Antenna adjustment method of intelligent 5G CPE device, storage medium, device and terminal equipment
By scanning the network environment and determining the optimal combination based on the preset signal parameter relationship table, adjusting the antenna array orientation of the CPE device, the problem that the antenna cannot achieve the optimal signal state in the prior art is solved, and the equipment performance and throughput are improved.
Patent Information
- Application Number
- CN202510197275.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-05-27
AI Technical Summary
The 4G and 5G antennas of existing CPE devices cannot achieve the optimal signal state, resulting in limited device throughput and inability to perform optimal performance. At the same time, the direction of the WIFI antenna does not meet the user's maximum signal reception position.
By scanning the network environment to obtain signal parameters of different azimuth angles, the signal quality data set of mobile communication network antennas and WIFI antennas is determined, the optimal combination is determined based on the preset signal parameter relationship table, and the directional orientation of the antenna array is adjusted to achieve the optimal signal state.
The optimal signal orientation of mobile communication network antennas and WIFI antennas is realized, and the performance and throughput of CPE devices are improved, so that devices can perform optimal performance in different network environments.
Smart Images

Figure CN120049979A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of wireless communication technologies, and particularly relates to an antenna adjustment method, a storage medium, a device, and a terminal device for an intelligent 5G CPE device. Background Art
[0002] A CPE device (Customer Premises Equipment) refers to a device installed at the user end, mainly used for receiving and sending wireless communication signals. These devices are usually used in wireless networks, such as wireless local area networks or wide area networks, and are also used in some dedicated wireless communication systems, such as wireless broadcast reception systems. As a wireless access device, CPE is used by more and more users.
[0003] In the existing CPE device, antennas are fixedly arranged inside, mainly including 5G, 4G antennas, and WIFI antennas. However, the positions of these antennas are fixed inside the CPE. During actual use, the 4G and 5G antennas of the CPE cannot reach the best signal state. According to the working principle of the mobile communication network, when the signal is poor, it is very difficult for the CPE device to reach its maximum throughput and it is impossible to exert the optimal performance of the CPE device. In addition, the direction of the WIFI antenna is not pointed to the position where the most users are located during actual use.
[0004] Therefore, the above existing technical defects need to be changed urgently. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides an antenna adjustment method, a storage medium, a device, and a terminal device for an intelligent 5G CPE device, aiming to enable the mobile communication network antenna and the WIFI antenna to be adaptively adjusted to the direction with the best signal, so that the CPE device can exert the optimal performance.
[0006] To solve the above technical problems, in the first aspect of the embodiments of the present application, an antenna adjustment method for an intelligent 5G CPE device is provided, and the method includes the steps of:
[0007] Scan the network environment to obtain a number of signal parameters at different azimuth angles of the network environment;
[0008] According to each signal parameter, determine a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna;
[0009] Based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determine the optimal combination in the first signal quality data set and the second signal quality data set;
[0010] Determine the first target azimuth and the second target azimuth according to the optimal combination, adjust the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjust the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0011] The antenna adjustment method of the intelligent 5G CPE device, wherein the step of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes:
[0012] Based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determine the priority combination according to the first signal quality data set and the second signal quality data set, wherein the priority combination includes one signal quality data in the first signal quality data set and one signal quality data in the second signal quality data set;
[0013] When the number of detected priority combinations is greater than or equal to two, obtain the historical data of each signal quality data in the multiple priority combinations;
[0014] Score the multiple priority combinations based on the historical data;
[0015] According to the scoring results, sort the several priority combinations from high to low, and determine the priority combination with the highest ranking as the optimal combination corresponding to the mobile terminal when the performance is optimal.
[0016] The antenna adjustment method of the intelligent 5G CPE device, wherein, in the step of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna:
[0017] The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: antenna array interval parameter.
[0018] The antenna adjustment method of the intelligent 5G CPE device, wherein, in the step of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna:
[0019] The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: mobile communication network antenna pattern, mobile communication network antenna signal polarization parameter, WIFI antenna pattern and WIFI antenna signal polarization parameter.
[0020] The antenna adjustment method of the intelligent 5G CPE device, wherein, in the step of determining the first target orientation and the second target orientation according to the optimal combination, the first target orientation includes a first target position and a first target angle; the second target orientation includes a second target position and a second target angle.
[0021] The antenna adjustment method of the intelligent 5G CPE device, wherein, in the step where the first target orientation includes a first target position and a first target angle; the second target orientation includes a second target position and a second target angle, the angles of both the first target angle and the second target angle are greater than 10° and less than 170°.
[0022] The second aspect of the embodiments of the present application provides a computer-readable storage medium storing one or more programs, which can be executed by one or more processors to implement the steps in the antenna adjustment method of the intelligent 5G CPE device as described in any one of the above.
[0023] The third aspect of the embodiments of the present application provides an antenna adjustment device for an intelligent 5G CPE device, which includes:
[0024] A signal detection module for scanning the network environment and obtaining a number of signal parameters at different azimuth angles of the network environment;
[0025] A first calculation module for determining a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter;
[0026] A second calculation module for determining the optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna;
[0027] An antenna pointing azimuth adjustment module for determining the first target azimuth and the second target azimuth according to the optimal combination, adjusting the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusting the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0028] The fourth aspect of the embodiments of the present application provides a terminal device, which includes: a processor, a memory and a communication bus; a computer-readable program executable by the processor is stored on the memory;
[0029] The communication bus realizes the connection and communication between the processor and the memory;
[0030] When the processor executes the computer-readable program, it implements the steps in the antenna adjustment method of the intelligent 5G CPE device as described in any one of the above.
[0031] Beneficial effects: Compared with the prior art, the present invention provides an antenna adjustment method, a storage medium, a device and a terminal device for an intelligent 5G CPE device. The method includes the steps of: scanning the network environment to obtain a plurality of signal parameters at different azimuth angles of the network environment; determining a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter; based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determining an optimal combination in the first signal quality data set and the second signal quality data set; determining a first target azimuth and a second target azimuth according to the optimal combination, adjusting the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusting the pointing azimuth of the WIFI antenna array according to the second target azimuth. By initially scanning a plurality of signal parameters at different azimuth angles of the network environment, and then according to the signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, the present invention determines the pointing azimuth that can enable the mobile communication network antenna and the WIFI antenna to obtain the best signal. Thereby enabling the CPE device to exhibit optimal performance. Description of the Drawings
[0032] Figure 1 It is a flowchart of an antenna adjustment method for an intelligent 5G CPE device provided by the present invention;
[0033] Figure 2 is Figure 1 a schematic flowchart of step S30 in
[0034] Figure 3 It is a schematic structural diagram of an antenna adjustment device for an intelligent 5G CPE device provided by the present invention;
[0035] Figure 4 It is a schematic structural diagram of the terminal device provided by the present invention. Detailed Embodiments
[0036] The present invention provides an antenna adjustment method, a storage medium, a device and a terminal device for an intelligent 5G CPE device. To make the purpose, technical solution and effects of the present invention clearer and more definite, the following further describes the present invention in detail with reference to the accompanying drawings and by way of examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0037] Those skilled in the art can understand that, unless specifically stated otherwise, the singular forms "a", "an", "the" and "said" used herein may also include the plural forms. It should be further understood that the term "comprising" used in the description of the present invention means the presence of features, integers, steps, operations, elements and / or components, but does not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components and / or their groups. It should be understood that when the solution of the present application states that an element is "connected" or "coupled" to another element, it can be directly connected or coupled to other elements, or there may also be intermediate elements. In addition, the "connection" or "coupling" used herein may include wireless connection or wireless coupling. The phrase "and / or" used herein includes all or any unit and all combinations of one or more related listed items.
[0038] Those skilled in the art can understand that, unless otherwise defined, all terms used herein (including technical terms and scientific terms) have the same meaning as the general understanding of those of ordinary skill in the art to which the present invention pertains. It should also be understood that terms such as those defined in a general dictionary should be understood to have a meaning consistent with the meaning in the context of the prior art, and will not be interpreted with an idealized or overly formal meaning unless specifically defined as here.
[0039] The following further illustrates the content of the invention by describing the embodiments in conjunction with the accompanying drawings.
[0040] First of all, it should be noted that a CPE device (Customer Premises Equipment) refers to the equipment installed at the user end, mainly used for receiving and sending wireless communication signals. These devices are usually used in wireless networks, such as wireless local area networks or wide area networks, and are also used in some dedicated wireless communication systems, such as wireless broadcast reception systems. As a wireless access device, CPE is used by more and more users.
[0041] In the existing CPE device, antennas are fixedly installed inside, mainly including 5G, 4G antennas, and WIFI antennas. However, the positions of these antennas are fixed inside the CPE. During actual use, the 4G and 5G antennas of the CPE cannot reach the best signal state. According to the working principle of the mobile communication network, when the signal is poor, it is very difficult for the CPE device to reach its maximum throughput and it is impossible to exert the optimal performance of the CPE device. In addition, the direction of the WIFI antenna during actual use is not pointed to the position where the most users are located.
[0042] To this end, this solution provides an antenna adjustment method, storage medium, device, and terminal device for an intelligent 5G CPE device. Among them, the execution subject of the antenna adjustment method for the intelligent 5G CPE device can be a cloud server with an antenna pointing azimuth adjustment module deployed. Among them, the antenna pointing azimuth adjustment module is used to adjust the pointing azimuth of the mobile communication network antenna and the WIFI antenna inside the CPE device. It can be understood that the execution subject of this embodiment can be an intelligent terminal connected with an antenna pointing azimuth adjustment module such as a smart phone, a smart bracelet, or a server host. For example, the server scans the network environment to obtain a number of signal parameters at different azimuth angles of the network environment; the server determines a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter; the server determines the optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna; the server determines a first target azimuth and a second target azimuth according to the optimal combination, adjusts the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusts the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0043] It should be noted that the above application scenarios are only shown for the convenience of understanding the present invention, and the embodiments of the present invention are not limited in this regard. On the contrary, the embodiments of the present invention can be applied to any applicable scenario.
[0044] To further illustrate the content of the invention, the following will specifically describe the embodiments with reference to the drawings.
[0045] The antenna adjustment method for the intelligent 5G CPE device provided in this embodiment is as Figure 1 shown, and the method specifically includes the steps:
[0046] Step S10, scan the network environment to obtain a number of signal parameters at different azimuth angles of the network environment;
[0047] It should be noted that different types of antennas have different signal receiving and transmitting capabilities. For example, a directional antenna has a stronger signal receiving ability in a specific direction, while an omnidirectional antenna can receive signals in all directions, but the signal strength is relatively weak. The higher the antenna gain, the stronger the signal receiving and transmitting ability. However, high-gain antennas are usually larger in size and have certain requirements for installation positions. Among them, improper adjustment of the antenna direction may lead to poor signal reception. If the antenna is not aligned with the direction of the signal source or is accidentally moved during use, the signal quality will be affected.
[0048] Therefore, based on the directional antenna, the solution of the present application adds an antenna pointing azimuth adjustment function, enabling the directional antenna to adjust the pointing azimuths of the mobile communication network antenna and the WIFI antenna respectively according to the network environment, so that the CPE device can achieve the best performance under the current network environment.
[0049] Before adjusting the pointing azimuths of the mobile communication network antenna and the WIFI antenna, it is necessary to first scan the network environment 360° to obtain a number of signal parameters at different azimuth angles of the network environment.
[0050] Step S20: Determine the first signal quality data set of the mobile communication network antenna and the second signal quality data set of the WIFI antenna according to the respective signal parameters;
[0051] After obtaining a number of signal parameters at different azimuth angles of the network environment, the signal quality data of the mobile communication network antenna and the WIFI antenna corresponding to each signal parameter are calculated through the number of signal parameters, and these data are collected into a data set.
[0052] Step S30: Based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determine the optimal combination in the first signal quality data set and the second signal quality data set;
[0053] It should be noted that the signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes a number of relationship parameter indicators affecting the performance of the CPE device, including the relationship parameter between the position spacing between the mobile communication network antenna and the WIFI antenna and the performance of the CPE device, etc. The combination of the mobile communication network antenna signal quality data and the WIFI antenna signal quality data that enables the CPE device to achieve the optimal performance is called the optimal combination; the target azimuths of the signal parameters corresponding to these optimal combinations are called the first target azimuth and the second target azimuth; the first target azimuth is used to adjust the target azimuth of the mobile communication network antenna for the antenna position control unit; the second target azimuth is used to adjust the target azimuth of the WIFI antenna for the antenna position control unit.
[0054] Step S40: Determine the first target azimuth and the second target azimuth according to the optimal combination, adjust the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjust the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0055] Further, as Figure 2 shown, the steps of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna include:
[0056] Step S31: Based on a preset signal parameter relationship table of a mobile communication network antenna and a WIFI antenna, determine a priority combination according to the first signal quality data set and the second signal quality data set, where the priority combination includes one signal quality data from the first signal quality data set and one signal quality data from the second signal quality data set;
[0057] It should be noted that assume in a network environment: the signal quality data of the mobile communication network antenna corresponding to the angles of 0°, 10°, 20°, 30°, and 40° are respectively: 23, 25, 22, 52, 35, and this whole set of data is the first signal quality data set. Similarly, the signal quality data of the corresponding WIFI antenna are respectively: 21, 31, 62, 58, 24, and this whole set of data is the second antenna signal quality data set. The larger the value in the above data, the better the signal quality. Then the signal quality data 52 of the mobile communication network antenna and the signal quality data 62 of the WIFI antenna are the priority combination.
[0058] Step S32: When it is detected that the number of priority combinations is greater than or equal to two, obtain the historical data of each signal quality data in the multiple priority combinations;
[0059] It should be noted that there may be multiple combinations of the signal quality data of the mobile communication network antenna and the WIFI antenna that can optimize the performance of the CPE device. Therefore, when the optimal combination is greater than or equal to two, the system needs to determine which combination should be selected as the reference for the antenna position control unit to adjust the antenna array.
[0060] Step S33: Score the multiple priority combinations based on the historical data;
[0061] Step S34: According to the scoring results, sort the several priority combinations from high to low, and determine the priority combination with the highest ranking as the optimal combination corresponding to the mobile terminal when the performance is optimal.
[0062] Furthermore, in the step of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna:
[0063] The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: antenna array interval parameters.
[0064] It should be noted that there is interference between the mobile communication network antenna array and the WIFI antenna array, and the isolation degree (spacing parameter) between the mobile communication network antenna array and the WIFI antenna array has a great impact on the CPE performance. Therefore, the spacing between the two sets of strips is also an important reference index for adjusting the two sets of antennas. Through the position optimization between the above two sets of antennas, the overall CPE performance can reach the optimal state.
[0065] Further, in the step of determining the optimal combination in the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna:
[0066] The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: the mobile communication network antenna pattern, the mobile communication network antenna signal polarization parameter, the WIFI antenna pattern, and the WIFI antenna signal polarization parameter.
[0067] The antenna pointing azimuth adjustment module (antenna position control unit) includes the respective patterns and polarization parameters of the mobile communication network antenna and the WIFI antenna. The antenna pointing azimuth adjustment module combines the read network parameters and calculates the optimal mobile communication network antenna position (pointing azimuth) and WIFI antenna position (pointing azimuth) according to the predetermined antenna patterns and polarization parameters.
[0068] Further, in the step of determining the first target azimuth and the second target azimuth according to the optimal combination, the first target azimuth includes a first target position and a first target angle; the second target azimuth includes a second target position and a second target angle.
[0069] It should be noted that the pointing azimuth adjustment of the mobile communication network antenna array and the WIFI antenna array not only includes adjusting the angle of the antenna, but also includes moving the position of the antenna; therefore, the first target azimuth for adjusting the mobile communication network antenna array includes a first target position and a first target angle; the second target azimuth for adjusting the WIFI antenna array includes a second target position and a second target angle.
[0070] Further, in the step where the first target azimuth includes a first target position and a first target angle; the second target azimuth includes a second target position and a second target angle, both the first target angle and the second target angle are greater than 10° and both the first target angle and the second target angle are less than 170°.
[0071] In summary, this embodiment provides an antenna adjustment method, storage medium, device, and terminal device for an intelligent 5G CPE device. The method includes the steps of: scanning the network environment to obtain a number of signal parameters at different azimuth angles of the network environment; determining a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter; determining an optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna; determining a first target azimuth and a second target azimuth according to the optimal combination, adjusting the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusting the pointing azimuth of the WIFI antenna array according to the second target azimuth. By initially scanning a number of signal parameters at different azimuth angles of the network environment, and then determining the pointing azimuths that can enable the mobile communication network antenna and the WIFI antenna to obtain the best signals according to the signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, the present invention enables the CPE device to exhibit optimal performance.
[0072] To better implement the above method, an antenna adjustment device 100 for an intelligent 5G CPE device is further provided in an embodiment of the present application. The device can be specifically integrated in an electronic device, and the electronic device can be a terminal, a server, a personal computer, or other devices. For example, in this embodiment, the device may include: a signal detection module 101, a first calculation module 102, a second calculation module 103, and an antenna pointing azimuth adjustment module 104, as follows (as Figure 3 ):
[0073] The signal detection module 101 is configured to scan the network environment and obtain a number of signal parameters at different azimuth angles of the network environment;
[0074] The first calculation module 102 is configured to determine a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter;
[0075] The second calculation module 103 is configured to determine an optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna;
[0076] The antenna pointing azimuth adjustment module 104 is configured to determine a first target azimuth and a second target azimuth according to the optimal combination, adjust the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjust the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0077] In some embodiments, an antenna adjustment device 100 of an intelligent 5G CPE device includes a signal detection module 101, a first calculation module 102, a second calculation module 103, and an antenna pointing azimuth adjustment module 104. The signal detection module 101 scans the network environment and obtains a number of signal parameters at different azimuth angles of the network environment. The first calculation module 102 determines a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to the respective signal parameters. The second calculation module 103 determines an optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna. The antenna pointing azimuth adjustment module 104 determines a first target azimuth and a second target azimuth according to the optimal combination, adjusts the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusts the pointing azimuth of the WIFI antenna array according to the second target azimuth.
[0078] In specific implementation, each of the above units can be implemented as an independent entity, or can be arbitrarily combined and implemented as the same or several entities. For the specific implementation of each of the above units, reference can be made to the foregoing method embodiments, which will not be elaborated herein.
[0079] Those of ordinary skill in the art can understand that all or part of the steps in the various methods of the foregoing embodiments can be completed by instructions, or by controlling related hardware through instructions. The instructions can be stored in a computer-readable storage medium and loaded and executed by a processor.
[0080] Based on the foregoing antenna adjustment method of the intelligent 5G CPE device, this embodiment provides a computer-readable storage medium. The computer-readable storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps in the antenna adjustment method of the intelligent 5G CPE device in the foregoing embodiments. For example, execute the method steps S10 to S40 described above Figure 1 in Figure 2 and the method steps S31 to S34 in
[0081] Scan the network environment and obtain a number of signal parameters at different azimuth angles of the network environment;
[0082] According to the respective signal parameters, determine a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna;
[0083] Based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determine an optimal combination in the first signal quality data set and the second signal quality data set;
[0084] Determine the first target orientation and the second target orientation according to the optimal combination, adjust the pointing orientation of the antenna array of the mobile communication network according to the first target orientation, and adjust the pointing orientation of the WIFI antenna array according to the second target orientation.
[0085] In some embodiments, based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, the steps of determining the optimal combination in the first signal quality data set and the second signal quality data set include:
[0086] Based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determine a priority combination according to the first signal quality data set and the second signal quality data set, where the priority combination includes one signal quality data in the first signal quality data set and one signal quality data in the second signal quality data set;
[0087] When it is detected that the number of priority combinations is greater than or equal to two, obtain the historical data of each signal quality data in the multiple priority combinations;
[0088] Score the multiple priority combinations based on the historical data;
[0089] According to the scoring results, sort several priority combinations from high to low, and determine the priority combination with the highest ranking as the optimal combination corresponding to the mobile terminal when the performance is optimal.
[0090] Based on the above antenna adjustment method of the intelligent 5G CPE device, the present invention also provides a terminal device, as Figure 4 shown, which includes at least one processor 20; a display screen 21; and a memory 22, and may further include a communication interface 23 and a bus 24. Among them, the processor 20, the display screen 21, the memory 22, and the communication interface 23 can communicate with each other through the bus 24. The display screen 21 is set to display a preset user guidance interface in the initial setting mode. The communication interface 23 can transmit information. The processor 20 can call the logical instructions in the memory 22 to execute the method in the above embodiments.
[0091] In addition, when the logical instructions in the above-mentioned memory 22 are implemented in the form of a software functional unit and sold or used as an independent product, they can be stored in a computer-readable storage medium.
[0092] The memory 22, as a computer-readable storage medium, can be configured to store software programs and computer-executable programs, such as the program instructions or modules corresponding to the methods in the embodiments of the present disclosure. The processor 20 executes functional applications and data processing by running the software programs, instructions, or modules stored in the memory 22, that is, implements the methods in the above embodiments.
[0093] The memory 22 may include a program storage area and a data storage area. Among them, the program storage area may store an operating system and application programs required for at least one function; the data storage area may store data created according to the use of the terminal device, etc. In addition, the memory 22 may include high-speed random access memory and may also include non-volatile memory. For example, various media such as USB flash drives, mobile hard disks, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical discs that can store program codes may also be transient storage media.
[0094] In addition, the specific processes of loading and executing multiple instructions by the processor in the above storage medium and mobile terminal have been described in detail in the above methods and will not be elaborated here one by one.
[0095] In summary, compared with the prior art, the present invention has the following beneficial effects: An antenna adjustment method, storage medium, device, and terminal device for an intelligent 5G CPE device, including the steps of: scanning the network environment to obtain a number of signal parameters at different azimuth angles of the network environment; determining a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each signal parameter; determining an optimal combination in the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna; determining a first target azimuth and a second target azimuth according to the optimal combination, adjusting the pointing azimuth of the mobile communication network antenna array according to the first target azimuth, and adjusting the pointing azimuth of the WIFI antenna array according to the second target azimuth. The present invention determines the pointing azimuth that can enable the mobile communication network antenna and the WIFI antenna to obtain the best signal by initially scanning a number of signal parameters at different azimuth angles of the network environment and then according to the signal parameter relationship table of the mobile communication network antenna and the WIFI antenna. Thereby enabling the CPE device to exhibit optimal performance.
[0096] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An antenna adjustment method for an intelligent 5G CPE device, characterized in that: The method comprises the steps of: Scan the network environment and obtain several signal parameters at different angles of the network environment; Determine a first signal quality data set of the mobile communication network antenna and a second signal quality data set of the WIFI antenna according to each of the signal parameters; Determine an optimal combination of the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna; A first target orientation and a second target orientation are determined according to the optimal combination, the pointing orientation of the mobile communication network antenna array is adjusted according to the first target orientation, and the pointing orientation of the WIFI antenna array is adjusted according to the second target orientation.
2. The antenna adjustment method of the intelligent 5G CPE device according to claim 1, characterized in that: The step of determining the optimal combination of the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna comprises: Based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna, determining a priority combination according to the first signal quality data set and the second signal quality data set, wherein the priority combination includes one signal quality data in the first signal quality data set and one signal quality data in the second signal quality data set; When the number of detection priority combinations is greater than or equal to two, acquiring historical data of each signal quality data in a plurality of said priority combinations; scoring a plurality of the priority combinations based on the historical data; According to the scoring results, the plurality of priority combinations are ranked from high to low, and the priority combination with the highest ranking is determined as the optimal combination corresponding to the mobile terminal when the performance is optimal.
3. The antenna adjustment method of the intelligent 5G CPE device according to claim 1, characterized in that: In the step of determining the optimal combination of the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna: The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: antenna array spacing parameters.
4. The antenna adjustment method of the intelligent 5G CPE device according to claim 1, characterized in that: In the step of determining the optimal combination of the first signal quality data set and the second signal quality data set based on the preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna: The preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna includes: a mobile communication network antenna pattern, a mobile communication network antenna signal polarization parameter, a WIFI antenna pattern and a WIFI antenna signal polarization parameter.
5. The antenna adjustment method of the intelligent 5G CPE device according to claim 1, characterized in that: In the step of determining the first target orientation and the second target orientation according to the optimal combination, the first target orientation includes a first target position and a first target angle; the second target orientation includes a second target position and a second target angle.
6. The antenna adjustment method of the intelligent 5G CPE device according to claim 5, characterized in that: In the step where the first target orientation includes a first target position and a first target angle; and the second target orientation includes a second target position and a second target angle, the first target angle and the second target angle are both greater than 10°, and the first target angle and the second target angle are both less than 170°.
7. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps in the antenna adjustment method of an intelligent 5G CPE device as described in any one of claims 1 to 6.
8. An antenna adjustment device for an intelligent 5G CPE device, characterized in that: include: The signal detection module is used to scan the network environment and obtain a number of signal parameters at different angles of the network environment; A first calculation module, used to determine a first signal quality data set of a mobile communication network antenna and a second signal quality data set of a WIFI antenna according to each of the signal parameters; A second calculation module, configured to determine an optimal combination of the first signal quality data set and the second signal quality data set based on a preset signal parameter relationship table of the mobile communication network antenna and the WIFI antenna; The antenna pointing direction adjustment module is used to determine the first target direction and the second target direction according to the optimal combination, adjust the pointing direction of the mobile communication network antenna array according to the first target direction, and adjust the pointing direction of the WIFI antenna array according to the second target direction.
9. A terminal device, characterized in that: include: Processor, memory and communication bus; The memory stores a computer-readable program executable by the processor; The communication bus realizes the connection and communication between the processor and the memory; When the processor executes the computer-readable program, the steps in the antenna adjustment method of the intelligent 5G CPE device as described in any one of claims 1 to 6 are implemented.