WO2019090537A1 - 无线耳机的控制方法、装置和无线耳机 - Google Patents
无线耳机的控制方法、装置和无线耳机 Download PDFInfo
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- WO2019090537A1 WO2019090537A1 PCT/CN2017/110009 CN2017110009W WO2019090537A1 WO 2019090537 A1 WO2019090537 A1 WO 2019090537A1 CN 2017110009 W CN2017110009 W CN 2017110009W WO 2019090537 A1 WO2019090537 A1 WO 2019090537A1
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- Prior art keywords
- wireless headset
- mode
- wireless
- headset
- power
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; ELECTRIC HEARING AIDS; PUBLIC ADDRESS SYSTEMS
- H04R1/00—Details of transducers, loudspeakers or microphones
- H04R1/10—Earpieces; Attachments therefor ; Earphones; Monophonic headphones
Definitions
- Wireless earphone control method device and wireless earphone
- the present invention relates to the field of wireless headphones, and in particular, to a wireless earphone control method, apparatus, and wireless earphone.
- a wireless earphone generally includes a main earphone and a slave earphone.
- the logic of use is that the main earphone is wirelessly connected with the terminal device, receives an audio signal uploaded by the terminal device, and divides the received signal into a main signal and a slave signal, and then the slave signal. Sended to the slave headphones to form a stereo playback.
- the main earphone must be connected to the terminal device wirelessly, and wirelessly connected from the earphone, and the audio signal needs to be processed at the same time, so the power consumption is faster than that from the earphone, when the main earphone is powered After the power is turned off, the power can continue to work from the earphone, but the terminal device cannot be connected and cannot be used. Therefore, the prior art greatly restricts the use length of the wireless earphone and the like.
- a main object of the present invention is to provide a control method, apparatus, and wireless earphone for a wireless earphone that improves battery usage balance.
- the present invention provides a method for controlling a wireless headset, where the wireless headset includes a first wireless headset and a second wireless headset, including:
- the first wireless headset acquires its own first remaining power, and the second remaining power of the second wireless headset;
- the step of controlling the working mode switching of the first wireless headset and the second wireless headset according to the power difference and the preset power balance rule includes: [0009] When the working mode of the first wireless headset is the main headset mode, and the power difference is a negative value, the absolute value of the negative value is greater than the preset power threshold ⁇ , and the first wireless headset is controlled to enter the sleep mode and the low power mode. Or sending a first control command from the headset mode, and controlling the second wireless headset to enter the main headset mode.
- the step of controlling the working mode switching of the first wireless headset and the second wireless headset according to the power difference and the preset power balance rule includes:
- the working mode of the first wireless headset is the slave headset mode
- the power difference is positive
- the absolute value of the positive value is greater than the power threshold ⁇
- controlling the first wireless headset to enter the primary headset mode and sending the second control Commanding, controlling the second wireless headset to enter a sleep mode, a low power mode, or a slave mode.
- the method includes:
- the first wireless headset acquires a handover instruction uploaded by the terminal device connected thereto;
- the switching instruction includes a first switching instruction generated by the user actively performing a switching operation on the terminal device, and/or a specified APP installed by the terminal device identifies the last song and the next time on the terminal device. Switching between the songs generates a second switching instruction.
- the first wireless headset and the second wireless headset are both Bluetooth headsets.
- the present invention further provides a control device for a wireless headset, the wireless headset including a first wireless headset and a second wireless headset, including:
- an obtaining unit configured to acquire, by the first wireless headset, a first remaining power of itself and a second remaining power of the second wireless headset;
- a calculation unit configured to use the first remaining power minus the second remaining power to obtain a power difference
- a control switching unit configured to control the location according to the power difference and a preset power balance rule The working mode switching of the first wireless headset and the second wireless headset is described.
- control switching unit includes:
- a first control switching module configured to: when the working mode of the first wireless headset is the main headset mode, and the power is poor a negative value, the absolute value of the negative value is greater than a preset power threshold ⁇ , controlling the first wireless headset to enter a sleep mode, a low power mode, or transmitting a first control command from the headset mode, and controlling the second wireless headset to enter Main headphone mode.
- control switching unit includes:
- a second control switching module configured to: when the working mode of the first wireless headset is the slave headset mode, and the power difference is positive, the absolute value of the positive value is greater than the power threshold, and the first wireless headset is controlled to enter The main headphone mode sends a second control command to control the second wireless headset to enter a sleep mode, a low power mode, or a slave mode.
- control device of the wireless headset further includes:
- a receiving unit configured to: when the first wireless headset is in a primary headset mode, the first wireless headset acquires a handover instruction uploaded by the terminal device connected thereto;
- a generating unit configured to generate, according to the switching instruction, a command to control the working mode switching of the first wireless headset and the second wireless headset.
- the switching instruction includes a first switching instruction generated by the user actively performing a switching operation on the terminal device, and/or a specified APP installed by the terminal device identifies the last song and the next time on the terminal device. Switching between the songs generates a second switching instruction.
- the first wireless headset and the second wireless headset are both Bluetooth headsets.
- the present invention also provides a wireless headset comprising a memory, a processor and at least one application stored in the memory and configured to be executed by the processor, the application being configured to be used for The above control method of the wireless earphone is performed.
- the wireless earphone control method and device of the present invention and the wireless earphone perform switching of the working mode according to the remaining power relationship between the first wireless earphone and the second wireless earphone to improve the first wireless earphone and the second wireless earphone.
- the power balance is adjusted, for example, the working mode is adjusted by the difference between the remaining power of the first wireless headset and the remaining power of the second wireless headset. For example, the remaining wireless power of the first wireless headset is higher than the power of the second wireless headset. 2.
- the power of the wireless earphone enters the low power mode, or directly enters the sleep mode. If the second wireless earphone is the main earphone mode, it can be switched to the slave mode, etc.
- the balance of use of the battery between the two earphones is improved, if the earphone of the current low remaining power is lowered
- FIG. 1 is a schematic flow chart of a method for controlling a wireless headset according to an embodiment of the present invention
- FIG. 2 is a schematic flowchart of a process before a step of controlling an operation mode switching of the first wireless headset and the second wireless headset in a method for controlling a wireless headset according to an embodiment of the present invention
- FIG. 3 is a schematic structural diagram of a wireless earphone control apparatus according to an embodiment of the present invention.
- FIG. 4 is a schematic structural diagram of a control switching unit according to an embodiment of the present invention.
- FIG. 5 is a schematic structural diagram of a control switching unit according to another embodiment of the present invention.
- FIG. 6 is a schematic structural diagram of a control device for a wireless earphone according to an embodiment of the present invention.
- an embodiment of the present invention provides a method for controlling a wireless headset, where the wireless headset includes a first wireless headset and a second wireless headset, and includes the following steps:
- the first wireless headset acquires its own first remaining power, and the second remaining power of the second wireless headset.
- the first wireless controller is provided with a first controller, which detects the first remaining power of the first wireless headset by using an existing power detecting mechanism that acquires the remaining power of the battery, such as ADC sampling;
- the second wireless controller is provided with a second controller, which detects the second remaining power of the second wireless headset by using an existing power detecting mechanism that acquires the remaining power of the battery, such as ADC sampling, and then the second wireless headset will have the second remaining
- the power is sent to the first wireless headset, so that the remaining power of the two wireless headsets is stored in the first wireless headset for calculation.
- S2 using the first remaining power minus the second remaining power to obtain a power difference.
- the power difference is positive or negative. If the value is positive, the first remaining power is greater than the second remaining power. If the value is negative, the first remaining power is less than the second remaining power.
- the foregoing working modes include a plurality of modes, such as a sleep mode, a low power mode, a slave mode, a main headphone mode, and the like.
- the above sleep mode means that the earphone is in a non-working state, but can wake up with it;
- the low power mode is a mode in which the power consumption is less than normal, such as reducing the power of the earphone;
- the earphone mode refers to the earphone mode.
- the mode in which the main earphone is connected to the terminal device; the main earphone mode means that the earphone is connected to the terminal device, and is connected to another wireless earphone, and the audio information of the receiving terminal device is processed and sent to the mode of the slave earphone.
- the above main headphone mode and slave headphone mode are mutually exclusive modes. Since the power difference has been calculated, the corresponding equalization control can be performed according to the magnitude of the power difference. For example, if the first remaining power is greater than the second remaining power, the second wireless headset is controlled to enter a sleep state, and the first wireless headset is the master. Headphone mode works, etc.
- the step S3 of controlling the working mode switching of the first wireless headset and the second wireless headset according to the power difference and the preset power balance rule includes:
- the terminal wireless MAC address and the terminal key of the specified terminal device are stored in the first wireless headset and the second wireless headset, so that the second wireless headset and the second wireless headset can perform wireless with the terminal device.
- Connection when the power difference is negative, the absolute value of the negative value is greater than the preset power threshold ⁇ , indicating that the first remaining power of the first wireless headset is lower than the second remaining power of the second wireless headset, and thus, can be controlled
- the first wireless headset enters a sleep mode to wait for the second remaining power of the second wireless headset to be consumed to the specified power, and then automatically wakes up the first wireless headset to improve the balance of the first wireless headset and the second wireless headset, because The first wireless headset is currently in the main headset mode.
- the second wireless headset After entering the sleep mode, the second wireless headset switches to the main headset mode, and uses the stored terminal MAC address and the terminal key to connect with the terminal device; and can also control the first wireless headset. Perform low power mode, such as lowering the first The power consumption of the wireless earphone, etc.; the first wireless earphone can also be switched from the main earphone mode to the slave earphone mode, and the second wireless earphone is switched from the earphone mode to the main earphone mode.
- step S3 of controlling the working mode switching of the first wireless headset and the second wireless headset according to the power difference and the preset power balance rule includes:
- the first wireless headset is in the slave headset mode, so the power consumption is lower than the second wireless headset, and the first remaining power of the first wireless headset is greater than the second remaining power of the second wireless headset.
- the first wireless headset switches to the primary headset mode, and the second wireless headset can enter a sleep state, a low power state, or a headset mode.
- the second wireless headset when the second wireless headset enters the sleep mode, the first remaining power of the first wireless headset is consumed to be the same as the second remaining power, the second wireless headset may be activated; or, when the second wireless headset enters a low power consumption a mode, the first remaining power of the first wireless headset is consumed to be the same as the second remaining power, and the working mode of the second wireless headset can be restored; or, when the second wireless headset enters the slave headset mode, etc., when the second wireless After the earphone enters the slave mode, when the first remaining power of the first wireless earphone is subtracted from the second remaining power of the second wireless earphone, the difference is negative, and the absolute value of the negative value is greater than the power threshold ⁇ , the first The wireless headset switches to the headset mode, and the second wireless headset switches to the headset mode.
- the method before the step S3 of controlling the working mode switching of the first wireless headset and the second wireless headset, the method includes:
- the first wireless headset acquires a handover instruction uploaded by the terminal device connected thereto.
- the acquiring manner of the foregoing switching instruction includes multiple types, for example, a first switching instruction generated by the user actively performing a switching operation on the terminal device, for example, the user switches the song by using a switching button set on the terminal device.
- the first switching command or the like; or the designated APP installed by the terminal device identifies a second switching instruction generated by switching between the previous song and the next song on the terminal device.
- S302. Generate a command to control an operation mode switching of the first wireless headset and the second wireless headset according to the switching instruction. [0059] In this step, only when the terminal device performs the switching of the playing content, the command for controlling the working mode switching of the first wireless earphone and the second wireless earphone is generated, thereby preventing the user from switching to the earphone due to the task of listening to the song or the like. The working mode misses listening to audio information.
- the first wireless headset and the second wireless headset are both Bluetooth headsets.
- the communication method between the first wireless headset and the second wireless headset may be connected through a low-power Bluetooth form, or may be connected through a wireless communication mechanism such as TWS/AWS.
- the method for controlling the wireless earphone according to the present invention according to the remaining power relationship between the first wireless earphone and the second wireless earphone, switching the working mode to improve the power balance of the first wireless earphone and the second wireless earphone, for example,
- the remaining battery power of the first wireless headset and the remaining battery power of the second wireless headset adjust the working mode, for example, the remaining wireless power of the first wireless headset is higher than the power of the second wireless headset, and the power of the second wireless headset can be reduced. Enter the low power mode, or go directly to the sleep mode. If the second wireless headset is in the main headset mode, you can switch it to the slave headset mode, etc., so that the first wireless headset and the second wireless headset can basically have the same power.
- an embodiment of the present invention further provides a control device for a wireless headset, where the wireless headset includes a first wireless headset and a second wireless headset, including:
- the obtaining unit 10 is configured to acquire, by the first wireless headset, a first remaining power of itself and a second remaining power of the second wireless headset.
- the first wireless headset is provided with a first controller, which detects the first wireless headset by using an existing power detecting mechanism that acquires the remaining power of the battery, such as A DC sampling or the like. Remaining power; a second controller is disposed in the second wireless headset, and detects a second remaining power of the second wireless headset by using an existing power detecting mechanism that acquires the remaining power of the battery, such as ADC sampling, and then the second wireless headset Sending the second remaining power to the first wireless headset, so that the remaining power of the two wireless headsets is stored in the first wireless headset for calculation.
- an existing power detecting mechanism that acquires the remaining power of the battery
- ADC sampling existing power detecting mechanism that acquires the remaining power of the battery
- the calculating unit 20 is configured to use the first remaining power minus the second remaining power to obtain a power difference.
- the above-mentioned electric quantity difference is positive or negative. If it is a positive value, it indicates that the first remaining electric quantity is greater than the second remaining electric quantity, and if it is a negative value, the first remaining electric quantity is smaller than the second remaining electric quantity.
- the control switching unit 30 is configured to control the working mode switching of the first wireless headset and the second wireless headset according to the power difference and the preset power balance rule.
- the above operation modes include various types, such as a sleep mode, a low power consumption mode, a slave headphone mode, a main headphone mode, and the like.
- the above sleep mode means that the earphone is in a non-working state, but can wake up with it;
- the low power mode is a mode in which the power consumption is less than normal, such as reducing the power of the earphone;
- the earphone mode refers to the earphone mode.
- the mode in which the main earphone is connected to the terminal device; the main earphone mode means that the earphone is connected to the terminal device, and is connected to another wireless earphone, and the audio information of the receiving terminal device is processed and sent to the mode of the slave earphone.
- the above main headphone mode and slave mode are mutually exclusive modes. Since the power difference has been calculated, the corresponding equalization control can be performed according to the magnitude of the power difference. For example, if the first remaining power is greater than the second remaining power, the second wireless headset is controlled to enter a sleep state, and the first wireless headset is the master. Headphone mode works, etc.
- the foregoing control switching unit 30 includes:
- the first control switching module 31 is configured to: when the working mode of the first wireless earphone is the main earphone mode, and the power difference is a negative value, and the absolute value of the negative value is greater than a preset power threshold, the first wireless is controlled.
- the headset enters a sleep mode, a low power mode, or sends a first control command from the headset mode to control the second wireless headset to enter the main headset mode.
- the first wireless headset and the second wireless headset respectively store the terminal MAC address and the terminal key of the designated terminal device, so the second wireless headset and the second wireless headset can both Wirelessly connecting with the terminal device, when the power difference is negative, the absolute value of the negative value is greater than the preset power threshold ⁇ , indicating that the first remaining power of the first wireless headset is lower than the second remaining power of the second wireless headset,
- the first wireless headset can be controlled to enter the sleep mode, to wait for the second remaining power of the second wireless headset to be consumed to the specified power, and then automatically wake up the first wireless headset to improve the first wireless headset and the second wireless headset.
- the power balance situation because the first wireless headset is currently in the main headset mode, after the user enters the sleep mode, the second wireless headset switches to the main headset mode, and uses the stored terminal MAC address and the terminal key to connect with the terminal device; Controlling the first wireless headset to perform a low power mode, such as reducing the power of the first wireless headset, etc.;
- the first wireless headset is in the main headset mode Switching to the slave headset mode, the second wireless headset is switched from the headset mode to the master headset mode and the like.
- the foregoing control switching unit 30 includes:
- the second control switching module 32 is configured to control the first wireless headset when the working mode of the first wireless headset is the slave headset mode, and the power difference is positive, and the absolute value of the positive value is greater than the power threshold ⁇ Entering the main headphone mode, sending a second control command, controlling the second wireless headset to enter a sleep mode, a low power mode, or a slave mode.
- the first wireless headset is in the slave headset mode, so the power consumption is lower than the second wireless headset, and the first remaining power of the first wireless headset is greater than the second wireless
- the second remaining power of the earphone is a specified power threshold ⁇ , the first wireless earphone is switched to the main earphone mode, and the second wireless earphone can enter a sleep state, a low power state, or a slave headphone mode.
- the second wireless headset when the second wireless headset enters the sleep mode, the first remaining power of the first wireless headset is consumed to be the same as the second remaining power, the second wireless headset may be activated; or, when the second wireless headset enters a low power consumption a mode, the first remaining power of the first wireless headset is consumed to be the same as the second remaining power, and the working mode of the second wireless headset can be restored; or, when the second wireless headset enters the slave mode, etc.
- the wireless headset enters the slave mode when the first remaining power of the first wireless headset is subtracted from the second remaining power of the second wireless headset, the absolute value of the negative value is greater than the power threshold, The first wireless headset switches to the slave headset mode, and the second wireless headset switches to the master headset mode.
- control device of the wireless headset further includes:
- the receiving unit 301 is configured to: when the first wireless headset is in the primary headset mode, the first wireless headset acquires a handover instruction uploaded by the terminal device connected thereto.
- the manner of obtaining the foregoing switching instruction includes multiple types, for example, a first switching instruction generated by the user actively performing a switching operation on the terminal device, for example, the user switches the song through a switching button set on the terminal device.
- the first switching command generated by the terminal device or the like; or the designated APP installed by the terminal device identifies a second switching instruction generated by switching between the previous song and the next song on the terminal device.
- the generating unit 302 is configured to generate, according to the switching instruction, a command to control the working mode switching of the first wireless headset and the second wireless headset.
- the control is generated.
- a wireless headset and a second wireless headset perform a mode switching command to prevent the user from listening to the audio message due to the headset switching mode of operation.
- the first wireless headset and the second wireless headset are both Bluetooth headsets.
- the communication manner between the first wireless headset and the second wireless headset may be connected through a low-power Bluetooth mode, or may be connected through a wireless communication mechanism such as TWS/AWS.
- the control device of the wireless earphone switches the working mode according to the remaining power relationship between the first wireless earphone and the second wireless earphone to improve the power balance of the first wireless earphone and the second wireless earphone, for example,
- the remaining battery power of the first wireless headset and the remaining battery power of the second wireless headset adjust the working mode, for example, the remaining wireless power of the first wireless headset is higher than the power of the second wireless headset, and the power of the second wireless headset can be reduced. Enter the low power mode, or go directly to the sleep mode. If the second wireless headset is in the main headset mode, you can switch it to the slave headset mode, etc., so that the first wireless headset and the second wireless headset can basically have the same power.
- the present invention also provides a wireless headset comprising a memory, a processor and at least one application stored in the memory and configured to be executed by the processor, the application being configured for The above control method of the wireless earphone is performed.
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Abstract
本发明揭示了一种无线耳机的控制方法、装置和无线耳机,所述无线耳机包括第一无线耳机和第二无线耳机,方法包括:所述第一无线耳机获取其本身的第一剩余电量,以及第二无线耳机的第二剩余电量;使用所述第一剩余电量减去第二剩余电量,得到电量差;根据所述电量差以及预设的电量均衡规则,控制所述第一无线耳机和第二无线耳机的工作模式切换。本发明的无线耳机的控制方法和装置,根据第一无线耳机和第二无线耳机的剩余电量关系,进行工作模式的切换,以提高第一无线耳机和第二无线耳机的电量均衡,如果以降低当前剩余电量低的耳机的放电速度为目的,还可以提高无线耳机的使用时间长度等。
Description
无线耳机的控制方法、 装置和无线耳机 技术领域
[0001] 本发明涉及到无线耳机领域, 特别是涉及到一种无线耳机的控制方法、 装置和 无线耳机。
背景技术
[0002] 无线耳机一般包括主耳机和从耳机, 其使用逻辑是, 主耳机与终端设备无线连 接, 接收终端设备上传的音频信号, 将接收到的信号分成主信号和从信号, 然 后将从信号发送给从耳机, 从而形成立体声播放。 通过上面的逻辑进行工作, 主耳机既要无线连接终端设备, 又要无线连接从耳机, 同吋需要对音频信号进 行处理, 所以其耗电相比于从耳机会更快, 当主耳机因电量过低而关机后, 从 耳机虽然还有电量可以继续工作, 但是无法连接终端设备而无法使用, 所以现 有技术大大地制约了无线耳机的使用吋间长度等。
技术问题
[0003] 本发明的主要目的为提供一种提高电池使用均衡的无线耳机的控制方法、 装置 和无线耳机。
问题的解决方案
技术解决方案
[0004] 为了实现上述发明目的, 本发明提出一种无线耳机的控制方法, 所述无线耳机 包括第一无线耳机和第二无线耳机, 包括:
[0005] 所述第一无线耳机获取其本身的第一剩余电量, 以及第二无线耳机的第二剩余 电量;
[0006] 使用所述第一剩余电量减去第二剩余电量, 得到电量差;
[0007] 根据所述电量差以及预设的电量均衡规则, 控制所述第一无线耳机和第二无线 耳机的工作模式切换。
[0008] 进一步地, 所述根据所述电量差以及预设的电量均衡规则, 控制所述第一无线 耳机和第二无线耳机的工作模式切换的步骤, 包括:
[0009] 当第一无线耳机的工作模式为主耳机模式, 且电量差为负值, 该负值的绝对值 大于预设的电量阈值吋, 控制第一无线耳机进入休眠模式、 低功耗模式或从耳 机模式, 发送第一控制命令, 控制所述第二无线耳机进入主耳机模式。
[0010] 进一步地, 所述根据所述电量差以及预设的电量均衡规则, 控制所述第一无线 耳机和第二无线耳机的工作模式切换的步骤, 包括:
[0011] 当第一无线耳机的工作模式为从耳机模式, 且电量差为正值, 该正值的绝对值 大于所述电量阈值吋, 控制第一无线耳机进入主耳机模式, 发送第二控制命令 , 控制所述第二无线耳机进入休眠模式、 低功耗模式或从耳机模式。
[0012] 进一步地, 所述控制所述第一无线耳机和第二无线耳机的工作模式切换的步骤 之前, 包括:
[0013] 当所述第一无线耳机处于主耳机模式, 第一无线耳机获取与其连接的终端设备 上传的切换指令;
[0014] 根据所述切换指令生成控制所述第一无线耳机和第二无线耳机的进行工作模式 切换的命令。
[0015] 进一步地, 所述切换指令包括用户主动通过对终端设备进行切换操作生成的第 一切换指令, 和 /或所述终端设备安装的指定 APP识别到终端设备上进行上一曲 和下一曲之间切换吋生成的第二切换指令。
[0016] 进一步地, 所述第一无线耳机和第二无线耳机均为蓝牙耳机。
[0017]
[0018] 本发明还提供一种无线耳机的控制装置, 所述无线耳机包括第一无线耳机和第 二无线耳机, 包括:
[0019] 获取单元, 用于所述第一无线耳机获取其本身的第一剩余电量, 以及第二无线 耳机的第二剩余电量;
[0020] 计算单元, 用于使用所述第一剩余电量减去第二剩余电量, 得到电量差; [0021] 控制切换单元, 用于根据所述电量差以及预设的电量均衡规则, 控制所述第一 无线耳机和第二无线耳机的工作模式切换。
[0022] 进一步地, 所述控制切换单元, 包括:
[0023] 第一控制切换模块, 用于当第一无线耳机的工作模式为主耳机模式, 且电量差
为负值, 该负值的绝对值大于预设的电量阈值吋, 控制第一无线耳机进入休眠 模式、 低功耗模式或从耳机模式, 发送第一控制命令, 控制所述第二无线耳机 进入主耳机模式。
[0024] 进一步地, 所述控制切换单元, 包括:
[0025] 第二控制切换模块, 用于当第一无线耳机的工作模式为从耳机模式, 且电量差 为正值, 该正值的绝对值大于所述电量阈值吋, 控制第一无线耳机进入主耳机 模式, 发送第二控制命令, 控制所述第二无线耳机进入休眠模式、 低功耗模式 或从耳机模式。
[0026] 进一步地, 所述无线耳机的控制装置, 还包括:
[0027] 接收单元, 用于当所述第一无线耳机处于主耳机模式, 第一无线耳机获取与其 连接的终端设备上传的切换指令;
[0028] 生成单元, 用于根据所述切换指令生成控制所述第一无线耳机和第二无线耳机 的进行工作模式切换的命令。
[0029] 进一步地, 所述切换指令包括用户主动通过对终端设备进行切换操作生成的第 一切换指令, 和 /或所述终端设备安装的指定 APP识别到终端设备上进行上一曲 和下一曲之间切换吋生成的第二切换指令。
[0030] 进一步地, 所述第一无线耳机和第二无线耳机均为蓝牙耳机。
[0031] 本发明还提供一种无线耳机, 包括存储器、 处理器和至少一个被存储在所述存 储器中并被配置为由所述处理器执行的应用程序, 所述应用程序被配置为用于 执行上述的无线耳机的控制方法。
发明的有益效果
有益效果
[0032] 本发明的无线耳机的控制方法、 装置和无线耳机, 根据第一无线耳机和第二无 线耳机的剩余电量关系, 进行工作模式的切换, 以提高第一无线耳机和第二无 线耳机的电量均衡, 如以第一无线耳机的剩余电量和第二无线耳机的剩余电量 的电量差来调整工作模式等, 比如, 第一无线耳机的剩余电量高于第二无线耳 机的电量, 可以降低第二无线耳机的功率进入低功耗模式, 或者直接进入休眠 模式, 如果第二无线耳机是主耳机模式, 那么可以将其切换成从耳机模式等,
以使第一无线耳机和第二无线耳机的电量基本能在同一吋间或者接近的吋间耗 尽, 提高两个耳机之间的电池的使用均衡性, 如果以降低当前剩余电量低的耳 机的放电速度为目的, 则还可以提高无线耳机的使用吋间长度等。
对附图的简要说明
附图说明
[0033] 图 1为本发明一实施例的无线耳机的控制方法的流程示意图;
[0034] 图 2为本发明一实施例的无线耳机的控制方法中控制所述第一无线耳机和第二 无线耳机的工作模式切换的步骤前实施的流程示意图;
[0035] 图 3为本发明一实施例的无线耳机的控制装置的结构示意图;
[0036] 图 4为本发明一实施例的控制切换单元的结构示意图;
[0037] 图 5为本发明另一实施例的控制切换单元的结构示意图;
[0038] 图 6为本发明一实施例的无线耳机的控制装置的结构示意图。
[0039]
[0040] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0041] 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用于限定本发 明。
[0042] 参照图 1, 本发明实施例提供一种无线耳机的控制方法, 所述无线耳机包括第 一无线耳机和第二无线耳机, 包括步骤:
[0043] Sl、 所述第一无线耳机获取其本身的第一剩余电量, 以及第二无线耳机的第二 剩余电量。
[0044] 本步骤中, 第一无线耳机内设置有第一控制器, 其通过现有的如 ADC采样等获 取电池的剩余电量的电量检测机制检测出第一无线耳机的第一剩余电量; 第二 无线耳机内设置有第二控制器, 其通过现有的如 ADC采样等获取电池的剩余电 量的电量检测机制检测出第二无线耳机的第二剩余电量, 然后第二无线耳机将 第二剩余电量发送给第一无线耳机, 使第一无线耳机中存储有两个无线耳机的 剩余电量, 以便于计算。
[0045] S2、 使用所述第一剩余电量减去第二剩余电量, 得到电量差。
[0046] 本步骤中, 上述电量差是分正负的, 若为正值, 则说明第一剩余电量大于第二 剩余电量, 若为负值则说明第一剩余电量小于第二剩余电量。
[0047] S3、 根据所述电量差以及预设的电量均衡规则, 控制所述第一无线耳机和第 二无线耳机的工作模式切换。
[0048] 本步骤中, 上述工作模式包括多种, 比如休眠模式、 低功耗模式、 从耳机模式 、 主耳机模式等。 上述休眠模式是指耳机处于非工作状态, 但是可以随吋唤醒 ; 低功耗模式是一种功耗比正常吋消耗电能更少的模式, 比如降低耳机的功放 功率等; 从耳机模式是指耳机通过主耳机与终端设备连接的模式; 主耳机模式 是指耳机既要与终端设备连接, 还要与另一无线耳机连接, 并将接收终端设备 的音频信息进行处理后发送给从耳机的模式。 上述主耳机模式和从耳机模式是 互斥模式。 因为电量差已经被计算出来, 那么就可以根据电量差的大小进行相 对应的均衡控制, 比如第一剩余电量大于第二剩余电量, 则控制第二无线耳机 进入休眠状态, 第一无线耳机以主耳机模式工作等。
[0049] 本实施例中, 上述根据所述电量差以及预设的电量均衡规则, 控制所述第一无 线耳机和第二无线耳机的工作模式切换的步骤 S3, 包括:
[0050] S31、 当第一无线耳机的工作模式为主耳机模式, 且电量差为负值, 该负值的 绝对值大于预设的电量阈值吋, 控制第一无线耳机进入休眠模式、 低功耗模式 或从耳机模式, 发送第一控制命令, 控制所述第二无线耳机进入主耳机模式。
[0051] 本步骤中, 上述第一无线耳机和第二无线耳机中均存储有指定的终端设备的终 端 MAC地址和终端 key, 所以第二无线耳机和第二无线耳机均可以与终端设备进 行无线连接, 当电量差为负值, 该负值的绝对值大于预设的电量阈值吋, 说明 第一无线耳机的第一剩余电量低于第二无线耳机的第二剩余电量, 此吋, 可以 控制第一无线耳机进入休眠模式, 以等待第二无线耳机的第二剩余电量消耗到 指定电量吋, 再自动唤醒第一无线耳机, 以提高第一无线耳机和第二无线耳机 的电量均衡情况, 因为上述第一无线耳机当前是主耳机模式, 在其进入休眠模 式后, 第二无线耳机切换到主耳机模式, 利用存储的终端 MAC地址和终端 key与 终端设备进行连接; 还可以控制第一无线耳机进行低功耗模式, 比如降低第一
无线耳机的功放功率等; 还可以将第一无线耳机由主耳机模式切换到从耳机模 式, 第二无线耳机由从耳机模式切换到主耳机模式等。
[0052] 在另一实施例中, 上述根据所述电量差以及预设的电量均衡规则, 控制所述第 一无线耳机和第二无线耳机的工作模式切换的步骤 S3, 包括:
[0053] S32、 当第一无线耳机的工作模式为从耳机模式, 且电量差为正值, 该正值的 绝对值大于所述电量阈值吋, 控制第一无线耳机进入主耳机模式, 发送第二控 制命令, 控制所述第二无线耳机进入休眠模式、 低功耗模式或从耳机模式。
[0054] 本步骤中, 上述第一无线耳机处于从耳机模式, 所以其耗电情况要低于第二无 线耳机, 当第一无线耳机的第一剩余电量大于第二无线耳机的第二剩余电量为 指定的电量阈值吋, 第一无线耳机切换到主耳机模式, 第二无线耳机可以进入 休眠状态、 低功耗状态或者从耳机模式等。 比如, 当第二无线耳机进入休眠模 式, 第一无线耳机的第一剩余电量消耗至与第二剩余电量相同吋, 可以启动所 述第二无线耳机; 或者, 当第二无线耳机进入低功耗模式, 第一无线耳机的第 一剩余电量消耗至与第二剩余电量相同吋, 可以恢复所述第二无线耳机的工作 模式; 或者, 当第二无线耳机进入从耳机模式等, 当第二无线耳机进入从模式 后, 当第一无线耳机的第一剩余电量减去和第二无线耳机的第二剩余电量的电 量差为负值吋, 且负值的绝对值大于上述电量阈值吋, 第一无线耳机切换为从 耳机模式, 第二无线耳机则切换至主耳机模式。
[0055] 参照图 2, 本实施例中, 上述控制所述第一无线耳机和第二无线耳机的工作模 式切换的步骤 S3之前, 包括:
[0056] S301、 当所述第一无线耳机处于主耳机模式, 第一无线耳机获取与其连接的终 端设备上传的切换指令。
[0057] 本步骤中, 上述切换指令的获取方式包括多种, 比如, 用户主动通过对终端设 备进行切换操作生成的第一切换指令, 比如用户通过终端设备上设置的切换按 键等切换歌曲吋产生的第一切换命令等; 或者, 所述终端设备安装的指定 APP识 别到终端设备上进行上一曲和下一曲之间切换吋生成的第二切换指令等。
[0058] S302、 根据所述切换指令生成控制所述第一无线耳机和第二无线耳机的进行工 作模式切换的命令。
[0059] 本步骤中, 只有终端设备进行切换播放内容吋, 才会生成控制所述第一无线耳 机和第二无线耳机的进行工作模式切换的命令, 防止用户在听歌等任务吋因耳 机切换工作模式漏听音频信息。
[0060] 本实施例中, 上述第一无线耳机和第二无线耳机均为蓝牙耳机。
[0061] 本实施例中, 上述第一无线耳机和第二无线耳机之间的通讯方法可以是通过低 功耗蓝牙的形式进行连接, 也可以通过 TWS/AWS等无线通信机制进行连接。
[0062] 本发明的无线耳机的控制方法, 根据第一无线耳机和第二无线耳机的剩余电量 关系, 进行工作模式的切换, 以提高第一无线耳机和第二无线耳机的电量均衡 , 如以第一无线耳机的剩余电量和第二无线耳机的剩余电量的电量差来调整工 作模式等, 比如, 第一无线耳机的剩余电量高于第二无线耳机的电量, 可以降 低第二无线耳机的功率进入低功耗模式, 或者直接进入休眠模式, 如果第二无 线耳机是主耳机模式, 那么可以将其切换成从耳机模式等, 以使第一无线耳机 和第二无线耳机的电量基本能在同一吋间或者接近的吋间耗尽, 提高两个耳机 之间的电池的使用均衡性, 如果以降低当前剩余电量低的耳机的放电速度为目 的, 如进行主从耳机模式的切换等, 则还可以提高无线耳机的使用吋间长度等
[0063]
[0064] 参照图 3, 本发明实施例还提供一种无线耳机的控制装置, 所述无线耳机包括 第一无线耳机和第二无线耳机, 包括:
[0065] 获取单元 10, 用于所述第一无线耳机获取其本身的第一剩余电量, 以及第二无 线耳机的第二剩余电量。
[0066] 在获取单元 10中, 上述第一无线耳机内设置有第一控制器, 其通过现有的如 A DC采样等获取电池的剩余电量的电量检测机制检测出第一无线耳机的第一剩余 电量; 第二无线耳机内设置有第二控制器, 其通过现有的如 ADC采样等获取电 池的剩余电量的电量检测机制检测出第二无线耳机的第二剩余电量, 然后第二 无线耳机将第二剩余电量发送给第一无线耳机, 使第一无线耳机中存储有两个 无线耳机的剩余电量, 以便于计算。
[0067] 计算单元 20, 用于使用所述第一剩余电量减去第二剩余电量, 得到电量差。
[0068] 在计算单元 20中, 上述电量差是分正负的, 若为正值, 则说明第一剩余电量大 于第二剩余电量, 若为负值则说明第一剩余电量小于第二剩余电量
[0069] 控制切换单元 30, 用于根据所述电量差以及预设的电量均衡规则, 控制所述第 一无线耳机和第二无线耳机的工作模式切换。
[0070] 在控制切换单元 30中, 上述工作模式包括多种, 比如休眠模式、 低功耗模式、 从耳机模式、 主耳机模式等。 上述休眠模式是指耳机处于非工作状态, 但是可 以随吋唤醒; 低功耗模式是一种功耗比正常吋消耗电能更少的模式, 比如降低 耳机的功放功率等; 从耳机模式是指耳机通过主耳机与终端设备连接的模式; 主耳机模式是指耳机既要与终端设备连接, 还要与另一无线耳机连接, 并将接 收终端设备的音频信息进行处理后发送给从耳机的模式。 上述主耳机模式和从 耳机模式是互斥模式。 因为电量差已经被计算出来, 那么就可以根据电量差的 大小进行相对应的均衡控制, 比如第一剩余电量大于第二剩余电量, 则控制第 二无线耳机进入休眠状态, 第一无线耳机以主耳机模式工作等。
[0071] 参照图 4, 本实施例中, 上述控制切换单元 30, 包括:
[0072] 第一控制切换模块 31, 用于当第一无线耳机的工作模式为主耳机模式, 且电量 差为负值, 该负值的绝对值大于预设的电量阈值吋, 控制第一无线耳机进入休 眠模式、 低功耗模式或从耳机模式, 发送第一控制命令, 控制所述第二无线耳 机进入主耳机模式。
[0073] 在第一控制切换模块 31中, 上述第一无线耳机和第二无线耳机中均存储有指定 的终端设备的终端 MAC地址和终端 key, 所以第二无线耳机和第二无线耳机均可 以与终端设备进行无线连接, 当电量差为负值, 该负值的绝对值大于预设的电 量阈值吋, 说明第一无线耳机的第一剩余电量低于第二无线耳机的第二剩余电 量, 此吋, 可以控制第一无线耳机进入休眠模式, 以等待第二无线耳机的第二 剩余电量消耗到指定电量吋, 再自动唤醒第一无线耳机, 以提高第一无线耳机 和第二无线耳机的电量均衡情况, 因为上述第一无线耳机当前是主耳机模式, 在其进入休眠模式后, 第二无线耳机切换到主耳机模式, 利用存储的终端 MAC 地址和终端 key与终端设备进行连接; 还可以控制第一无线耳机进行低功耗模式 , 比如降低第一无线耳机的功放功率等; 还可以将第一无线耳机由主耳机模式
切换到从耳机模式, 第二无线耳机由从耳机模式切换到主耳机模式等。
[0074] 参照图 5, 在另一实施例中, 上述控制切换单元 30, 包括:
[0075] 第二控制切换模块 32, 用于当第一无线耳机的工作模式为从耳机模式, 且电量 差为正值, 该正值的绝对值大于所述电量阈值吋, 控制第一无线耳机进入主耳 机模式, 发送第二控制命令, 控制所述第二无线耳机进入休眠模式、 低功耗模 式或从耳机模式。
[0076] 本第二控制切换模块 32中, 上述第一无线耳机处于从耳机模式, 所以其耗电情 况要低于第二无线耳机, 当第一物无线耳机的第一剩余电量大于第二无线耳机 的第二剩余电量为指定的电量阈值吋, 第一无线耳机切换到主耳机模式, 第二 无线耳机可以进入休眠状态、 低功耗状态或者从耳机模式等。 比如, 当第二无 线耳机进入休眠模式, 第一无线耳机的第一剩余电量消耗至与第二剩余电量相 同吋, 可以启动所述第二无线耳机; 或者, 当第二无线耳机进入低功耗模式, 第一无线耳机的第一剩余电量消耗至与第二剩余电量相同吋, 可以恢复所述第 二无线耳机的工作模式; 或者, 当第二无线耳机进入从耳机模式耗模式等, 当 第二无线耳机进入从模式后, 当第一无线耳机的第一剩余电量减去和第二无线 耳机的第二剩余电量的电量差为负值吋, 且负值的绝对值大于上述电量阈值吋 , 第一无线耳机切换为从耳机模式, 第二无线耳机则切换至主耳机模式。
[0077] 参照图 6, 上述无线耳机的控制装置, 还包括:
[0078] 接收单元 301, 用于当所述第一无线耳机处于主耳机模式, 第一无线耳机获取 与其连接的终端设备上传的切换指令。
[0079] 在接收单元 301中, 上述切换指令的获取方式包括多种, 比如, 用户主动通过 对终端设备进行切换操作生成的第一切换指令, 比如用户通过终端设备上设置 的切换按键等切换歌曲吋产生的第一切换命令等; 或者, 所述终端设备安装的 指定 APP识别到终端设备上进行上一曲和下一曲之间切换吋生成的第二切换指令 等。
[0080] 生成单元 302, 用于根据所述切换指令生成控制所述第一无线耳机和第二无线 耳机的进行工作模式切换的命令。
[0081] 在生成单元 302中, 只有终端设备进行切换播放内容吋, 才会生成控制所述第
一无线耳机和第二无线耳机的进行工作模式切换的命令, 防止用户在听歌等任 务吋因耳机切换工作模式漏听音频信息。
[0082] 本实施例中, 上述第一无线耳机和第二无线耳机均为蓝牙耳机
[0083] 本实施例中, 上述第一无线耳机和第二无线耳机之间的通讯方式可以是通过低 功耗蓝牙的形式进行连接, 也可以通过 TWS/AWS等无线通信机制进行连接。
[0084] 本发明的无线耳机的控制装置, 根据第一无线耳机和第二无线耳机的剩余电量 关系, 进行工作模式的切换, 以提高第一无线耳机和第二无线耳机的电量均衡 , 如以第一无线耳机的剩余电量和第二无线耳机的剩余电量的电量差来调整工 作模式等, 比如, 第一无线耳机的剩余电量高于第二无线耳机的电量, 可以降 低第二无线耳机的功率进入低功耗模式, 或者直接进入休眠模式, 如果第二无 线耳机是主耳机模式, 那么可以将其切换成从耳机模式等, 以使第一无线耳机 和第二无线耳机的电量基本能在同一吋间或者接近的吋间耗尽, 提高两个耳机 之间的电池的使用均衡性, 如果以降低当前剩余电量低的耳机的放电速度为目 的, 如进行主从耳机模式的切换等, 则还可以提高无线耳机的使用吋间长度等
[0085] 本发明还提供一种无线耳机, 包括存储器、 处理器和至少一个被存储在所述存 储器中并被配置为由所述处理器执行的应用程序, 所述应用程序被配置为用于 执行上述的无线耳机的控制方法。
[0086] 以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利 用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运 用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。
Claims
权利要求书
[权利要求 1] 一种无线耳机的控制方法, 所述无线耳机包括第一无线耳机和第二无 线耳机, 其特征在于, 包括:
所述第一无线耳机获取其本身的第一剩余电量, 以及第二无线耳机的 第二剩余电量;
使用所述第一剩余电量减去第二剩余电量, 得到电量差;
根据所述电量差以及预设的电量均衡规则, 控制所述第一无线耳机和 第二无线耳机的工作模式切换。
[权利要求 2] 根据权利要求 1所述的无线耳机的控制方法, 其特征在于, 所述根据 所述电量差以及预设的电量均衡规则, 控制所述第一无线耳机和第二 无线耳机的工作模式切换的步骤, 包括:
当第一无线耳机的工作模式为主耳机模式, 且电量差为负值, 该负值 的绝对值大于预设的电量阈值吋, 控制第一无线耳机进入休眠模式、 低功耗模式或从耳机模式, 发送第一控制命令, 控制所述第二无线耳 机进入主耳机模式。
[权利要求 3] 根据权利要求 1所述的无线耳机的控制方法, 其特征在于, 所述根据 所述电量差以及预设的电量均衡规则, 控制所述第一无线耳机和第二 无线耳机的工作模式切换的步骤, 包括:
当第一无线耳机的工作模式为从耳机模式, 且电量差为正值, 该正值 的绝对值大于所述电量阈值吋, 控制第一无线耳机进入主耳机模式, 发送第二控制命令, 控制所述第二无线耳机进入休眠模式、 低功耗模 式或从耳机模式。
[权利要求 4] 根据权利要求 1所述的无线耳机的控制方法, 其特征在于, 所述控制 所述第一无线耳机和第二无线耳机的工作模式切换的步骤之前, 包括 当所述第一无线耳机处于主耳机模式, 第一无线耳机获取与其连接的 终端设备上传的切换指令;
根据所述切换指令生成控制所述第一无线耳机和第二无线耳机的进行
工作模式切换的命令。
根据权利要求 4所述的无线耳机的控制方法, 其特征在于, 所述切换 指令包括用户主动通过对终端设备进行切换操作生成的第一切换指令 , 和 /或所述终端设备安装的指定 APP识别到终端设备上进行上一曲 和下一曲之间切换吋生成的第二切换指令。
根据权利要求 1所述的无线耳机的控制方法, 其特征在于, 所述第一 无线耳机和第二无线耳机均为蓝牙耳机。
一种无线耳机的控制装置, 所述无线耳机包括第一无线耳机和第二无 线耳机, 其特征在于, 包括:
获取单元, 用于所述第一无线耳机获取其本身的第一剩余电量, 以及 第二无线耳机的第二剩余电量;
计算单元, 用于使用所述第一剩余电量减去第二剩余电量, 得到电量 差;
控制切换单元, 用于根据所述电量差以及预设的电量均衡规则, 控制 所述第一无线耳机和第二无线耳机的工作模式切换。
根据权利要求 7所述的无线耳机的控制装置, 其特征在于, 所述控制 切换单元, 包括:
第一控制切换模块, 用于当第一无线耳机的工作模式为主耳机模式, 且电量差为负值, 该负值的绝对值大于预设的电量阈值吋, 控制第一 无线耳机进入休眠模式、 低功耗模式或从耳机模式, 发送第一控制命 令, 控制所述第二无线耳机进入主耳机模式。
根据权利要求 7所述的无线耳机的控制装置, 其特征在于, 所述控制 切换单元, 包括:
第二控制切换模块, 用于当第一无线耳机的工作模式为从耳机模式, 且电量差为正值, 该正值的绝对值大于所述电量阈值吋, 控制第一无 线耳机进入主耳机模式, 发送第二控制命令, 控制所述第二无线耳机 进入休眠模式、 低功耗模式或从耳机模式。
根据权利要求 7所述的无线耳机的控制装置, 其特征在于, 还包括:
接收单元, 用于当所述第一无线耳机处于主耳机模式, 第一无线耳机 获取与其连接的终端设备上传的切换指令;
生成单元, 用于根据所述切换指令生成控制所述第一无线耳机和第二 无线耳机的进行工作模式切换的命令。
[权利要求 11] 根据权利要求 10所述的无线耳机的控制装置, 其特征在于, 所述切换 指令包括用户主动通过对终端设备进行切换操作生成的第一切换指令
, 和 /或所述终端设备安装的指定 APP识别到终端设备上进行上一曲 和下一曲之间切换吋生成的第二切换指令。
[权利要求 12] 根据权利要求 1所述的无线耳机的控制装置, 其特征在于, 所述第一 无线耳机和第二无线耳机均为蓝牙耳机。
[权利要求 13] 一种无线耳机, 包括存储器、 处理器和至少一个被存储在所述存储器 中并被配置为由所述处理器执行的应用程序, 其特征在于, 所述应用 程序被配置为用于执行权利要求 1所述的无线耳机的控制方法。
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| US20110033073A1 (en) * | 2009-05-25 | 2011-02-10 | Junichi Inoshita | Hearing aid system |
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| CN107820155A (zh) * | 2017-11-08 | 2018-03-20 | 深圳市沃特沃德股份有限公司 | 无线耳机的控制方法、装置和无线耳机 |
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| US20110033073A1 (en) * | 2009-05-25 | 2011-02-10 | Junichi Inoshita | Hearing aid system |
| CN105409245A (zh) * | 2013-08-09 | 2016-03-16 | 索诺瓦公司 | 听力辅助系统和方法 |
| CN107071618A (zh) * | 2017-04-26 | 2017-08-18 | 歌尔科技有限公司 | 一种连接双耳蓝牙耳机的方法和装置 |
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