WO2021051829A1 - 无线接入终端的调试方法、装置、接入终端及检测设备 - Google Patents

无线接入终端的调试方法、装置、接入终端及检测设备 Download PDF

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Publication number
WO2021051829A1
WO2021051829A1 PCT/CN2020/089577 CN2020089577W WO2021051829A1 WO 2021051829 A1 WO2021051829 A1 WO 2021051829A1 CN 2020089577 W CN2020089577 W CN 2020089577W WO 2021051829 A1 WO2021051829 A1 WO 2021051829A1
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Prior art keywords
access terminal
wireless access
wireless
signal strength
signal
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PCT/CN2020/089577
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English (en)
French (fr)
Inventor
伍学斌
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中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP20866586.9A priority Critical patent/EP3975621A4/en
Priority to US17/622,304 priority patent/US20220248236A1/en
Publication of WO2021051829A1 publication Critical patent/WO2021051829A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/18Network planning tools
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B17/00Monitoring; Testing
    • H04B17/30Monitoring; Testing of propagation channels
    • H04B17/309Measuring or estimating channel quality parameters
    • H04B17/318Received signal strength
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/025Services making use of location information using location based information parameters
    • H04W4/027Services making use of location information using location based information parameters using movement velocity, acceleration information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management
    • H04W64/006Locating users or terminals or network equipment for network management purposes, e.g. mobility management with additional information processing, e.g. for direction or speed determination

Definitions

  • the present disclosure relates to the field of communication technology, in particular to a debugging method, device, access terminal, and detection equipment of a wireless access terminal.
  • a wireless access terminal is a terminal used to receive wireless signals sent by external devices, such as CPE, which is called Customer Premise Equipment in English.
  • CPE Customer Premise Equipment
  • Such a wireless access terminal is a kind of wireless access terminal that receives mobile signals and forwards them with wireless WIFI signals. It is also a device that converts high-speed 4G or 5G signals into WiFi signals, which can support a large number of mobile terminals to surf the Internet at the same time.
  • Wireless access terminals can be divided into indoor and outdoor two types.
  • the current outdoor wireless access terminals are generally installed in high places such as telephone poles or exterior walls of high buildings.
  • wireless access terminals such as CPE need to be debugged in a certain direction and angle to find the ones that can receive external devices such as 4G or 5G base stations.
  • the installation location with the highest signal strength.
  • the traditional debugging method is to use a network cable, one end is connected to the wireless access terminal, and the other end is connected to the PC or laptop. Two people are required to cooperate during debugging. One person checks the signal strength transmitted by the wireless access terminal to the PC, and the other adjusts the direction and angle of the wireless access terminal, so that the two people can cooperate to adjust the wireless access terminal to the The best installation location for installation.
  • the embodiments of the present disclosure provide a debugging method, device, access terminal, and testing equipment for a wireless access terminal to reduce manpower for outdoor debugging and installation of the wireless access terminal, which has the advantage of facilitating on-site debugging and installation operations.
  • the embodiment of the present disclosure provides a debugging method of a wireless access terminal, including: receiving a wireless signal when the wireless access terminal is moved; judging the highest signal strength according to the signal strength value of the wireless signal; in the judgment process Prompt in, for debugging the wireless access terminal.
  • the embodiment of the present disclosure also provides a debugging method for a wireless access terminal, including: receiving the signal strength value of the wireless signal forwarded by the wireless access terminal; The signal strength value of the wireless signal is used to determine the highest signal strength; in the process of determining the highest signal strength, a prompt is provided for debugging the wireless access terminal.
  • the embodiment of the present disclosure also provides a debugging device for a wireless access terminal, including: a first receiving module, configured to receive a wireless signal when the wireless access terminal is moved; The highest signal strength is determined by the signal strength value of, and the first prompt module is used to prompt during the judgment process for debugging the wireless access terminal.
  • the embodiment of the present disclosure also provides a debugging device for a wireless access terminal, including: a second receiving module, configured to receive the signal strength value of the wireless signal forwarded by the wireless access terminal; and a second judgment module, using To determine the highest signal strength according to the signal strength value of the wireless signal forwarded by the wireless access terminal; the second prompt module is used to prompt in the process of judging the highest signal strength for debugging the wireless Access terminal.
  • the embodiments of the present disclosure also provide a wireless access terminal, including a memory, a processor, and a computer program stored in the memory and capable of running on the processor.
  • the processor implements the wireless access terminal when the program is executed.
  • the debugging method includes
  • the embodiment of the present disclosure also provides a detection device, including a memory, a processor, and a computer program stored in the memory and capable of running on the processor, and the processor executes the debugging of the wireless access terminal when the program is executed. method.
  • the embodiments of the present disclosure also provide a computer-readable storage medium that stores computer-executable instructions, and the computer-executable instructions are used to execute the debugging method of the wireless access terminal.
  • FIG. 1 is a flowchart of a debugging method for a wireless access terminal according to an embodiment of the disclosure
  • FIG. 2 is a flowchart of determining the highest signal strength according to the signal strength value of the wireless signal according to an embodiment of the disclosure
  • FIG. 3 is a flowchart of prompting for debugging the wireless access terminal in the judgment process according to an embodiment of the present disclosure
  • FIG. 4 is a diagram of a prompt tone relationship according to an embodiment of the disclosure.
  • FIG. 5 is a relationship diagram of brightness prompts according to an embodiment of the disclosure.
  • FIG. 6 is a flowchart of another method for debugging a wireless access terminal according to an embodiment of the disclosure.
  • FIG. 7 is a flowchart of determining the highest signal strength according to the signal strength value of the wireless signal forwarded by the wireless access terminal according to an embodiment of the disclosure
  • FIG. 8 is a flowchart of prompting for debugging the wireless access terminal in the process of judging the highest signal strength according to an embodiment of the present disclosure
  • FIG. 9 is a diagram of another prompt tone relationship according to an embodiment of the disclosure.
  • FIG. 10 is a diagram of the relationship of prompt information according to an embodiment of the disclosure.
  • FIG. 11 is a structural diagram of a debugging device for a wireless access terminal according to an embodiment of the disclosure.
  • FIG. 12 is a structural diagram of another debugging device for a wireless access terminal according to an embodiment of the disclosure.
  • FIG. 13 is a structural diagram of a wireless access terminal according to an embodiment of the disclosure.
  • FIG. 14 is a structural diagram of a detection device according to an embodiment of the disclosure.
  • FIG. 15 is a structural diagram of an application example of an embodiment of the disclosure.
  • Outdoor wireless access terminals like outdoor CPE, are new product forms that have been released in recent years along with the development of high-speed 4G wireless data. Its main purpose is to enhance WIFI coverage and expand the demand for outdoor high-speed wireless Internet access.
  • the network cable + PC/notebook (the network cable is connected to the PC and the wireless access terminal respectively) is used to set up and set the outdoor wireless access terminal. Adjustment of installation direction and angle.
  • a network cable and a PC are required, and the signal strength of the wireless access terminal needs to be checked in real time through the PC during the adjustment process, so two people are required to coordinate adjustments.
  • There are many things to carry and the installation and adjustment time is relatively long, and there is no indication of the adjustment direction during the adjustment process.
  • outdoor wireless access terminals have extremely high requirements for waterproof and dustproof.
  • the network ports are generally designed in structural parts or tightly sealed with sealing plugs.
  • the embodiment of the present disclosure proposes a debugging method for a wireless access terminal.
  • a debugging method for a wireless access terminal By prompting during the judgment process for debugging the wireless access terminal, manpower can be reduced for outdoor debugging and installation of wireless access.
  • Terminal and does not need to be connected to the wired connection structure of the network cable structure, which is convenient for on-site debugging and installation operations.
  • the debugging method of a wireless access terminal includes the following steps: Step 101, receiving a wireless signal when the wireless access terminal is moved.
  • the receiving wireless signal is to allow the wireless access terminal to receive the wireless signal transmitted by an external device when the wireless access terminal is installed outdoors
  • the wireless access device can be a wireless router, a wireless switch, or a wireless CPE Such wireless access equipment.
  • the external device can be a wireless transmitter, a 4G base station, or a 5G base station that transmits wireless signals to access the wireless access terminal.
  • the wireless access terminal is usually installed outdoors at a certain set height of a tall building such as an outdoor telephone pole, pole, building exterior wall or iron tower.
  • the moving method is horizontal rotation or rotation at the set height.
  • Step 102 Determine the highest signal strength according to the signal strength value of the wireless signal.
  • the method for the wireless access terminal to obtain the signal strength value of the wireless signal may be: after the antenna of the wireless access terminal receives the wireless signal, the radio frequency module of the wireless access terminal will The wireless signal is converted from an analog signal to a digital signal, that is, the radio frequency module performs ADC conversion, and then the modem of the wireless access terminal analyzes the signal strength value of the signal. The highest signal strength is judged according to the signal strength value of the wireless signal. When the highest signal strength is judged, the posture and position of the wireless access terminal is its installation position, which can ensure that the signal sent by the external device is received The wireless signal is the best.
  • Step 103 Prompt during the judgment process for debugging the wireless access terminal.
  • the wireless access terminal itself judges and prompts to debug the wireless access terminal, so that only one person is required to adjust the wireless access terminal according to the prompts.
  • There are few things to carry and the time for installation and adjustment is short.
  • there is no need to connect the network cable during installation and adjustment and there is no need to disassemble the structural parts or remove the sealing plug.
  • the safety is improved, and structural parts or screws will not be dropped.
  • the efficiency of this installation adjustment is also high.
  • determining the highest signal strength according to the signal strength value of the wireless signal includes: step 201, starting from receiving the second wireless signal, sequentially The signal strength value of the current wireless signal is compared with the signal strength value of the previous wireless signal received.
  • Step 202 If the signal strength value of the current wireless signal is higher than the signal strength value of the previously received wireless signal, continue to sequentially compare the signal strength value of the subsequent received current wireless signal and the signal strength value of the previous wireless signal received. The signal strength values are compared.
  • Step 203 If the signal strength value of the current wireless signal is lower than the signal strength value of the previously received wireless signal, the signal strength value of the previously received wireless signal is taken as the highest signal strength.
  • the signal strength value of the current wireless signal and the signal strength value of the wireless signal received before it are sequentially compared. In this way, the highest signal strength is obtained, which is simple and efficient.
  • the prompting during the judgment process for debugging the wireless access terminal includes: step 301, in which the received signal strength values of the current wireless signals are sequentially changed When comparing with the signal strength value of the wireless signal received before, if the signal strength value of the current wireless signal is higher than the signal strength value of the previously received wireless signal, the mobile is prompted to adjust the wireless access The direction of the terminal is correct.
  • step 302 If the signal strength value of the current wireless signal is lower than the signal strength value of the previously received wireless signal, it is prompted that the direction of the wireless access terminal is incorrectly adjusted by the movement.
  • Step 303 If the signal strength value of the current wireless signal is the highest signal strength, prompt to stop moving the wireless access terminal.
  • this step in the process of moving the wireless access terminal, by prompting the movement to adjust the direction of the wireless access terminal to be correct, prompting the movement to adjust the direction of the wireless access terminal to be wrong, and prompting to stop moving the wireless access terminal.
  • a staff member can be prompted to adjust the way of moving the wireless access terminal according to the prompt information, for example, in the case that the direction of the wireless access terminal is adjusted correctly when prompted to move , The staff can continue to maintain the direction of movement to adjust the posture and position of the wireless access terminal; when prompted to move and adjust the direction of the wireless access terminal is wrong, the staff can move in the reverse direction.
  • Adjust the posture and position of the wireless access terminal when prompted to stop moving the wireless access terminal, the worker can stop moving the wireless access terminal; such a prompt can allow the worker
  • One person completes the debugging process of the wireless access terminal at a height set outdoors, which saves manpower, and there is no need to use a wired connection structure such as a network cable to add human hands for observation and debugging, which improves safety and at the same time. In order to debug the efficiency of the wireless access terminal.
  • the method for prompting the movement to adjust the direction of the wireless access terminal is correct, the method for prompting the movement to adjust the direction of the wireless access terminal is wrong, and the method for prompting to stop moving the wireless access terminal.
  • the ways of accessing the terminal are respectively to emit a first prompt sound, a second prompt sound, and a third prompt sound that are different from each other through the first audio output device.
  • the wireless access terminal when the wireless access terminal is debugged and installed at a height set outdoor, Only one staff member can adjust the posture and position of the wireless access terminal by adjusting the posture and position of the wireless access terminal by adjusting the posture and position of the wireless access terminal and moving in the reverse direction according to the first prompt, second prompt or third prompt respectively.
  • the first audio output device may be a horn, a buzzer, or a power amplifier Or a speaker
  • the first prompt tone can be set to the intensity of the audio or the audio frequency is from low to high
  • the second prompt tone can be set to the intensity of the audio or the frequency of the audio is from high to low
  • the third prompt tone can be set as an audio that changes according to a specific frequency, such as two short and one long audio that changes in frequency; other differences such as high-volume beeps, medium-volume ones can also be used
  • Three types of audio such as a beep sound and a low-volume beep sound are used to set the first prompt sound, the second prompt sound, and the third prompt sound, respectively.
  • a staff member can complete the debugging process of the wireless access terminal at a height set outdoor according to the prompt sound he hears, which saves manpower.
  • the method of prompting the movement to adjust the direction of the wireless access terminal is correct, the method of prompting the movement to adjust the direction of the wireless access terminal in the wrong direction, and the prompting to stop moving the wireless access terminal
  • the way of accessing the terminal is to send out the first brightness prompt, the second brightness prompt, and the third brightness prompt that are different from each other through the prompt light.
  • the wireless access terminal when the wireless access terminal is debugged and installed at a height set outdoor, only one is needed.
  • the staff can adjust the posture and position of the wireless access terminal by adjusting the posture and position of the wireless access terminal, and adjust the wireless by moving in the opposite direction according to the first brightness prompt, the second brightness prompt, or the third brightness prompt.
  • the prompt light can be a signal light or an LED light, and the number of the prompt light can be several One and can each be a reminder light with different colors, such as a red reminder light, a yellow reminder light, and a green reminder light.
  • the first brightness reminder can be set to light up a red reminder light; the second brightness The reminder can be set to light up the yellow reminder light; the third brightness reminder can be set to light up the green reminder light; it can also be different from each other, such as light up a reminder light, light up two reminder lights and Three kinds of brightness reminders such as three reminder lights are turned on to respectively set the first brightness reminder, the second brightness reminder, and the third brightness reminder.
  • the staff can complete the debugging process of the wireless access terminal at a height set outdoor according to the brightness prompt seen, which saves manpower.
  • the wireless access terminal forwards the received signal strength value of the wireless signal to the detection device in real time.
  • the detection device after the detection device receives the wireless signal, it can also perform processing to further prompt the staff to perform a debugging operation.
  • another method for debugging a wireless access terminal includes: step 401, receiving the signal strength value of the wireless signal forwarded by the wireless access terminal.
  • step 402 Determine the highest signal strength according to the signal strength value of the wireless signal forwarded by the wireless access terminal.
  • Step 403 Prompt during the process of judging the highest signal strength for debugging the wireless access terminal.
  • this step in this way, it does not rely solely on the wireless access terminal to judge the highest signal strength and prompts during the judgment process for debugging the wireless access terminal, which can reduce the wireless access terminal’s
  • the processing resources are used for debugging the resource consumption of the wireless access terminal during the judgment of the highest signal strength and during the judgment process; it can also be used when the wireless access terminal judges to be out of order or malfunctions.
  • This other debugging method for a wireless access terminal can continue to be used to debug the wireless access terminal, making it more reliable in application.
  • the determining the highest signal strength according to the signal strength value of the wireless signal forwarded by the wireless access terminal includes: step 501: Starting with the second wireless signal forwarded by the access terminal, the received signal strength value of the current wireless signal is sequentially compared with the signal strength value of the previous wireless signal received. Step 502: If the signal strength value of the current wireless signal is higher than the signal strength value of the previously received wireless signal, continue to sequentially compare the signal strength value of the current wireless signal received subsequently to the signal strength value of the previous wireless signal received. The signal strength values are compared. Step 503: If the signal strength value of the current wireless signal is lower than the signal strength value of the previously received wireless signal, the signal strength value of the previously received wireless signal is taken as the highest signal strength.
  • the signal strength value of the current wireless signal and the signal strength value of the wireless signal received before it are sequentially compared. In this way, the highest signal strength is obtained, which is simple and efficient.
  • the prompting for debugging the wireless access terminal during the process of judging the highest signal strength includes: step 601: When the signal strength value of the current wireless signal forwarded by the wireless access terminal is compared with the signal strength value of the previous wireless signal received, if the signal strength value of the current wireless signal is higher than that of the previous wireless signal received If the signal strength value is high, it will prompt the movement to adjust the direction of the wireless access terminal to be correct.
  • step 602 If the signal strength value of the current wireless signal is lower than the signal strength value of the previously received wireless signal, it is prompted to move and adjust the direction of the wireless access terminal to be wrong.
  • Step 603 If the signal strength value of the current wireless signal is the highest signal strength, prompt to stop moving the wireless access terminal.
  • the method of prompting the movement to adjust the direction of the wireless access terminal is correct, the method of prompting the movement to adjust the direction of the wireless access terminal is wrong, and the method of prompting to stop moving the wireless access terminal.
  • the ways of accessing the terminal are respectively to emit a fourth, fifth, and sixth prompt tone that are different from each other through the second audio output device.
  • the fourth prompt, fifth prompt, and sixth prompt emitted by the second audio output device when the wireless access terminal is debugged and installed at a height set outdoor, Only one staff member can continue to maintain the original moving direction to adjust the posture and position of the wireless access terminal, and move in the reverse direction according to the fourth prompt, fifth prompt, or sixth prompt.
  • the second audio output device may be a speaker of a detection device
  • the first The fourth prompt tone can be set as the audio intensity or the audio frequency from low to high
  • the fifth prompt tone can be set as the audio intensity or the audio frequency from high to low
  • the first The six beeps can be set to the audio that changes according to a specific frequency, such as two short and one long audio; other differences such as high volume, medium volume, and low volume can also be used.
  • a specific frequency such as two short and one long audio
  • other differences such as high volume, medium volume, and low volume
  • the method of prompting the movement to adjust the direction of the wireless access terminal is correct, the method of prompting the movement to adjust the direction of the wireless access terminal is wrong, and the method of prompting to stop moving the wireless access terminal.
  • the way of accessing the terminal is to display the first prompt information, the second prompt information, and the third prompt information that are different from each other through the display device.
  • the wireless access terminal when the wireless access terminal is debugged and installed at a height set outdoor, only one is needed.
  • the staff can continue to maintain the original moving direction to adjust the posture and position of the wireless access terminal, and move in the reverse direction to adjust the wireless according to the first prompt information, second prompt information, and third prompt information.
  • the display device may be an LCD screen or a display screen of a detection device
  • the first prompt The information can be set as a color block in which the color of the color block changes from light to dark;
  • the second prompt information can be set as a color block in which the color of the color block changes from dark to light;
  • the third prompt information can be set
  • the first prompt information, the second prompt information, and the third prompt information displayed by the display device can allow the staff to complete the wireless access according to the prompt information seen at the height set outdoors.
  • the debugging process of the terminal saves manpower.
  • the display device also displays the signal strength value of the wireless signal forwarded by the wireless access terminal in real time.
  • such real-time display of the signal strength value of the wireless information forwarded by the wireless access terminal can allow the staff to more intuitively and clearly see the wireless signal received by the wireless access terminal.
  • the signal strength value is more conducive to debugging.
  • the wired connection structure of the structure facilitates on-site debugging and installation operations. Moreover, there is no need to connect the network cable during installation and adjustment, and there is no need to disassemble the structural parts or remove the sealing plug. After the adjustment is completed, there is no need to install the structural parts or plug the plug back. The safety is improved, and structural parts or screws will not be dropped. At the same time, the efficiency of this installation adjustment is also high.
  • the outdoor CPE is used as a wireless access terminal.
  • Outdoor CPE is a good supplement to 5G wireless terminals. In public places such as large office spaces, stadiums, exhibition halls, etc., more people can access 5G networks through WIFI, etc., and enjoy the high speed of 5G. Outdoor CPE is a development direction of 5G equipment, and the improvement of outdoor CPE installation methods is also a direction for future products to enhance competitiveness. Because CPE is not only the product itself, its installation and commissioning is also a very important aspect, reflecting the ability of after-sales service design.
  • the main application environment of this application example is the installation and debugging of outdoor 5G and 4G standard CPE products.
  • the installation of outdoor CPE in high buildings such as telephone poles, poles, building exterior walls, iron towers, and public places. It can improve the efficiency of installation, reduce the difficulty of installation, reduce staff requirements and reduce staff costs. At the same time, the safety during installation can also be improved.
  • a Bluetooth chip as the first wireless communication module needs to be built in the main board of the outdoor CPE.
  • This Bluetooth chip can exist alone or integrated with a WIFI chip.
  • the Bluetooth chip is connected to the application processor AP main chip of the outdoor CPE as the processor of the outdoor CPE through serial or parallel data interfaces such as I2C/UART/SPI.
  • the application processor AP can determine the strength of the wireless signal received by the outdoor CPE. Information such as internal parameters is sent and received with the Bluetooth chip through a serial or parallel interface.
  • the main board of the outdoor CPE also needs to have a built-in buzzer (or other audio device) as the first audio output device.
  • This buzzer can be controlled by one or several GPIOs (General Purpose Input Output) of the application processor AP.
  • GPIOs General Purpose Input Output
  • sounds of different frequencies or loudness are emitted. For example, the sound changes from small to large, indicating that the wireless signal is getting better and better as the outdoor CPE moves.
  • the buzzer When adjusted to the best position, the buzzer emits a specific frequency sound (such as a long and short beep) to indicate that the adjustment is in place. If the adjustment direction is wrong, the buzzer will emit a sharp beep to indicate.
  • the outdoor CPE is also designed with multiple single-color or multi-color LED lights as indicator lights.
  • the application processor AP controls these LED lights through GPIO pins to display the current signal strength status of the outdoor CPE, such as the number of the LED lights.
  • the first brightness prompt can be set to light up the red LED light;
  • the second brightness reminder can be set to light up a yellow LED light;
  • the third brightness reminder can be set to light up a green LED light; it can also be different from each other, such as light up one LED light and light up two
  • Three kinds of brightness prompts such as LED lights and lighting three LED lights are used to set the first brightness prompt, the second brightness prompt, and the third brightness prompt respectively.
  • a smart phone In order to monitor the wireless signal strength in real time in the process of adjusting the outdoor CPE, a smart phone is used.
  • the smart phone performs a data communication link with the outdoor CPE through the Bluetooth communication protocol, and the signal strength value of the wireless signal received by the outdoor CPE can be sent to the smart phone through the Bluetooth data channel.
  • the smart phone can display this signal strength data through an APP (application program).
  • the APP can also display some data that need to be adjusted by the staff (such as maximum rate limit, user access limit), etc. After the staff adjusts the data on the APP, the smart phone sends the data to the outdoor CPE through the Bluetooth protocol.
  • the application processor AP of the outdoor CPE After the application processor AP of the outdoor CPE receives the data, it writes the data into the internal memory to complete the adjustment. Similarly, in the outdoor CPE mobile adjustment process, the smart phone APP can also prompt the signal strength status during adjustment through color blocks/progress bars/phone sounds, etc.
  • the fourth prompt tone can be set to the intensity of the audio or the frequency of the audio from low to high The audio; the fifth prompt tone can be set to the intensity of the audio or the frequency of the audio is from high to low audio; the sixth prompt tone can be set to the audio that changes according to a specific frequency, such as two short and one long The frequency changes audio; you can also use other different from each other, such as high volume, medium volume, and low volume, three kinds of audio, respectively, to set the fourth prompt sound.
  • the fifth and sixth prompts can also be used in Chinese, such as "The direction is correct, please continue to move the wireless access terminal debugging in this direction", and the Chinese sound "The direction is wrong, please move the wireless access terminal in the reverse direction to debug".
  • To set the fourth prompt, fifth prompt, and sixth prompt respectively with three audios such as "The installation position with the highest signal strength has been reached, please stop moving the wireless access terminal” in Chinese.
  • the staff can hold a mobile phone in one hand and move the outdoor CPE in the other at a height set outdoors, and complete the debugging process of the outdoor CPE according to the prompt sound heard, saving manpower. Can better improve the efficiency of adjustment.
  • the first prompt message can be set as the color of the color block is a color that changes from light to dark Block;
  • the second prompt information can be set as a color block whose color changes from dark to light;
  • the third prompt information can be set as the color display of the color block is blinking; other Different from each other, such as the progress bar moving to the left, the progress bar moving to the right, and the progress bar moving to the right to the end, the three progress bar changes are used to set the first prompt information, the second prompt information, and the third prompt
  • the application example is as follows: the hardware architecture of the application example includes two parts, one is an outdoor CPE including a Bluetooth chip, buzzer and LED lights, and the other is a smart phone with APP.
  • the outdoor CPE in addition to the traditional and commonly used outdoor CPE functional part of the hardware circuit, a Bluetooth chip, buzzer, etc. are added.
  • LED lights have been extended (the traditional outdoor CPE LED lights show whether 5G/4G is online, WIFI online, wired network port online, power light, etc.).
  • the function of the Bluetooth chip is mainly responsible for data communication with the application processor AP through serial or parallel interfaces such as I2C or SPI/UART, and the signal of the wireless signal received by the outdoor CPE obtained by the application processor AP Data such as intensity value/outdoor CPE parameters are sent to the smartphone through the antenna. At the same time, the modified data of the CPE parameters transmitted from the smart phone is received from the antenna.
  • the LED light group is a group of multiple LED lights controlled by the GPIO of the application processor AP. It can be controlled by the application AP through the combination of several LED lights or the combination of light colors to show whether the movement of the CPE during the adjustment process is correct and whether the movement is correct In place.
  • the buzzer (or other audio device) is a device that can sound, and is also controlled by the GPIO pin of the application processor AP (if it is an audio device, the GPIO is replaced with an audio data bus such as I2S, PCM, SLIMBUS, etc.), Different sounds (or different volume levels) can be emitted according to the signal strength changes of the wireless signals received by the outdoor CPE. It prompts whether the adjustment direction is correct and whether the adjustment is in place.
  • the main function of this program is to display the signal strength of wireless signals such as 5G/4G received from the outdoor CPE transmitted from the outdoor CPE through the Bluetooth chip.
  • Some requirements of the outdoor CPE Set and adjust the parameters (such as WIFI speed limit value, the number of users allowed to access, etc.).
  • the user can input and modify these parameters.
  • the modified parameters are sent back to the application processor AP on the outdoor CPE through the Bluetooth chip to complete the modification.
  • there can also be a combination of progress bars or color blocks on the APP interface to intuitively display the wireless signal status during the outdoor CPE movement, similar to the functions of the LED on the outdoor CPE.
  • the speaker of the smartphone is used to prompt the mobile adjustment of the outdoor CPE, which is similar to the function of the buzzer on the outdoor CPE.
  • the debugging method for the outdoor CPE is as follows:
  • the Bluetooth chip is connected to the application processor AP through a serial or parallel interface; the buzzer (or other sounding device/device) is designed into the hardware circuit, and the application processor AP can pass GPIO To control; the LED light group (multiple lights) is designed into the hardware circuit, and the application processor AP can control the Bluetooth chip, buzzer and LED light group through multiple GPIO pins;
  • the staff who install the outdoor CPE start to install the outdoor CPE and move the outdoor CPE to make adjustments so that the wireless signal sent by the 4G or 5G base station is the best; the best is the signal of the received wireless signal The intensity value is the highest.
  • the application processor AP of the outdoor CPE judges whether the direction of movement is correct according to the 5G/4G signal strength data before the adjustment of the outdoor CPE and the changes in the signal strength data during the adjustment;
  • the application processor AP on the outdoor CPE uses LED lights (for example: one LED turns into two or LED yellow lights turns into blue lights) and buzzer sounds (for example: the sound changes from small to large or the sound frequency changes from low High) Wait for the reminder that the staff can continue to adjust along this moving direction.
  • LED lights for example: one LED turns into two or LED yellow lights turns into blue lights
  • buzzer sounds for example: the sound changes from small to large or the sound frequency changes from low High
  • the outdoor CPE application processor AP also uses the Bluetooth chip to send real-time outdoor CPE signal strength data to the smart phone.
  • the APP interface of the smart phone can display the real-time data of the outdoor CPE strength signal, and at the same time through some changes similar to the progress bar Display (for example: the progress bar changes from one to two) and the sound of the mobile phone speaker (for example: the human voice prompts "Signal strength ⁇ , please continue to adjust", etc.) prompting the staff to continue to adjust along this direction and feet ;
  • the application processor AP on the outdoor CPE uses LED lights (for example: LED red light on) and buzzer sounds (for example: special beeps) to remind the staff that the direction of moving the outdoor CPE is wrong, and the opposite direction is required Adjustment.
  • LED lights for example: LED red light on
  • buzzer sounds for example: special beeps
  • the outdoor CPE application processor AP also uses the Bluetooth chip to send real-time outdoor CPE signal strength data to the smart phone.
  • the APP interface of the smart phone can display the real-time data of the signal strength value received by the outdoor CPE.
  • a flashing red block is displayed on the screen (for example: a red bar on the screen is constantly flashing) and a mobile phone speaker sounds (for example: the human voice prompts "The signal has deteriorated, please adjust in the opposite direction", etc.) prompting the staff to change and adjust The direction and angle;
  • the outdoor CPE application processor AP will continuously determine the signal strength until the outdoor CPE is adjusted to the best position for the communication signal with the base station. At this time, you can use any of the following methods to prompt:
  • the application processor AP on the outdoor CPE uses LED lights (for example: LED green light on) and buzzer sounds (for example: two beeps and one short) to remind the staff to reach the best position and stop adjustment.
  • LED lights for example: LED green light on
  • buzzer sounds for example: two beeps and one short
  • the outdoor CPE application processor AP simultaneously uses the Bluetooth chip to send the stop adjustment information and real-time outdoor CPE signal strength data to the smart phone.
  • the smart phone APP interface can display the real-time data of the outdoor CPE strength signal, and pass some Similar to the progress bar and color block change display (for example: the progress bar becomes full or the green block keeps flashing) and the mobile phone speaker sounds (for example: human voice prompts "the signal strength is the best, you can stop adjusting, etc.) to remind the staff Stop the direction and angle adjustment work;
  • This application example mainly uses wireless data communication technologies such as Bluetooth chips to replace the wired data transmission technology of the network cable when installing and debugging the outdoor CPE, so that it is not necessary to disassemble the outdoor CPE shell structure or sealing plug to install the network cable.
  • This application example also uses the portability of a smart phone to facilitate adjustment by one person. At the same time, in order to improve efficiency and increase other perceptions, a buzzer/LED light reminder is added to speed up the adjustment process. Since there is no need to disassemble the outdoor CPE, the safety of the staff during work is improved, and the possibility of the components falling from a height during disassembly is also eliminated.
  • this application example has improved the traditional installation and adjustment methods, using wireless communication technologies such as Bluetooth chips to replace network cables, and using smart terminals such as smart phones to replace PCs.
  • wireless communication technologies such as Bluetooth chips to replace network cables
  • smart terminals such as smart phones to replace PCs.
  • buzzer, LED and other sound and photoelectric cooperation can not only improve the efficiency of outdoor CPE installation, but also can complete the adjustment of outdoor CPE installation by one person, saving human resources.
  • an embodiment of the present disclosure also provides a debugging device for a wireless access terminal, including: a first receiving module 71, configured to receive wireless signals when the wireless access terminal is moved.
  • the first judgment module 72 is configured to judge the highest signal strength according to the signal strength value of the wireless signal.
  • the first prompt module 73 is configured to prompt during the judgment process for debugging the wireless access terminal.
  • an embodiment of the present disclosure also provides a debugging device for a wireless access terminal, including: a second receiving module 81, configured to receive the signal strength value of the wireless signal forwarded by the wireless access terminal .
  • the second determining module 82 is configured to determine the highest signal strength according to the signal strength value of the wireless signal forwarded by the wireless access terminal.
  • the second prompting module 83 is used for prompting during the process of determining the highest signal strength for debugging the wireless access terminal.
  • an embodiment of the present disclosure also provides a wireless access terminal, including a memory, a processor, and a computer program stored in the memory and capable of running on the processor.
  • the processor executes the program when the program is executed.
  • the debugging method of the wireless access terminal includes
  • the wireless access terminal further includes a first wireless communication module, a first audio output device, and a prompt light; the first wireless communication module, the first audio output device, and the prompt light are connected to the wireless connection
  • the processor of the input terminal is electrically connected.
  • the processor of the wireless access terminal can control the first audio output device and the prompt light to complete their respective functions; and the processor of the wireless access terminal can also control the The first wireless communication module forwards the signal strength value of the received wireless signal.
  • the first wireless communication module includes a wireless short-distance data transmission chip such as a Bluetooth chip, a WIFI chip, a ZigBee chip or an infrared communication chip.
  • an embodiment of the present disclosure also provides a detection device, including a memory, a processor, and a computer program that is stored in the memory and can run on the processor.
  • a detection device including a memory, a processor, and a computer program that is stored in the memory and can run on the processor.
  • the processor executes the program, the Debugging method of wireless access terminal.
  • the detection device further includes a second wireless communication module, a second audio output device, and a display device; the second wireless communication module, the second audio output device, and the display device are all connected to the detection device.
  • the processor is electrically connected, and the second wireless communication module is configured to communicate with the first wireless communication module.
  • the processor of the detection device can control the second audio output device and the display device to complete their respective functions; and the processor of the detection device can also control the second wireless communication
  • the module receives the signal strength value of the wireless signal forwarded by the first wireless communication module, and the second wireless communication module includes a wireless short-distance data transmission chip such as a Bluetooth chip, a WIFI chip, a ZigBee chip or an infrared communication chip.
  • the detection device often uses a smart phone or other mobile smart handheld terminal.
  • the embodiments of the present disclosure also provide a computer-readable storage medium that stores computer-executable instructions, and the computer-executable instructions are used to execute the debugging method of the wireless access terminal.
  • the embodiments of the present disclosure include: receiving a wireless signal; judging the highest signal strength according to the signal strength value of the wireless signal; and prompting during the judging process for debugging the wireless access terminal.
  • prompting during the judgment process for debugging the wireless access terminal manpower can be reduced for outdoor debugging and installation of the wireless access terminal, and there is no need to access the wired connection structure of the network cable structure. This is convenient for on-site debugging and installation operations.
  • the foregoing storage medium may include, but is not limited to: U disk, Read Only Memory (ROM, Read Only Memory), Random Access Memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk, etc.
  • ROM Read Only Memory
  • RAM Random Access Memory
  • mobile hard disk magnetic disk or optical disk, etc.
  • all or some of the steps, functional modules/units in the system, and apparatus in the methods disclosed above can be implemented as software, firmware, hardware, and appropriate combinations thereof.
  • the division between functional modules/units mentioned in the above description does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may consist of several physical components. The components are executed cooperatively.
  • Some or all of the components may be implemented as software executed by a processor, such as a digital signal processor or a microprocessor, or as hardware, or as an integrated circuit, such as an application specific integrated circuit.
  • a processor such as a digital signal processor or a microprocessor
  • Such software may be distributed on a computer-readable medium, and the computer-readable medium may include a computer storage medium (or a non-transitory medium) and a communication medium (or a transitory medium).
  • the term computer storage medium includes volatile and non-volatile data implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Sexual, removable and non-removable media.
  • Computer storage media include but are not limited to RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disk (DVD) or other optical disk storage, magnetic cassettes, magnetic tapes, magnetic disk storage or other magnetic storage devices, or Any other medium used to store desired information and that can be accessed by a computer.
  • communication media usually contain computer-readable instructions, data structures, program modules, or modulated data signals such as carrier waves or other transmission mechanisms.

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Abstract

本公开实施例公开了一种无线接入终端的调试方法、装置、接入终端及检测设备,其中,所述无线接入终端的调试方法,包括:在移动所述无线接入终端时接收无线信号;根据所述无线信号的信号强度值来判断最高的信号强度;在判断过程中进行提示以供调试所述无线接入终端。

Description

无线接入终端的调试方法、装置、接入终端及检测设备
本公开要求享有2019年09月19日提交的名称为“无线接入终端的调试方法、装置、接入终端及检测设备”的中国专利申请CN201910886322.3的优先权,其全部内容通过引用并入本文中。
技术领域
本公开涉及通信技术领域,尤指一种无线接入终端的调试方法、装置、接入终端及检测设备。
背景技术
无线接入终端,是用于接收外部设备发送来的无线信号的终端,典型的如CPE,英文全称为Customer Premise Equipment,这样的无线接入终端是一种接收移动信号并以无线WIFI信号转发出来的移动信号接入设备,它也是一种将高速4G或者5G信号转换成WiFi信号的设备,可支持数量较多的移动终端同时上网。无线接入终端可分为室内和室外两种。
目前的室外的无线接入终端,一般是安装在电线杆或高建筑物的外墙等较高的地方。在安装时,由于无线接入终端的信号接收要求,需要将如CPE这样的无线接入终端在一定的方向和角度上进行调试,来找到能接收如4G或5G基站这样的外部设备发送来的信号强度最高的安装位置。传统的调试方式是用一根网线,一端连接在无线接入终端上,另一端连接在PC机或笔记本上。调试时需要两个人配合,一人查看无线接入终端传递到PC机上的信号强度,一人调整无线接入终端的方向和角度,以此通过两人配合来把所述无线接入终端调整到所述最佳的安装位置进行安装。
这样需要两人配合来进行调试安装无线接入终端的方式,耗费人力,加上网线连接下的调试结构也不方便现场操作。
发明内容
本公开实施例提供了一种无线接入终端的调试方法、装置、接入终端及检测设备,以减少人力来进行室外调试安装无线接入终端,具有便于现场调试安装操作的优点。
本公开实施例提供了一种无线接入终端的调试方法,包括:在移动所述无线接入终端 时接收无线信号;根据所述无线信号的信号强度值来判断最高的信号强度;在判断过程中进行提示以供调试所述无线接入终端。
本公开实施例还提供了一种无线接入终端的调试方法,包括:接收所述无线接入终端转发来的所述无线信号的信号强度值;根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度;在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
本公开实施例还提供一种无线接入终端的调试装置,包括:第一接收模块,用于在移动所述无线接入终端时接收无线信号;第一判断模块,用于根据所述无线信号的信号强度值来判断最高的信号强度;第一提示模块,用于在判断过程中进行提示以供调试所述无线接入终端。
本公开实施例还提供一种无线接入终端的调试装置,包括:第二接收模块,用于接收所述无线接入终端转发来的所述无线信号的信号强度值;第二判断模块,用于根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度;第二提示模块,用于在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
本公开实施例还提供一种无线接入终端,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现所述无线接入终端的调试方法。
本公开实施例还提供一种检测设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现所述无线接入终端的调试方法。
本公开实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行所述无线接入终端的调试方法。
本公开的特征和优点将在随后的说明书中阐述,并且,部分地从说明书中变得显而易见,或者通过实施本公开而了解。本公开的目的和其他优点可通过在说明书、权利要求书以及附图中所特别指出的结构来实现和获得。
附图说明
图1为本公开实施例的一种无线接入终端的调试方法的流程图;
图2为本公开实施例的根据所述无线信号的信号强度值来判断最高的信号强度的流程图;
图3为本公开实施例的在判断过程中进行提示以供调试所述无线接入终端的流程图;
图4为本公开实施例的一种提示音的关系图;
图5为本公开实施例的亮度提示的关系图;
图6为本公开实施例的另一种无线接入终端的调试方法的流程图;
图7为本公开实施例的根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度的流程图;
图8为本公开实施例的在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端的流程图;
图9为本公开实施例的另一种提示音的关系图;
图10为本公开实施例的提示信息的关系图;
图11为本公开实施例的一种无线接入终端的调试装置的结构图;
图12为本公开实施例的另一种无线接入终端的调试装置的结构图;
图13为本公开实施例的一种无线接入终端的结构图;
图14为本公开实施例的一种检测设备的结构图;
图15为本公开实施例的一个应用实例的结构图。
具体实施方式
下文中将结合附图对本公开的实施例进行详细说明。
在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的计算机系统中执行。并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
室外的无线接入终端,就如室外的CPE,其是伴随着4G无线数据高速率的发展,最近几年出线的新产品形式,其主要目的增强WIFI的覆盖,扩展室外高速无线上网的需求。
在目前现有的室外的无线接入终端安装中,都是采用网线+PC机/笔记本(网线分别连接PC机和的无线接入终端)的方式,来对室外的无线接入终端进行设置和安装方向、角度的调整。这种方式在安装时,需要有网线和PC机,且需要在调整的过程中实时通过PC机查看的无线接入终端的信号强度,所以需要两个人进行配合调整。需要携带的东西多而且安装调整的时间也比较长,调整的过程中也没有提示调整的方向等。而且,室外的无线接入终端都有极高的防水,防尘的要求,网口一般都设计在结构件里面或用密封塞子密封 严实。在安装调整时,由于必须要接网线,需要拆开结构件或去掉密封塞子。调整完成后,又需要再安装好结构件或将塞子塞回。这个拆卸和装回的过程,都是在电线杆上或外墙处搭梯子在高处完成,极其不安全,也容易掉落结构件或螺钉等。同时,这种安装调整的效率也比较低下。
针对上述情况,本公开实施例提出一种无线接入终端的调试方法,通过在判断过程中进行提示以供调试所述无线接入终端的方式,就能减少人力来进行室外调试安装无线接入终端,并且无需接入网线结构的有线连接结构这样便于现场调试安装操作。
如图1所示,本公开实施例的无线接入终端的调试方法,包括如下步骤:步骤101,在移动所述无线接入终端时接收无线信号。其中,所述接收无线信号是在室外安装所述无线接入终端时,让所述无线接入终端接收外部设备发射的无线信号,所述无线接入设备能够是无线路由器、无线交换机或者无线CPE这样的无线接入设备。而外部设备能够是无线发射机、4G基站或者5G基站这样的发射无线信号来接入所述无线接入终端的外部设备。在室外安装所述无线接入终端往往是在室外的电线杆,抱杆,大楼外墙或者铁塔等高建筑物的某设定高度上。所述移动的方式是在所述设定高度上水平旋转或转动。步骤102,根据所述无线信号的信号强度值来判断最高的信号强度。在该步骤中,所述无线接入终端获取所述无线信号的信号强度值的方式可以是:在所述无线接入终端的天线接收到无线信号后,所述无线接入终端的射频模块将该无线信号由模拟信号转换为数字信号,即射频模块进行ADC转换,然后由所述无线接入终端的调制解调器解析出该信号的信号强度值。根据所述无线信号的信号强度值来判断最高的信号强度,判断出最高的信号强度时所述无线接入终端的姿势和位置就是其安装位置,这样能够保证接收到所述外部设备发送来的无线信号最佳。步骤103,在判断过程中进行提示以供调试所述无线接入终端。其中,所述无线接入终端自身进行判断并进行提示来调试所述无线接入终端,这样就只需一个人根据提示来进行对所述无线接入终端的调整。需要携带的东西少而且安装调整的时间也短。而且在安装调整时不必接网线,也就不需要拆开结构件或去掉密封塞子。调整完成后,也没必要再安装好结构件或将塞子塞回。提高了安全性,也就不会掉落结构件或螺钉等。同时,这种安装调整的效率也高。
如图2所示,在一实施例中,根据所述无线信号的信号强度值来判断最高的信号强度,包括:步骤201,从接收到第二个所述无线信号开始,依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较。步骤202,如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就继续依次把后续接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较。步 骤203:如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就把该前一个接收到的无线信号的信号强度值作为最高的信号强度。
在该步骤中,伴随着移动所述无线接入终端,依次对比当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值。以此得到最高的信号强度,这样的方式简单且高效。
如图3所示,在一实施例中,所述在判断过程中进行提示以供调试所述无线接入终端,包括:步骤301,在所述依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较时,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就提示移动调整所述无线接入终端的方向正确。步骤302,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就提示移动调整所述无线接入终端的方向错误。步骤303,如果所述当前无线信号的信号强度值为所述最高的信号强度,就提示停止移动所述无线接入终端。
在该步骤中,在移动所述无线接入终端过程中,通过提示移动调整所述无线接入终端的方向正确、提示移动调整所述无线接入终端的方向错误以及提示停止移动所述无线接入终端,就能仅须让一个工作人员得到这样的提示就能根据提示信息来调整移动所述无线接入终端的方式,比如,在提示移动调整所述无线接入终端的方向正确的情况下,该工作人员就能继续保持该移动方向来调整所述无线接入终端的姿势和位置;在提示移动调整所述无线接入终端的方向错误的情况下,该工作人员就能反向移动来调整所述无线接入终端的姿势和位置;在提示停止移动所述无线接入终端的情况下,该工作人员就能停止移动所述无线接入终端;如此提示的方式就能让该工作人员一个人在室外设定的高度上完成所述无线接入终端的调试过程,节约了人力,也无需用网线连接这样的有线连接结构来加入人手来进行观察调试,提高了安全性,同时也提高了调试所述无线接入终端的效率。
如图4所示,在一实施例中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过第一音频输出设备来发出相互之间有区别的第一提示音、第二提示音以及第三提示音。
在本实施例中,根据所述第一音频输出设备发出的第一提示音、第二提示音以及第三提示音,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第一提示音、第二提示音或者第三提示音来分别进行继续保持原移动方向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述第一音频 输出设备可以为喇叭、蜂鸣器、功放机或者音箱,所述第一提示音可以设定为音频的强度或音频的频率是由低到高的音频;所述第二提示音可以设定为音频的强度或音频的频率是由高到低的音频;所述第三提示音可以设定为按照特定频率变化的音频,比如两短一长的频率变化的音频;也可以采用其它互相有区别的比如高音量的滴滴声、中音量的滴滴声和低音量的滴滴声这样的三种音频来分别设定所述第一提示音、第二提示音以及第三提示音。用音频提示的方式就能让工作人员一个人在室外设定的高度上根据听到的提示音来完成所述无线接入终端的调试过程,节约了人力。
如图5所示,在一实施例中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过提示灯来发出相互之间有区别的第一亮度提示、第二亮度提示以及第三亮度提示。
在本实施例中,根据所述提示灯发出的第一亮度提示、第二亮度提示以及第三亮度提示,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第一亮度提示、第二亮度提示或者第三亮度提示来分别进行继续保持原移动方向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述提示灯可以为信号灯或者LED灯,所述提示灯的数量能够是若干个并且能够分别是颜色有别的提示灯,比如红色的提示灯、黄色的提示灯以及绿色的提示灯,所述第一亮度提示可以设定为点亮红色的提示灯;所述第二亮度提示可以设定为点亮黄色的提示灯;所述第三亮度提示可以设定为点亮绿色的提示灯;也可以采用其它互相有区别比如点亮一个提示灯、点亮两个提示灯和点亮三个提示灯这样的三种亮度提示来分别设定所述第一亮度提示、第二亮度提示以及第三亮度提示。用亮度提示的方式就能让工作人员一个人在室外设定的高度上根据看到的亮度提示来完成所述无线接入终端的调试过程,节约了人力。
在一实施例中,所述无线接入终端把接收到的所述无线信号的信号强度值实时转发到所述检测设备中。
在本实施例中,所述检测设备接收到所述无线信号后,也能进行处理来进一步提示工作人员进行调试操作。
如图6所示,本公开实施例的另一种无线接入终端的调试方法,包括:步骤401,接收所述无线接入终端转发来的所述无线信号的信号强度值。步骤402,根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度。步骤403,在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
在该步骤中,这样就不单纯依赖于所述无线接入终端来进行判断最高的信号强度和在判断过程中进行提示以供调试所述无线接入终端,能够降低所述无线接入终端的处理资源在所述判断最高的信号强度和在判断过程中进行提示以供调试所述无线接入终端的资源消耗;也能够起到在所述无线接入终端判断失灵或出现故障的时候,也可继续采用该另一种无线接入终端的调试方法来调试所述无线接入终端,使得在运用方面更可靠。
如图7所示,在一实施例中,所述根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度,包括:步骤501,从接收到所述无线接入终端转发来的第二个所述无线信号开始,依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较。步骤502,如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就继续依次把后续接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较。步骤503:如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就把该前一个接收到的无线信号的信号强度值作为最高的信号强度。
在该步骤中,伴随着所述无线接入终端转发来的无线信号的信号强度值,依次对比当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值。以此得到最高的信号强度,这样的方式简单且高效。
如图8所示,在一实施例中,所述在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端,包括:步骤601,在所述依次把接收到由所述无线接入终端转发来的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较时,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就提示移动调整所述无线接入终端的方向正确。步骤602,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就提示移动调整所述无线接入终端的方向错误。步骤603,如果所述当前无线信号的信号强度值为所述最高的信号强度,就提示停止移动所述无线接入终端。
在该步骤中,在接收到由所述无线接入终端转发来的无线信号的信号强度值和在判断最高的信号强度的过程中,通过提示移动调整所述无线接入终端的方向正确、提示移动调整所述无线接入终端的方向错误以及提示停止移动所述无线接入终端,就能仅须让一个工作人员得到这样的提示就能根据提示信息来调整移动所述无线接入终端的方式,比如,在提示移动调整所述无线接入终端的方向正确的情况下,该工作人员就能继续保持该移动方向来调整所述无线接入终端的姿势和位置;在提示移动调整所述无线接入终端的方向错误的情况下,该工作人员就能反向移动来调整所述无线接入终端的姿势和位置;在提示 停止移动所述无线接入终端的情况下,该工作人员就能停止移动所述无线接入终端;如此提示的方式就能让该工作人员一个人在室外设定的高度上完成所述无线接入终端的调试过程,节约了人力,也无需用网线连接这样的有线连接结构来加入人手来进行观察调试,提高了安全性,同时也提高了调试所述无线接入终端的效率。
如图9所示,在一实施例中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过第二音频输出设备来发出相互之间有区别的第四提示音、第五提示音以及第六提示音。
在本实施例中,根据所述第二音频输出设备发出的第四提示音、第五提示音以及第六提示音,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第四提示音、第五提示音或者第六提示音来分别进行继续保持原移动方向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述第二音频输出设备可以为检测设备的喇叭,所述第四提示音可以设定为音频的强度或音频的频率是由低到高的音频;所述第五提示音可以设定为音频的强度或音频的频率是由高到低的音频;所述第六提示音可以设定为按照特定频率变化的音频,比如两短一长的频率变化的音频;也可以采用其它互相有区别的比如高音量的滴滴声、中音量的滴滴声和低音量的滴滴声这样的三种音频来分别设定所述第四提示音、第五提示音以及第六提示音,还可以采用比如中文发声“方向正确,请继续保持该方向移动无线接入终端调试”、中文发声“方向错误,请反向移动无线接入终端调试”和中文发声“已到达最高的信号强度的安装位置,请停止移动无线接入终端”这样的三种音频来分别设定所述第四提示音、第五提示音以及第六提示音。用音频提示的方式就能让工作人员一个人在室外设定的高度上根据听到的提示音来完成所述无线接入终端的调试过程,节约了人力。
如图10所示,在一实施例中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过显示设备来显示出相互之间有区别的第一提示信息、第二提示信息以及第三提示信息。
在本实施例中,根据所述显示设备显示的第一提示信息、第二提示信息以及第三提示信息,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第一提示信息、第二提示信息以及第三提示信息来分别进行继续保持原移动方向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和 位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述显示设备可以为检测设备的液晶屏或者显示屏,所述第一提示信息可以设定为颜色块的颜色是由浅到深变化的颜色块;所述第二提示信息可以设定为颜色块的颜色是由深到浅变化的颜色块;所述第三提示信息可以设定为颜色块的颜色显示是闪烁状态的;也可以采用其它互相有区别的比如进度条向左移动、进度条向右移动和进度条向右移动到头这样的三种进度条的变化来分别设定所述第一提示信息、第二提示信息以及第三提示信息。用所述显示设备显示的第一提示信息、第二提示信息以及第三提示信息的方式就能让工作人员一个人在室外设定的高度上根据看到的提示信息来完成所述无线接入终端的调试过程,节约了人力。
在一实施例中,所述显示设备还实时显示由所述无线接入终端转发来的无线信号的信号强度值。
在本实施例中,这样实时显示由所述无线接入终端转发来的无线信息的信号强度值,就能让工作人员能更直观清楚的看到所述无线接入终端接收到的无线信号的信号强度值,更利于调试工作。
综上所述,在本公开实施例中,通过在判断过程中进行提示以供调试所述无线接入终端的方式,就能减少人力来进行室外调试安装无线接入终端,并且无需接入网线结构的有线连接结构这样便于现场调试安装操作。而且在安装调整时不必接网线,也就不需要拆开结构件或去掉密封塞子。调整完成后,也没必要再安装好结构件或将塞子塞回。提高了安全性,也就不会掉落结构件或螺钉等。同时,这种安装调整的效率也高。
下面以一应用实例进行说明。在应用实例中,将室外CPE用作无线接入终端。
随着4G和5G的发展和推广,无线数据速率越来越高。随着智能手机等的发展,无线数据的需求也越来越大。传统的有线CPE也慢慢被无线CPE所取代。而且随着5G技术的推进,室外CPE的需求也越来越多。
室外CPE是对5G无线终端的一个很好的补充,在大型办公场所,体育馆,展览馆等公共场所,能让更多的人通过WIFI等接入5G网络,享受5G高速率。室外CPE是5G设备的一个发展方向,而室外CPE的安装方式的改进,也是未来产品提升竞争力的一个方向。因为CPE不仅仅是产品本身,其安装调试也是很重要的一面,体现了售后服务设计能力。
该应用实例主要应用环境是针对室外5G和4G制式CPE产品的安装调试上。例如,电线杆,抱杆,大楼外墙,铁塔等高建筑物和公众场合进行对室外CPE的安装。可以提升安装的效率降低安装难度,减少工作人员需求降低人员成本。同时也可以提高安装时的安全性。
在该应用实例中,室外CPE的主板内需要内置一颗作为第一无线通信模块的蓝牙芯片,这颗蓝牙芯片可以单独存在或与WIFI芯片等集成在一起的形式出现。蓝牙芯片通过I2C/UART/SPI等串行或并行数据接口与室外CPE的作为所述室外CPE的处理器的应用处理器AP主芯片连接,应用处理器AP可以将室外CPE接收的无线信号强度,内部参数等信息通过串行或并行接口与蓝牙芯片进行发送和接收。
室外CPE的主板上还需要内置一个作为第一音频输出设备的蜂鸣器(或其他音频设备),这个蜂鸣器可以受应用处理器AP的一个或几个GPIO(通用输入输出)控制,来根据室外CPE接收到的不同信号强度发出不同频率或响度的声音。例如,声音从小到大变化,表示室外CPE移动的过程中,无线信号越来越好。当调整到最佳位置后,蜂鸣器发出特定频率的声音(如一长一短的滴滴声)表示调整到位。如果调整的方向错误,蜂鸣器发出比较尖锐的滴滴声进行提示。
室外CPE内部还设计有多个作为指示灯的单色或多色LED灯,应用处理器AP通过GPIO引脚来控制这些LED灯显示室外CPE当前的信号强度状态,比如:所述LED灯的数量能够是若干个并且能够分别是颜色有别的LED灯,比如红色的LED灯、黄色的LED灯以及绿色的LED灯,所述第一亮度提示可以设定为点亮红色的LED灯;所述第二亮度提示可以设定为点亮黄色的LED灯;所述第三亮度提示可以设定为点亮绿色的LED灯;也可以采用其它互相有区别比如点亮一个LED灯、点亮两个LED灯和点亮三个LED灯这样的三种亮度提示来分别设定所述第一亮度提示、第二亮度提示以及第三亮度提示。用亮度提示的方式就能让工作人员一个人在室外设定的高度上根据看到的亮度提示来完成所述无线接入终端的调试过程,节约了人力。
为了在调整室外CPE的过程中,实时监测无线信号强度,使用了智能手机来进行。智能手机通过蓝牙通讯协议与室外CPE进行数据通讯链接,室外CPE接收到的无线信号的信号强度值可通过蓝牙数据通道发送到智能手机上。智能手机上可以通过一个APP(应用程序)来显示这个信号强度数据。此外,为了方便对室外CPE的参数进行监控和调整,APP上还可以显示一些需要工作人员调整的数据(如最高速率限制,用户接入数限制)等。工作人员在APP上调整好数据后,智能手机通过蓝牙协议将数据发送到室外CPE上,室外CPE的应用处理器AP接收到数据后,将数据写入内部存储器,完成调整。同样,在室外CPE移动调整过程中,智能手机的APP也可以通过颜色块/进度条/手机声音等来提示调整时的信号强度状态。例如:用根据所述手机的喇叭发出的第四提示音、第五提示音以及第六提示音,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第四提示音、第五提示音或者第六提示音来分别进行继续保持原移动方 向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述第四提示音可以设定为音频的强度或音频的频率是由低到高的音频;所述第五提示音可以设定为音频的强度或音频的频率是由高到低的音频;所述第六提示音可以设定为按照特定频率变化的音频,比如两短一长的频率变化的音频;也可以采用其它互相有区别的比如高音量的滴滴声、中音量的滴滴声和低音量的滴滴声这样的三种音频来分别设定所述第四提示音、第五提示音以及第六提示音,还可以采用比如中文发声“方向正确,请继续保持该方向移动无线接入终端调试”、中文发声“方向错误,请反向移动无线接入终端调试”和中文发声“已到达最高的信号强度的安装位置,请停止移动无线接入终端”这样的三种音频来分别设定所述第四提示音、第五提示音以及第六提示音。用音频提示的方式就能让工作人员一个人在室外设定的高度上一手拿着手机,一手移动室外CPE,根据听到的提示音来完成所述室外CPE的调试过程,节约了人力。可以更好的提升调整的效率。还能够根据所述智能手机的显示屏显示的第一提示信息、第二提示信息以及第三提示信息,在室外设定的高度位置上调试安装所述无线接入终端时,就只需一个工作人员就能根据所述第一提示信息、第二提示信息以及第三提示信息来分别进行继续保持原移动方向来调整所述无线接入终端的姿势和位置、反向移动来调整所述无线接入终端的姿势和位置或者停止移动所述无线接入终端,由此实现调试所述无线接入终端的任务,所述第一提示信息可以设定为颜色块的颜色是由浅到深变化的颜色块;所述第二提示信息可以设定为颜色块的颜色是由深到浅变化的颜色块;所述第三提示信息可以设定为颜色块的颜色显示是闪烁状态的;也可以采用其它互相有区别的比如进度条向左移动、进度条向右移动和进度条向右移动到头这样的三种进度条的变化来分别设定所述第一提示信息、第二提示信息以及第三提示信息。用所述显示设备显示的第一提示信息、第二提示信息以及第三提示信息的方式就能让工作人员一个人在室外设定的高度上根据看到的提示信息来完成所述无线接入终端的调试过程,节约了人力。
如图15所示,该应用实例具体如下:该应用实例的硬件架构包括两个部分,一个是包括有蓝牙芯片、蜂鸣器和LED灯的室外CPE,一个是带有APP的智能手机。
室外CPE中,除了传统常用的室外CPE功能部分硬件电路外,增加了蓝牙芯片,蜂鸣器等。另外,还扩展了增加了LED灯(传统的室外CPE上的LED灯显示5G/4G是否在线,WIFI在线,有线网口在线,电源灯等)。
在本应用实例,蓝牙芯片的功能主要是负责和应用处理器AP通过I2C或SPI/UART等串行或并行接口进行数据通讯,并将应用处理器AP得到的室外CPE接收到的无线信号 的信号强度值/室外CPE参数等数据通过天线发送到智能手机上。同时,从天线处接收从智能手机上传送过来的对CPE参数的修改数据。
LED灯组是一组受应用处理器AP的GPIO控制多个LED灯,可以由应用AP控制通过几个LED灯的组合或灯颜色的组合来显示CPE在调整过程中的移动是否正确和移动是否到位。
蜂鸣器(或其他音频设备)是可以发声的器件,也受应用处理器AP的GPIO引脚(如果是音频设备,GPIO更换为如I2S、PCM、SLIMBUS这样的音频数据总线等)的控制,可以根据室外CPE接收到的无线信号的信号强度变化发出不同的声音(或不同音量大小)。提示调整的方向是否正确,调整是否到位。
智能手机上需要先安装一个APP应用程序,这个程序的主要功能是可以显示从室外CPE通过蓝牙芯片传送过来的室外CPE接收到的如5G/4G这样的无线信号的信号强度,室外CPE的一些需要设置和调整的参数(如WIFI限速值,允许接入的用户数等)。同时,在这APP的界面上,用户可以输入、修改这些参数。修改的参数通过蓝牙芯片,回传给室外CPE上的应用处理器AP完成修改。同时,APP的界面上还可以有进度条或颜色块的组合,直观地显示室外CPE移动过程中无线信号的状况,类似于室外CPE上的LED等的功能。APP在界面上显示的同时,使用智能手机的喇叭来对移动调整室外CPE过程中进行提示,类似于室外CPE上蜂鸣器的功能。
通过室外CPE上LED灯组,蜂鸣器,智能手机上APP界面显示,喇叭等组合功能提示和提醒,能全方位地帮助安装室外CPE的工作人员提升安装效率,也能确保一个人即可完成安装。
对所述室外CPE的调试方法如下:
1、室外CPE在设计中,将蓝牙芯片通过串行或并行接口连接到应用处理器AP上;蜂鸣器(或其他发声器件/装置)设计到硬件电路中,并且应用处理器AP可以通过GPIO来进行控制;LED灯组(多个灯)设计到硬件电路中,并且应用处理器AP可以通过多个GPIO引脚来进行对蓝牙芯片、蜂鸣器以及LED灯组的控制;
2、软件开发设计APP应用程序,该程序要在智能手机上能显示出转发来的无线信号的信号强度值,其他参数的设置信息,进度条,颜色块等;同时能控制智能手机的喇叭发声,提示安装室外CPE的工作人员室外CPE接收到的无线信号的信号状态;
3、安装室外CPE的工作人员开始安装室外CPE,并移动室外CPE来进行调整,使得其接收到的4G或5G基站发送来的无线信号达到最佳;该最佳就是接收到的无线信号的信号强度值最高。
4、室外CPE的应用处理器AP根据室外CPE的调整前的5G/4G信号强度数据和调整中的信号强度数据的变化,判断移动的方向是否正确;
5、如果移动的方向是正确的,可以用如下任意一种方式提示:
一:室外CPE上的应用处理器AP利用LED灯(例如:一个LED变成两个或LED黄灯变成蓝灯)和蜂鸣器声音(例如:声音由小变大或声音频率由低变高)等提示工作人员可以沿这个移动方向继续调整下去。
二:室外CPE的应用处理器AP同时用蓝牙芯片将实时的室外CPE信号强度数据发送到智能手机上,智能手机的APP界面可以显示室外CPE强度信号的实时数据,同时通过一些类似进度条的变化显示(例如:进度条由一格变成两格)和手机喇叭发声(例如:人声提示“信号强度××××,请继续调整”等)提示工作人员可以沿这个方向和脚继续调整下去;
6、如果移动的方向是错误的,可以用如下任意一种方式提示:
一:室外CPE上的应用处理器AP利用LED灯(例如:LED红灯亮)和蜂鸣器声音(例如:发出特殊的滴滴声)等提示工作人员移动室外CPE的方向错误,需反方向调整。
二:室外CPE的应用处理器AP同时用蓝牙芯片将实时的室外CPE信号强度数据发送到智能手机上,智能手机的APP界面可以显示室外CPE接收到的信号强度值的实时数据,同时在智能手机的屏幕上显示一个不断闪动的红色块(例如:屏幕上一个红色条不断闪动)和手机喇叭发声(例如:人声提示“信号变差,请反方向调整”等)提示工作人员转变调整的方向和角度;
7、在按正确的方向调整过程中,室外CPE的应用处理器AP会不断判断信号强度的大小,直到室外CPE调整到与基站通讯信号最佳的位置上。此时,可以用如下任意一种方式提示:
一:室外CPE上的应用处理器AP利用LED灯(例如:LED绿灯亮)和蜂鸣器声音(例如:滴滴声两长一短)等提示工作人员达到最佳位置,停止调整。
二:室外CPE的应用处理器AP同时用蓝牙芯片将这个停止调整的信息和实时的室外CPE信号强度数据发送到智能手机上,智能手机APP界面可以显示室外CPE强度信号的实时数据,同时通过一些类似进度条和颜色块的变化显示(例如:进度条变满格或绿色块不停闪动)和手机喇叭发声(例如:人声提“示信号强度最佳,可以停止调整等)提示工作人员停止方向和角度调整工作;
8、停止移动室外CPE,将室外CPE保持在此时的姿势和位置在电线杆和外墙上用螺栓固定好。
本应用实例主要是在安装调试室外CPE时,利用蓝牙芯片等无线数据通讯技术,取代了网线这种有线数据传送技术,这样可以不用再拆卸室外CPE的外壳结构件或密封塞子安装网线。本应用实例还利用智能手机的便携性,方便一个人进行调整。同时为了提升效率,增加其他感知性,增加了蜂鸣器/LED灯的提示,来加快调整的过程。由于不用对室外CPE进行拆卸,提升了总过人员工作时的安全性,也消除了拆卸时组件从高处掉落的可能性。这样,本应用实例对传统的安装调整方式进行了改进,利用蓝牙芯片等无线通讯技术替代网线,利用智能手机等智能终端替代PC机。同时,利用蜂鸣器,LED等声光电的配合,不但可以提高安装室外CPE的效率,更可以一人完成安装室外CPE的调整,节省了人力资源。
如图11所示,本公开实施例还提供一种无线接入终端的调试装置,包括:第一接收模块71,用于在移动所述无线接入终端时接收无线信号。第一判断模块72,用于根据所述无线信号的信号强度值来判断最高的信号强度。第一提示模块73,用于在判断过程中进行提示以供调试所述无线接入终端。
在本公开实施例中,通过在判断过程中进行提示以供调试所述无线接入终端的方式,就能减少人力来进行室外调试安装无线接入终端,并且无需接入网线结构的有线连接结构这样便于现场调试安装操作。
如图12所示,本公开实施例还提供一种无线接入终端的调试装置,包括:第二接收模块81,用于接收所述无线接入终端转发来的所述无线信号的信号强度值。第二判断模块82,用于根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度。第二提示模块83,用于在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
这样就不单纯依赖于所述无线接入终端来进行判断最高的信号强度和在判断过程中进行提示以供调试所述无线接入终端,能够降低所述无线接入终端的处理资源在所述判断最高的信号强度和在判断过程中进行提示以供调试所述无线接入终端的资源消耗;也能够起到在所述无线接入终端判断失灵或出现故障的时候,也可继续采用该另一种无线接入终端的调试方法来调试所述无线接入终端,使得在运用方面更可靠。
如图13所示,本公开实施例还提供一种无线接入终端,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现所述无线接入终端的调试方法。
在一实施例中,所述无线接入终端还包括第一无线通信模块、第一音频输出设备以及提示灯;所述第一无线通信模块、第一音频输出设备以及提示灯与所述无线接入终端的处 理器电连接。
在本实施例中,通过所述无线接入终端的处理器就能控制所述第一音频输出设备以及提示灯完成各自相应的功能;而所述无线接入终端的处理器还能控制所述第一无线通信模块来把接收到的无线信号的信号强度值转发出去,所述第一无线通信模块包括蓝牙芯片,WIFI芯片,ZigBee芯片或者红外通信芯片等无线短距离数据传送芯片。
如图14所示,本公开实施例还提供一种检测设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现所述无线接入终端的调试方法。
在一实施例中,所述检测设备还包括第二无线通信模块、第二音频输出设备以及显示设备;所述第二无线通信模块、第二音频输出设备以及显示设备均与所述检测设备的处理器电连接,所述第二无线通信模块用于与所述第一无线通信模块相通信连接。
在本实施例中,通过所述检测设备的处理器就能控制所述第二音频输出设备以及显示设备完成各自相应的功能;而所述检测设备的处理器还能控制所述第二无线通信模块接收所述第一无线通信模块转发来的无线信号的信号强度值,所述第二无线通信模块包括蓝牙芯片,WIFI芯片,ZigBee芯片或者红外通信芯片等无线短距离数据传送芯片。所述检测设备常常使用智能手机或其他移动智能手持终端。
本公开实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行所述无线接入终端的调试方法。
本公开实施例包括:接收无线信号;根据所述无线信号的信号强度值来判断最高的信号强度;在判断过程中进行提示以供调试所述无线接入终端。在本公开实施例中,通过在判断过程中进行提示以供调试所述无线接入终端的方式,就能减少人力来进行室外调试安装无线接入终端,并且无需接入网线结构的有线连接结构这样便于现场调试安装操作。
在本实施例中,上述存储介质可以包括但不限于:U盘、只读存储器(ROM,Read Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。本领域普通技术人员可以理解,上文中所公开方法中的全部或某些步骤、系统、装置中的功能模块/单元可以被实施为软件、固件、硬件及其适当的组合。在硬件实施方式中,在以上描述中提及的功能模块/单元之间的划分不一定对应于物理组件的划分;例如,一个物理组件可以具有多个功能,或者一个功能或步骤可以由若干物理组件合作执行。某些组件或所有组件可以被实施为由处理器,如数字信号处理器或微处理器执行的软件,或者被实施为硬件,或者被实施为集成电路,如专用集成电路。这样的软件可以分布在计算机可读介质上,计算机可读介质可以包括计算机存储介质(或 非暂时性介质)和通信介质(或暂时性介质)。如本领域普通技术人员公知的,术语计算机存储介质包括在用于存储信息(诸如计算机可读指令、数据结构、程序模块或其他数据)的任何方法或技术中实施的易失性和非易失性、可移除和不可移除介质。计算机存储介质包括但不限于RAM、ROM、EEPROM、闪存或其他存储器技术、CD-ROM、数字多功能盘(DVD)或其他光盘存储、磁盒、磁带、磁盘存储或其他磁存储装置、或者可以用于存储期望的信息并且可以被计算机访问的任何其他的介质。此外,本领域普通技术人员公知的是,通信介质通常包含计算机可读指令、数据结构、程序模块或者诸如载波或其他传输机制之类的调制数据信号。

Claims (19)

  1. 一种无线接入终端的调试方法,包括:
    在移动所述无线接入终端时接收无线信号;
    根据所述无线信号的信号强度值来判断最高的信号强度;
    在判断过程中进行提示以供调试所述无线接入终端。
  2. 根据权利要求1所述的无线接入终端的调试方法,其中,根据所述无线信号的信号强度值来判断最高的信号强度,包括:从接收到第二个所述无线信号开始,依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较;
    如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就继续依次把后续接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较;
    如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就把该前一个接收到的无线信号的信号强度值作为最高的信号强度。
  3. 根据权利要求2所述的无线接入终端的调试方法,其中,所述在判断过程中进行提示以供调试所述无线接入终端,包括:
    在所述依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较时,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就提示移动调整所述无线接入终端的方向正确;
    如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就提示移动调整所述无线接入终端的方向错误;
    如果所述当前无线信号的信号强度值为所述最高的信号强度,就提示停止移动所述无线接入终端。
  4. 根据权利要求3所述的无线接入终端的调试方法,其中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过第一音频输出设备来发出相互之间有区别的第一提示音、第二提示音以及第三提示音。
  5. 根据权利要求3所述的无线接入终端的调试方法,其中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过提示灯来发出相互之间有区别 的第一亮度提示、第二亮度提示以及第三亮度提示。
  6. 根据权利要求1所述的无线接入终端的调试方法,其中,所述无线接入终端把接收到的所述无线信号的信号强度值实时转发到检测设备中。
  7. 一种无线接入终端的调试方法,包括:接收所述无线接入终端转发来的所述无线信号的信号强度值;根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度;在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
  8. 根据权利要求7所述的无线接入终端的调试方法,其中,所述根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度,包括:
    从接收到所述无线接入终端转发来的第二个所述无线信号开始,依次把接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较;
    如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就继续依次把后续接收到的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较;
    如果当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就把该前一个接收到的无线信号的信号强度值作为最高的信号强度。
  9. 根据权利要求8所述的无线接入终端的调试方法,其中,所述在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端,包括:
    在所述依次把接收到由所述无线接入终端转发来的当前无线信号的信号强度值和其前一个接收到的无线信号的信号强度值进行比较时,如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值高,就提示移动调整所述无线接入终端的方向正确;
    如果所述当前无线信号的信号强度值比前一个接收到的无线信号的信号强度值低,就提示移动调整所述无线接入终端的方向错误;
    如果所述当前无线信号的信号强度值为所述最高的信号强度,就提示停止移动所述无线接入终端。
  10. 根据权利要求9所述的无线接入终端的调试方法,其中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过第二音频输出设备来发出相互 之间有区别的第四提示音、第五提示音以及第六提示音。
  11. 根据权利要求9所述的无线接入终端的调试方法,其中,所述提示移动调整所述无线接入终端的方向正确的方式、提示移动调整所述无线接入终端的方向错误的方式以及提示停止移动所述无线接入终端的方式分别为通过显示设备来显示出相互之间有区别的第一提示信息、第二提示信息以及第三提示信息。
  12. 根据权利要求11所述的无线接入终端的调试方法,其中,所述显示设备还实时显示由所述无线接入终端转发来的无线信号的信号强度值。
  13. 一种无线接入终端的调试装置,其中,包括:
    第一接收模块,用于在移动所述无线接入终端时接收无线信号;
    第一判断模块,用于根据所述无线信号的信号强度值来判断最高的信号强度;
    第一提示模块,用于在判断过程中进行提示以供调试所述无线接入终端。
  14. 一种无线接入终端的调试装置,其中,包括:
    第二接收模块,用于接收所述无线接入终端转发来的所述无线信号的信号强度值;
    第二判断模块,用于根据所述无线接入终端转发来的所述无线信号的信号强度值来判断最高的信号强度;
    第二提示模块,用于在判断最高的信号强度的过程中进行提示以供调试所述无线接入终端。
  15. 一种无线接入终端,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其中,所述处理器执行所述程序时实现权利要求1~6中任意一项所述无线接入终端的调试方法。
  16. 根据权利要求15所述的无线接入终端,其中,所述无线接入终端还包括第一无线通信模块、第一音频输出设备以及提示灯;
    所述第一无线通信模块、第一音频输出设备以及提示灯与所述无线接入终端的处理器电连接。
  17. 一种检测设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其中,所述处理器执行所述程序时实现权利要求7~12中任意一项所述无线接入终端的调试方法。
  18. 根据权利要求17所述的无线接入终端,其中,所述检测设备还包括第二无线通 信模块、第二音频输出设备以及显示设备;
    所述第二无线通信模块、第二音频输出设备以及显示设备均与所述检测设备的处理器电连接,所述第二无线通信模块用于与所述第一无线通信模块相通信连接。
  19. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1~12中任意一项所述无线接入终端的调试方法。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113473486A (zh) * 2021-07-13 2021-10-01 蒋溢 一种端边协同的网络覆盖增强系统及方法

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114302444A (zh) * 2021-12-30 2022-04-08 上海移远通信技术股份有限公司 无线接入终端的调试提示方法、装置、终端及存储介质
CN117135637B (zh) * 2023-01-06 2024-09-03 荣耀终端有限公司 一种无线信号接收装置的安装方法、装置及系统
CN117939482B (zh) * 2024-03-20 2024-08-09 中铁四局集团有限公司 无线网络拓扑建立方法、网络及最优路径计算方法

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103079268A (zh) * 2012-12-28 2013-05-01 上海寰创通信科技股份有限公司 一种用户端设备的天线定位方法
CN104218964A (zh) * 2014-09-04 2014-12-17 青岛海信移动通信技术股份有限公司 一种移动终端及Wi-Fi天线控制方法
CN105699986A (zh) * 2016-01-13 2016-06-22 广东欧珀移动通信有限公司 智能移动终端位姿调整提示方法、装置及智能移动终端
CN106550428A (zh) * 2016-12-09 2017-03-29 普联技术有限公司 Cpe与基站建立连接的方法、系统及cpe和移动终端
US20190268780A1 (en) * 2018-02-23 2019-08-29 Telefonaktiebolaget Lm Ericsson (Publ) Determination of fifth generation millimeter wave customer premises equipment antenna location for fixed wireless access systems

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100501301B1 (ko) * 2003-02-25 2005-07-18 엘지전자 주식회사 나침반을 이용한 이동통신 단말기의 3차원 수신감도표시장치 및 그 방법
US20110023074A1 (en) * 2009-07-24 2011-01-27 Echostar Technologies L.L.C. Systems and methods for facilitating antenna configuration
US8830081B2 (en) * 2011-03-22 2014-09-09 Verizon Patent And Licensing Inc. Link quality indicator for a fixed installation radio frequency terrestrial network
CN104243662B (zh) * 2013-06-07 2020-09-01 中兴通讯股份有限公司 一种终端提示模式调整方法及终端
TWI645727B (zh) * 2017-10-30 2018-12-21 技嘉科技股份有限公司 可調整天線指向的無線接入點系統、具有控制無線訊號基站指向的移動電子裝置以及最佳化無線訊號基站之天線指向的方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103079268A (zh) * 2012-12-28 2013-05-01 上海寰创通信科技股份有限公司 一种用户端设备的天线定位方法
CN104218964A (zh) * 2014-09-04 2014-12-17 青岛海信移动通信技术股份有限公司 一种移动终端及Wi-Fi天线控制方法
CN105699986A (zh) * 2016-01-13 2016-06-22 广东欧珀移动通信有限公司 智能移动终端位姿调整提示方法、装置及智能移动终端
CN106550428A (zh) * 2016-12-09 2017-03-29 普联技术有限公司 Cpe与基站建立连接的方法、系统及cpe和移动终端
US20190268780A1 (en) * 2018-02-23 2019-08-29 Telefonaktiebolaget Lm Ericsson (Publ) Determination of fifth generation millimeter wave customer premises equipment antenna location for fixed wireless access systems

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3975621A4

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113473486A (zh) * 2021-07-13 2021-10-01 蒋溢 一种端边协同的网络覆盖增强系统及方法

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