The present disclosure relates to a technology for avoiding harmful interference when a plurality of different types of wireless systems use the same or overlapping frequency band.
In a plurality of different types of wireless systems that use the same or overlapping frequency band, it is necessary to avoid harmful interference between the wireless systems. Examples of a conceivable method of avoiding harmful interference between wireless systems include a method of setting a use exclusion zone using a geographical database (for example, see NPL 1), and a method of setting an upper limit on the number of used wireless systems (for example, see NPL 2).
For example, when one of two different types of wireless systems is a wireless local area network (LAN) and the other is a fixed wireless communication with a very sharp antenna directivity, a problem arises that the wireless LAN causes harmful interference with the fixed wireless communication.
In the above case, because an installation position of a wireless access apparatus (Access Point (AP)) of the wireless LAN is fixed, the AP is installed outside a use exclusion zone for the fixed wireless communication using a geographical database, so that harmful interference does not occur. However, when a movable wireless terminal (STAtion (STA)) of the wireless LAN enters the use exclusion zone, harmful interference with the fixed wireless communication occurs.
Further, in the case of satellite communication a communication range of which overlaps that of a wireless LAN, since an amount of interference is proportional to the number of STAs in the wireless LAN, a method of setting an upper limit on the number of used STAs is effective in avoiding interference. However, in the case of fixed wireless communication with a very sharp antenna directivity, a problem arises that harmful interference occurs even when a single STA of the wireless LAN enters a main beam of an antenna.
An object of the present disclosure is to provide a wireless control method, a wireless control apparatus, and a wireless control system capable of avoiding harmful interference due to entrance of a wireless terminal of one wireless system into a communication area of another wireless system when a plurality of different types of wireless systems use the same or overlapping frequency band.
The present disclosure is a wireless control method including: a first wireless system including a fixed wireless access apparatus that performs communication with at least one movable wireless terminal; a second wireless system that performs communication in a limited communication area using a frequency band that is the same as or overlaps a frequency band of the first wireless system; one or more information collection terminals that collect information on the wireless communication of the first wireless system, at least one of the one or more information collection terminals being installed in the communication area of the second wireless system; and a wireless control apparatus that controls the communication of the first wireless system, wherein the wireless control apparatus controls the communication of the first wireless system such that communication of the wireless terminal does not cause harmful interference with the communication of the second wireless system, when approach of the wireless terminal to the communication area of the second wireless system is detected, based on information on the first wireless system and the second wireless system, and the information on the wireless communication collected by the one or more information collection terminals.
Further, the present disclosure is a wireless control apparatus for controlling communication of a first wireless system of a system, the system including the first wireless system including a fixed wireless access apparatus that performs communication with at least one movable wireless terminal, a second wireless system that performs communication in a limited communication area using a frequency band that is the same as or overlaps a frequency band of the first wireless system, and one or more information collection terminals that collect information on the wireless communication of the first wireless system, at least one of the one or more information collection terminals being installed in the communication area of the second wireless system, the wireless control apparatus including: a database that stores information on the first wireless system and the second wireless system, and the information on the wireless communication collected by the one or more information collection terminals; an information collection server that determines, based on the information stored in the database and information on a transmission power of the wireless terminal notified from the wireless access apparatus of the first wireless system, a threshold value of a reception power of a wireless signal at each information collection terminal, the wireless signal being transmitted by the wireless terminal, detect approach of the wireless terminal to the communication area when the reception power of the wireless terminal collected by each information collection terminal is equal to or higher than the threshold value, and transmit a request for stopping the wireless terminal; and a control server that determines a parameter of the wireless access apparatus based on the information stored in the database and transmit the request for stopping the wireless terminal received from the information collection server to the wireless access apparatus.
Further, the present disclosure is a wireless control system including: a first wireless system including a fixed wireless access apparatus that performs communication with at least one movable wireless terminal; a second wireless system that performs communication in a limited communication area using a frequency band that is the same as or overlaps a frequency band of the first wireless system; one or more information collection terminals configured to collect information on the wireless communication of the first wireless system, at least one of the one or more information collection terminals being installed in the communication area of the second wireless system; and a wireless control apparatus that controls the communication of the first wireless system, wherein the wireless control apparatus controls the communication of the first wireless system such that communication of the wireless terminal does not cause harmful interference with the communication of the second wireless system, when approach of the wireless terminal to the communication area of the second wireless system is detected, based on information on the first wireless system and the second wireless system, and the information on the wireless communication collected by the one or more information collection terminals.
The wireless control method, the wireless control apparatus, and the wireless control system according to the present disclosure provide a wireless control method, a wireless control apparatus, and a wireless control system capable of avoiding harmful interference due to entrance of a wireless terminal of one wireless system into a communication area of another wireless system when a plurality of different types of wireless systems use the same or overlapping frequency band.
Hereinafter, embodiments of a wireless control method, a wireless control apparatus, and a wireless control system according to the present disclosure will be described with reference to the drawings.
Here, in the following embodiments, two different types of wireless systems that use the same or overlapping frequency band are referred to as a first wireless system and a second wireless system. The first wireless system is a wireless system in which a fixedly installed wireless access apparatus and a movable wireless terminal communicate with each other in a wide communication area using an omnidirectional or broad directional antenna. The second wireless system is a wireless system in which communication is performed between fixedly installed wireless apparatuses in a limited communication area using an antenna with sharp directivity. For example, the first wireless system corresponds to a wireless LAN system conforming to IEEE 802.11ax and the second wireless system corresponds to a fixed wireless system having very sharp antenna directivity.
The wireless LAN system of the first wireless system is an interfering wireless system that interferes with the fixed wireless system of the second wireless system. On the other hand, the fixed wireless system of the second wireless system is an interference-receiving wireless system that receives interference from the wireless LAN system of the first wireless system.
In the following embodiments, a case in which the first wireless system is the wireless LAN system and the second wireless system is the fixed wireless system will be described, but each embodiment can be similarly applied to similar wireless systems.
In the example of
The wireless LAN system 101 includes a wireless access apparatus (AP) 201 such as an access point, and a wireless terminal (STA) 202. Here, the AP 201 is fixedly installed in a predetermined place, and the STA 202 is a movable wireless terminal such as a smartphone that performs wireless communication with the AP 201.
The fixed wireless system 102 includes a fixed wireless apparatus (FS) 301 and performs communication in a limited communication area with a similar fixed wireless apparatus (not illustrated) facing the FS 301. For example, in
The wireless control apparatus 103 prevents the STA 202 of the wireless LAN system 101 from entering the main beam 302 of the fixed wireless system 102 and causes harmful interference with the communication of the FS 301, based on information regarding wireless communication collected by the information collection terminal 104. A detailed configuration of the wireless control apparatus 103 will be described below.
The information collection terminal 104 monitors wireless communication between the AP 201 and the STA 202 of the wireless LAN system 101, and notifies the information collection server 402 of the information on the monitored wireless communication. In the example of
Thus, the wireless control system 100 according to the present embodiment can prevent the STA 202 of the wireless LAN system 101 from causing harmful interference with the fixed wireless system 102, by using the information collection terminal 104.
In
The control server 401 controls the AP 201 based on information on the FS-DB 403 and AP-DB 404. The FS-DB 403 is a database that holds information on the fixed wireless system 102. The AP-DB 404 is a database that holds information on the AP 201 and the STA 202 of the wireless LAN system 101. The control server 401 notifies the below-described information collection server 402 of the information on the STA 202 via a network such as a cloud, and transfers a request for stopping the STA 202 received from the information collection server 402 to the AP 201.
The information collection server 402 records the information on wireless communication acquired from the at least one information collection terminal 104 in the wireless environment database (wireless environment DB) 405. Details of the wireless environment DB 405 will be described below. Here, the information on wireless communication is, for example, information such as a frequency or reception power of the wireless communication between the STA 202 and the AP 201. The information collection server 402 detects the approach of the STA 202 to the main beam 302 based on the information on the wireless communication acquired from the information collection terminal 104 and the information on the fixed wireless system 102 held in the FS-DB 403. When the information collection server 402 detects the approach of the STA 202 to the main beam 302, the information collection server 402 transmits, to the control server 401, a stop request for stopping the transmission of the STA 202. The stop request is transferred from the control server 401 to the AP 201 and transmitted from the AP 201 to the STA 202. The STA 202 that has received the stop request from the AP 201 stops the transmission.
Thus, the wireless control apparatus 103 according to the present embodiment detects the approach of the STA 202 to the main beam 302, and stops the transmission of the STA 202 of the wireless LAN system 101 when the STA 202 is approaching the main beam 302. This can prevent the STA 202 of the wireless LAN system 101 using a frequency band that is the same as or overlaps that of the fixed wireless system 102 from causing harmful interference with the communication of the fixed wireless system 102.
Here, in the example of
Thus, the information on the FS 301 of the fixed wireless system 102 is stored in the FS-DB 403. Here, because a position of the FS 301 or information on the antenna are stored in the FS-DB 403, a geographical position or range of the main beam 302 (communication area) can be understood.
Here, the available frequency and the transmission power are a frequency and a transmission power of a wireless signal that is used by the AP 201. The AP 201 requests available parameters from the control server 401. The control server 401 refers to the FS-DB 403 and determines a frequency and a transmission power available to the AP 201 based on a wireless frequency used by the FS 301, a distance between the AP 201 and the FS 301, a width or direction of the main beam 302, and the like. When the frequency available to the AP 201 is the same as or overlaps a frequency band of the FS 301, the transmission power is determined so that harmful interference does not occur in the main beam 302. In the example of
Thus, the information on the AP 201 of the wireless LAN system 101 is stored in the AP-DB 404.
In the example of
Here, information such as the MAC address of the STA 202, the MAC address of the AP 201, and the transmission power of the STA 202 is information notified from the control server 401 to the information collection server 402. The ID of the information collection terminal 104 is acquired from the information collection terminal 104, and the allowable reception power is derived based on the allowable interference power of the FS 301 and an attenuation of free space propagation according to a distance from the FS 301 to the information collection terminal 104. For example, when the allowable interference power of the FS 301 is -137 dBm and a free space propagation loss between the FS 301 and the information collection terminal 104 is 85 dB, the allowable reception power at the position of the information collection terminal 104 is -52 dBm.
Further, a reception power and a reception time of a wireless signal of the STA 202 actually monitored by the information collection terminal 104 are recorded on the wireless environment DB 405.
Thus, the information on wireless communication collected by the information collection terminal 104 is recorded on the wireless environment DB 405, and information notified from the control server 401, information derived by the information collection server 402, and the like are recorded on the wireless environment DB 405.
Here, in
Here, a series of operation sequences executed by the wireless control system 100 are described separately in three diagrams of
First, the operation sequence illustrated in
In step S101, the information collection server 402 collects various types of information on the FS 301 from the FS-DB 403 described with reference to
In step S102, the AP 201 of the wireless LAN system 101 requests available parameters from the control server 401 before a signal is transmitted. The available parameters are information necessary for an operation of the AP 201, such as the wireless frequency and the transmission power.
In step S103, the control server 401 searches the AP-DB 404 for parameters regarding the AP 201 that has requested the available parameters. Here, the control server 401 determines parameters that the AP 201 can use without causing harmful interference with the communication of the FS 301, based on the parameters regarding the AP 201 and parameters of the FS 301 obtained from the FS-DB 403. For example, the control server 401 acquires information on the installation position and the antenna parameters of the AP 201 from the AP-DB 404, and acquires information on the installation position, the antenna parameters, and the allowable interference power of the FS 301 from the FS-DB 403. The control server 401 determines the parameters of the AP 201 so that a wireless signal transmitted from the AP 201 installed at a fixed position does not cause harmful interference with the communication of the FS 301, based on the acquired information. This can prevent the wireless signal transmitted by the AP 201 from causing harmful interference with the communication of the FS 301. Thus, in the case of the AP 201 installed at a fixed position, it is easy to avoid harmful interference with the FS 301, but in the case of the moving STA 202, processing to be described below is required.
In step S104, the control server 401 notifies the AP 201 of at least one parameter determined in step S103.
In step S105, the AP 201 determines parameters to be actually used from the at least one available parameter notified from the control server 401 in step S104. When a plurality of the available parameters are notified from the control server 401, one parameter is selected from the plurality of available parameters using a predetermined method and set in the AP 201.
In step S106, the AP 201 starts transmission of a beacon signal using the parameters determined in step S105.
In step S107, the AP 201 transmits the beacon signal in a predetermined cycle, and notifies wireless terminals around the AP 201 of the presence of the AP 201. In the example of
In step S108, the STA 202 connects to the AP 201 based on the beacon signal received from the AP 201 and starts communication with the AP 201. In this case, the STA 202 notifies the AP 201 of information such as the MAC address and the transmission power.
In step S109, the AP 201 notifies the control server 401 of the information such as the transmission power acquired from STA 202. In step S110, the control server 401 notifies the information collection server 402 of the information on the STA 202 notified from the AP 201.
In step S111, the information collection server 402 derives a threshold value of the reception power at the information collection terminal 104 from the information (such as the transmission power) regarding the STA 202 notified in step S110. Specifically, when the information collection terminal 104 is in the main beam 302 of the FS 301, the information collection server 402 derives a threshold value of the reception power used for detecting that the STA 202 is approaching a communication area obtained by adding a margin to a width of the main beam 302. For example, the reception power of the STA 202 at the information collection terminal 104 when the STA 202 approaches the communication area including the margin is calculated from the transmission power of the STA 202 in consideration of the attenuation of the free space propagation. The information collection server 402 sets the calculated reception power as a threshold value. A margin (for example, -5%) may be set as the threshold value.
In step S112, the STA 202 sends a signal to the AP 201 to communicate with the AP 201.
In step S113, the information collection terminal 104 monitors the signal transmitted from the STA 202 to the AP 201.
In step S114, the information collection terminal 104 transmits information (such as reception power and reception time) collected from the monitored signal to the information collection server 402.
In step S115, the information collection server 402 stores the information collected by the information collection terminal 104 in the wireless environment DB 405.
Here, in the wireless control system 100, the operation from step S112 to step S115 is repeatedly executed until the reception power collected from the information collection terminal 104 becomes equal to or higher than the threshold value set in step S111 (Relationship (1)).
The fact that the reception power of the STA 202 in the information collection terminal 104 is equal to or higher than the threshold value means that the STA 202 is approaching the communication area.
In step S116, when the information collection server 402 detects that the reception power collected from the information collection terminal 104 is equal to or higher than the threshold value, the information collection server 402 transmits a stop request for stopping the transmission of the STA 202 to the control server 401.
In step S117, the control server 401 transfers, to the AP 201, the stop request for stopping the STA 202 received from the information collection server 402.
In step S118, the AP 201 transmits the stop request to the STA 202.
In step S119, the STA 202 receives the stop request from the AP 201 and stops the transmission of the wireless signal to the AP 201.
The STA 202 that has stopped the transmission of the wireless signal to the AP 201 may perform processing of, for example, connecting to another AP.
Further, when the STA 202 cannot stop the transmission of the wireless signal to the AP 201, the control server 401 may request the AP 201 to change the used frequency, so that the frequency of the wireless signal that the STA 202 transmits to the AP 201 is changed. In this case, the frequency is changed to a frequency different from that of the FS 301.
Thus, the wireless control system 100 according to the present embodiment can detect the approach of the STA 202 to the communication area of the fixed wireless system 102 and stop the transmission of the STA 202 before the STA 202 enters the communication area. This prevents the STA 202 of the wireless LAN system 101 from causing harmful interference with the fixed wireless system 102.
Here,
In
Further, neither the information collection terminal 104A nor the information collection terminal 104B may be installed in the main beam 302, but it is preferable that the at least one information collection terminal 104A be installed in the main beam 302 of the FS 301, as illustrated in
Here, the information collection terminal 104A and the information collection terminal 104B monitor the wireless communication between the AP 201 and the STA 202, collect the information on the wireless communication such as the frequency or the reception power of the wireless signal, and notify the information collection server 402a of the information, as in the case of
In
Then, when a difference between the reception power A and the reception power B (reception power A - reception power B) is equal to or higher than a predetermined threshold value, the information collection server 402a can estimate that the STA 202 is closer to the information collection terminal 104A than to the information collection terminal 104B (Relationship (2)).
Here, the difference between the reception power A and the reception power B in Relationship (2) is an index for estimating where the STA 202 is present between the information collection terminal 104A and the information collection terminal 104B. For example, when the difference is 0, it can be estimated that the STA 202 is in the middle between the information collection terminal 104A and the information collection terminal 104B. When the difference is large and positive (reception power A > reception power B), it can be estimated that the STA 202 is closer to the information collection terminal 104A than to the information collection terminal 104B. On the other hand, when the difference is large and negative (reception power A < reception power B), it can be estimated that the STA 202 is closer to the information collection terminal 104B than to the information collection terminal 104A.
Further, a distance from the information collection terminal 104A to the STA 202 can be derived by assuming free space propagation based on the transmission power of the STA 202, and the position and the reception power A of the information collection terminal 104A. Similarly, a distance from the information collection terminal 104B to the STA 202 can be derived by assuming free space propagation based on the transmission power of the STA 202, the position and the reception power B of the information collection terminal 104B. Here, because the positions of the information collection terminal 104A and the information collection terminal 104B are known, the position of the STA 202 is accurately identified based on the distance from the STA 202 to the information collection terminal 104A and the distance from the STA 202 to the information collection terminal 104B. Because a position of the main beam 302 (communication area) is known, it is possible to detect whether or not the STA 202 approaches the main beam 302.
When at least the one information collection terminal 104A is present in the main beam 302, both the detection using Relationship (1) described in the above embodiment and the detection using Relationship (2) of the present application example may be performed.
In
Thus, the wireless control system 100a according to the present application example can stop the transmission of the STA 202 of the wireless LAN system 101 before the STA 202 enters the main beam 302 of the fixed wireless system 102 and causes harmful interference with the communication of the FS 301.
As in the above embodiment, when the STA 202 cannot stop the transmission of the wireless signal to the AP 201, the control server 401 may request the AP 201 to change the used frequency of the AP 201, so that the frequency of the wireless signal transmitted from the STA 202 to the AP 201 is changed. In this case, the frequency is changed to a frequency different from the frequency of FS 301.
Here, in
In step S111a, the information collection server 402a derives a threshold value of reception powers for the two information collection terminals 104A and 104B detecting the approach of the STA 202 to the main beam 302 of the FS 301 from transmission power information on the STA 202. Here, it is assumed that the installation positions of the information collection terminal 104A and the information collection terminal 104B are set in the information collection server 402a in advance.
The operation from step S112 to step S115a is repeatedly executed until the reception powers of the information collection terminal 104A and the information collection terminal 104B satisfy Relationship (2) (or Relationships (1) and (2)) and thereby approach of the STA 202 to the communication area is detected.
When the approach of the STA 202 to the communication area is detected, the next step S116 is executed as in
In step S116, the information collection server 402a transmits a stop request for stopping the transmission of the STA 202 to the control server 401.
Then, the processing from step S117 to step S119 are executed as in
Thus, the wireless control system 100a according to the present application example can detect the approach of the STA 202 to the main beam 302 with higher accuracy than in the wireless control system 100 by using the plurality of information collection terminals 104A and 104B. When the approach of the STA 202 to the main beam 302 is detected, the transmission of the STA 202 is stopped, so that harmful interference with the communication of the fixed wireless system 102 is avoided.
As described above, the wireless control method, the wireless control apparatus, and the wireless control system according to the present disclosure make it possible to detect that the movable wireless terminal of the first wireless system approaches the limited communication area of the second wireless system by using the information collection terminal. When the approach of the wireless terminal to the communication area is detected, the transmission of the wireless terminal is stopped. This prevents the movable wireless terminal of the first wireless system to which a method based on a use exclusion zone and a method of limiting the number of terminals are difficult to apply from entering the limited communication area of the second wireless system and causing harmful interference.
100, 100a:
101, 101a:
102:
103, 103a:
104, 104A, 104B:
201:
202:
301:
302:
401:
402, 402a:
403:
404:
405:
Filing Document | Filing Date | Country | Kind |
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PCT/JP2020/021656 | 6/1/2020 | WO |