common band for public and private use. In the common band, public PHS, private PHS, DECT (Digital Enhanced Cordless Telecommunications) and the like are available.
In future, in the common band, it is expected to use an XGP (eXtended Global Platform) wireless communication method that realizes M2M (Machine-to-Machine), IoT (Internet of Things) and the like, and a high quality communication service of high speed, low delay and the like is considered.
For example, in a TD-LTE (Time Division duplex-Long Term Evolution) wireless communication method used in the XGP method, a carrier used in transmission may take frequency bandwidths (hereinafter, referred to as bandwidths) of 1.4 MHz, 3 MHz, 5 MHz, 10 MHz, and 20 MHz (Non-Patent Literatures 1 and 2, and the like). The number of resource blocks (RBs) included in each bandwidth is 6 RBs, 15 RBs, 25 RBs, 50 RBs, and 100 RBs, respectively, and the communication speed becomes fast as the bandwidth is widened.
Non-Patent Literature 1: 3GPP TS 36.101 Ver. 9.0.0 “LTE; Evolved Universal Terrestrial Radio Access (U-UTRA); User Equipment (UE) radio transmission and reception”
Non-Patent Literature 2: 3GPP TS 36.211 Ver. 9.0.0 “LTE; Evolved Universal Terrestrial Radio Access (U-UTRA); Physical channels and modulation”
In the aforementioned common band, when a base station of the TD-LTE method uses a relatively wide bandwidth, a system used in another wireless communication method may be interfered.
The present invention has been made in consideration of the aforementioned problems, and an object thereof is to provide a base station and a wireless communication method in which effects of interference to a wireless communication system used in another wireless communication system are avoided in a common band for wireless communication.
A base station of the invention is a base station of a wireless communication system that commonly uses the same frequency band with another wireless communication system, wherein the base station uses a carrier of a wide frequency width of own system, in which throughput is improved in comparison to a carrier having a frequency width of the other wireless communication system when the other wireless communication system does not use the frequency band, and uses a carrier of a narrow frequency width of own system, which is narrower than the frequency width of the other wireless communication system, when the other wireless communication system uses the frequency band.
Furthermore, the base station of the invention is configured to alternately use the carrier of the wide frequency width and the carrier of the narrow frequency width by temporally switching the carrier of the wide frequency width and the carrier of the narrow frequency width when the other wireless communication system does not use the frequency band.
In the base station of the invention, the other wireless communication system includes a first wireless communication system and a second wireless communication system having a carrier using a narrower frequency width than a frequency width of a carrier in the first wireless communication system, and the base station uses a carrier of an intermediate frequency width of own system, in which throughput is improved in comparison to the frequency width of the other wireless communication system when the first wireless communication system does not use the frequency band and the second wireless communication system uses the frequency hand, the intermediate frequency width being narrower than the wide frequency width.
The base station of the invention is configured to alternately use the carrier of the intermediate frequency width and the carrier of the narrow frequency width by temporally switching the carrier of the intermediate frequency width and the carrier of the narrow frequency width when the first wireless communication system does not use the frequency band and the second wireless communication system uses the frequency band.
Furthermore, the base station of the invention is configured to initially use the carrier of the wide frequency width for a short time and gradually use the carrier of the wide frequency width for a long time when the carrier of the wide frequency width is used.
A wireless communication method of the present invention is a wireless communication method of a wireless communication system that commonly uses the same frequency band with another wireless communication system, and includes steps of, using a carrier of a wide frequency width of own system, in which throughput is improved in comparison to a frequency width of the other wireless communication system when the other wireless communication system does not use the frequency band, and using a carrier of a narrow frequency width of own system, which is narrower than the frequency width of the other wireless communication system when the other wireless communication system uses the frequency band.
According to the base station and the wireless communication method of the invention, effects of interference to the other wireless communication system are avoided in the common band for wireless communication.
Hereinafter, an embodiment of the invention is described with reference to the drawings.
For example, the wireless terminal 10p and the base station 30p correspond to the wireless communication method P, the wireless terminal 10x and the base station 30x correspond to the wireless communication method X, and the wireless terminal 10d and the base station 30d correspond to the wireless communication method D.
In the embodiment of the invention, it is assumed that the base station 30x exists; however, at least one of the base station 30p and the base station 30d may exist around the base station 30x or the base station 30p or the base station 30d may not exist. For example, when a wireless network is privately operated, at least one of the base station 30p and the base station 30d may exist.
These wireless communication methods are operated in a command band commonly using the same frequency band. The command band is described below.
For example, as illustrated in
Next, a carrier of a frequency width used in the common band is described.
In a system using the method D (a first wireless communication system), there are five carriers having a predetermined frequency width in a command band as illustrated in
In a system using the method X, it is considered to use a TD-LTE method, there are five carriers having a frequency width of 1.4 MHz width in the command band as illustrated in
In a system using the method P (a second wireless communication system), there are 18 carriers having a predetermined frequency width in the command band as illustrated in
The throughput of a carrier of 1.4 MHz width (a narrow frequency width) of the method X is lower than that of a carrier of the method D, and the throughput of a carrier of 3 MHz width (a wide frequency width or an intermediate frequency width) and a carrier of 5 MHz width (a wide frequency width) of the method X is higher than that of the carrier of the method. D. However, since the carrier of 3 MHz width and the carrier of 5 MHz width of the method X may give interference to other wireless communication systems due to a wide band.
Next, the base station according to the embodiment of the invention is described.
The base station 30x includes two radio units 31 and 32, a detection unit 33 related to carrier sensing, a signal processing unit 34 that processes a radio signal, a control unit 35 that controls various operations, and a line unit 36 that communicates with a network.
The radio unit 31 performs wireless communication by using the TD-LTE method. A reception part of the radio unit 31 outputs a radio signal received from the wireless terminal 10x to the signal processing unit 34. A transmission part of the radio unit 31 transmits information outputted from the signal processing unit 34 to the wireless terminal 10x as a radio signal.
The radio unit 32, for example, performs carrier sensing during communication of the radio unit 31. A reception part of the radio unit 32 outputs a received radio signal to the signal processing unit 34. A transmission part of the radio unit 32 transmits information outputted from the signal processing unit 34 as a radio signal.
The detection unit 33 detects a carrier from a radio signal, and outputs, to the control unit 35, carrier sensing information when the carrier sensing is performed.
The signal processing unit 34 processes the radio signals from the reception parts of the radio unit 31 and the radio unit 32 and outputs obtained information to the control unit 35. Furthermore, the signal processing unit 34 outputs information outputted from the control unit 35 to the transmission parts of the radio unit 31 and the radio unit 32 as a radio signal.
The control unit 35 is configured with a CPU, a memory and the like and controls various operations, and the line unit 36 is a network interface for communicating with the control device 20x and the network.
Next, the operation of the control unit 35 of the base station 30x is described.
As described in
For example, the base station 30x performs the following operations.
Next, an example of the operations of the control unit 35 of the base station 30x is described using a flowchart.
The control unit 35 performs carrier sensing for a long time (for example, 24 hours and the like) at the start of wireless communication and confirms whether carriers of the method D and the method P are detected (S11).
When the carriers are not detected, the control unit 35 alternately uses a 5 MHz carrier and a 1.4 MHz carrier (S12). For example, in this case, as illustrated in
When the 5 MHz carrier is used, a communication service with good throughput is provided, so that it is possible to prevent interference to another wireless communication system.
During the operation, the control unit 35 performs the carrier sensing (S13) and determines whether another wireless communication system is not detected (S14). When the other wireless communication system is not detected (Yes in S14), the control unit 35 subsequently performs step S12.
When the other wireless communication system is detected, the control unit 35 performs switching to an operation for reducing an influence to the system and. continues the operation. In
On the other hand, when the method P or the method D is detected in step S11., the control unit 35 determines whether the method D is not detected (S21).
When the method D is not detected, that is, when the method P is detected, the control unit 35 alternately uses a 3 MHz carrier and the 1.4 MHz carrier (S22). For example, in this case, as illustrated in
When the 3 MHz carrier is used, a communication service with good throughput is provided, so that it is possible to prevent interference to another wireless communication system.
During the operation, the control unit 35 performs the carrier sensing (S23) and determines whether another wireless communication system is not detected (S24).
When the other wireless communication system is not detected (Yes in S24), the control unit 35 subsequently performs step S11.
When the other wireless communication system is detected, the control unit 35 performs switching to an operation for reducing an influence to the system and continues the operation. In
On the other hand, when the method D is detected in step S21, the control unit 35 uses the 1.4 MHz carrier (S31).
During the operation, the control unit 35 performs the carrier sensing (S32) and determines whether another wireless communication system is not detected (S33). When the other wireless communication system is not detected (Yes in S33), the control unit 35 subsequently performs step S11.
When the other wireless communication system is detected, the control unit 35 performs switching to an operation for reducing an influence to the system and continues the operation. In
As described above, when another wireless communication system is not using the common band, the base station 30x uses the 3 MHz or 5 MHz carrier of own system, in which throughput is improved in comparison to a carrier having a frequency width of the other wireless communication system. When the other wireless communication system is using the common band, the base station 30x uses the 1.4 MHz of own system, which has a narrower frequency width than the other wireless communication system. Consequently, it is possible to avoid effects of interference to the other wireless communication system in the command band of the wireless communication and to provide a high speed communication service.
In the above, the control unit 35 operates the 3 MHz or 5 MHz carrier for a prescribed time, switches the carrier to the 1.4 MHz carrier, and then operates the 1.4 MHz carrier for a prescribed time; however, in other embodiments, in order to prevent effects of interference to another wireless communication system, the operating time of the 3 MHz or 5 MHz carrier may be initially shortened, and when the other wireless communication system is detected in the carrier sensing, the operating time may be gradually prolonged.
In steps S12 and S22, the 1.4 MHz carrier is alternately used; however, in order to prevent effects of interference to another wireless communication system, when the 1.4 MHz carrier is used, the control unit 35 may gradually increase the 1.4 MHz carrier such that the number of the 1.4 MHz carriers is initially one, next two, then three, then four, and then five.
In step S12, the 5 MHz carrier is used; however, in order to prevent effects of interference to another wireless communication system, the 3 MHz carrier may be initially used, and then the 5 MHz carrier may be used.
Note that the above description is only a specific preferred embodiment for the purpose of the description and the example of the invention. Accordingly, the invention is not limited to the aforementioned embodiment and includes many changes and modifications within a range without departing from its essence.
This application is based upon Japanese Patent Application (Japanese Patent Application No. 2015-158698) filed on Aug. 11, 2015, the entire contents of which are incorporated by citation. Furthermore, all references cited herein are incorporated as a whole.
Number | Date | Country | Kind |
---|---|---|---|
2015-158698 | Aug 2015 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2016/072986 | 8/4/2016 | WO | 00 |