WO2016168966A1 - 防止摄像头干扰天线的方法、装置及电子设备 - Google Patents

防止摄像头干扰天线的方法、装置及电子设备 Download PDF

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Publication number
WO2016168966A1
WO2016168966A1 PCT/CN2015/076969 CN2015076969W WO2016168966A1 WO 2016168966 A1 WO2016168966 A1 WO 2016168966A1 CN 2015076969 W CN2015076969 W CN 2015076969W WO 2016168966 A1 WO2016168966 A1 WO 2016168966A1
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WO
WIPO (PCT)
Prior art keywords
camera
antenna
electronic device
network
configuration parameter
Prior art date
Application number
PCT/CN2015/076969
Other languages
English (en)
French (fr)
Inventor
王胜
王克猛
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to RU2017139651A priority Critical patent/RU2685225C1/ru
Priority to US15/568,362 priority patent/US20180138991A1/en
Priority to EP15889457.6A priority patent/EP3276926B1/en
Priority to CN201580063996.3A priority patent/CN107005608B/zh
Priority to PCT/CN2015/076969 priority patent/WO2016168966A1/zh
Publication of WO2016168966A1 publication Critical patent/WO2016168966A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B15/00Suppression or limitation of noise or interference
    • H04B15/02Reducing interference from electric apparatus by means located at or near the interfering apparatus
    • H04B15/04Reducing interference from electric apparatus by means located at or near the interfering apparatus the interference being caused by substantially sinusoidal oscillations, e.g. in a receiver or in a tape-recorder
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/52Means for reducing coupling between antennas; Means for reducing coupling between an antenna and another structure
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B15/00Suppression or limitation of noise or interference
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/52Details of telephonic subscriber devices including functional features of a camera

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method, device, and electronic device for preventing a camera from interfering with an antenna.
  • the flexible plate and the base of the camera module are usually wrapped with a shielding material to reduce the influence of the camera on the performance of the antenna.
  • the inventors have found that at least the following problems exist in the prior art: the camera module connector still leaks part of the signal, thereby affecting the antenna performance of the electronic device.
  • the embodiment of the invention provides a method, a device and an electronic device for preventing the camera from interfering with the antenna.
  • the technical solution is as follows:
  • a method for preventing a camera from interfering with an antenna for use in an electronic device including a camera and an antenna, the method comprising:
  • the antenna is interfered by a signal generated by the camera, acquiring configuration parameters that do not interfere with the antenna;
  • the determining whether the antenna is interfered by a signal generated by the camera includes:
  • the relational database stores a correspondence between various network resources and various configuration parameters and the interference parameter, and the interference parameter Means for indicating whether an antenna residing in one of the network resources is interfered with by using a configuration parameter to start a signal generated by the camera;
  • the acquiring configuration parameters that do not interfere with the antenna include:
  • a configuration parameter that is non-interfering with the antenna residing in the network resource is determined based on the relational database.
  • the method further includes:
  • the current configuration parameter remains unchanged.
  • the first possible implementation of the first aspect, the second possible implementation of the first aspect, or the third possible implementation of the first aspect in a fourth possible implementation The method further includes:
  • the current configuration parameters of the camera are restored to default configuration parameters.
  • the network resource includes a former one, a first two or all of a frequency band, a channel, and a bandwidth.
  • an apparatus for preventing a camera from interfering with an antenna for use in an electronic device including a camera and an antenna, the apparatus comprising:
  • a detecting module configured to detect, after the camera is started, whether the electronic device successfully resides on the network
  • a first acquiring module configured to acquire a network resource where the electronic device resides and a current configuration parameter of the camera when the detecting module detects that the electronic device successfully resides on the network;
  • Determining a module configured to determine whether the antenna is interfered by a signal generated by the camera
  • a second acquiring module configured to acquire, when the determining module determines that the antenna is interfered by a signal generated by the camera, a configuration parameter that does not interfere with the antenna
  • a modifying module configured to modify, by using the configuration parameter that is obtained by the second acquiring module that does not interfere with the antenna, the current configuration parameter of the camera acquired by the first acquiring module.
  • the determining module is specifically configured to:
  • the relational database stores a correspondence between various network resources and various configuration parameters and the interference parameter, and the interference parameter Means for indicating whether an antenna residing in one of the network resources is interfered with by using a configuration parameter to start a signal generated by the camera;
  • the second acquiring module is specifically configured to:
  • a configuration parameter that is non-interfering with the antenna residing in the network resource is determined based on the relational database.
  • the modifying module is further configured to The current configuration parameter remains unchanged when the determining module determines that the antenna is not interfered with by the signal generated by the camera.
  • the modifying module is further configured to restore the current configuration parameter of the camera to a default configuration parameter when the detecting module detects that the electronic device does not successfully reside on the network.
  • the network resource includes a former one, a first two or all of a frequency band, a channel, and a bandwidth.
  • an electronic device in a third aspect, includes a camera and an antenna, and the electronic device further includes: a processor;
  • the processor configured to detect, after the camera is started, whether the electronic device successfully resides on a network
  • the processor is further configured to acquire, when the electronic device successfully resides on the network, a network resource where the electronic device resides and a current configuration parameter of the camera;
  • the processor is further configured to determine whether the antenna is interfered by a signal generated by the camera;
  • the processor is further configured to acquire, when the antenna is interfered by a signal generated by the camera, a configuration parameter that does not interfere with the antenna;
  • the processor is further configured to modify the current configuration parameter of the camera by using the configuration parameter that does not interfere with the antenna.
  • the electronic device further includes a memory
  • the memory is configured to store a preset relational database;
  • the relational database stores a correspondence between various network resources and various configuration parameters and the interference parameter, where the interference parameter is used to indicate that the Whether the antenna of the network resource is interfered with by a signal generated by the camera using a configuration parameter;
  • the processor is further configured to determine an interference parameter according to the preset relational database, the obtained network resource, and the current configuration parameter;
  • the processor is further configured to determine, according to the interference parameter, whether the antenna is interfered by a signal generated by the camera.
  • the processor is further configured to determine, according to the relational database stored by the memory, The antenna in the network resource has no interference configuration parameters.
  • the processor is further configured to The current configuration parameters remain unchanged when the antenna is not disturbed by the signal generated by the camera.
  • the processor is further configured to restore the current configuration parameter of the camera to a default configuration parameter when the electronic device does not successfully reside on the network.
  • the network resource includes a former one, a first two or all of a frequency band, a channel, and a bandwidth.
  • the method, device and electronic device for preventing a camera from interfering with an antenna detect whether an antenna is interfered by a signal generated by a camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is received by the camera
  • the interference generated by the signal is configured by the camera without interference to the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, that is, by changing the configuration parameters of the camera.
  • Eliminating the interference of the camera to the antenna thus solving the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; achieving the effect of eliminating the interference of the camera to the antenna and improving the stability of the antenna performance.
  • FIG. 1 is a flow chart of a method for preventing a camera from interfering with an antenna according to an embodiment of the present invention
  • FIG. 2 is a flow chart of a method for preventing a camera from interfering with an antenna according to another embodiment of the present invention
  • FIG. 3 is a flow chart of a method for preventing a camera from interfering with an antenna according to still another embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of an apparatus for preventing a camera from interfering with an antenna according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of an apparatus for preventing a camera from interfering with an antenna according to another embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of an electronic device according to another embodiment of the present invention.
  • FIG. 1 a flowchart of a method for preventing a camera from interfering with an antenna provided in an embodiment of the present invention is shown.
  • the method for preventing a camera from interfering with an antenna is mainly applied to an electronic device having a camera and an antenna.
  • the electronic device referred to herein may be a smart phone, a tablet computer, a smart TV, an e-book reader, a multimedia player, a laptop portable computer, or the like.
  • the method for preventing a camera from interfering with an antenna may include:
  • Step 101 After the camera is started, detect whether the electronic device successfully resides on the network.
  • the successful presence of the network means that the electronic device successfully resides in the digital network, such as the second generation mobile communication technology (Second Generation, 2G) and the third generation mobile communication technology (English: Third Generation, Referred to as 3G), fourth-generation mobile communication technology (English: Fourth Generation, referred to as 4G) or long-term evolution (English: Long Term Evolution, referred to as LTE).
  • 2G the second generation mobile communication technology
  • 3G Third Generation
  • 4G fourth-generation mobile communication technology
  • LTE long-term evolution
  • Step 102 If the electronic device successfully resides on the network, acquire the network resource where the electronic device resides and the current configuration parameter of the camera.
  • the electronic device successfully resides on the network, indicating that the electronic device can make calls and send and receive short messages, or can also use the digital network to request network services, such as browsing web pages, downloading network resources, uploading resources, and transmitting and receiving instant communication messages.
  • the digital switch of the electronic device is turned on and the signal is better.
  • the electronic device can browse the Internet by using the digital network and can use the digital network to make a call or send and receive a short message.
  • the digital switch of the electronic device is turned off by the user.
  • the electronic device cannot use the digital network to perform operations such as browsing on the Internet, but can use the digital network to make a call or send and receive a short message.
  • the network resources mentioned herein may include the former one, the first two or all of the frequency band, the channel, and the bandwidth. That is to say, the network resources here can be divided according to the dimension of the frequency band. In order to be more detailed, it is also possible to distinguish different channels in the frequency band and perform finer control. For a variable bandwidth network, such as LTE, it can be further divided according to channel and bandwidth.
  • the camera's configuration parameters include the resolution and frame rate configured for the camera.
  • each configuration parameter of the camera affects the antenna that resides on a certain part of the network resources, in order to determine whether the antenna is interfered by the signal generated by the camera, it is necessary to acquire the network resources where the electronic device resides and the current configuration of the camera. parameter.
  • step 103 it is determined whether the antenna is interfered by a signal generated by the camera.
  • the camera Since the camera will generate a signal when it is turned on, the signal is likely to enter the antenna and shadow The antenna is communicated. Therefore, in order to avoid the influence of the signal generated by the turned-on camera on the antenna, it is necessary to judge whether the antenna is interfered by the signal generated by the camera.
  • Step 104 If the antenna is interfered by the signal generated by the camera, obtain configuration parameters that do not interfere with the antenna.
  • Step 105 Modify the current configuration parameter of the camera by using the obtained configuration parameter that does not interfere with the antenna.
  • the method for preventing a camera from interfering with an antenna detects whether an antenna is interfered by a signal generated by a camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is received by the camera
  • the interference generated by the signal is configured by the camera without interference to the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, that is, by changing the configuration parameters of the camera.
  • Eliminating the interference of the camera to the antenna thus solving the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; achieving the elimination of the interference of the camera to the antenna, improving the stability of the antenna performance, and making up for the hardware Avoid the effect of the camera on the antenna interference.
  • the electronic device can use the relational database to determine whether the antenna is interfered by the signal generated by the camera, that is, replace step 103 in FIG. 1 with step 103a and step 103b in FIG. 2 below. Description of 2.
  • FIG. 2 there is shown a flowchart of a method for preventing a camera from interfering with an antenna according to another embodiment of the present invention.
  • the method for preventing a camera from interfering with an antenna is mainly applied to an electronic device having a camera and an antenna.
  • the electronic devices referred to herein may be smart phones, tablets, smart TVs, e-book readers, multimedia players, laptop portable computers, and the like.
  • the method for preventing a camera from interfering with an antenna may include:
  • Step 101 After the camera is started, detect whether the electronic device successfully resides on the network.
  • Step 102 If the electronic device successfully resides on the network, acquire the network resource where the electronic device resides and the current configuration parameter of the camera.
  • step 101 and step 102 For the above steps 101 and 102, reference may be made to the description of step 101 and step 102 in FIG. 1, and details are not described herein again.
  • Step 103a Determine an interference parameter according to the preset relational database, the acquired network resource, and the current configuration parameter.
  • the relational database described here stores various network resources and various configuration parameters and interference parameters. Corresponding relationship, wherein the interference parameter is used to indicate whether an antenna residing on a network resource is interfered with by a signal generated by using a configuration parameter to start the camera.
  • each interference parameter in the relational database is used to locate a corresponding set of configuration parameters and network resources, that is, the interference parameter is used to indicate whether a signal generated by a camera configured with the configuration parameter is for an antenna residing in the network resource. There is interference.
  • the header in Table 1 contains several configuration parameters: resolution is 1080p and frame rate is 30fps (indicated by 1080p@30fps in Table 1).
  • the rate is 1080p and the frame rate is 15fps (indicated by 1080p@15fps in Table 1)
  • the resolution is 720p and the frame rate is 30fps (indicated by 720p@30fps in Table 1)
  • the resolution is 720p and the frame rate is 15fps (table) 1 is represented by 720p@15fps).
  • the first column in Table 1 contains several network resources, namely B1, B2, B3, and so on. Obviously, in practical applications, the configuration parameters are not limited to those listed in Table 1.
  • Y corresponding to B1 and 1080p@30fps is used to indicate that the signal generated by the camera configured with 1080p@30fps interferes with the antenna residing on B1.
  • N corresponding to B1 and 1080p@15fps is used to indicate that the signal generated by the camera configured with 1080p@15fps does not interfere with the antenna residing on B1.
  • the electronic device can determine an interference parameter. For example, when the obtained network resource is 1080p@15fps and the current configuration parameter is B3, the interference parameter determined by the electronic according to the relational database and the network resource and the current configuration parameter is Y.
  • Step 103b determining, according to the interference parameter, whether the antenna is interfered by a signal generated by the camera.
  • the electronic device can determine whether the antenna is interfered by the signal generated by the camera according to the interference parameter.
  • the interference parameter when the interference parameter is Y, it indicates that the antenna is interfered by the signal generated by the camera.
  • the interference parameter is N, it indicates that the antenna is not interfered by the signal generated by the camera.
  • the electronic device may also use the above relational database to obtain configuration parameters that do not interfere with the antenna, that is, replace step 104 in FIG. 1 with step 104'.
  • Step 104' if the antenna is interfered by the signal generated by the camera, the configuration parameter for the antenna residing in the network resource is determined according to the relational database.
  • the configuration database is also utilized to find configuration parameters that do not interfere with the antenna residing in the network resource.
  • the configuration parameter may be randomly selected from the non-interfering configuration parameters, or the configuration with the highest configuration may be selected. Parameters, or select a configuration parameter that is better than the current configuration parameter, or select a configuration parameter that is lower than the current configuration parameter, or select the lowest configuration parameter from the configuration parameters that are better than the current configuration parameter, or from low Select the configuration parameter with the highest configuration among the configuration parameters of the current configuration parameters.
  • the non-interfering configuration parameter may also be displayed to prompt the user to select one of the configuration parameters.
  • Step 105 Modify the current configuration parameter of the camera by using the obtained configuration parameter that does not interfere with the antenna.
  • the current configuration parameters of the camera are replaced by the obtained configuration parameters that do not interfere with the antenna, and the signal generated by the replaced camera no longer interferes with the antenna.
  • the method for preventing a camera from interfering with an antenna detects whether an antenna is interfered by a signal generated by a camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is received by the camera
  • the interference generated by the signal is configured by the camera without interference to the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, that is, by changing the configuration parameters of the camera.
  • Eliminating the interference of the camera to the antenna thus solving the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; achieving the elimination of the interference of the camera to the antenna, improving the stability of the antenna performance, and making up for the hardware Avoid the effect of the camera on the antenna interference.
  • the current configuration parameters of the camera can be maintained.
  • the current configuration parameters of the camera are maintained.
  • the method for preventing the camera from interfering with the antenna may further include the following steps:
  • Step 106 If the electronic device does not successfully reside on the network, restore the current configuration parameter of the camera to the default configuration parameter.
  • the electronic device is in an airplane mode. At this time, the electronic device cannot use the digital network to perform operations such as browsing on the Internet, and cannot use the digital network to make calls or send and receive text messages.
  • the signal of the digital network that the electronic device can receive is relatively poor, or the signal of the digital network cannot be successfully received.
  • the electronic device is in the flight mode, that is, the operation cannot be performed by using the digital network for online browsing. It is also impossible to use the digital network to make calls or send and receive text messages.
  • the antenna does not send and receive signals.
  • the antenna will not be affected.
  • the default configuration parameters are usually the parameters preferentially configured by the user, or the system gives priority to the user. Configured parameters that match the user's needs.
  • the electronic device after the electronic device configures the camera with configuration parameters that do not interfere with the antenna, the electronic device needs to continue to detect whether the electronic device still resides in the network, when the electronic device does not reside in the network. When necessary, adjustments can be made to better meet the user's shooting needs, such as the camera's current configuration parameters can be restored to the default configuration parameters.
  • Steps 102 to 105 in FIG. 3 are the same as steps 102 to 105 in FIG. 1, respectively, and are not described herein again.
  • step 106 is performed. If the electronic device successfully resides on the network, step 102 is continued.
  • the network resources acquired may be different from the network resources acquired last time. The remaining network resources may change, and then use step 103 to step 105 to select a configuration parameter that does not interfere with the antenna residing on the new network resource, and configure the configuration parameter as a camera.
  • the method for preventing the camera from interfering with the antenna reconfigures the default configuration parameters of the camera when detecting that the electronic device changes from the resident network state to the non-resident network state; At the same time, the camera still works with non-default configuration parameters, which makes the user's shooting experience worse; it has improved the user's shooting experience and improved the shooting quality.
  • the camera by acquiring the network resources in which the antenna resides in real time, and judging whether the antenna is interfered by the signal generated by the camera, and configuring the camera to configure the parameters without interference to the antenna in real time during the interference; After the network resources of the electronic device resides in the network change, the camera interferes with the changed network resources; the effect of improving the stability of the antenna performance is achieved.
  • the photos taken by the camera using high-resolution and high-frame rate configuration parameters are better in clarity and fluency, but the captured photos are more memory-intensive, so the antenna is acquired.
  • a suitable configuration parameter can be selected for the user as much as possible, so that the picture taken by the camera using the configuration parameter has relatively good picture clarity and fluency and relatively less memory.
  • the electronic device sequentially searches, from the pre-stored first parameter group, whether there is a configuration parameter that does not interfere with the antenna, in a first predetermined order.
  • the first parameter group includes at least one set of correspondences, where the correspondence includes a configuration parameter, a network resource, and an interference parameter, where the configuration parameter includes a resolution and a frame rate, and the resolution in the corresponding relationship in the first parameter group Higher than or equal to the resolution in the current configuration parameter, the first predetermined order is from low to high according to the resolution, and when the resolution is the same, the frame rate is from low to high.
  • the same network resource may be used.
  • the configuration parameters are arranged from left to right in the order of decreasing resolution, and when the resolution is the same, the configuration parameters including the high frame rate are arranged first, and the configuration parameters including the low frame rate are arranged. That is, the resolution in the configuration parameters of the header in Table 1 is gradually reduced to the right, and when the resolution is When they are the same, the frame rate gradually decreases to the right.
  • the first predetermined sequence is to look up to the left from the currently found interference parameter in Table 1. If the interference parameter for indicating no interference is found, the first one is obtained.
  • the interference parameter used to indicate the interference-free search, and obtain the configuration parameter corresponding to the interference parameter. For example, when the current configuration parameter is 720p@30fps, and the network resource where the antenna resides is B2, the obtained interference parameter is Y, and the first interference parameter found from the interference parameter to the left is N. Obtain the configuration parameter 1080p@15fps corresponding to the interference parameter.
  • the electronic device sequentially searches, from the pre-stored second parameter set, whether there is a configuration parameter that does not interfere with the antenna, in a second predetermined order.
  • the second parameter group includes at least one set of correspondences, where the configuration includes a configuration parameter, a network resource, and an interference parameter, where the configuration parameter includes a resolution and a frame rate, and the resolution in the corresponding relationship in the second parameter group Below or equal to the resolution in the current configuration parameter, the second predetermined order is from high to low according to the resolution, and when the resolution is the same, according to the frame rate from high to low.
  • the same network resource may be used.
  • the configuration parameters are arranged from left to right in the order of decreasing resolution, and when the resolution is the same, the configuration parameters including the high frame rate are arranged first, and the configuration parameters including the low frame rate are arranged.
  • the second predetermined sequence is to look to the right from the currently found interference parameter in Table 1. If the interference parameter for indicating no interference is found, the first one is obtained.
  • the interference parameter used to indicate the interference-free search, and obtain the configuration parameter corresponding to the interference parameter. For example, when the current configuration parameter is 1080p@15fps, and the network resource where the antenna resides is B3, the obtained interference parameter is Y, and when the interference parameter is searched to the left, the interference parameter for indicating no interference is not found. At this time, the search is continued to the right to obtain the first interference parameter for indicating the interference-free search, and the configuration parameter corresponding to the interference parameter is 720p@30fps.
  • FIG. 4 is a schematic structural diagram of an apparatus for preventing a camera from interfering with an antenna according to an embodiment of the present invention.
  • the apparatus for preventing a camera from interfering with an antenna is mainly used in an electronic device having a camera and an antenna.
  • the electronic devices referred to herein may be smart phones, tablets, smart TVs, e-book readers, multimedia players, laptop portable computers, and the like.
  • the device for preventing the camera from interfering with the antenna may include: a detecting module 410, a first acquiring module 420, The determination module 430, the second acquisition module 440, and the modification module 450.
  • the detecting module 410 is configured to detect, after the camera is started, whether the electronic device successfully resides on the network;
  • the first obtaining module 420 is configured to acquire, when the detecting module 410 detects that the electronic device successfully resides on the network, the network resource where the electronic device resides and the current configuration parameter of the camera;
  • a determining module 430 configured to determine whether the antenna is interfered by a signal generated by the camera
  • the second obtaining module 440 is configured to acquire configuration parameters that do not interfere with the antenna when the determining module 430 determines that the antenna is interfered by a signal generated by the camera;
  • the modifying module 450 is configured to modify the current configuration parameter of the camera acquired by the first acquiring module 420 by using the configuration parameter that is acquired by the second acquiring module 440 and that does not interfere with the antenna.
  • the apparatus for preventing a camera from interfering with an antenna detects whether an antenna is interfered by a signal generated by a camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is received by the camera
  • the interference generated by the signal is configured by the camera without interference to the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, that is, by changing the configuration parameters of the camera.
  • Eliminating the interference of the camera to the antenna thus solving the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; achieving the elimination of the interference of the camera to the antenna, improving the stability of the antenna performance, and making up for the hardware Avoid the effect of the camera on the antenna interference.
  • FIG. 5 it is a schematic structural diagram of an apparatus for preventing a camera from interfering with an antenna according to another embodiment of the present invention.
  • the apparatus for preventing a camera from interfering with an antenna is mainly used in an electronic device having a camera and an antenna. It is noted that the electronic devices mentioned herein may be smart phones, tablet computers, smart TVs, e-book readers, multimedia players, laptop portable computers, and the like.
  • the apparatus for preventing the camera from interfering with the antenna may include: a detection module 510, a first acquisition module 520, a determination module 530, a second acquisition module 540, and a modification module 550.
  • the detecting module 510 is configured to detect, after the camera is started, whether the electronic device successfully resides on the network;
  • a first obtaining module 520 configured to detect, by the detecting module 510, that the electronic device is successfully stationed When remaining on the network, acquiring network resources in which the electronic device resides and current configuration parameters of the camera;
  • a determining module 530 configured to determine whether the antenna is interfered by a signal generated by the camera
  • the second obtaining module 540 is configured to acquire configuration parameters that do not interfere with the antenna when the determining module 530 determines that the antenna is interfered by a signal generated by the camera;
  • the modifying module 550 is configured to modify the current configuration parameter of the camera acquired by the first acquiring module 520 by using the configuration parameter that is acquired by the second acquiring module 540 and that does not interfere with the antenna.
  • the determining module 530 is specifically configured to:
  • the relational database stores a correspondence between various network resources and various configuration parameters and the interference parameter, and the interference parameter Means for indicating whether an antenna residing in one of the network resources is interfered with by using a configuration parameter to start a signal generated by the camera;
  • the second obtaining module 540 is specifically configured to:
  • a configuration parameter that is non-interfering with the antenna residing in the network resource is determined based on the relational database.
  • the modifying module 550 is further configured to: when the determining module 530 determines that the antenna is not interfered by a signal generated by the camera, the current configuration parameter remains unchanged. .
  • the modifying module 550 is further configured to: when the detecting module 510 detects that the electronic device does not successfully reside on the network, restore the current configuration parameter of the camera to a default. Configuration parameters.
  • the network resource includes a former one, a first two or all of a frequency band, a channel, and a bandwidth.
  • the apparatus for preventing a camera from interfering with an antenna detects whether an antenna is interfered by a signal generated by a camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is received by the camera
  • the interference generated by the signal is configured by the camera without interference to the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, that is, by changing the configuration parameters of the camera.
  • Eliminate camera The interference of the head to the antenna solves the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; the interference of the camera to the antenna is eliminated, the stability of the antenna performance is improved, and the hardware cannot be completely avoided. The effect of the camera on the defects of the antenna interference.
  • the default configuration parameters are reconfigured for the camera when it detects that the electronic device changes from the resident network state to the non-resident network state; the camera still uses non-default configuration parameters when the electronic device does not reside in the network. Work, making the user experience poor shooting experience; reaching the effect of improving the user's shooting experience and improving the quality of shooting.
  • the camera by acquiring the network resources in which the antenna resides in real time, and judging whether the antenna is interfered by the signal generated by the camera, and configuring the camera to configure the parameters without interference to the antenna in real time during the interference; After the network resources of the electronic device resides in the network change, the camera interferes with the changed network resources; the effect of improving the stability of the antenna performance is achieved.
  • the device for preventing the camera from interfering with the antenna and the device for preventing the camera from interfering with the antenna provided by the foregoing embodiments are only illustrated by the division of the above functional modules when the camera is prevented from interfering with the antenna. In practical applications, The above function assignment is completed by different functional modules, that is, the internal structure of the electronic device is divided into different functional modules to complete all or part of the functions described above.
  • the device for preventing the camera from interfering with the antenna provided by the foregoing embodiment is the same as the method for preventing the camera from interfering with the antenna. For the specific implementation process, refer to the method embodiment, and details are not described herein again.
  • FIG. 6 is a schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • the electronic device may include: a camera 610, an antenna 620, and a processor 630, wherein the camera 610 and the antenna 620 respectively pass through a bus.
  • 640 is coupled to processor 630.
  • the processor 630 is configured to detect, after the camera 610 is started, whether the electronic device successfully resides on the network;
  • the processor 630 is further configured to: when the electronic device successfully resides on the network, acquire network resources that the electronic device resides and current configuration parameters of the camera 610;
  • the processor 630 is further configured to determine whether the antenna 620 is interfered by a signal generated by the camera 610;
  • the processor 630 is further configured to receive, by the antenna 620, a letter generated by the camera 610. Obtaining configuration parameters that do not interfere with the antenna 620 when the interference of the number is obtained;
  • the processor 630 is further configured to modify the current configuration parameter of the camera 610 by using the configuration parameter that does not interfere with the antenna 620.
  • the electronic device detects whether the antenna is interfered by a signal generated by the camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is interfered by the signal generated by the camera.
  • the camera is configured with no interference configuration parameters for the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, the camera can be eliminated by changing the configuration parameters of the camera.
  • the interference solves the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; the interference of the camera to the antenna is eliminated, the stability of the antenna performance is improved, and the camera cannot be completely avoided on the hardware. The effect of disturbing defects.
  • the electronic device may include: a camera 710, an antenna 720, and a processor 730, wherein the camera 710 and the antenna 720 respectively pass Bus 750 is coupled to processor 730.
  • the operations performed by the processor 730 are at least as follows:
  • the processor 730 is configured to detect, after the camera 710 is started, whether the electronic device successfully resides on the network;
  • the processor 730 is further configured to: when the electronic device successfully resides on the network, acquire network resources that the electronic device resides and current configuration parameters of the camera 710;
  • the processor 730 is further configured to determine whether the antenna 720 is interfered by a signal generated by the camera 710;
  • the processor 730 is further configured to acquire configuration parameters that do not interfere with the antenna 720 when the antenna 720 is interfered by a signal generated by the camera 710;
  • the processor 730 is further configured to modify the current configuration parameter of the camera 710 with the configuration parameter that does not interfere with the antenna 720.
  • the electronic device further includes a memory 740, and the memory 740 is connected to the processor 730 via a bus 750.
  • the memory 740 is configured to store a preset relational database; the relational database stores correspondences between various network resources and various configuration parameters and the interference parameters, where the interference parameters are used to indicate that the Whether the antenna 720 of the network resource is activated by using a configuration parameter to start the camera The interference of the signal generated by the head 710;
  • the processor 730 is further configured to determine an interference parameter according to the preset relational database, the obtained network resource, and the current configuration parameter;
  • the processor 730 is further configured to determine, according to the interference parameter, whether the antenna 720 is interfered by a signal generated by the camera 710.
  • the processor 730 is further configured to determine, according to the relational database stored by the memory 740, configuration parameters that do not interfere with the antenna 720 residing in the network resource.
  • the processor 730 is further configured to maintain the current configuration parameter unchanged when the antenna 720 is not interfered by a signal generated by the camera 710.
  • the processor 730 is further configured to restore the current configuration parameter of the camera 710 to a default configuration parameter when the electronic device does not successfully reside on the network.
  • the network resource includes a former one, a first two or all of a frequency band, a channel, and a bandwidth.
  • the electronic device detects whether the antenna is interfered by a signal generated by the camera when the camera is turned on and the electronic device successfully resides on the network, and if the antenna is interfered by the signal generated by the camera.
  • the camera is configured with no interference configuration parameters for the antenna; since the antenna can be reconfigured with a configuration parameter that does not interfere with the antenna when the antenna is interfered by the camera, the camera can be eliminated by changing the configuration parameters of the camera.
  • the interference solves the problem that the camera module connector leaks part of the signal, thereby affecting the antenna performance of the electronic device; the interference of the camera to the antenna is eliminated, the stability of the antenna performance is improved, and the camera cannot be completely avoided on the hardware. The effect of disturbing defects.
  • the default configuration parameters are reconfigured for the camera when it detects that the electronic device changes from the resident network state to the non-resident network state; the camera still uses non-default configuration parameters when the electronic device does not reside in the network. Work, making the user experience poor shooting experience; reaching the effect of improving the user's shooting experience and improving the quality of shooting.
  • the camera by acquiring the network resources in which the antenna resides in real time, and judging whether the antenna is interfered by the signal generated by the camera, and configuring the camera to configure the parameters without interference to the antenna in real time during the interference; After the network resources of the electronic device resides in the network change, the camera interferes with the changed network resources; the effect of improving the stability of the antenna performance is achieved.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit may be only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined. Or it can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), and a random memory.
  • a variety of media that can store program code such as a memory (Random Access Memory, RAM), a disk, or an optical disk.

Abstract

本发明实施例提供了一种防止摄像头干扰天线的方法、装置及电子设备,涉及通信技术领域,所述方法包括:在摄像头启动后,检测电子设备是否成功驻留在网络上;若电子设备成功驻留在网络上,则获取电子设备所驻留的网络资源以及摄像头的当前配置参数;确定天线是否受到摄像头所产生的信号的干扰;若天线受到所述摄像头所产生的信号的干扰,则获取对天线无干扰的配置参数;利用获取的对天线无干扰的配置参数修改摄像头的当前配置参数。本发明解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性的效果。

Description

防止摄像头干扰天线的方法、装置及电子设备 技术领域
本发明涉及通信技术领域,特别涉及一种防止摄像头干扰天线的方法、装置及电子设备。
背景技术
在电子设备越来越轻薄的发展趋势下,电子设备内部的布局也越来越紧密,很容易出现摄像头与天线距离很近的场景。而摄像头在开启后,摄像头产生的高速信号会进入天线,与天线接收的信号形成互调干扰,影响电子设备的天线性能,进而导致通话或数据业务性能的下降。
现有技术方案通常是用屏蔽材料对摄像头模组的柔板和底座进行包裹,以此来降低摄像头对天线性能的影响。
在实现本发明的过程中,发明人发现现有技术至少存在以下问题:摄像头模组连接器还是会泄露部分信号,进而影响电子设备的天线性能。
发明内容
为了解决现有技术中摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题,本发明实施例提供了一种防止摄像头干扰天线的方法、装置及电子设备。所述技术方案如下:
第一方面,提供了一种防止摄像头干扰天线的方法,应用于包含有摄像头和天线的电子设备中,所述方法包括:
在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
若所述电子设备成功驻留在网络上,则获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
确定所述天线是否受到所述摄像头所产生的信号的干扰;
若所述天线受到所述摄像头所产生的信号的干扰,则获取对所述天线无干扰的配置参数;
利用获取的对所述天线无干扰的所述配置参数修改所述摄像头的所述当 前配置参数。
在第一方面的第一种可能的实施方式中,所述确定所述天线是否受到所述摄像头所产生的信号的干扰,包括:
根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
结合第一方面或者第一方面的第一种可能的实施方式,在第二种可能的实施方式中,所述获取对所述天线无干扰的配置参数,包括:
根据所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
结合第一方面、第一方面的第一种可能的实施方式或者第一方面的第二种可能的实施方式,在第三种可能的实施方式中,所述方法还包括:
若所述天线未受到所述摄像头所产生的信号的干扰,则所述当前配置参数维持不变。
结合第一方面、第一方面的第一种可能的实施方式、第一方面的第二种可能的实施方式或者第一方面的第三种可能的实施方式,在第四种可能的实施方式中,所述方法还包括:
若所述电子设备未成功驻留在网络上,则将所述摄像头的当前配置参数恢复为默认的配置参数。
结合第一方面、第一方面的第一种可能的实施方式、第一方面的第二种可能的实施方式、第一方面的第三种可能的实施方式或者第一方面的第四种可能的实施方式,在第五种可能的实施方式中,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
第二方面,提供了一种防止摄像头干扰天线的装置,应用于包含有摄像头和天线的电子设备中,所述装置包括:
检测模块,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
第一获取模块,用于在所述检测模块检测到所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
确定模块,用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
第二获取模块,用于在所述确定模块确定所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
修改模块,用于利用所述第二获取模块获取的对所述天线无干扰的所述配置参数修改所述第一获取模块获取到的所述摄像头的所述当前配置参数。
在第二方面的第一种可能的实施方式中,所述确定模块,具体用于:
根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
结合第二方面或者第二方面的第一种可能的实施方式,在第二种可能的实施方式中,所述第二获取模块,具体用于:
根据所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
结合第二方面、第二方面的第一种可能的实施方式或者第二方面的第二种可能的实施方式,在第三种可能的实施方式中,所述修改模块,还用于在所述确定模块确定出所述天线未受到所述摄像头所产生的信号的干扰时,所述当前配置参数维持不变。
结合第二方面、第二方面的第一种可能的实施方式、第二方面的第二种可能的实施方式或者第二方面的第三种可能的实施方式,在第四种可能的实施方式中,所述修改模块,还用于在所述检测模块检测到所述电子设备未成功驻留在网络上时,将所述摄像头的当前配置参数恢复为默认的配置参数。
结合第二方面、第二方面的第一种可能的实施方式、第二方面的第二种可能的实施方式、第二方面的第三种可能的实施方式或者第二方面的第四种可能的实施方式,在第五种可能的实施方式中,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
第三方面,提供了一种电子设备,所述电子设备包含有摄像头和天线,所述电子设备还包括:处理器;
所述处理器,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
所述处理器,还用于在所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
所述处理器,还用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
所述处理器,还用于在所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
所述处理器,还用于利用对所述天线无干扰的所述配置参数修改所述摄像头的所述当前配置参数。
在第三方面的第一种可能的实施方式中,所述电子设备还包括存储器,
所述存储器,用于存储预置的关系数据库;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
所述处理器,还用于根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;
所述处理器,还用于根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
结合第三方面或者第三方面的第一种可能的实施方式,在第二种可能的实施方式中,所述处理器,还用于根据所述存储器存储的所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
结合第三方面、第三方面的第一种可能的实施方式或者第三方面的第二种可能的实施方式,在第三种可能的实施方式中,所述处理器,还用于在所述天线未受到所述摄像头所产生的信号的干扰时,所述当前配置参数维持不变。
结合第三方面、第三方面的第一种可能的实施方式、第三方面的第二种可能的实施方式或者第三方面的第三种可能的实施方式,在第四种可能的实施方式中,所述处理器,还用于在所述电子设备未成功驻留在网络上时,将所述摄像头的当前配置参数恢复为默认的配置参数。
结合第三方面、第三方面的第一种可能的实施方式、第三方面的第二种可能的实施方式、第三方面的第三种可能的实施方式或者第三方面的第四种可能的实施方式,在第五种可能的实施方式中,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
本发明实施例提供的防止摄像头干扰天线的方法、装置及电子设备,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性的效果。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明一个实施例中提供的防止摄像头干扰天线的方法的方法流程图;
图2是本发明另一个实施例中提供的防止摄像头干扰天线的方法的方法流程图;
图3是本发明再一个实施例中提供的防止摄像头干扰天线的方法的方法流程图;
图4是本发明一个实施例提供的防止摄像头干扰天线的装置的结构示意图;
图5是本发明另一个实施例提供的防止摄像头干扰天线的装置的结构示意图;
图6是本发明一个实施例提供的电子设备的结构示意图;
图7是本发明另一个实施例提供的电子设备的结构示意图。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
请参见图1所示,其示出了本发明一个实施例中提供的防止摄像头干扰天线的方法的方法流程图,该防止摄像头干扰天线的方法主要以应用于具有摄像头和天线的电子设备中进行举例说明,这里所讲的电子设备可以是智能手机、平板电脑、智能电视、电子书阅读器、多媒体播放器和膝上型便携计算机等等。该防止摄像头干扰天线的方法可以包括:
步骤101,在摄像头启动后,检测电子设备是否成功驻留在网络上。
这里所讲的成功驻留在网络是指电子设备成功驻留在数字网络中,比如第二代移动通信技术(英文:Second Generation,简称2G)、第三代移动通信技术(英文:Third Generation,简称3G)、第四代移动通信技术(英文:Fourth Generation,简称4G)或长期演进(英文:Long Term Evolution,简称:LTE)等。
步骤102,若电子设备成功驻留在网络上,则获取电子设备所驻留的网络资源以及摄像头的当前配置参数。
电子设备成功驻留在网络上,表明该电子设备可以进行通话和收发短信,或者还可以利用数字网络请求网络服务,比如浏览网页、下载网络资源、上传资源、收发即时通信消息等。
在实际应用场景中,当电子设备成功驻留在网络上时,包括如下多种场景:
一种场景中,电子设备的数字开关被开启且信号比较好,此时电子设备可以利用数字网络进行上网浏览且可以利用数字网络进行通话或者收发短信等。
另一种场景中,电子设备的数字开关被用户关闭,此时电子设备无法利用数字网络实现网上浏览等操作,但可以利用数字网络进行通话或收发短信。
这里所讲的网络资源可以包括频段、信道和带宽中的前一种、前两种或者全部。也就是说,这里的网络资源可以按照频段的维度进行划分,为了能够划分的更加细致,还可以区分频段内不同的信道,做更精细的控制。而对于可变带宽的网络,比如LTE,则可以按照信道和带宽进一步划分。
摄像头的配置参数包括为摄像头配置的分辨率和帧率。
由于摄像头的每种配置参数均会影响驻留在某部分网络资源上的天线,因此为了能够判断天线是否受到摄像头所产生信号的干扰,需要获取电子设备所驻留的网络资源以及摄像头的当前配置参数。
步骤103,确定天线是否受到摄像头所产生的信号的干扰。
由于摄像头在开启后会产生信号,而该信号则很可能会进入到天线,并影 响天线的通信,因此,为了避免开启的摄像头所产生的信号对天线的影响,需要判断天线是否受到摄像头所产生的信号的干扰。
步骤104,若天线受到摄像头所产生的信号的干扰,则获取对天线无干扰的配置参数。
步骤105,利用获取的对天线无干扰的配置参数修改摄像头的当前配置参数。
综上所述,本发明实施例提供的防止摄像头干扰天线的方法,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
在实际应用中,电子设备可以利用关系数据库来确定天线是否受到摄像头所产生的信号的干扰,即将图1中的步骤103替换为下图2中的步骤103a和步骤103b,具体请参见对下图2的描述。
请参见图2所示,其示出了本发明另一个实施例中提供的防止摄像头干扰天线的方法的方法流程图,该防止摄像头干扰天线的方法主要以应用于具有摄像头和天线的电子设备中进行举例说明,这里所讲的电子设备可以是智能手机、平板电脑、智能电视、电子书阅读器、多媒体播放器和膝上型便携计算机等等。该防止摄像头干扰天线的方法可以包括:
步骤101,在摄像头启动后,检测电子设备是否成功驻留在网络上。
步骤102,若电子设备成功驻留在网络上,则获取电子设备所驻留的网络资源以及摄像头的当前配置参数。
上述步骤101和步骤102均可以参见对图1中步骤101和步骤102的描述,这里就不再赘述。
步骤103a,根据预置的关系数据库、获取的该网络资源和该当前配置参数确定干扰参数。
这里所讲的关系数据库存储各种网络资源和各种配置参数与干扰参数的 对应关系,其中,干扰参数用于指示驻留在一种网络资源的天线是否受到使用一种配置参数启动摄像头所产生信号的干扰。
一般的,关系数据库中每个干扰参数用于位于对应一组配置参数和网络资源,即该干扰参数用于表示配置有该配置参数的摄像头所产生的信号是否对驻留在该网络资源的天线存在干扰。
举例来讲,请参见下表1,表1中的表头包含了若干个配置参数,这些配置参数分别为:分辨率为1080p且帧率为30fps(表1中用1080p@30fps表示)、分辨率为1080p且帧率为15fps(表1中用1080p@15fps表示)、分辨率为720p且帧率为30fps(表1中用720p@30fps表示)、分辨率为720p且帧率为15fps(表1中用720p@15fps表示),表1中的第一列包含了若干个网络资源,分别为B1、B2、B3等。很显然,在实际应用中,配置参数并不限于表1中所列举出的这些配置参数。
  1080p@30fps 1080p@15fps 720p@30fps 720p@15fps
B1 Y N N N
B2 N N Y N
B3 Y Y N N
表1
表1中的“Y”表示无干扰,“N”表示有干扰。
举例来讲,对应于B1和1080p@30fps的Y用于表示配置有1080p@30fps的摄像头所产生的信号对驻留在B1上的天线存在干扰。
再举例来讲,对应于B1和1080p@15fps的N用于表示配置有1080p@15fps的摄像头所产生的信号对驻留在B1上的天线没有干扰。
根据上述表格所对应的关系数据库、获取的该网络资源和该当前配置参数,电子设备即可确定出一个干扰参数。比如,当获取的该网络资源为1080p@15fps,该当前配置参数为B3,则电子根据该关系数据库以及该网络资源和该当前配置参数确定的干扰参数则为Y。
步骤103b,根据该干扰参数确定天线是否受到摄像头所产生信号的干扰。
由于干扰参数用于表示配置有该配置参数的摄像头所产生的信号是否对驻留在该网络资源的天线存在干扰,因此电子设备可以根据该干扰参数确定天线是否受到摄像头所产生信号的干扰。
比如,当干扰参数为Y时,表明天线受到摄像头所产生信号的干扰,当干扰参数为N时,表明天线不受到摄像头所产生信号的干扰。
若天线受到摄像头所产生的信号的干扰,则获取对天线无干扰的配置参数。在一种可能的实现方式中,电子设备也可以利用上述的关系数据库来获取对天线无干扰的配置参数,即将图1中的步骤104替换为步骤104’。
步骤104’,若天线受到摄像头所产生的信号的干扰,则根据该关系数据库确定出对驻留在该网络资源的天线无干扰的配置参数。
同样利用该关系数据库中查找对驻留在该网络资源的天线无干扰的配置参数。
可选的,若电子设备查找到多个对驻留在该网络资源的天线无干扰的配置参数,则可以从这些无干扰的配置参数中随机选取出一个配置参数,或者选取出配置最高的配置参数,或者选取出优于当前配置参数的一个配置参数,或者选取出低于当前配置参数的一个配置参数,或者从优于当前配置参数的各个配置参数选取出的配置最低的配置参数,或者从低于当前配置参数的各个配置参数中选取出配置最高的配置参数等。
可选的,若电子设备查找到多个对驻留在该网络资源的天线无干扰的配置参数,还可以显示这些无干扰的配置参数,以提示用户选择其中一种配置参数。
步骤105,利用获取的对天线无干扰的配置参数修改摄像头的当前配置参数。
即利用获取的对天线无干扰的配置参数替换摄像头的当前配置参数,替换后的摄像头所产生的信号不再对天线产生干扰。
综上所述,本发明实施例提供的防止摄像头干扰天线的方法,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
在一种可能的实现场景中,如果天线没有受到摄像头所产生的信号的干 扰,为了尽量避免因配置参数的修改而产生的干扰,可以使得摄像头的当前配置参数维持不变。
很显然,只要每次判断出天线没有受到摄像头所产生信号的干扰,则维持该摄像头的当前配置参数不变。
在一种可能的实现场景中,请参见图3所示,在步骤101之后,该防止摄像头干扰天线的方法还可以包括如下步骤:
步骤106,若电子设备未成功驻留在网络上,则将摄像头的当前配置参数恢复为默认的配置参数。
在实际应用场景中,当电子设备未成功驻留在网络上时,通常包括如下多种场景:
一种场景中,电子设备处于飞行模式,此时电子设备无法利用数字网络实现上网浏览等操作,也无法利用数字网络进行通话或收发短信等。
另一种场景中,电子设备所能接收到的数字网络的信号比较差,或者直接无法成功接收到数字网络的信号,此时电子设备如同处于飞行模式,即无法利用数字网络实现网上浏览等操作,也无法利用数字网络进行通话或收发短信等。
因此当电子设备未成功驻留在网络上时,天线并不会收发信号,此时无论摄像头的配置参数是何种配置参数,均不会对天线造成影响。为了能够使摄像头的配置参数尽可能地满足用户的拍摄需求,可以将摄像头的当前配置参数恢复为默认的配置参数,这里默认的配置参数通常是用户优先配置好的参数,或者是系统为用户优先配置好的比较符合用户需求的参数。
在一种可能的实现场景中,当电子设备为摄像头配置不会对天线产生干扰的配置参数后,电子设备需要继续检测该电子设备是否仍旧驻留到网络,当该电子设备没有驻留到网络时,可以做出相应调整以更好地满足用户的拍摄需求,比如可以将摄像头的当前配置参数恢复为默认的配置参数。
图3中步骤102至步骤105分别与图1中的步骤102至步骤105相同,这里就不再赘述。
需要补充说明的是,由于后期天线所驻留的网络资源可能会发生变化,或者天线会从驻留网络状态到未驻留网络状态,因此在为摄像头配置对天线无干扰的配置参数之后,还需要继续检测电子设备是否成功驻留在网络上。若电子 设备不再成功驻留在网络上,则执行步骤106;若电子设备成功驻留在网络上,则继续执行步骤102,此时获取的网络资源可能与前次获取的网络资源不同,即所驻留的网络资源可能会发生变化,然后利用步骤103至步骤105选择一个对驻留在新的网络资源上的天线无干扰的配置参数,并将该配置参数配置为摄像头。
综上所述,该防止摄像头干扰天线的方法通过在检测到电子设备从驻留网络状态变换为未驻留网络状态时,重新为摄像头配置默认的配置参数;解决了当电子设备没有驻留网络时,摄像头仍旧以非默认的配置参数工作,使得用户拍摄体验较差的问题;到达了提高用户的拍摄体验,提高拍摄质量的效果。
另外,通过实时获取天线所驻留的网络资源,并判断天线是否被摄像头所产生的信号干扰,并在干扰时,实时为摄像头配置对天线无干扰的配置参数;解决了在摄像头工作工程中,电子设备驻留网络的网络资源发生变化后,摄像头对变化后的网络资源产生干扰的问题;达到了提高天线性能的稳定性的效果。
在一种可能的实现场景中,利用高分辨率和高帧率的配置参数的摄像头所拍摄出的照片的清晰度以及流畅性比较好,但拍摄出的照片比较占用内存,因此在获取对天线无干扰的配置参数的过程中,可以尽可能的为用户选择一个合适的配置参数,使得利用该配置参数的摄像头拍摄的照片清晰度和流畅度相对较好且占用内存相对较少。
比如,电子设备按照第一预定顺序从预存的第一参数组中依次查找是否存在对该天线无干扰的配置参数。
其中,第一参数组中包括至少一组对应关系,该对应关系包括配置参数、网络资源以及干扰参数,该配置参数中包括分辨率和帧率,该第一参数组中对应关系中的分辨率高于或等于当前配置参数中的分辨率,该第一预定顺序为按照分辨率由低到高,在分辨率相同时,按照帧率由低到高。
可选的,在获取对天线无干扰的配置参数的过程中,为了便于查找上述合适的配置参数,在将这些关系数据库中的数据按照表1的方式进行存储时,针对同一个网络资源,可以按照分辨率逐渐减小的顺序从左向右排列配置参数,并在分辨率相同时,先排列包含高帧率的配置参数,再排列包含低帧率的配置参数。也即使得表1中表头的配置参数中的分辨率向右逐渐减小,而当分辨率 相同时,帧率向右逐渐减小。
举例来讲,请参见上述表1所示,第一预定顺序即在表1中从当前查找到的干扰参数开始向左查找,若查找到用于指示无干扰的干扰参数,则获取第一个用于指示无干扰的查找的干扰参数,并获取该干扰参数所对应的配置参数。比如,在当前配置参数为720p@30fps,且天线驻留的网络资源为B2时,获取到的干扰参数为Y,从该干扰参数向左查找到的第一个干扰参数为N,此时则获取该干扰参数所对应的配置参数1080p@15fps。
还比如,电子设备按照第二预定顺序从预存的第二参数组中依次查找是否存在对该天线无干扰的配置参数。
其中,第二参数组中包括至少一组对应关系,该对应关系包括配置参数、网络资源以及干扰参数,该配置参数中包括分辨率和帧率,该第二参数组中对应关系中的分辨率低于于或等于当前配置参数中的分辨率,该第二预定顺序为按照分辨率由高到低,在分辨率相同时,按照帧率由高到低。
可选的,在获取对天线无干扰的配置参数的过程中,为了便于查找上述合适的配置参数,在将这些关系数据库中的数据按照表1的方式进行存储时,针对同一个网络资源,可以按照分辨率逐渐减小的顺序从左向右排列配置参数,并在分辨率相同时,先排列包含高帧率的配置参数,再排列包含低帧率的配置参数。
举例来讲,请参见上述表1所示,第二预定顺序即在表1中从当前查找到的干扰参数开始向右查找,若查找到用于指示无干扰的干扰参数,则获取第一个用于指示无干扰的查找的干扰参数,并获取该干扰参数所对应的配置参数。比如,在当前配置参数为1080p@15fps,且天线驻留的网络资源为B3时,获取到的干扰参数为Y,从该干扰参数向左查找时未查找到用于指示无干扰的干扰参数,此时则向右继续查找,获取第一个用于指示无干扰的查找的干扰参数,该干扰参数所对应的配置参数720p@30fps。
请参见图4所示,其示出了本发明一个实施例提供的防止摄像头干扰天线的装置的结构示意图,该防止摄像头干扰天线的装置主要以应用于具有摄像头和天线的电子设备中进行举例说明,这里所讲的电子设备可以是智能手机、平板电脑、智能电视、电子书阅读器、多媒体播放器和膝上型便携计算机等等。该防止摄像头干扰天线的装置可以包括:检测模块410、第一获取模块420、 确定模块430、第二获取模块440和修改模块450。
检测模块410,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
第一获取模块420,用于在所述检测模块410检测到所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
确定模块430,用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
第二获取模块440,用于在所述确定模块430确定所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
修改模块450,用于利用所述第二获取模块440获取的对所述天线无干扰的所述配置参数修改所述第一获取模块420获取到的所述摄像头的所述当前配置参数。
综上所述,本发明实施例提供的防止摄像头干扰天线的装置,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
请参见图5所示,其示出了本发明另一个实施例提供的防止摄像头干扰天线的装置的结构示意图,该防止摄像头干扰天线的装置主要以应用于具有摄像头和天线的电子设备中进行举例说明,这里所讲的电子设备可以是智能手机、平板电脑、智能电视、电子书阅读器、多媒体播放器和膝上型便携计算机等等。该防止摄像头干扰天线的装置可以包括:检测模块510、第一获取模块520、确定模块530、第二获取模块540和修改模块550。
检测模块510,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
第一获取模块520,用于在所述检测模块510检测到所述电子设备成功驻 留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
确定模块530,用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
第二获取模块540,用于在所述确定模块530确定所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
修改模块550,用于利用所述第二获取模块540获取的对所述天线无干扰的所述配置参数修改所述第一获取模块520获取到的所述摄像头的所述当前配置参数。
在一种可能的实现方式中,所述确定模块530,具体用于:
根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
在一种可能的实现方式中,所述第二获取模块540,具体用于:
根据所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
在一种可能的实现方式中,所述修改模块550,还用于在所述确定模块530确定出所述天线未受到所述摄像头所产生的信号的干扰时,所述当前配置参数维持不变。
在一种可能的实现方式中,所述修改模块550,还用于在所述检测模块510检测到所述电子设备未成功驻留在网络上时,将所述摄像头的当前配置参数恢复为默认的配置参数。
在一种可能的实现方式中,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
综上所述,本发明实施例提供的防止摄像头干扰天线的装置,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像 头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
另外,通过在检测到电子设备从驻留网络状态变换为未驻留网络状态时,重新为摄像头配置默认的配置参数;解决了当电子设备没有驻留网络时,摄像头仍旧以非默认的配置参数工作,使得用户拍摄体验较差的问题;到达了提高用户的拍摄体验,提高拍摄质量的效果。
另外,通过实时获取天线所驻留的网络资源,并判断天线是否被摄像头所产生的信号干扰,并在干扰时,实时为摄像头配置对天线无干扰的配置参数;解决了在摄像头工作工程中,电子设备驻留网络的网络资源发生变化后,摄像头对变化后的网络资源产生干扰的问题;达到了提高天线性能的稳定性的效果。
需要说明的是:上述实施例提供的防止摄像头干扰天线的装置和防止摄像头干扰天线的装置在防止摄像头干扰天线时,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将电子设备内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。另外,上述实施例提供的防止摄像头干扰天线的装置与防止摄像头干扰天线的方法实施例属于同一构思,其具体实现过程详见方法实施例,这里不再赘述。
请参见图6所示,其示出了本发明一个实施例中提供的电子设备的结构示意图,该电子设备可以包括:摄像头610、天线620和处理器630,其中摄像头610、天线620分别通过总线640与处理器630连接。
所述处理器630,用于在所述摄像头610启动后,检测所述电子设备是否成功驻留在网络上;
所述处理器630,还用于在所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头610的当前配置参数;
所述处理器630,还用于确定所述天线620是否受到所述摄像头610所产生的信号的干扰;
所述处理器630,还用于在所述天线620受到所述摄像头610所产生的信 号的干扰时,获取对所述天线620无干扰的配置参数;
所述处理器630,还用于利用对所述天线620无干扰的所述配置参数修改所述摄像头610的所述当前配置参数。
综上所述,本发明实施例提供的电子设备,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
请参见图7所示,其示出了本发明另一个实施例中提供的电子设备的结构示意图,该电子设备可以包括:摄像头710、天线720和处理器730,其中摄像头710和天线720分别通过总线750与处理器730连接。所述处理器730执行的操作至少如下:
所述处理器730用于在所述摄像头710启动后,检测所述电子设备是否成功驻留在网络上;
所述处理器730还用于在所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头710的当前配置参数;
所述处理器730还用于确定所述天线720是否受到所述摄像头710所产生的信号的干扰;
所述处理器730还用于在所述天线720受到所述摄像头710所产生的信号的干扰时,获取对所述天线720无干扰的配置参数;
所述处理器730还用于利用对所述天线720无干扰的所述配置参数修改所述摄像头710的所述当前配置参数。
在一种可能的实现方式中,所述电子设备还包括存储器740,存储器740通过总线750与处理器730连接。
所述存储器740,用于存储预置的关系数据库;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线720是否受到使用一种配置参数启动所述摄像 头710所产生信号的干扰;
所述处理器730,还用于根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;
所述处理器730,还用于根据所述干扰参数确定所述天线720是否受到所述摄像头710所产生信号的干扰。
在一种可能的实现方式中,所述处理器730,还用于根据所述存储器740存储的所述关系数据库确定出对驻留在所述网络资源的所述天线720无干扰的配置参数。
在一种可能的实现方式中,所述处理器730,还用于在所述天线720未受到所述摄像头710所产生的信号的干扰时,维持所述当前配置参数不变。
在一种可能的实现方式中,所述处理器730,还用于在所述电子设备未成功驻留在网络上时,将所述摄像头710的当前配置参数恢复为默认的配置参数。
在一种可能的实现方式中,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
综上所述,本发明实施例提供的电子设备,通过在摄像头被开启且电子设备成功驻留在网络上时,检测天线是否受到摄像头所产生信号的干扰,若天线受到摄像头所产生信号的干扰,则为摄像头配置对天线无干扰的的配置参数;由于在天线受到摄像头的干扰时,可以重新为摄像头配置一个对天线没有干扰的配置参数,即能够通过改变摄像头的配置参数来消除摄像头对天线的干扰,因此解决了摄像头模组连接器泄露部分信号,进而影响电子设备的天线性能的问题;达到了消除摄像头对天线的干扰,提高天线性能的稳定性,弥补硬件上无法完全避免摄像头对天线干扰的缺陷的效果。
另外,通过在检测到电子设备从驻留网络状态变换为未驻留网络状态时,重新为摄像头配置默认的配置参数;解决了当电子设备没有驻留网络时,摄像头仍旧以非默认的配置参数工作,使得用户拍摄体验较差的问题;到达了提高用户的拍摄体验,提高拍摄质量的效果。
另外,通过实时获取天线所驻留的网络资源,并判断天线是否被摄像头所产生的信号干扰,并在干扰时,实时为摄像头配置对天线无干扰的配置参数;解决了在摄像头工作工程中,电子设备驻留网络的网络资源发生变化后,摄像头对变化后的网络资源产生干扰的问题;达到了提高天线性能的稳定性的效果。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,可以仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存 取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应所述以权利要求的保护范围为准。

Claims (18)

  1. 一种防止摄像头干扰天线的方法,其特征在于,应用于包含有摄像头和天线的电子设备中,所述方法包括:
    在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
    若所述电子设备成功驻留在网络上,则获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
    确定所述天线是否受到所述摄像头所产生的信号的干扰;
    若所述天线受到所述摄像头所产生的信号的干扰,则获取对所述天线无干扰的配置参数;
    利用获取的对所述天线无干扰的所述配置参数修改所述摄像头的所述当前配置参数。
  2. 根据权利要求1所述的方法,其特征在于,所述确定所述天线是否受到所述摄像头所产生的信号的干扰,包括:
    根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
    根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
  3. 根据权利要求2所述的方法,其特征在于,所述获取对所述天线无干扰的配置参数,包括:
    根据所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
  4. 根据权利要求1至3任一项所述的方法,其特征在于,所述方法还包括:
    若所述天线未受到所述摄像头所产生的信号的干扰,则所述当前配置参数维持不变。
  5. 根据权利要求1至4任一项所述的方法,其特征在于,所述方法还包括:
    若所述电子设备未成功驻留在网络上,则将所述摄像头的当前配置参数恢复为默认的配置参数。
  6. 根据权利要求1至5中任一所述的方法,其特征在于,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
  7. 一种防止摄像头干扰天线的装置,其特征在于,应用于包含有摄像头和天线的电子设备中,所述装置包括:
    检测模块,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
    第一获取模块,用于在所述检测模块检测到所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
    确定模块,用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
    第二获取模块,用于在所述确定模块确定所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
    修改模块,用于利用所述第二获取模块获取的对所述天线无干扰的所述配置参数修改所述第一获取模块获取到的所述摄像头的所述当前配置参数。
  8. 根据权利要求7所述的装置,其特征在于,所述确定模块,具体用于:
    根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
    根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
  9. 根据权利要求8所述的装置,其特征在于,所述第二获取模块,具体用于:
    根据所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
  10. 根据权利要求7至9任一项所述的装置,其特征在于,所述修改模块, 还用于在所述确定模块确定出所述天线未受到所述摄像头所产生的信号的干扰时,所述当前配置参数维持不变。
  11. 根据权利要求7至10任一项所述的装置,其特征在于,所述修改模块,还用于在所述检测模块检测到所述电子设备未成功驻留在网络上时,将所述摄像头的当前配置参数恢复为默认的配置参数。
  12. 根据权利要求7至11中任一所述的装置,其特征在于,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
  13. 一种电子设备,所述电子设备包含有摄像头和天线,其特征在于,所述电子设备还包括:处理器;
    所述处理器,用于在所述摄像头启动后,检测所述电子设备是否成功驻留在网络上;
    所述处理器,还用于在所述电子设备成功驻留在网络上时,获取所述电子设备所驻留的网络资源以及所述摄像头的当前配置参数;
    所述处理器,还用于确定所述天线是否受到所述摄像头所产生的信号的干扰;
    所述处理器,还用于在所述天线受到所述摄像头所产生的信号的干扰时,获取对所述天线无干扰的配置参数;
    所述处理器,还用于利用对所述天线无干扰的所述配置参数修改所述摄像头的所述当前配置参数。
  14. 根据权利要求13所述的电子设备,其特征在于,所述电子设备还包括存储器,
    所述存储器,用于存储预置的关系数据库;所述关系数据库存储各种网络资源和各种配置参数与所述干扰参数的对应关系,所述干扰参数用于指示驻留在一种所述网络资源的天线是否受到使用一种配置参数启动所述摄像头所产生信号的干扰;
    所述处理器,还用于根据预置的关系数据库、获取的所述网络资源和所述当前配置参数确定干扰参数;
    所述处理器,还用于根据所述干扰参数确定所述天线是否受到所述摄像头所产生信号的干扰。
  15. 根据权利要求14所述的电子设备,其特征在于,
    所述处理器,还用于根据所述存储器存储的所述关系数据库确定出对驻留在所述网络资源的所述天线无干扰的配置参数。
  16. 根据权利要求13至15任一项所述的电子设备,其特征在于,
    所述处理器,还用于在所述天线未受到所述摄像头所产生的信号的干扰时,维持所述当前配置参数不变。
  17. 根据权利要求13至16任一项所述的电子设备,其特征在于,
    所述处理器,还用于在所述电子设备未成功驻留在网络上时,将所述摄像头的当前配置参数恢复为默认的配置参数。
  18. 根据权利要求13至17中任一所述的电子设备,其特征在于,所述网络资源包括频段、信道和带宽中的前一种,前两种或全部。
PCT/CN2015/076969 2015-04-20 2015-04-20 防止摄像头干扰天线的方法、装置及电子设备 WO2016168966A1 (zh)

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