WO2021169917A1 - 功率调整方法及电子设备 - Google Patents

功率调整方法及电子设备 Download PDF

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Publication number
WO2021169917A1
WO2021169917A1 PCT/CN2021/077250 CN2021077250W WO2021169917A1 WO 2021169917 A1 WO2021169917 A1 WO 2021169917A1 CN 2021077250 W CN2021077250 W CN 2021077250W WO 2021169917 A1 WO2021169917 A1 WO 2021169917A1
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WO
WIPO (PCT)
Prior art keywords
electronic device
transmission power
preset
uplink data
power
Prior art date
Application number
PCT/CN2021/077250
Other languages
English (en)
French (fr)
Inventor
刘辉
谢宁宁
Original Assignee
维沃移动通信有限公司
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 维沃移动通信有限公司 filed Critical 维沃移动通信有限公司
Priority to EP21761034.4A priority Critical patent/EP4114095A4/en
Priority to KR1020227033092A priority patent/KR20220145880A/ko
Priority to JP2022550903A priority patent/JP7427802B2/ja
Publication of WO2021169917A1 publication Critical patent/WO2021169917A1/zh
Priority to US17/891,100 priority patent/US20220394634A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/28TPC being performed according to specific parameters using user profile, e.g. mobile speed, priority or network state, e.g. standby, idle or non transmission
    • H04W52/288TPC being performed according to specific parameters using user profile, e.g. mobile speed, priority or network state, e.g. standby, idle or non transmission taking into account the usage mode, e.g. hands-free, data transmission, telephone
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/30TPC using constraints in the total amount of available transmission power
    • H04W52/36TPC using constraints in the total amount of available transmission power with a discrete range or set of values, e.g. step size, ramping or offsets
    • H04W52/367Power values between minimum and maximum limits, e.g. dynamic range
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/06TPC algorithms
    • H04W52/14Separate analysis of uplink or downlink
    • H04W52/146Uplink power control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/24TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters
    • H04W52/241TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters taking into account channel quality metrics, e.g. SIR, SNR, CIR, Eb/lo
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/24TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters
    • H04W52/246TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters where the output power of a terminal is based on a path parameter calculated in said terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/28TPC being performed according to specific parameters using user profile, e.g. mobile speed, priority or network state, e.g. standby, idle or non transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/38TPC being performed in particular situations
    • H04W52/48TPC being performed in particular situations during retransmission after error or non-acknowledgment
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/20TPC being performed according to specific parameters using error rate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/26TPC being performed according to specific parameters using transmission rate or quality of service QoS [Quality of Service]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • H04W52/26TPC being performed according to specific parameters using transmission rate or quality of service QoS [Quality of Service]
    • H04W52/267TPC being performed according to specific parameters using transmission rate or quality of service QoS [Quality of Service] taking into account the information rate
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the embodiments of the present invention relate to the field of communication technologies, and in particular, to a power adjustment method and electronic equipment.
  • network equipment can configure an uplink maximum power (that is, the maximum power that can be used to transmit uplink data) for electronic equipment according to the antenna radiation capability of the electronic equipment, the interference situation of each electronic equipment in the network, and the usage scenario of the electronic equipment, etc. Therefore, the electronic device can use an uplink power less than the maximum uplink power to transmit uplink data to the network device.
  • an uplink maximum power that is, the maximum power that can be used to transmit uplink data
  • the embodiments of the present invention provide a power adjustment method and an electronic device, which can solve the problem of poor transmission performance of the electronic device.
  • a power adjustment method applied to an electronic device includes: detecting whether the first information satisfies a first preset condition; wherein the first information includes at least one of the following: uplink data The first retransmission rate, the actual transmission power of uplink data, and the first maximum transmission power of uplink data, where the first maximum transmission power is the power threshold configured by the network device for the electronic device to transmit uplink data; in the first information
  • the preset power control algorithm is used to adjust the first maximum transmission power to the target transmission power, and the target transmission power is greater than the first maximum transmission power and less than or equal to that of the radio frequency device of the electronic device. Inherent maximum transmission power.
  • an electronic device in a second aspect of the embodiments of the present invention, includes: a detection module and an adjustment module; wherein the detection module is configured to detect whether the first information meets a first preset condition; wherein, the first information It includes at least one of the following: a first retransmission rate of uplink data, an actual transmission power of uplink data, and a first maximum transmission power of uplink data, where the first maximum transmission power is the power configured by the network device for the electronic device to transmit uplink data Threshold value.
  • the adjustment module is configured to use a preset power control algorithm to adjust the first maximum transmission power to a target transmission power when the first information satisfies the first preset condition, and the target transmission power is greater than the first maximum transmission power, and Less than or equal to the inherent maximum transmission power of the radio frequency device of the electronic equipment.
  • an electronic device in a third aspect of the embodiments of the present invention, includes a processor, a memory, and a computer program that is stored on the memory and can run on the processor. On the one hand, the steps of the power adjustment method.
  • a computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the power adjustment method as described in the first aspect are implemented .
  • the electronic device can detect the retransmission rate of the uplink data, the actual transmission power of the uplink data, and the maximum transmission power of the uplink data, and determine whether these data meet the first preset condition, so that the data meets the first preset condition. Under a preset condition, the first maximum transmission power is adjusted to the target transmission power through a preset power control algorithm. In the event that the function of the electronic device running certain applications is abnormal, the electronic device can be based on the retransmission rate of the uplink data, the actual transmission power of the uplink data and/or the maximum transmission power of the uplink data, so that the information can be satisfied. In the case of the first preset condition, the first maximum transmission power is adjusted to the target transmission power through the preset power control algorithm, so that the electronic device can achieve uplink data transmission through the adjusted transmission power, thereby improving the electronic device Transmission performance.
  • FIG. 1 is a schematic diagram of the architecture of an Android operating system provided by an embodiment of the present invention
  • FIG. 2 is one of the schematic diagrams of a power adjustment method provided by an embodiment of the present invention.
  • FIG. 3 is a second schematic diagram of a power adjustment method provided by an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of an electronic device provided by an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of hardware of an electronic device provided by an embodiment of the present invention.
  • first and second in the description and claims of the embodiments of the present invention are used to distinguish different objects, rather than to describe a specific order of objects.
  • first preset condition and the second preset condition are used to distinguish different preset conditions, rather than to describe the specific order of the preset conditions.
  • plural means two or more.
  • a plurality of elements refers to two elements or more than two elements.
  • words such as “exemplary” or “for example” are used to represent examples, illustrations, or illustrations. Any embodiment or design solution described as “exemplary” or “for example” in the embodiments of the present invention should not be construed as being more preferable or advantageous than other embodiments or design solutions. To be precise, words such as “exemplary” or “for example” are used to present related concepts in a specific manner.
  • the embodiments of the present invention provide a power adjustment method and an electronic device.
  • the electronic device can be based on the retransmission rate of the uplink data, the actual transmission power of the uplink data and/ Or the maximum transmission power of uplink data, so that when the information meets the first preset condition, the first maximum transmission power can be adjusted to the target transmission power through a preset power control algorithm, so that the electronic device can be adjusted
  • the transmission power realizes the transmission of uplink data, so the transmission performance of electronic equipment can be improved.
  • the power adjustment method and electronic device provided by the embodiments of the present invention can be applied to the process of adjusting the upper limit of the transmission power of the electronic device.
  • the electronic device in the embodiment of the present invention may be an electronic device with an operating system.
  • the operating system may be an Android operating system, an ios operating system, or other possible operating systems, which is not specifically limited in the embodiment of the present invention.
  • the following takes the Android operating system as an example to introduce the software environment to which the power adjustment method provided by the embodiment of the present invention is applied.
  • FIG. 1 it is a schematic structural diagram of a possible Android operating system provided by an embodiment of the present invention.
  • the architecture of the Android operating system includes 4 layers, which are: application layer, application framework layer, system runtime library layer, and kernel layer (specifically, it may be the Linux kernel layer).
  • the application layer includes various applications (including system applications and third-party applications) in the Android operating system.
  • the application framework layer is the framework of the application. Developers can develop some applications based on the application framework layer while complying with the development principles of the application framework.
  • the system runtime layer includes a library (also called a system library) and an Android operating system runtime environment.
  • the library mainly provides various resources needed by the Android operating system.
  • the Android operating system operating environment is used to provide a software environment for the Android operating system.
  • the kernel layer is the operating system layer of the Android operating system and belongs to the lowest level of the Android operating system software level.
  • the kernel layer is based on the Linux kernel to provide core system services and hardware-related drivers for the Android operating system.
  • developers can develop a software program that implements the power adjustment method provided by the embodiment of the present invention based on the system architecture of the Android operating system as shown in FIG.
  • the adjustment method can be run based on the Android operating system as shown in FIG. 1. That is, the processor or the electronic device can implement the power adjustment method provided by the embodiment of the present invention by running the software program in the Android operating system.
  • the electronic device in the embodiment of the present invention may be a mobile electronic device or a non-mobile electronic device.
  • the mobile electronic device may be a mobile phone, a tablet computer, a notebook computer, a handheld computer, a vehicle electronic device, a wearable device, an ultra-mobile personal computer (UMPC), a netbook, or a personal digital assistant (personal digital assistant). Assistant, PDA), etc.
  • the non-mobile electronic device may be a personal computer (PC), television (television, TV), teller machine, or self-service machine, etc., which is not specifically limited in the embodiment of the present invention.
  • the electronic device when a user uses a function (such as a video call function, a video playback function, or a game function) in an application of an electronic device, the electronic device may display the function interface corresponding to the function to pass the function
  • the interface shows the user a real-time playing screen.
  • the function interface is abnormal (for example, the picture freezes, the picture definition is low, the picture is delayed, etc.).
  • this solution can determine whether to adjust the upper limit of the data transmission power of the electronic device according to the data transmission conditions (such as retransmission rate, actual transmission power, etc.) of the currently running application program through the electronic device. Specifically, when the data transmission situation satisfies the preset condition (the retransmission rate is large and the actual transmission power is close to the upper limit of the data transmission power), the electronic device can adjust the upper limit of the data transmission power of the electronic device to make the electronic device The transmission of the uplink data can be realized through a larger actual transmission power of the uplink data, so as to solve the problem of poor transmission performance of the electronic device.
  • the data transmission conditions such as retransmission rate, actual transmission power, etc.
  • FIG. 2 shows a flowchart of a power adjustment method provided by an embodiment of the present invention. The method can be applied to an electronic device with an Android operating system as shown in FIG. 1 . As shown in FIG. 2, the power adjustment method provided by the embodiment of the present invention may include the following steps 201 and 202.
  • Step 201 The electronic device detects whether the first information meets a first preset condition.
  • the foregoing first information includes at least one of the following: a first retransmission rate of uplink data, an actual transmission power of uplink data, and a first maximum transmission power of uplink data, where the first maximum transmission power is a network device
  • the power threshold configured for the electronic device to transmit uplink data.
  • the electronic device when an electronic device is running an application program, there is an upper limit on the data transmission power of the electronic device, and when the data transmission power required by these applications is large, the functional interface of the electronic device will be caused
  • the electronic device can detect the first retransmission rate of uplink data, the actual transmission power of uplink data, and the first maximum transmission power of uplink data to determine whether the first retransmission rate of uplink data, the actual transmission power of uplink data and When the first maximum transmission power of the uplink data satisfies the first preset condition, the electronic device may adjust the first maximum transmission power to solve the problem of poor transmission performance of the electronic device.
  • the above-mentioned uplink data may be uplink data corresponding to a video call, uplink data corresponding to video playback, or uplink data corresponding to a game, etc.;
  • the ratio of the amount of data to the total amount of data may be uplink data corresponding to a video call, uplink data corresponding to video playback, or uplink data corresponding to a game, etc.; The ratio of the amount of data to the total amount of data.
  • the electronic device can detect the first retransmission rate of the uplink data and the actual transmission power of the uplink data in real time; and the electronic device can obtain locally the uplink data pre-configured by the network device for the electronic device.
  • the first maximum transmission power can be detected.
  • the foregoing first preset condition includes at least one of the following: the first retransmission rate is greater than or equal to a first preset threshold; the first duration is greater than or equal to the first preset duration, and The actual transmission power is less than the inherent maximum transmission power of the radio frequency device of the electronic device, and the first duration is the duration during which the actual transmission power is equal to the first maximum transmission power; and the first maximum transmission power is less than the inherent maximum transmission power.
  • the electronic device may detect the first retransmission rate of uplink data when an abnormality occurs in the functional interface of a certain application, and determine whether the first retransmission rate is greater than or equal to the first predetermined rate.
  • Set a threshold detect the actual transmission power of the uplink data and the first maximum transmission power of the uplink data, and determine whether the duration of the actual transmission power of the uplink data equal to the first maximum transmission power is greater than or equal to the first preset duration; and determine the uplink Whether the actual transmission power of the data is less than the inherent maximum transmission power of the radio frequency device of the electronic device.
  • the foregoing first preset condition may be a condition preset in the electronic device; or, the foregoing first preset condition may be a preset condition set by a user in a setting application.
  • the above-mentioned first information may further include at least one of the following: a first bit error rate of the downlink data and first scene information of the electronic device; wherein the first scene information is used to indicate at least the following One item: the screen status of the electronic device, whether the electronic device detects the user's input, the network status of the electronic device, and the current application scenario of the electronic device.
  • the aforementioned downlink data may be data sent by a network device to an electronic device.
  • the screen state of the above electronic device may be a non-screen state or a screen state;
  • the network state of the above electronic device may be a data transmission state or no data transmission state when the network is connected;
  • the current application scenario of the above electronic device may be a game running scenario, a video call scenario or a video playback scenario, etc.
  • the above-mentioned first preset condition further includes at least one of the following: the first bit error rate is less than or equal to the second preset threshold; the electronic device is in a non-screen-off state; the electronic device detects the user It is detected that the electronic device is in the network connection state, and the duration of uplink data transmission in the network connection state is greater than or equal to the second preset duration; and, the current application scenario of the electronic device is the preset application scenario.
  • the non-screen-off state of the above electronic device may be a screen locked state or a screen unlocked state;
  • the current application scenario of the above electronic device is a preset application scenario, which may include any of the following scenarios: game running scene , Video call scene or video playback scene, etc.
  • the electronic device may detect the first retransmission rate of uplink data when an abnormality occurs in the functional interface of a certain application, and determine whether the first retransmission rate is greater than or equal to the first predetermined rate.
  • Set a threshold detect the actual transmission power of the uplink data and the first maximum transmission power of the uplink data, and determine whether the duration of the actual transmission power of the uplink data equal to the first maximum transmission power is greater than or equal to the first preset time period; determine the uplink data Whether the actual transmission power of the electronic device is less than the inherent maximum transmission power of the radio frequency device of the electronic device; detecting the first error rate of the downlink data, and determining whether the first error rate is less than or equal to the second preset threshold; detecting whether the electronic device is not Screen off state; detect whether the electronic device responds to the user's input; detect whether the electronic device is in a network connection state, and whether the duration of uplink data transmission in the network connection state is greater than or equal to the second preset period of time; detect the current application of the electronic device Whether the scene is a preset application scene.
  • Step 202 When the first information satisfies the first preset condition, the electronic device adopts a preset power control algorithm to adjust the first maximum transmission power to the target transmission power.
  • the above-mentioned target transmission power is greater than the first maximum transmission power and less than or equal to the inherent maximum transmission power of the radio frequency device of the electronic device.
  • the foregoing first information satisfies the first preset condition may include at least one of the following: the first retransmission rate of the uplink data is greater than or equal to the first preset threshold, and the actual transmission power of the uplink data
  • the first duration equal to the first maximum transmission power is greater than or equal to the first preset duration
  • the actual transmission power of the uplink data is less than the inherent maximum transmission power of the radio frequency device of the electronic device
  • the first maximum transmission power of the uplink data is less than the inherent maximum transmission Power
  • the first bit error rate of the downlink data is less than or equal to the second preset threshold
  • the electronic device is in a non-screen-off state
  • the electronic device is detected to respond to user input
  • the duration of the downlink data transmission is greater than or equal to the second preset duration and the current application scenario of the electronic device is the preset application scenario.
  • the actual transmission power of the electronic device before the first maximum transmission power is adjusted is less than the actual transmission power of the electronic device after the first maximum transmission power is adjusted.
  • the foregoing preset power control algorithm is a preset first retransmission rate of uplink data, the actual transmission power of uplink data, the first maximum transmission power of uplink data, and the electronic device A calculation process in which the inherent maximum transmission power of the radio frequency device and the first bit error rate of the downlink data are calculated to obtain the target transmission power.
  • the electronic device adjusts the value of the first maximum transmission power in the local setting parameters to the value corresponding to the target transmission power after obtaining the target transmission power by using the preset power control algorithm.
  • the electronic device if the first retransmission rate is large (that is, the first retransmission rate is greater than or equal to the first preset threshold), it indicates that the electronic device has a certain uplink corresponding to multiple transmission applications.
  • the electronic device can adjust the first maximum transmission power so that the electronic device can transmit the uplink data with a larger actual transmission power.
  • the transmission duration is larger (that is, the first duration is greater than or equal to The first preset duration) indicates that the upper limit of the data transmission power currently set by the electronic device (that is, the first maximum transmission power) is small and cannot meet the data transmission requirements, so the electronic device can adjust the first maximum transmission power to This allows the electronic device to transmit uplink data with greater actual transmission power.
  • the electronic device may perform the first retransmission rate of the uplink data greater than or equal to the first preset threshold, and the duration of the actual transmission power of the uplink data equal to the first maximum transmission power greater than or equal to the first maximum transmission power.
  • the electronic device can adjust the first maximum transmission power to solve the problem of poor transmission performance of the electronic device; or the electronic device can When the first retransmission rate of the uplink data is greater than or equal to the first preset threshold, the actual transmission power of the uplink data is equal to the first maximum transmission power and the duration is greater than or equal to the first preset time period, and the actual transmission power of the uplink data is less than the electronic
  • the inherent maximum transmission power of the radio frequency device of the device, the first bit error rate of the downlink data is less than or equal to the second preset threshold, the electronic device is in a non-screen-off state, the electronic device responds to user input, and the electronic device is in a network connection state and is When the duration of uplink data transmission in the network connection state is greater than or equal to the second preset duration, and the current application scenario of the electronic device is the preset application scenario, the electronic device can adjust the first maximum
  • the electronic device may not adjust the first maximum transmission power, that is, continue to perform data transmission at the first maximum transmission power.
  • the embodiment of the present invention provides a power adjustment method.
  • An electronic device can detect the retransmission rate of uplink data, the actual transmission power of uplink data, and the maximum transmission power of uplink data, and determine whether these data meet a first preset condition, so as to When the data meets the first preset condition, the first maximum transmission power is adjusted to the target transmission power through the preset power control algorithm.
  • the electronic device can be based on the retransmission rate of the uplink data, the actual transmission power of the uplink data and/or the maximum transmission power of the uplink data, so that the information can be satisfied.
  • the first preset condition the first maximum transmission power is adjusted to the target transmission power through the preset power control algorithm, so that the electronic device can transmit the uplink data through the adjusted transmission power, thereby improving the electronic device Transmission performance.
  • the power adjustment method provided in the embodiment of the present invention further includes the following steps 301 and 302 (or step 303).
  • Step 301 The electronic device detects whether the second information meets a second preset condition.
  • the above-mentioned second information includes at least one of the following: the transmission power of the electronic device, the second retransmission rate of the uplink data, the second bit error rate of the downlink data, and the second scene information;
  • the second scenario information is used to indicate at least one of the following: whether an abnormal uplink transmission phenomenon is detected, the screen state of the electronic device, and the first application scenario where the electronic device is currently located.
  • the electronic device can detect the transmit power of the electronic device, the second retransmission rate of the uplink data, and the second bit error rate of the downlink data in real time; and the electronic device can obtain the electronic device's Whether there is an abnormal phenomenon in the uplink transmission, the screen status of the electronic device, and the current application scenario of the electronic device.
  • the electronic device can detect the transmission power and uplink of the electronic device from the transmission information of the uplink data at the current moment. According to the second retransmission rate of the data and the second bit error rate of the downlink data, whether the uplink transmission is abnormal, the screen state of the electronic device, and the current running application of the electronic device are detected according to the current running state of the electronic device.
  • the above-mentioned second preset condition includes at least one of the following: the second duration is greater than or equal to the third preset duration, and the second duration is that the transmit power is less than or equal to the third preset duration The duration of the threshold; the second retransmission rate is less than the first retransmission rate, and the difference between the first retransmission rate and the second retransmission rate is less than or equal to the fourth preset threshold; the second error rate is greater than the first error Bit rate, and the difference between the second bit error rate and the first bit error rate is greater than or equal to the fifth preset threshold; abnormal uplink transmission is detected; the electronic device is in the off-screen state; and, the first application scenario and the electronic device The at least one preset application scene indicated by the preset scene information in is different.
  • the electronic device may detect the transmit power of the electronic device, and determine whether the duration of the transmit power is less than or equal to the third preset threshold is greater than or equal to the third preset time period; the first of the uplink data is detected Double retransmission rate, and determine whether the second retransmission rate is less than the first retransmission rate, and whether the difference between the first retransmission rate and the second retransmission rate is less than or equal to the fourth preset threshold; Two error rates, and determine whether the second error rate is greater than the first error rate, and whether the difference between the second error rate and the first error rate is greater than or equal to the fifth preset threshold; detecting whether the uplink transmission is abnormal Phenomenon; detecting whether the electronic device is in the off-screen state; detecting whether the current application scenario of the electronic device is a preset application scenario.
  • Step 302 When the second information satisfies the second preset condition, the electronic device adjusts the power threshold for transmitting uplink data from the target transmission power to the first maximum transmission power.
  • the foregoing second information meeting the second preset condition may include at least one of the following: the transmission power of the electronic device is less than or equal to the third preset threshold and the second duration is greater than or equal to the third The preset duration, the second retransmission rate of the uplink data is less than the first retransmission rate, the difference between the first retransmission rate of the uplink data and the second retransmission rate is less than or equal to the fourth preset threshold, the second retransmission rate of the downlink data
  • the bit error rate is greater than the first bit error rate
  • the difference between the second bit error rate of the downlink data and the first bit error rate is greater than or equal to the fifth preset threshold
  • the electronic device detects an abnormal uplink transmission phenomenon
  • the electronic device is off screen
  • the status and current application scenarios of the electronic device are not preset applications.
  • the electronic device adjusts the power threshold for transmitting uplink data in the locally set parameters from the value corresponding to the target transmission power to the value corresponding to the first maximum transmission power.
  • the electronic device may have a transmission power less than or equal to a third preset threshold for a duration greater than or equal to a third preset duration; the second retransmission rate of uplink data is less than the first retransmission rate , And the difference between the first retransmission rate and the second retransmission rate is less than or equal to the fourth preset threshold; the second error rate of the downlink data is greater than the first error rate, and the second error rate is greater than the first error rate
  • the code rate difference is greater than or equal to the fifth preset threshold; there is an abnormal phenomenon in uplink transmission; the electronic device is in the off-screen state; when the current application scenario of the electronic device is not the preset application scenario, the electronic device can transmit the power of the uplink data
  • the threshold value is adjusted from the target transmission power to the first maximum transmission power.
  • Step 303 In the case that the second information does not meet the second preset condition, the electronic device continues to maintain the power threshold for transmitting uplink data as the target transmission power.
  • the electronic device may not adjust the power threshold for transmitting uplink data from the target transmission power to the first maximum transmission power, so that the electronic device can continue to pass larger The transmission power realizes the transmission of uplink data.
  • the electronic device may detect the transmission power of the electronic device, the second retransmission rate of the uplink data, the second bit error rate of the downlink data, the second scene information, etc., so that the data meets the second preset condition.
  • the power threshold for transmitting uplink data is adjusted from the target transmission power to the first maximum transmission power to relieve the increase of the power threshold configured by the network device for the electronic device to transmit uplink data, thus reducing the power threshold of the electronic device. Work load, which can improve the transmission performance of electronic equipment.
  • FIG. 4 shows a schematic diagram of a possible structure of an electronic device involved in an embodiment of the present invention.
  • the electronic device 70 may include: a detection module 71 and an adjustment module 72.
  • the detection module 71 is configured to detect whether the first information satisfies a first preset condition; wherein, the first information includes at least one of the following: a first retransmission rate of uplink data, actual transmission power of uplink data, and uplink data The first maximum transmission power, where the first maximum transmission power is a power threshold configured by the network device for the electronic device to transmit uplink data.
  • the adjustment module 72 is configured to use a preset power control algorithm to adjust the first maximum transmission power to a target transmission power when the first information satisfies the first preset condition, and the target transmission power is greater than the first maximum transmission power, And it is less than or equal to the inherent maximum transmission power of the radio frequency device of the electronic equipment.
  • the foregoing first preset condition includes at least one of the following: the first retransmission rate is greater than or equal to a first preset threshold; the first duration is greater than or equal to the first preset duration, and the actual The transmission power is less than the inherent maximum transmission power of the radio frequency device of the electronic device, and the first duration is the duration during which the actual transmission power is equal to the first maximum transmission power; and the first maximum transmission power is less than the inherent maximum transmission power.
  • the above-mentioned first information further includes at least one of the following: a first bit error rate of the downlink data and first scene information of the electronic device; wherein the first scene information is used to indicate at least one of the following : The screen status of the electronic device, whether the electronic device detects the user's input, the network status of the electronic device, and the current application scenario of the electronic device.
  • the above-mentioned first preset condition further includes at least one of the following: the first bit error rate is less than or equal to the second preset threshold; the electronic device is in a non-screen-off state; the electronic device detects the user’s Input; it is detected that the electronic device is in a network connection state, and the duration of uplink data transmission in the network connection state is greater than or equal to the second preset duration; and the current application scenario of the electronic device is the preset application scenario.
  • the detection module 71 is further configured to detect whether the second information satisfies the second preset condition after the adjustment module 72 adjusts the first maximum transmission power to the target transmission power; wherein, the second information It includes at least one of the following: the transmit power of the electronic device, the second retransmission rate of the uplink data, the second error rate of the downlink data, and second scene information; the second scene information is used to indicate at least one of the following: whether it is detected Abnormal uplink transmission, the screen status of the electronic device, and the first application scenario where the electronic device is currently located.
  • the adjustment module 72 is further configured to adjust the power threshold for transmitting uplink data from the target transmission power to the first maximum transmission power when the second information satisfies the second preset condition.
  • the foregoing second preset condition includes at least one of the following: the second duration is greater than or equal to the third preset duration, and the second duration is that the transmit power is less than or equal to the third preset threshold
  • the duration of the second retransmission rate is less than the first retransmission rate, and the difference between the first retransmission rate and the second retransmission rate is less than or equal to the fourth preset threshold; the second error rate is greater than the first error rate Rate, and the difference between the second error rate and the first error rate is greater than or equal to the fifth preset threshold; an abnormal uplink transmission is detected; the electronic device is in the off-screen state; and, the first application scenario and the electronic device
  • the at least one preset application scene indicated by the preset scene information is different.
  • the electronic device provided in the embodiment of the present invention can implement each process implemented by the electronic device in the foregoing method embodiment. To avoid repetition, the detailed description will not be repeated here.
  • the embodiment of the present invention provides an electronic device.
  • the electronic device can be based on the uplink data retransmission rate, the actual transmission power of the uplink data, and/or the uplink data rate.
  • the maximum transmission power so that when the information meets the first preset condition, the first maximum transmission power can be adjusted to the target transmission power through the preset power control algorithm, so that the electronic device can be realized by the adjusted transmission power
  • the transmission of uplink data can therefore improve the transmission performance of electronic devices.
  • Fig. 5 is a schematic diagram of hardware of an electronic device that implements various embodiments of the present invention.
  • the electronic device 100 includes but is not limited to: a radio frequency unit 101, a network module 102, an audio output unit 103, an input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a memory 109, The processor 110, and the power supply 111 and other components.
  • electronic devices include, but are not limited to, mobile phones, tablet computers, notebook computers, palmtop computers, vehicle-mounted terminals, wearable devices, and pedometers.
  • the processor 110 is configured to detect whether the first information satisfies a first preset condition; wherein, the first information includes at least one of the following: a first retransmission rate of uplink data, an actual transmission power of uplink data, and a rate of uplink data The first maximum transmission power, where the first maximum transmission power is the power threshold configured by the network device for the electronic device to transmit uplink data; and when the first information meets the first preset condition, the preset power control algorithm is used , Adjusting the first maximum transmission power to the target transmission power, the target transmission power being greater than the first maximum transmission power and less than or equal to the inherent maximum transmission power of the radio frequency device of the electronic device.
  • the embodiment of the present invention provides an electronic device.
  • the electronic device can be based on the uplink data retransmission rate, the actual transmission power of the uplink data, and/or the uplink data rate.
  • the maximum transmission power so that when the information meets the first preset condition, the first maximum transmission power can be adjusted to the target transmission power through the preset power control algorithm, so that the electronic device can be realized by the adjusted transmission power
  • the transmission of uplink data can therefore improve the transmission performance of electronic devices.
  • the radio frequency unit 101 can be used for receiving and sending signals in the process of sending and receiving information or talking. Specifically, the downlink data from the base station is received and processed by the processor 110; in addition, Uplink data is sent to the base station.
  • the radio frequency unit 101 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the radio frequency unit 101 can also communicate with the network and other devices through a wireless communication system.
  • the electronic device provides users with wireless broadband Internet access through the network module 102, such as helping users to send and receive emails, browse web pages, and access streaming media.
  • the audio output unit 103 can convert the audio data received by the radio frequency unit 101 or the network module 102 or stored in the memory 109 into an audio signal and output it as sound. Moreover, the audio output unit 103 may also provide audio output related to a specific function performed by the electronic device 100 (for example, call signal reception sound, message reception sound, etc.).
  • the audio output unit 103 includes a speaker, a buzzer, a receiver, and the like.
  • the input unit 104 is used to receive audio or video signals.
  • the input unit 104 may include a graphics processing unit (GPU) 1041 and a microphone 1042.
  • the graphics processing unit 1041 is used to capture images of still pictures or videos obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. Data is processed.
  • the processed image frame can be displayed on the display unit 106.
  • the image frames processed by the graphics processor 1041 can be stored in the memory 109 (or other storage medium) or sent via the radio frequency unit 101 or the network module 102.
  • the microphone 1042 can receive sound, and can process such sound into audio data.
  • the processed audio data can be converted into a format that can be sent to a mobile communication base station via the radio frequency unit 101 for output in the case of a telephone call mode.
  • the electronic device 100 further includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors.
  • the light sensor includes an ambient light sensor and a proximity sensor.
  • the ambient light sensor can adjust the brightness of the display panel 1061 according to the brightness of the ambient light.
  • the proximity sensor can close the display panel 1061 and the display panel 1061 when the electronic device 100 is moved to the ear. / Or backlight.
  • the accelerometer sensor can detect the magnitude of acceleration in various directions (usually three axes), and can detect the magnitude and direction of gravity when stationary, and can be used to identify the posture of electronic devices (such as horizontal and vertical screen switching, related games) , Magnetometer attitude calibration), vibration recognition related functions (such as pedometer, percussion), etc.; sensor 105 can also include fingerprint sensors, pressure sensors, iris sensors, molecular sensors, gyroscopes, barometers, hygrometers, thermometers, Infrared sensors, etc., will not be repeated here.
  • the display unit 106 is used to display information input by the user or information provided to the user.
  • the display unit 106 may include a display panel 1061, and the display panel 1061 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
  • LCD liquid crystal display
  • OLED organic light-emitting diode
  • the user input unit 107 may be used to receive inputted numeric or character information, and generate key signal input related to user settings and function control of the electronic device.
  • the user input unit 107 includes a touch panel 1071 and other input devices 1072.
  • the touch panel 1071 also called a touch screen, can collect the user's touch operations on or near it (for example, the user uses any suitable objects or accessories such as fingers, stylus, etc.) on the touch panel 1071 or near the touch panel 1071. operate).
  • the touch panel 1071 may include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the user's touch position, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into contact coordinates, and then sends it To the processor 110, the command sent by the processor 110 is received and executed.
  • the touch panel 1071 can be implemented in multiple types such as resistive, capacitive, infrared, and surface acoustic wave.
  • the user input unit 107 may also include other input devices 1072.
  • other input devices 1072 may include, but are not limited to, a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackball, mouse, and joystick, which will not be repeated here.
  • the touch panel 1071 can be overlaid on the display panel 1061.
  • the touch panel 1071 detects a touch operation on or near it, it transmits it to the processor 110 to determine the type of the touch event, and then the processor 110 determines the type of touch event according to the touch.
  • the type of event provides corresponding visual output on the display panel 1061.
  • the touch panel 1071 and the display panel 1061 are used as two independent components to implement the input and output functions of the electronic device, in some embodiments, the touch panel 1071 and the display panel 1061 can be integrated
  • the implementation of the input and output functions of the electronic device is not specifically limited here.
  • the interface unit 108 is an interface for connecting an external device with the electronic device 100.
  • the external device may include a wired or wireless headset port, an external power source (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, audio input/output (I/O) port, video I/O port, headphone port, etc.
  • the interface unit 108 can be used to receive input (for example, data information, power, etc.) from an external device and transmit the received input to one or more elements in the electronic device 100 or can be used to connect to the electronic device 100 and the external device. Transfer data between devices.
  • the memory 109 can be used to store software programs and various data.
  • the memory 109 may mainly include a program storage area and a data storage area.
  • the program storage area may store an operating system, an application program required by at least one function (such as a sound playback function, an image playback function, etc.), etc.; Data created by the use of mobile phones (such as audio data, phone book, etc.), etc.
  • the memory 109 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
  • the processor 110 is the control center of the electronic device, which uses various interfaces and lines to connect the various parts of the entire electronic device, runs or executes software programs and/or modules stored in the memory 109, and calls data stored in the memory 109 , Perform various functions of electronic equipment and process data, so as to monitor the electronic equipment as a whole.
  • the processor 110 may include one or more processing units; optionally, the processor 110 may integrate an application processor and a modem processor, where the application processor mainly processes the operating system, user interface, and application programs, etc.
  • the adjustment processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 110.
  • the electronic device 100 may also include a power source 111 (such as a battery) for supplying power to various components.
  • a power source 111 such as a battery
  • the power source 111 may be logically connected to the processor 110 through a power management system, so as to manage charging, discharging, and power consumption through the power management system. Management and other functions.
  • the electronic device 100 includes some functional modules not shown, which will not be repeated here.
  • an embodiment of the present invention further provides an electronic device, including a processor 110 as shown in FIG. 5, a memory 109, a computer program stored in the memory 109 and running on the processor 110, the computer
  • the program is executed by the processor 110, each process of the foregoing method embodiment is realized, and the same technical effect can be achieved. In order to avoid repetition, details are not described herein again.
  • the embodiment of the present invention also provides a computer-readable storage medium, and a computer program is stored on the computer-readable storage medium.
  • a computer program is stored on the computer-readable storage medium.
  • the computer program is executed by a processor, each process of the foregoing method embodiment is implemented, and the same technical effect can be achieved. To avoid repetition, I won’t repeat them here.
  • the computer-readable storage medium such as read-only memory (ROM), random access memory (RAM), magnetic disk or optical disk, etc.
  • the technical solution of the present invention essentially or the part that contributes to the existing technology can be embodied in the form of a software product, and the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, The optical disc) includes a number of instructions to enable an electronic device (which can be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to execute the method described in each embodiment of the present invention.

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Abstract

本发明实施例公开了一种功率调整方法及电子设备,涉及通信技术领域。该方法包括:检测第一信息是否满足第一预设条件;其中,第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值;在第一信息满足第一预设条件的情况下,采用预设功率控制算法,将第一最大传输功率调整为目标传输功率,该目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。

Description

功率调整方法及电子设备
相关申请的交叉引用
本申请主张在2020年02月26日在中国提交的中国专利申请号No.202010121402.2的优先权,其全部内容通过引用包含于此。
技术领域
本发明实施例涉及通信技术领域,尤其涉及一种功率调整方法及电子设备。
背景技术
通常,网络设备可以根据电子设备的天线辐射能力、网络中各个电子设备的干扰情况和电子设备的使用场景等,为电子设备配置一个上行最大功率(即传输上行数据所能够使用的最大功率),从而电子设备可以采用小于该上行最大功率的一个上行功率,向网络设备传输上行数据。
然而,在某些场景(例如:游戏场景、视频场景等)下,电子设备对数据传输的需求(例如:传输速率需求、传输时延需求等)较高,因此电子设备采用上述方法中的上行功率传输上行数据时,会导致上行传输异常现象(例如:时延较大、上网卡顿、通话失败等),从而导致电子设备的传输性能较差。
发明内容
本发明实施例提供一种功率调整方法及电子设备,可以解决电子设备传输性能较差的问题。
为了解决上述技术问题,本发明实施例采用如下技术方案:
本发明实施例的第一方面,提供一种功率调整方法,应用于电子设备,该方法包括:检测第一信息是否满足第一预设条件;其中,第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值;在第一信息满足第一预设条件的情况下,采用预设功率控制算法,将第一最大传输功率调整为目标传输功率,该目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。
本发明实施例的第二方面,提供一种电子设备,该电子设备包括:检测模块和调整模块;其中,检测模块,用于检测第一信息是否满足第一预设条件;其中,第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值。调整模块,用于在第一信息满足第一预设条件的情况下,采用预设功率控制算法,将第一最大传输功率调整为目标传输功率,该目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。
本发明实施例的第三方面,提供一种电子设备,该电子设备包括处理器、存储器及存储在存储器上并可在处理器上运行的计算机程序,该计算机程序被处理器执行时 实现如第一方面所述的功率调整方法的步骤。
本发明实施例的第四方面,提供一种计算机可读存储介质,该计算机可读存储介质上存储计算机程序,该计算机程序被处理器执行时实现如第一方面所述的功率调整方法的步骤。
在本发明实施例中,电子设备可以检测上行数据的重传率、上行数据的实际传输功率和上行数据的最大传输功率,并判断这些数据是否满足第一预设条件,以在这些数据满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率。由于在电子设备运行某些应用程序的功能出现异常的情况下,电子设备可以根据上行数据的重传率、上行数据的实际传输功率和/或上行数据的最大传输功率,从而可以在这些信息满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率,以使得电子设备可以通过调整后的传输功率实现上行数据的传输,因此可以提高电子设备的传输性能。
附图说明
图1为本发明实施例提供的一种安卓操作系统的架构示意图;
图2为本发明实施例提供的一种功率调整方法的示意图之一;
图3为本发明实施例提供的一种功率调整方法的示意图之二;
图4为本发明实施例提供的一种电子设备的结构示意图;
图5为本发明实施例提供的一种电子设备的硬件示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例的说明书和权利要求书中的术语“第一”和“第二”等是用于区别不同的对象,而不是用于描述对象的特定顺序。例如,第一预设条件和第二预设条件等是用于区别不同的预设条件,而不是用于描述预设条件的特定顺序。
在本发明实施例的描述中,除非另有说明,“多个”的含义是指两个或两个以上。例如,多个元件是指两个元件或两个以上元件。
本文中术语“和/或”,是一种描述关联对象的关联关系,表示可以存在三种关系,例如,显示面板和/或背光,可以表示:单独存在显示面板,同时存在显示面板和背光,单独存在背光这三种情况。本文中符号“/”表示关联对象是或者的关系,例如输入/输出表示输入或者输出。
在本发明实施例中,“示例性的”或者“例如”等词用于表示作例子、例证或说明。本发明实施例中被描述为“示例性的”或者“例如”的任何实施例或设计方案不应被解释为比其它实施例或设计方案更优选或更具优势。确切而言,使用“示例性的”或者“例如”等词旨在以具体方式呈现相关概念。
本发明实施例提供一种功率调整方法及电子设备,由于在电子设备运行某些应用程序的功能出现异常的情况下,电子设备可以根据上行数据的重传率、上行数据的实际传输功率和/或上行数据的最大传输功率,从而可以在这些信息满足第一预设条件的情况下,通过 预设功率控制算法,将第一最大传输功率调整为目标传输功率,以使得电子设备可以通过调整后的传输功率实现上行数据的传输,因此可以提高电子设备的传输性能。
本发明实施例提供的功率调整方法及电子设备,可以应用于调整电子设备传输功率的上限的过程。
本发明实施例中的电子设备可以为具有操作系统的电子设备。该操作系统可以为安卓(Android)操作系统,可以为ios操作系统,还可以为其他可能的操作系统,本发明实施例不作具体限定。
下面以安卓操作系统为例,介绍一下本发明实施例提供的功率调整方法所应用的软件环境。
如图1所示,为本发明实施例提供的一种可能的安卓操作系统的架构示意图。在图1中,安卓操作系统的架构包括4层,分别为:应用程序层、应用程序框架层、系统运行库层和内核层(具体可以为Linux内核层)。
其中,应用程序层包括安卓操作系统中的各个应用程序(包括系统应用程序和第三方应用程序)。
应用程序框架层是应用程序的框架,开发人员可以在遵守应用程序的框架的开发原则的情况下,基于应用程序框架层开发一些应用程序。
系统运行库层包括库(也称为系统库)和安卓操作系统运行环境。库主要为安卓操作系统提供其所需的各类资源。安卓操作系统运行环境用于为安卓操作系统提供软件环境。
内核层是安卓操作系统的操作系统层,属于安卓操作系统软件层次的最底层。内核层基于Linux内核为安卓操作系统提供核心系统服务和与硬件相关的驱动程序。
以安卓操作系统为例,本发明实施例中,开发人员可以基于上述如图1所示的安卓操作系统的系统架构,开发实现本发明实施例提供的功率调整方法的软件程序,从而使得该功率调整方法可以基于如图1所示的安卓操作系统运行。即处理器或者电子设备可以通过在安卓操作系统中运行该软件程序实现本发明实施例提供的功率调整方法。
本发明实施例中的电子设备可以为移动电子设备,也可以为非移动电子设备。示例性的,移动电子设备可以为手机、平板电脑、笔记本电脑、掌上电脑、车载电子设备、可穿戴设备、超级移动个人计算机(ultra-mobile personal computer,UMPC)、上网本或者个人数字助理(personal digital assistant,PDA)等,非移动电子设备可以为个人计算机(personal computer,PC)、电视机(television,TV)、柜员机或者自助机等,本发明实施例不作具体限定。
下面结合附图,通过具体的实施例及其应用场景对本发明实施例提供的一种功率调整方法及电子设备进行详细地说明。
本发明实施例中,用户在使用电子设备的某个应用程序中的功能(例如视频通话功能、视屏播放功能或游戏功能等)时,电子设备可以显示该功能对应的功能界面,以通过该功能界面向用户展示实时播放的画面。然而,由于电子设备的数据传输功率存在上限,而当某些应用程序所需求的数据传输功率较大时,电子设备当前的数据传输功率可能并不能满足电子设备的需求,因此会出现电子设备的功能界面出现异常(例如画面卡顿、画面清晰度较低、画面延迟播放等)情况。为了避免出现这些异常情况,本方案可以通过电子设备根据当前运行的应用程序的数据传输情况(例如重传率、实际传输功率等),确定是否调 整电子设备的数据传输功率的上限。具体的,在数据传输情况满足预设的条件(重传率较大、实际传输功率接近数据传输功率的上限)的情况下,电子设备可以调整电子设备的数据传输功率的上限,以使得电子设备可以通过更大的上行数据的实际传输功率实现上行数据的传输,以解决电子设备的传输性能较差的问题。
本发明实施例提供的一种功率调整方法,图2示出了本发明实施例提供的一种功率调整方法的流程图,该方法可以应用于具有如图1所示的安卓操作系统的电子设备。如图2所示,本发明实施例提供的功率调整方法可以包括下述的步骤201和步骤202。
步骤201、电子设备检测第一信息是否满足第一预设条件。
本发明实施例中,上述第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值。
本发明实施例中,在电子设备运行某个应用程序的情况下,由于电子设备的数据传输功率存在上限,而当这些应用程序所需求的数据传输功率较大时,会导致电子设备的功能界面出现异常,电子设备可以检测上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,以在上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率满足第一预设条件时,电子设备可以调整第一最大传输功率,以解决电子设备的传输性能较差的问题。
可选的,本发明实施例中,上述上行数据可以为视频通话对应的上行数据、视频播放对应上行数据或游戏对应的上行数据等;上述第一重传率为电子设备向网络设备重复发送的数据量与全部数据量的比值。
可选的,本发明实施例中,电子设备可以实时检测上行数据的第一重传率和上行数据的实际传输功率;并且,电子设备可以从本地获取网络设备预先为电子设备配置的上行数据的第一最大传输功率。
可选的,本发明实施例中,上述第一预设条件包括以下至少一项:第一重传率大于或等于第一预设阈值;第一持续时长大于或等于第一预设时长、且实际传输功率小于电子设备的射频器件的固有最大传输功率,该第一持续时长为实际传输功率等于第一最大传输功率的持续时长;以及,第一最大传输功率小于固有最大传输功率。
可选的,本发明实施例中,电子设备可以在某个应用程序中的功能界面出现异常时,检测上行数据的第一重传率,并判断第一重传率是否大于或等于第一预设阈值;检测上行数据的实际传输功率和上行数据的第一最大传输功率,并判断上行数据的实际传输功率等于第一最大传输功率的持续时长是否大于或等于第一预设时长;以及判断上行数据的实际传输功率是否小于电子设备的射频器件的固有最大传输功率。
可选的,本发明实施例中,上述第一预设条件可以为电子设备中预先设置的条件;或者,上述第一预设条件可以为用户在设置应用程序中设置的预设条件。
可选的,本发明实施例中,上述第一信息还可以包括以下至少一项:下行数据的第一误码率和电子设备的第一场景信息;其中,第一场景信息用于指示以下至少一项:电子设备的屏幕状态、电子设备是否检测到用户的输入、电子设备的网络状态,以及电子设备当前的应用场景。
可选的,本发明实施例中,上述下行数据可以为网络设备向电子设备发送的数据。
可选的,本发明实施例中,上述电子设备的屏幕状态可以为非息屏状态或息屏状态;上述电子设备的网络状态可以为在网络处于连接时有数据传输状态或无数据传输状态;上述电子设备当前的应用场景可以为游戏运行场景、视屏通话场景或视频播放场景等。
可选的,本发明实施例中,上述第一预设条件还包括以下至少一项:第一误码率小于或等于第二预设阈值;电子设备处于非熄屏状态;电子设备检测到用户的输入;检测到电子设备处于网络连接状态、且在网络连接状态下进行上行数据传输的时长大于或等于第二预设时长;以及,电子设备当前的应用场景为预设应用场景。
可选的,本发明实施例中,上述电子设备处于非熄屏状态可以为屏幕锁定状态或屏幕解锁状态;上述电子设备当前的应用场景为预设应用场景可以包括以下任一场景:游戏运行场景、视屏通话场景或视频播放场景等。
可选的,本发明实施例中,电子设备可以在某个应用程序中的功能界面出现异常时,检测上行数据的第一重传率,并判断第一重传率是否大于或等于第一预设阈值;检测上行数据的实际传输功率和上行数据的第一最大传输功率,并判断上行数据的实际传输功率等于第一最大传输功率的持续时长是否大于或等于第一预设时长;判断上行数据的实际传输功率是否小于电子设备的射频器件的固有最大传输功率;检测下行数据的第一误码率,并判断第一误码率是否小于或等于第二预设阈值;检测电子设备是否处于非熄屏状态;检测电子设备是否响应用户的输入;检测电子设备是否处于网络连接状态、且在网络连接状态下进行上行数据传输的时长是否大于或等于第二预设时长;检测电子设备当前的应用场景是否为预设应用场景。
步骤202、在第一信息满足第一预设条件的情况下,电子设备采用预设功率控制算法,将第一最大传输功率调整为目标传输功率。
本发明实施例中,上述目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。
可选的,本发明实施例中,上述第一信息满足第一预设条件可以包括以下至少一项:上行数据的第一重传率大于或等于第一预设阈值、上行数据的实际传输功率等于第一最大传输功率的第一持续时长大于或等于第一预设时长、上行数据的实际传输功率小于电子设备的射频器件的固有最大传输功率、上行数据的第一最大传输功率小于固有最大传输功率、下行数据的第一误码率小于或等于第二预设阈值、电子设备处于非熄屏状态、检测到电子设备响应用户的输入、检测到电子设备处于网络连接状态、且在网络连接状态下进行上行数据传输的时长大于或等于第二预设时长和电子设备当前的应用场景为预设应用场景。
可以理解,未调整第一最大传输功率之前电子设备的实际传输功率,小于调整第一最大传输功率之后电子设备的实际传输功率。
可选的,本发明实施例中,上述预设功率控制算法为预先设置的一种通过上行数据的第一重传率、上行数据的实际传输功率、上行数据的第一最大传输功率、电子设备的射频器件的固有最大传输功率和下行数据的第一误码率计算得到目标传输功率的一种计算过程。
可选的,本发明实施例中,电子设备在采用预设功率控制算法得到目标传输功率后,将本地设置参数中的第一最大传输功率的数值调整为目标传输功率对应的数值。
可选的,本发明实施例中,若第一重传率较大(即第一重传率大于或等于第一预设阈 值),则表征电子设备存在多次传输应用程序对应的某个上行数据的情况,即存在某个上行数据出现多次传输失败的现象,从而电子设备可以通过调整第一最大传输功率,以使得电子设备在传输上行数据时可以以更大的实际传输功率进行传输。
可选的,本发明实施例中,若实际传输功率较大(即实际传输功率等于第一最大传输功率),并且实际传输处于较大状态的传输时长较大(即第一持续时长大于或等于第一预设时长),则表征电子设备当前设置的数据传输功率上限(即第一最大传输功率)较小,不能够满足数据传输的需求,从而电子设备可以通过调整第一最大传输功率,以使得电子设备在传输上行数据时可以以更大的实际传输功率进行传输。
可选的,本发明实施例中,电子设备可以在上行数据的第一重传率大于或等于第一预设阈值、上行数据的实际传输功率等于第一最大传输功率的持续时长大于或等于第一预设时长和上行数据的实际传输功率小于电子设备的射频器件的固有最大传输功率时,电子设备可以调整第一最大传输功率,以解决电子设备的传输性能较差的问题;或者电子设备可以在上行数据的第一重传率大于或等于第一预设阈值、上行数据的实际传输功率等于第一最大传输功率的持续时长大于或等于第一预设时长、上行数据的实际传输功率小于电子设备的射频器件的固有最大传输功率、下行数据的第一误码率小于或等于第二预设阈值、电子设备处于非熄屏状态、电子设备响应用户的输入、电子设备处于网络连接状态且在网络连接状态下进行上行数据传输的时长大于或等于第二预设时长、电子设备当前的应用场景为预设应用场景时,电子设备可以调整第一最大传输功率,以解决电子设备的传输性能较差的问题。
可选的,本发明实施例中,在第一信息不满足第一预设条件的情况下,电子设备可以不调整第一最大传输功率,即继续以第一最大传输功率进行数据传输。
本发明实施例提供一种功率调整方法,电子设备可以检测上行数据的重传率、上行数据的实际传输功率和上行数据的最大传输功率,并判断这些数据是否满足第一预设条件,以在这些数据满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率。由于在电子设备运行某些应用程序的功能出现异常的情况下,电子设备可以根据上行数据的重传率、上行数据的实际传输功率和/或上行数据的最大传输功率,从而可以在这些信息满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率,以使得电子设备可以通过调整后的传输功率实现上行数据的传输,因此可以提高电子设备的传输性能。
可选的,本发明实施例中,结合图2,如图3所示,在上述步骤202之后,本发明实施例提供的功率调整方法还包括下述步骤301和步骤302(或步骤303)。
步骤301、电子设备检测第二信息是否满足第二预设条件。
可选的,本发明实施例中,上述第二信息包括以下至少一项:电子设备的发射功率、上行数据的第二重传率、下行数据的第二误码率和第二场景信息;该第二场景信息用于指示以下至少一项:是否检测到上行传输异常现象、电子设备的屏幕状态和电子设备当前所处的第一应用场景。
可选的,本发明实施例中,电子设备可以实时检测电子设备的发射功率、上行数据的第二重传率和下行数据的第二误码率;并且,电子设备可以从本地获取电子设备的上行传输是否出现异常现象、电子设备的屏幕状态和电子设备当前的应用场景。
可选的,本发明实施例中,在电子设备将上行数据的第一最大传输功率调整为目标传输功率之后,电子设备可以从当前时刻上行数据的传输信息中检测到电子设备的发射功率、上行数据的第二重传率和下行数据的第二误码率,并根据电子设备的当前应用程序的运行状态检测到上行传输是否异常、电子设备的屏幕状态和电子设备当前运行的应用程序。
可选的,本发明实施例中,上述第二预设条件包括以下至少一项:第二持续时长大于或等于第三预设时长,该第二持续时长为发射功率小于或等于第三预设阈值的持续时长;第二重传率小于第一重传率、且第一重传率与第二重传率的差值小于或等于第四预设阈值;第二误码率大于第一误码率、且第二误码率与第一误码率的差值大于或等于第五预设阈值;检测到上行传输异常现象;电子设备处于熄屏状态;以及,第一应用场景与电子设备中的预设场景信息指示的至少一个预设应用场景均不同。
可选的,本发明实施例中,电子设备可以检测电子设备的发射功率,并判断发射功率小于或等于第三预设阈值的持续时长是否大于或等于第三预设时长;检测上行数据的第二重传率,并判断第二重传率是否小于第一重传率,且第一重传率与第二重传率的差值是否小于或等于第四预设阈值;检测下行数据的第二误码率,并判断第二误码率是否大于第一误码率、且第二误码率与第一误码率的差值是否大于或等于第五预设阈值;检测上行传输是否异常现象;检测电子设备是否处于熄屏状态;检测电子设备当前的应用场景是否为预设应用场景。
步骤302、在第二信息满足第二预设条件的情况下,电子设备将传输上行数据的功率门限值从目标传输功率调整为第一最大传输功率。
可选的,本发明实施例中,上述第二信息满足第二预设条件可以包括以下至少一项:电子设备的发射功率小于或等于第三预设阈值的第二持续时长大于或等于第三预设时长、上行数据的第二重传率小于第一重传率、上行数据的第一重传率与第二重传率的差值小于或等于第四预设阈值、下行数据的第二误码率大于第一误码率、下行数据的第二误码率与第一误码率的差值大于或等于第五预设阈值、电子设备检测到上行传输异常现象、电子设备处于熄屏状态和电子设备当前的应用场景不为预设应用。
可选的,本发明实施例中,电子设备将本地设置参数中的传输上行数据的功率门限值从目标传输功率对应的数值调整为第一最大传输功率对应的数值。
可选的,本发明实施例中,电子设备可以在发射功率小于或等于第三预设阈值的持续时长大于或等于第三预设时长;上行数据的第二重传率小于第一重传率,且第一重传率与第二重传率的差值小于或等于第四预设阈值;下行数据的第二误码率大于第一误码率、且第二误码率与第一误码率的差值大于或等于第五预设阈值;上行传输存在异常现象;电子设备处于熄屏状态;电子设备当前的应用场景不为预设应用场景时,电子设备可以将传输上行数据的功率门限值从目标传输功率调整为第一最大传输功率。
步骤303、在第二信息不满足第二预设条件的情况下,电子设备继续保持传输上行数据的功率门限值为目标传输功率。
可以理解,在第二信息不满足第二预设条件时,电子设备可以不将传输上行数据的功率门限值从目标传输功率调整为第一最大传输功率,而使得电子设备可以继续通过较大的传输功率实现上行数据的传输。
本发明实施例中,电子设备可以检测电子设备的发射功率、上行数据的第二重传率、 下行数据的第二误码率和第二场景信息等,以在这些数据满足第二预设条件的情况下,将传输上行数据的功率门限值从目标传输功率调整为第一最大传输功率,以解除提高网络设备为电子设备配置的传输上行数据的功率门限值,因此可以降低电子设备的工作负荷,从而可以提高电子设备的传输性能。
图4示出了本发明实施例中涉及的电子设备的一种可能的结构示意图。如图4所示,电子设备70可以包括:检测模块71和调整模块72。
其中,检测模块71,用于检测第一信息是否满足第一预设条件;其中,第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值。调整模块72,用于在第一信息满足第一预设条件的情况下,采用预设功率控制算法,将第一最大传输功率调整为目标传输功率,该目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。
在一种可能的实现方式中,上述第一预设条件包括以下至少一项:第一重传率大于或等于第一预设阈值;第一持续时长大于或等于第一预设时长、且实际传输功率小于电子设备的射频器件的固有最大传输功率,该第一持续时长为实际传输功率等于第一最大传输功率的持续时长;以及,第一最大传输功率小于固有最大传输功率。
在一种可能的实现方式中,上述第一信息还包括以下至少一项:下行数据的第一误码率和电子设备的第一场景信息;其中,第一场景信息用于指示以下至少一项:电子设备的屏幕状态、电子设备是否检测到用户的输入、电子设备的网络状态,以及电子设备当前的应用场景。
在一种可能的实现方式中,上述第一预设条件还包括以下至少一项:第一误码率小于或等于第二预设阈值;电子设备处于非熄屏状态;电子设备检测到用户的输入;检测到电子设备处于网络连接状态、且在网络连接状态下进行上行数据传输的时长大于或等于第二预设时长;以及,电子设备当前的应用场景为预设应用场景。
在一种可能的实现方式中,检测模块71,还用于在调整模块72将第一最大传输功率调整为目标传输功率之后,检测第二信息是否满足第二预设条件;其中,第二信息包括以下至少一项:电子设备的发射功率、上行数据的第二重传率、下行数据的第二误码率和第二场景信息;第二场景信息用于指示以下至少一项:是否检测到上行传输异常现象、电子设备的屏幕状态和电子设备当前所处的第一应用场景。调整模块72,还用于在第二信息满足第二预设条件的情况下,将传输上行数据的功率门限值从目标传输功率调整为第一最大传输功率。
在一种可能的实现方式中,上述第二预设条件包括以下至少一项:第二持续时长大于或等于第三预设时长,该第二持续时长为发射功率小于或等于第三预设阈值的持续时长;第二重传率小于第一重传率、且第一重传率与第二重传率的差值小于或等于第四预设阈值;第二误码率大于第一误码率、且第二误码率与第一误码率的差值大于或等于第五预设阈值;检测到上行传输异常现象;电子设备处于熄屏状态;以及,第一应用场景与电子设备中的预设场景信息指示的至少一个预设应用场景均不同。
本发明实施例提供的电子设备能够实现上述方法实施例中电子设备实现的各个过程,为避免重复,详细描述这里不再赘述。
本发明实施例提供一种电子设备,由于在电子设备运行某些应用程序的功能出现异常的情况下,电子设备可以根据上行数据的重传率、上行数据的实际传输功率和/或上行数据的最大传输功率,从而可以在这些信息满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率,以使得电子设备可以通过调整后的传输功率实现上行数据的传输,因此可以提高电子设备的传输性能。
图5为实现本发明各个实施例的一种电子设备的硬件示意图。如图5所示,电子设备100包括但不限于:射频单元101、网络模块102、音频输出单元103、输入单元104、传感器105、显示单元106、用户输入单元107、接口单元108、存储器109、处理器110、以及电源111等部件。
需要说明的是,本领域技术人员可以理解,图5中示出的电子设备结构并不构成对电子设备的限定,电子设备可以包括比图5所示更多或更少的部件,或者组合某些部件,或者不同的部件布置。在本发明实施例中,电子设备包括但不限于手机、平板电脑、笔记本电脑、掌上电脑、车载终端、可穿戴设备、以及计步器等。
其中,处理器110,用于检测第一信息是否满足第一预设条件;其中,第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,该第一最大传输功率为网络设备为电子设备配置的传输上行数据的功率门限值;并在第一信息满足第一预设条件的情况下,采用预设功率控制算法,将第一最大传输功率调整为目标传输功率,该目标传输功率大于第一最大传输功率、且小于或等于电子设备的射频器件的固有最大传输功率。
本发明实施例提供一种电子设备,由于在电子设备运行某些应用程序的功能出现异常的情况下,电子设备可以根据上行数据的重传率、上行数据的实际传输功率和/或上行数据的最大传输功率,从而可以在这些信息满足第一预设条件的情况下,通过预设功率控制算法,将第一最大传输功率调整为目标传输功率,以使得电子设备可以通过调整后的传输功率实现上行数据的传输,因此可以提高电子设备的传输性能。
应理解的是,本发明实施例中,射频单元101可用于收发信息或通话过程中,信号的接收和发送,具体的,将来自基站的下行数据接收后,给处理器110处理;另外,将上行的数据发送给基站。通常,射频单元101包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。此外,射频单元101还可以通过无线通信系统与网络和其他设备通信。
电子设备通过网络模块102为用户提供了无线的宽带互联网访问,如帮助用户收发电子邮件、浏览网页和访问流式媒体等。
音频输出单元103可以将射频单元101或网络模块102接收的或者在存储器109中存储的音频数据转换成音频信号并且输出为声音。而且,音频输出单元103还可以提供与电子设备100执行的特定功能相关的音频输出(例如,呼叫信号接收声音、消息接收声音等等)。音频输出单元103包括扬声器、蜂鸣器以及受话器等。
输入单元104用于接收音频或视频信号。输入单元104可以包括图形处理器(graphics processing unit,GPU)1041和麦克风1042,图形处理器1041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。处理后的图像帧可以显示在显示单元106上。经图形处理器1041处理后的图像帧可以存储在 存储器109(或其它存储介质)中或者经由射频单元101或网络模块102进行发送。麦克风1042可以接收声音,并且能够将这样的声音处理为音频数据。处理后的音频数据可以在电话通话模式的情况下转换为可经由射频单元101发送到移动通信基站的格式输出。
电子设备100还包括至少一种传感器105,比如光传感器、运动传感器以及其他传感器。具体地,光传感器包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板1061的亮度,接近传感器可在电子设备100移动到耳边时,关闭显示面板1061和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别电子设备姿态(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;传感器105还可以包括指纹传感器、压力传感器、虹膜传感器、分子传感器、陀螺仪、气压计、湿度计、温度计、红外线传感器等,在此不再赘述。
显示单元106用于显示由用户输入的信息或提供给用户的信息。显示单元106可包括显示面板1061,可以采用液晶显示器(liquid crystal display,LCD)、有机发光二极管(organic light-emitting diode,OLED)等形式来配置显示面板1061。
用户输入单元107可用于接收输入的数字或字符信息,以及产生与电子设备的用户设置以及功能控制有关的键信号输入。具体地,用户输入单元107包括触控面板1071以及其他输入设备1072。触控面板1071,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板1071上或在触控面板1071附近的操作)。触控面板1071可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器110,接收处理器110发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板1071。除了触控面板1071,用户输入单元107还可以包括其他输入设备1072。具体地,其他输入设备1072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
进一步的,触控面板1071可覆盖在显示面板1061上,当触控面板1071检测到在其上或附近的触摸操作后,传送给处理器110以确定触摸事件的类型,随后处理器110根据触摸事件的类型在显示面板1061上提供相应的视觉输出。虽然在图5中,触控面板1071与显示面板1061是作为两个独立的部件来实现电子设备的输入和输出功能,但是在某些实施例中,可以将触控面板1071与显示面板1061集成而实现电子设备的输入和输出功能,具体此处不做限定。
接口单元108为外部装置与电子设备100连接的接口。例如,外部装置可以包括有线或无线头戴式耳机端口、外部电源(或电池充电器)端口、有线或无线数据端口、存储卡端口、用于连接具有识别模块的装置的端口、音频输入/输出(I/O)端口、视频I/O端口、耳机端口等等。接口单元108可以用于接收来自外部装置的输入(例如,数据信息、电力等等)并且将接收到的输入传输到电子设备100内的一个或多个元件或者可以用于在电子设备100和外部装置之间传输数据。
存储器109可用于存储软件程序以及各种数据。存储器109可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声 音播放功能、图像播放功能等)等;存储数据区可存储根据手机的使用所创建的数据(比如音频数据、电话本等)等。此外,存储器109可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
处理器110是电子设备的控制中心,利用各种接口和线路连接整个电子设备的各个部分,通过运行或执行存储在存储器109内的软件程序和/或模块,以及调用存储在存储器109内的数据,执行电子设备的各种功能和处理数据,从而对电子设备进行整体监控。处理器110可包括一个或多个处理单元;可选的,处理器110可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器110中。
电子设备100还可以包括给各个部件供电的电源111(比如电池),可选的,电源111可以通过电源管理系统与处理器110逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
另外,电子设备100包括一些未示出的功能模块,在此不再赘述。
可选的,本发明实施例还提供一种电子设备,包括如图5所示的处理器110,存储器109,存储在存储器109上并可在所述处理器110上运行的计算机程序,该计算机程序被处理器110执行时实现上述方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本发明实施例还提供一种计算机可读存储介质,计算机可读存储介质上存储有计算机程序,该计算机程序被处理器执行时实现上述方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,所述的计算机可读存储介质,如只读存储器(read-only memory,ROM)、随机存取存储器(random access memory,RAM)、磁碟或者光盘等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。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(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台电子设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本发明各个实施例所述的方法。
上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本发明的保护之内。

Claims (14)

  1. 一种功率调整方法,应用于电子设备,所述方法包括:
    检测第一信息是否满足第一预设条件;其中,所述第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,所述第一最大传输功率为网络设备为所述电子设备配置的传输上行数据的功率门限值;
    在所述第一信息满足所述第一预设条件的情况下,采用预设功率控制算法,将所述第一最大传输功率调整为目标传输功率,所述目标传输功率大于所述第一最大传输功率、且小于或等于所述电子设备的射频器件的固有最大传输功率。
  2. 根据权利要求1所述的方法,其中,所述第一预设条件包括以下至少一项:
    所述第一重传率大于或等于第一预设阈值;
    第一持续时长大于或等于第一预设时长、且所述实际传输功率小于所述电子设备的射频器件的固有最大传输功率,所述第一持续时长为所述实际传输功率等于所述第一最大传输功率的持续时长;以及,
    所述第一最大传输功率小于所述固有最大传输功率。
  3. 根据权利要求1或2所述的方法,其中,所述第一信息还包括以下至少一项:下行数据的第一误码率和所述电子设备的第一场景信息;
    其中,所述第一场景信息用于指示以下至少一项:所述电子设备的屏幕状态、所述电子设备是否检测到用户的输入、所述电子设备的网络状态,以及所述电子设备当前的应用场景。
  4. 根据权利要求3所述的方法,其中,所述第一预设条件还包括以下至少一项:
    所述第一误码率小于或等于第二预设阈值;
    所述电子设备处于非熄屏状态;
    所述电子设备检测到用户的输入;
    检测到所述电子设备处于网络连接状态、且在所述网络连接状态下进行上行数据传输的时长大于或等于第二预设时长;以及,
    所述电子设备当前的应用场景为预设应用场景。
  5. 根据权利要求1所述的方法,其中,所述将所述第一最大传输功率调整为目标传输功率之后,所述方法还包括:
    检测第二信息是否满足第二预设条件;其中,所述第二信息包括以下至少一项:所述电子设备的发射功率、上行数据的第二重传率、下行数据的第二误码率和第二场景信息;所述第二场景信息用于指示以下至少一项:是否检测到上行传输异常现象、所述电子设备的屏幕状态和所述电子设备当前所处的第一应用场景;
    在所述第二信息满足所述第二预设条件的情况下,将传输上行数据的功率门限值从所述目标传输功率调整为所述第一最大传输功率。
  6. 根据权利要求5所述的方法,其中,所述第二预设条件包括以下至少一项:
    第二持续时长大于或等于第三预设时长,所述第二持续时长为所述发射功率小于或等于第三预设阈值的持续时长;
    所述第二重传率小于所述第一重传率、且所述第一重传率与所述第二重传率的差值小于或等于第四预设阈值;
    所述第二误码率大于第一误码率、且所述第二误码率与所述第一误码率的差值大于或等于第五预设阈值;
    检测到上行传输异常现象;
    所述电子设备处于熄屏状态;以及,
    所述第一应用场景与所述电子设备中的预设场景信息指示的至少一个预设应用场景均不同。
  7. 一种电子设备,所述电子设备包括:检测模块和调整模块;
    所述检测模块,用于检测第一信息是否满足第一预设条件;其中,所述第一信息包括以下至少一项:上行数据的第一重传率、上行数据的实际传输功率和上行数据的第一最大传输功率,所述第一最大传输功率为网络设备为所述电子设备配置的传输上行数据的功率门限值;
    所述调整模块,用于在所述第一信息满足所述第一预设条件的情况下,采用预设功率控制算法,将所述第一最大传输功率调整为目标传输功率,所述目标传输功率大于所述第一最大传输功率、且小于或等于所述电子设备的射频器件的固有最大传输功率。
  8. 根据权利要求7所述的电子设备,其中,所述第一预设条件包括以下至少一项:
    所述第一重传率大于或等于第一预设阈值;
    第一持续时长大于或等于第一预设时长、且所述实际传输功率小于所述电子设备的射频器件的固有最大传输功率,所述第一持续时长为所述实际传输功率等于所述第一最大传输功率的持续时长;以及,
    所述第一最大传输功率小于所述固有最大传输功率。
  9. 根据权利要求7或8所述的电子设备,其中,所述第一信息还包括以下至少一项:下行数据的第一误码率和所述电子设备的第一场景信息;
    其中,所述第一场景信息用于指示以下至少一项:所述电子设备的屏幕状态、所述电子设备是否检测到用户的输入、所述电子设备的网络状态,以及所述电子设备当前的应用场景。
  10. 根据权利要求9所述的电子设备,其中,所述第一预设条件还包括以下至少一项:
    所述第一误码率小于或等于第二预设阈值;
    所述电子设备处于非熄屏状态;
    所述电子设备检测到用户的输入;
    检测到所述电子设备处于网络连接状态、且在所述网络连接状态下进行上行数据传输的时长大于或等于第二预设时长;以及,
    所述电子设备当前的应用场景为预设应用场景。
  11. 根据权利要求7所述的电子设备,其中,所述检测模块,还用于在所述调整模块将所述第一最大传输功率调整为目标传输功率之后,检测第二信息是否满足第二预设条件;其中,所述第二信息包括以下至少一项:所述电子设备的发射功率、上行数据的第二重传率、下行数据的第二误码率和第二场景信息;所述第二场景信息用于指示以下至少一项:是否检测到上行传输异常现象、所述电子设备的屏幕状态和所述 电子设备当前所处的第一应用场景;
    所述调整模块,还用于在所述第二信息满足所述第二预设条件的情况下,将传输上行数据的功率门限值从所述目标传输功率调整为所述第一最大传输功率。
  12. 根据权利要求11所述的电子设备,其中,所述第二预设条件包括以下至少一项:
    第二持续时长大于或等于第三预设时长,所述第二持续时长为所述发射功率小于或等于第三预设阈值的持续时长;
    所述第二重传率小于所述第一重传率、且所述第一重传率与所述第二重传率的差值小于或等于第四预设阈值;
    所述第二误码率大于第一误码率、且所述第二误码率与所述第一误码率的差值大于或等于第五预设阈值;
    检测到上行传输异常现象;
    所述电子设备处于熄屏状态;以及,
    所述第一应用场景与所述电子设备中的预设场景信息指示的至少一个预设应用场景均不同。
  13. 一种电子设备,所述电子设备包括:处理器、存储器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如权利要求1至6中任一项所述的功率调整方法的步骤。
  14. 一种计算机可读存储介质,所述计算机可读存储介质上存储有计算机程序,所述计算机程序被处理器执行时实现如权利要求1至6中任一项所述的功率调整方法的步骤。
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