CN106686231A - Message playing method of wearable device and wearable device - Google Patents
Message playing method of wearable device and wearable device Download PDFInfo
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- CN106686231A CN106686231A CN201611227096.0A CN201611227096A CN106686231A CN 106686231 A CN106686231 A CN 106686231A CN 201611227096 A CN201611227096 A CN 201611227096A CN 106686231 A CN106686231 A CN 106686231A
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72403—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
- H04M1/72409—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B13/00—Transmission systems characterised by the medium used for transmission, not provided for in groups H04B3/00 - H04B11/00
- H04B13/005—Transmission systems in which the medium consists of the human body
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72403—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
- H04M1/7243—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
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Abstract
Description
技术领域technical field
本发明涉及可穿戴设备技术领域,具体涉及一种可穿戴设备的消息播放方法及可穿戴设备。The present invention relates to the technical field of wearable devices, in particular to a message playing method of a wearable device and the wearable device.
背景技术Background technique
随着可穿戴设备技术的发展,可穿戴设备(如智能手表等)能实现电话、短信、邮件、照片和音乐等功能。当可穿戴设备上有消息(短消息及其它应用通知消息)进来时,可以通过震动或设置铃声提醒用户。可穿戴设备通常佩戴在手腕上,当用户不方便查看消息时,不利于及时获知消息内容,另外由于可穿戴设备的屏幕通常比较小,不利于阅读消息,舒适感较差。With the development of wearable device technology, wearable devices (such as smart watches, etc.) can realize functions such as phone calls, text messages, emails, photos, and music. When a message (short message and other application notification messages) comes in on the wearable device, the user can be reminded by vibrating or setting a ringtone. Wearable devices are usually worn on the wrist. When the user is inconvenient to view messages, it is not conducive to knowing the content of the messages in a timely manner. In addition, the screen of the wearable device is usually relatively small, which is not conducive to reading messages, and the comfort is poor.
发明内容Contents of the invention
本发明实施例公开了一种可穿戴设备的消息播放方法及可穿戴设备,用于提高用户接收消息的便捷性,同时能够降低消息被周围人窃听的风险。The embodiment of the present invention discloses a message playing method of a wearable device and the wearable device, which are used to improve the convenience for users to receive messages, and at the same time reduce the risk of messages being eavesdropped by people around them.
本发明第一方面公开了一种可穿戴设备的消息播放方法,可包括:The first aspect of the present invention discloses a message playing method for a wearable device, which may include:
当所述可穿戴设备检测到消息到来时,检测所述可穿戴设备是否接收到用于触发播放所述消息的播放指令;When the wearable device detects that a message arrives, detect whether the wearable device has received a playback instruction for triggering the playback of the message;
当检测到用于触发播放所述消息的播放指令时,控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递。When the play instruction for triggering the play of the message is detected, the bone conduction speaker of the wearable device is controlled to convert the voice signal for playing the message into a vibration signal and transmit it through the bone medium.
作为一种可选的实施方式,在本发明第一方面中,当所述可穿戴设备检测到消息到来时,所述检测所述可穿戴设备是否接收到用于触发播放所述消息的播放指令,包括:As an optional implementation manner, in the first aspect of the present invention, when the wearable device detects that a message arrives, the detection of whether the wearable device receives a playback instruction for triggering the playback of the message ,include:
当所述可穿戴设备检测到消息到来时,控制所述可穿戴设备的外置喇叭播放针对所述消息的消息提醒;When the wearable device detects that a message arrives, control the external speaker of the wearable device to play a message reminder for the message;
当所述可穿戴设备的外置喇叭播放所述消息的消息提醒时,检测所述可穿戴设备是否发生用于触发播放所述消息的第一手势动作;When the external speaker of the wearable device plays a message reminder of the message, it is detected whether the wearable device has a first gesture action for triggering the playing of the message;
当检测到用于触发播放所述消息的第一手势动作时,将所述第一手势动作作为所述播放指令,并确定检测到用于触发播放所述消息的播放指令。When the first gesture action for triggering the playing of the message is detected, the first gesture action is used as the playing instruction, and it is determined that the playing instruction for triggering the playing of the message is detected.
作为一种可选的实施方式,在本发明第一方面中,当检测到用于触发播放所述消息的播放指令时,以及控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递之前,所述方法还包括:As an optional implementation manner, in the first aspect of the present invention, when a play instruction for triggering the play of the message is detected, the bone conduction speaker controlling the wearable device will be used to play the message Before the voice signal is converted into a vibration signal and transmitted through the bone medium, the method further includes:
当检测到用于触发播放所述消息的播放指令时,识别所述消息是否为文本消息;When detecting a play instruction for triggering playing the message, identifying whether the message is a text message;
如果所述消息为文本消息,将所述消息转换成语音信号,以及执行控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递的步骤。If the message is a text message, convert the message into a voice signal, and control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium step.
作为一种可选的实施方式,在本发明第一方面中,所述方法还包括:As an optional implementation manner, in the first aspect of the present invention, the method further includes:
在控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递的过程中,检测所述可穿戴设备是否发生用于触发控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号的第二手势动作;In the process of controlling the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium, detecting whether the wearable device is triggered is used to trigger the control of the The bone conduction speaker of the wearable device stops playing the second gesture action of the voice signal of the message;
当检测到用于触发控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号的第二手势动作时,控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号。When the second gesture action for triggering and controlling the bone conduction speaker of the wearable device to stop playing the voice signal of the message is detected, control the bone conduction speaker of the wearable device to stop playing the voice signal of the message .
作为一种可选的实施方式,在本发明第一方面中,所述方法还包括:As an optional implementation manner, in the first aspect of the present invention, the method further includes:
在控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递之后,检测所述可穿戴设备发生的用于表明选择消息的第三手势动作;After controlling the bone conduction horn of the wearable device to convert the voice signal used to play the message into a vibration signal and transmitting it through the bone medium, detecting a third gesture that occurs on the wearable device for indicating message selection action;
根据所述第三手势动作,获取下一条未阅读消息;Obtain the next unread message according to the third gesture action;
控制所述可穿戴设备的骨传导喇叭将用于播放所述下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。The bone conduction speaker controlling the wearable device converts the voice signal for playing the next unread message into a vibration signal and transmits it through the bone medium.
本发明第二方面公开了一种可穿戴设备,可包括:The second aspect of the present invention discloses a wearable device, which may include:
指令检测单元,用于当所述可穿戴设备检测到消息到来时,检测所述可穿戴设备是否接收到用于触发播放所述消息的播放指令;An instruction detection unit, configured to detect whether the wearable device has received a playback instruction for triggering playback of the message when the wearable device detects the arrival of a message;
消息播放单元,用于当所述指令检测单元检测到用于触发播放所述消息的播放指令时,控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递。A message playing unit, configured to control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal when the instruction detection unit detects a play instruction for triggering the play of the message and delivered through the bone medium.
作为一种可选的实施方式,在本发明第二方面中,所述指令检测单元具体包括:As an optional implementation manner, in the second aspect of the present invention, the instruction detection unit specifically includes:
提醒单元,用于当所述可穿戴设备检测到消息到来时,控制所述可穿戴设备的外置喇叭播放针对所述消息的消息提醒;A reminder unit, configured to control an external speaker of the wearable device to play a message reminder for the message when the wearable device detects the arrival of a message;
第一动作检测单元,用于在所述提醒单元控制所述可穿戴设备的外置喇叭播放所述消息的消息提醒时,检测所述可穿戴设备是否发生用于触发播放所述消息的第一手势动作;The first action detection unit is configured to detect whether the first action for triggering the playing of the message occurs on the wearable device when the reminder unit controls the external speaker of the wearable device to play the message reminder of the message. Gestures;
指令确认单元,用于当所述第一动作检测单元检测到用于触发播放所述消息的第一手势动作时,将所述第一手势动作作为所述播放指令,并确定检测到用于触发播放所述消息的播放指令。An instruction confirmation unit, configured to use the first gesture action as the playback instruction when the first action detection unit detects the first gesture action used to trigger the playback of the message, and determine that the first gesture action used to trigger the message is detected. A play instruction to play the message.
作为一种可选的实施方式,在本发明第二方面中,所述可穿戴设备还包括:As an optional implementation manner, in the second aspect of the present invention, the wearable device further includes:
文本识别单元,用于当所述指令检测单元检测到用于触发播放所述消息的播放指令时,以及所述消息播放单元控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递之前,识别所述消息是否为文本消息;The text recognition unit is used to control the bone conduction horn of the wearable device to be used to play the message when the instruction detection unit detects a play instruction for triggering the play of the message. Before the voice signal is converted into a vibration signal and transmitted through the bone medium, identifying whether the message is a text message;
语音转换单元,用于当所述文本识别单元识别出所述消息为文本消息时,将所述消息转换成语音信号;a voice conversion unit, configured to convert the message into a voice signal when the text recognition unit recognizes that the message is a text message;
所述消息播放单元具体用于,在所述语音转换单元将所述消息转换成语音信号后,控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递。The message playing unit is specifically configured to, after the voice conversion unit converts the message into a voice signal, control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and Delivery is through the bone medium.
作为一种可选的实施方式,在本发明第二方面中,所述可穿戴设备还包括:As an optional implementation manner, in the second aspect of the present invention, the wearable device further includes:
第二动作检测单元,用于在所述消息播放单元控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递的过程中,检测所述可穿戴设备是否发生用于触发控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号的第二手势动作;The second action detection unit is used to detect the message playing unit during the process of controlling the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. Whether the wearable device has a second gesture action for triggering and controlling the bone conduction speaker of the wearable device to stop playing the voice signal of the message;
停播单元,用于当所述第二动作检测单元检测到用于触发控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号的第二手势动作时,控制所述可穿戴设备的骨传导喇叭停止播放所述消息的语音信号。The off-broadcasting unit is configured to control the wearable device when the second motion detection unit detects a second gesture that is used to trigger the bone conduction speaker of the wearable device to stop playing the voice signal of the message. The bone conduction speaker of the device stops playing the voice signal of the message.
作为一种可选的实施方式,在本发明第二方面中,所述可穿戴设备还包括:As an optional implementation manner, in the second aspect of the present invention, the wearable device further includes:
第三动作检测单元,用于在所述消息播放单元控制所述可穿戴设备的骨传导喇叭将用于播放所述消息的语音信号转换为振动信号并通过骨介质进行传递之后,检测所述可穿戴设备发生的用于表明选择消息的第三手势动作;The third action detection unit is used to detect the action after the message playing unit controls the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. A third gesture action performed by the wearable device to indicate selection of a message;
消息获取单元,用于根据所述第三手势动作,获取下一条未阅读消息;A message acquiring unit, configured to acquire the next unread message according to the third gesture action;
所述消息播放单元还用于,控制所述可穿戴设备的骨传导喇叭将用于播放所述下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。The message playing unit is also used to control the bone conduction speaker of the wearable device to convert the voice signal used to play the next unread message into a vibration signal and transmit it through the bone medium.
与现有技术相比,本发明实施例具有以下有益效果:Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
在本发明实施例中,可穿戴设备检测到消息到来时,检测可穿戴设备是否接收到用于触发消息播放的播放指令,在检测到用于触发消息播放的播放指令后,控制可穿戴设备的骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。可以看出,实施本发明实施例,在可穿戴设备检测到消息到来时,通过播放指令激活骨传导喇叭用于播放消息的语音信号,有利于提升用户接收消息的便捷性,同时,由于骨传导喇叭将语音信号转换成振动信号并通过骨介质传递,不会导致声音外泄,能够降低消息被窃听到的风险,从而起到保护用户隐私的目的。In the embodiment of the present invention, when the wearable device detects the arrival of a message, it detects whether the wearable device has received a playback instruction for triggering message playback, and after detecting the playback instruction for triggering message playback, controls the wearable device's The bone conduction horn converts the voice signal used to play the message into a vibration signal and transmits it through the medium of bone. It can be seen that the implementation of the embodiment of the present invention, when the wearable device detects the arrival of a message, activates the bone conduction speaker to play the voice signal of the message through the play instruction, which is conducive to improving the convenience for the user to receive the message. At the same time, due to the bone conduction The speaker converts the voice signal into a vibration signal and transmits it through the bone medium, which will not cause sound leakage and can reduce the risk of messages being eavesdropped, thereby protecting user privacy.
附图说明Description of drawings
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the accompanying drawings that need to be used in the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For Those of ordinary skill in the art can also obtain other drawings based on these drawings without making creative efforts.
图1a为本发明实施例公开的可穿戴设备的消息播放方法的流程示意图;Fig. 1a is a schematic flowchart of a message playing method for a wearable device disclosed in an embodiment of the present invention;
图1b为本发明实施例公开的可穿戴设备的结构示意图;Fig. 1b is a schematic structural diagram of a wearable device disclosed in an embodiment of the present invention;
图2为本发明实施例公开的可穿戴设备的消息播放方法的另一流程示意图;FIG. 2 is another schematic flowchart of a message playing method for a wearable device disclosed in an embodiment of the present invention;
图3为本发明实施例公开的可穿戴设备的另一结构示意图;Fig. 3 is another structural schematic diagram of a wearable device disclosed in an embodiment of the present invention;
图4为本发明实施例公开的可穿戴设备的另一结构示意图;Fig. 4 is another structural schematic diagram of a wearable device disclosed in an embodiment of the present invention;
图5为本发明实施例公开的可穿戴设备的另一结构示意图;FIG. 5 is another structural schematic diagram of a wearable device disclosed in an embodiment of the present invention;
图6为本发明实施例公开的可穿戴设备的另一结构示意图;FIG. 6 is another structural schematic diagram of a wearable device disclosed in an embodiment of the present invention;
图7为本发明实施例公开的可穿戴设备的另一结构示意图。Fig. 7 is another structural schematic diagram of the wearable device disclosed by the embodiment of the present invention.
具体实施方式detailed description
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,所描述的实施例仅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做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。The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.
需要说明的是,本发明实施例的术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。It should be noted that the terms "comprising" and "having" and any variations thereof in the embodiments of the present invention are intended to cover non-exclusive inclusion, for example, a process, method, system, product, or process that includes a series of steps or units. The apparatus is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to the process, method, product or apparatus.
本发明实施例公开了一种可穿戴设备的消息播放方法,用于提升用户接收消息的便捷性,同时能够降低消息被窃听到的风险,从而起到保护用户隐私的目的。本发明实施例相应地公开了一种可穿戴设备。The embodiment of the present invention discloses a message playing method of a wearable device, which is used to improve the convenience for users to receive messages, and at the same time reduce the risk of messages being eavesdropped, thereby protecting user privacy. The embodiment of the invention correspondingly discloses a wearable device.
其中,本发明实施例涉及的可穿戴设备包括智能手表等在内的智能穿戴设备,在此不作具体限定。下面将结合具体实施例,详细地介绍本发明技术方案。Wherein, the wearable devices involved in the embodiments of the present invention include smart wearable devices such as smart watches, which are not specifically limited here. The technical solutions of the present invention will be described in detail below in combination with specific embodiments.
实施例一Embodiment one
请参阅图1a,图1a为本发明实施例公开的可穿戴设备的消息播放方法的流程示意图;如图1a所示,一种可穿戴设备的消息播放方法可包括:Please refer to FIG. 1a. FIG. 1a is a schematic flowchart of a message playing method for a wearable device disclosed in an embodiment of the present invention; as shown in FIG. 1a, a message playing method for a wearable device may include:
101、当可穿戴设备检测到消息到来时,可穿戴设备检测是否接收到用于触发播放该消息的播放指令;101. When the wearable device detects the arrival of a message, the wearable device detects whether a play instruction for triggering the play of the message is received;
本发明涉及的消息可以是短消息、社交客户端中的即时聊天消息、应用客户端的应用通知消息等。The message involved in the present invention may be a short message, an instant chat message in a social client, an application notification message in an application client, and the like.
请结合图1b,图1b为本发明实施例公开的可穿戴设备的结构示意图。如图1b所示,本发明提供的可穿戴设备设置有骨传导喇叭,外置喇叭、麦克风(Microphone)、动作传感器、马达、一个及以上处理器(Central Processing Unit,简称CPU)、存储器、电池、通信模块和显示屏等,处理器与其余模块之间通过总线电性连接。基于骨传导喇叭,该可穿戴设备能够实现骨传导模式,至此,可穿戴设备声音的播放模式将包括外放模式(通过外置喇叭实现)和骨传导模式(通过骨传导喇叭实现)。其中,外放模式通过外置喇叭振动出来声音,声音的声波以空气为介质然后经过耳膜进入到内耳。骨传导模式用于将音频信号转换为振动信号并通过骨介质进行传递,最后将振动信号再转换为音频信号。Please refer to FIG. 1b, which is a schematic structural diagram of a wearable device disclosed in an embodiment of the present invention. As shown in Figure 1b, the wearable device provided by the present invention is provided with a bone conduction speaker, an external speaker, a microphone (Microphone), a motion sensor, a motor, one or more processors (Central Processing Unit, referred to as CPU), a memory, a battery , a communication module, a display screen, etc., and the processor and other modules are electrically connected through a bus. Based on the bone conduction speaker, the wearable device can realize the bone conduction mode. So far, the sound playback mode of the wearable device will include the external speaker mode (realized by the external speaker) and the bone conduction mode (realized by the bone conduction speaker). Among them, the loudspeaker mode vibrates the sound through the external speaker, and the sound wave of the sound uses air as the medium and then enters the inner ear through the eardrum. The bone conduction mode is used to convert the audio signal into a vibration signal and transmit it through the bone medium, and finally convert the vibration signal into an audio signal.
可以理解,在基于骨传导喇叭实现的骨传导模式中,佩戴者通过将可穿戴设备佩戴在手臂上(通常是在手腕上),骨传导喇叭紧紧贴在手腕骨骼或者手腕软组织皮肤上。CPU输出的音频信号经过骨传导喇叭转换成为振动信号,振动信号通过皮肤、骨骼以及皮下组织传递到手指上,同时手指(通常为食指)抵住耳部或者伸进耳朵,从而形成密闭音腔,接受来自手指传递的振动信号,由于已经形成密闭音腔,所以耳膜只需要非常微小的振动量,而通过手指的振动信号能够让耳膜产生足够的振动,从而可以达到声音清晰的效果,并达到保护用户隐私的目的,降低声音播放时被周围人窃听到的风险,这就是骨传导模式的工作原理。It can be understood that in the bone conduction mode based on the bone conduction speaker, the wearer wears the wearable device on the arm (usually on the wrist), and the bone conduction speaker is tightly attached to the bone of the wrist or the skin of the soft tissue of the wrist. The audio signal output by the CPU is converted into a vibration signal through the bone conduction speaker. The vibration signal is transmitted to the finger through the skin, bone and subcutaneous tissue. At the same time, the finger (usually the index finger) is pressed against the ear or inserted into the ear to form a closed sound cavity. Accepting the vibration signal transmitted from the finger, the eardrum only needs a very small amount of vibration due to the formation of a closed sound cavity, and the vibration signal through the finger can make the eardrum vibrate enough to achieve a clear sound effect and achieve protection The purpose of user privacy, to reduce the risk of being eavesdropped by people around when the sound is played, this is how the bone conduction mode works.
在本发明提供的一些实施方式中,可穿戴设备检测到消息到来时,控制可穿戴设备的外置喇叭播放针对该消息的消息提醒(即利用可穿戴设备的外放模式播放该消息的消息提醒),并在控制外置喇叭播放针对该消息的消息提醒时,检测可穿戴设备是否发生触发播放该消息的第一手势动作,如果检测到第一手势动作,将第一手势动作作为该播放指令,并确定检测到用于触发播放该消息的播放指令。通过该实施方式,用户可以通过佩戴可穿戴设备的手臂执行预设的用于触发播放消息的手势动作,从而控制可穿戴设备进行播放模式切换,操作更加便捷简单。In some implementations provided by the present invention, when the wearable device detects the arrival of a message, it controls the external speaker of the wearable device to play a message reminder for the message (that is, use the wearable device's external playback mode to play the message reminder for the message) ), and when controlling the external speaker to play a message reminder for the message, detect whether the wearable device has the first gesture action that triggers the playback of the message, and if the first gesture action is detected, use the first gesture action as the playback instruction , and determine that a play instruction for triggering the play of the message is detected. Through this embodiment, the user can control the wearable device to switch the playback mode through the arm wearing the wearable device to perform preset gestures for triggering the playback of messages, and the operation is more convenient and simple.
需要说明,本发明的实现情景是佩戴者通过将可穿戴设备佩戴在手臂上(通常是在手腕上),然后利用手指(通常为食指)抵住耳部或者伸进耳朵以通过骨介质完成将播放消息的语音信号转换为振动信号进行传递,基于该情景,第一手势动作可以是可穿戴设备检测到的佩戴着该可穿戴设备手臂的第一手臂动作,可穿戴设备检测到第一手臂动作时,激活可穿戴设备中的骨传导喇叭,从而可以控制骨传导喇叭将用于播放该消息的语音信号转换成振动信号并通过骨介质传递。通过该实施方式,用户只需要利用佩戴着可穿戴设备的手臂完成激活骨传导喇叭的操作,从而实现利用骨传导喇叭传递语音信号,操作方便,给以用户更好的体验。It should be noted that the realization scenario of the present invention is that the wearer wears the wearable device on the arm (usually on the wrist), and then uses the finger (usually the index finger) to touch the ear or put it into the ear to complete the wearable device through the bone medium. The voice signal of playing the message is converted into a vibration signal for transmission. Based on this scenario, the first gesture action can be the first arm movement detected by the wearable device on the arm wearing the wearable device. The wearable device detects the first arm movement , activate the bone conduction speaker in the wearable device, so that the bone conduction speaker can be controlled to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. Through this embodiment, the user only needs to use the arm wearing the wearable device to complete the operation of activating the bone conduction speaker, so that the bone conduction speaker can be used to transmit voice signals, which is easy to operate and gives users a better experience.
第一手臂动作预先设置并保存在可穿戴设备中,同时将第一手臂动作与播放指令进行关联保存。可以理解,通过可穿戴设备设置的动作传感器检测第一手臂动作,动作传感器可以凸起设置在壳体底部,以便动作传感器能够紧贴在手臂上,以精确检测到第一手臂动作。手臂动作可以包括手臂水平横放、手臂向上竖直、手臂向下垂直、手臂水平横放到向上竖直、手臂水平横放到向下垂直、手臂向上竖直到水平横放、手臂向上竖直到向下垂直等等。根据上述介绍的利用骨传导模式时用户的使用姿势,可以优选手臂从手臂水平横放到向上竖直作为第一手臂动作。The first arm motion is pre-set and stored in the wearable device, and at the same time, the first arm motion is associated and saved with the playback instruction. It can be understood that the motion sensor provided on the wearable device detects the first arm motion, and the motion sensor can be protrudingly arranged on the bottom of the housing so that the motion sensor can be closely attached to the arm to accurately detect the first arm motion. Arm movements can include arms horizontally, arms up vertically, arms down vertically, arms horizontally down vertically, arms horizontally down vertically, arms up vertically until horizontally horizontally, arms up vertically to down vertically and so on. According to the user's posture when using the bone conduction mode described above, it may be preferable to move the arm from horizontal to vertical upward as the first arm action.
在本发明提供的另一些实施方式中,第一手势动作是可穿戴设备检测到的佩戴着该可穿戴设备手臂的第一手臂动作和第一手指动作的结合,可穿戴设备先检测手臂发生的第一手臂动作,在检测到第一手臂动作后,进一步检测佩戴着可穿戴设备手臂的预设手指的第一手指动作(比如食指动作),如果在检测到手臂发生第一手臂动作之后,再检测到预设手指发生的第一手指动作时,确定可穿戴设备接收到用户触发播放消息的播放指令。In some other embodiments provided by the present invention, the first gesture action is a combination of the first arm action and the first finger action of the arm wearing the wearable device detected by the wearable device, and the wearable device first detects the movement of the arm. The first arm movement, after detecting the first arm movement, further detect the first finger movement (such as the index finger movement) of the preset finger wearing the wearable device arm, if after detecting the first arm movement of the arm, then When the first finger action of the preset finger is detected, it is determined that the wearable device has received a play instruction triggered by the user to play the message.
手指动作可以包括手指伸直、手指弯曲等,根据上述介绍的利用骨传导模式时用户的使用姿势,将上述介绍的手臂动作中手臂水平横放到向上竖直作为第一手臂动作,将手指伸直作为第一手指动作,根据第一手臂动作和第一手指动作关联播放指令,以实现单手操作可穿戴设备,为用户控制可穿戴设备带来便利,以提高用户的使用体验感。Finger movements can include finger straightening, finger bending, etc. According to the user's posture when using the bone conduction mode described above, put the arm horizontally and vertically upward in the arm movement described above as the first arm movement, and extend the finger Straight as the first finger movement, according to the first arm movement and the first finger movement, associate the playback instruction to realize one-handed operation of the wearable device, bringing convenience for the user to control the wearable device, and improving the user experience.
可以理解,在上述实施例中,可穿戴设备若要检测第一手指动作,可以在可穿戴设备中增加设置肌肉传感器,通过肌肉传感器检测第一手指动作,同样,肌肉传感器可以凸起设置在可穿戴设备的壳体底部,以便在佩戴可穿戴设备后,肌肉传感器能够紧贴着手臂,从而准确地检测出第一手指动作。It can be understood that, in the above-mentioned embodiment, if the wearable device wants to detect the movement of the first finger, a muscle sensor can be added to the wearable device to detect the movement of the first finger through the muscle sensor. The bottom of the housing of the wearable device, so that after wearing the wearable device, the muscle sensor can be closely attached to the arm, thereby accurately detecting the first finger movement.
可穿戴设备表面上还设置有物理按钮,通过操作该物理按钮触发播放接收到的消息。在可穿戴设备检测到消息到来时,控制可穿戴设备的外置喇叭播放针对该消息的消息提醒(即利用可穿戴设备的外放模式播放该消息的消息提醒),监测用户对该物理按钮的操作以获得播放指令。The surface of the wearable device is also provided with a physical button, which is triggered to play the received message by operating the physical button. When the wearable device detects the arrival of a message, control the external speaker of the wearable device to play a message reminder for the message (that is, use the wearable device's external playback mode to play the message reminder for the message), and monitor the user's action on the physical button. to get playback instructions.
102、当检测到用于触发播放该消息的播放指令时,可穿戴设备控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。102. When a play instruction for triggering playing the message is detected, the wearable device controls the bone conduction speaker to convert the voice signal for playing the message into a vibration signal and transmit it through the bone medium.
在本发明提供的一些实施方式中,可穿戴设备在检测到用于触发播放该消息的播放指令时,识别该消息是否为文本消息,当该消息为文本消息时,将该文本消息转换成语音消息,从而获得语音信号,可穿戴设备控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。在该消息为语音消息时,将直接控制骨传导喇叭将该语音消息转换为振动信号并通过骨介质进行传递。In some implementations provided by the present invention, when the wearable device detects a play instruction for triggering the play of the message, it identifies whether the message is a text message, and when the message is a text message, converts the text message into a voice message, so as to obtain a voice signal, the wearable device controls the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. When the message is a voice message, the bone conduction horn will be directly controlled to convert the voice message into a vibration signal and transmit it through the bone medium.
在上述实施方式中,如果可穿戴设备接收到的消息为文本消息,对该文本消息进行语言学分析处理,以获得处理好的文本,然后对处理好的文本进行语音合成,得到合成语音,对合成语音进行音质处理,得到语音消息。In the above embodiment, if the message received by the wearable device is a text message, linguistic analysis is performed on the text message to obtain the processed text, and then speech synthesis is performed on the processed text to obtain a synthesized voice. The synthesized voice is processed for sound quality, and the voice message is obtained.
其中,在对文本进行语言学分析中,逐句进行词汇、语法和语义的分析,以确定句子的低层结构和每个字的音素的组成,包括文本的断句、字词切分、多音字的处理、数字的处理、缩略语的处理等。Among them, in the linguistic analysis of the text, lexical, grammatical and semantic analysis is carried out sentence by sentence to determine the low-level structure of the sentence and the phoneme composition of each word, including sentence segmentation of the text, word segmentation, and polyphonic characters. processing, processing of numbers, processing of abbreviations, etc.
语音合成包括把处理好的文本所对应的单字或者短语从语音合成库中提取,把语言学描述转化成言语波形。音质处理时,对合成语音从清晰度、自然度和连贯性等方面出发进行处理,以确保合成语音的音质。Speech synthesis includes extracting the words or phrases corresponding to the processed text from the speech synthesis library, and converting linguistic descriptions into speech waveforms. During sound quality processing, the synthesized speech is processed in terms of clarity, naturalness and coherence to ensure the sound quality of the synthesized speech.
在本发明提供的另一些实施方式中,如果可穿戴设备接收到的消息为文本消息,可穿戴设备将文本消息上传到文本-语音转换服务器,由文本-语音转换服务器将该文本消息转换为语音消息并返回到可穿戴设备,可穿戴设备接收到文本-语音转换服务器返回的语音消息后,控制骨传导喇叭将用于播放该语音消息的语音信号转换为振动信号并通过骨介质进行传递。通过该实施方式,将文本-语音的转换工作交由文本-语音转换服务器,能够降低可穿戴设备的处理负担,从而降低内存压力,提高可穿戴设备的处理速度。In other embodiments provided by the present invention, if the message received by the wearable device is a text message, the wearable device uploads the text message to the text-to-speech conversion server, and the text-to-speech conversion server converts the text message into voice The message is returned to the wearable device. After the wearable device receives the voice message returned by the text-to-speech conversion server, the wearable device controls the bone conduction speaker to convert the voice signal used to play the voice message into a vibration signal and transmit it through the bone medium. Through this embodiment, the text-to-speech conversion work is handed over to the text-to-speech conversion server, which can reduce the processing load of the wearable device, thereby reducing memory pressure and improving the processing speed of the wearable device.
在本发明提供的一些实施方式中,可穿戴设备在检测到用于触发播放该消息的播放指令时,以及控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递之前,可穿戴设备还执行以下步骤:In some implementations provided by the present invention, when the wearable device detects the play instruction used to trigger the play of the message, it controls the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and perform a vibration signal through the bone medium. Before passing, the wearable also performs the following steps:
获取发送该消息的账号信息,然后控制骨传导喇叭将用于播放该账号信息的语音信号转换为振动信息号并通过骨介质进行传递之后,再次控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。Obtain the account information that sent the message, and then control the bone conduction speaker to convert the voice signal used to play the account information into a vibration message number and transmit it through the bone medium, then control the bone conduction speaker again to play the voice signal of the message Converted to a vibration signal and transmitted through the bone medium.
进一步地,可穿戴设备在获取发送该消息的账号信息后,识别该账号信息所对应的发送用户是否属于联系人列表中的联系人;如果该账号信息所对应的发送用户属于联系人列表中的联系人,从联系人列表中获取该发送用户的第一关联信息,该第一关联信息包括发送用户的账号信息、以及昵称或者备注等信息,以及控制骨传导喇叭先将用于播放该第一关联信息的语音信号转换为振动信息号并通过骨介质进行传递之后,将进一步控制骨传导喇叭用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递;如果该账号信息所对应的发送用户不属于联系人列表中的联系人,进一步识别该账号信息所对应的发送用户是否属于公众用户,例如,天气信息推送账号、中国移动消息推送账号(10086)等,如果识别该账号信息所对应的发送用户属于公众用户,那么获取该公众用户的第二关联信息,该第二关联信息包括该账号信息,控制骨传导喇叭先将用于播放第二关联信息的语音信号转换为振动信息号并通过骨介质进行传递之后,进一步控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。如果该账号信息所对应的发送用户不属于联系人列表中的联系人,也不属于公众用户,进一步识别该账号信息所对应的发送用户是否属于被记录的骚扰用户,如果是骚扰用户,获取该骚扰用户的第三关联信息,该第三关联信息包括该账号信息以及及指示该消息为骚扰消息的信息,控制骨传导喇叭先将用于播放第三关联信息的语音信号转换为振动信息号并通过骨介质进行传递之后,进一步控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。Further, after the wearable device obtains the account information for sending the message, it identifies whether the sending user corresponding to the account information belongs to a contact in the contact list; if the sending user corresponding to the account information belongs to the contact in the contact list The contact person obtains the first associated information of the sending user from the contact list, the first associated information includes the account information of the sending user, and information such as nickname or remarks, and controls the bone conduction speaker to be used to play the first After the voice signal of the associated information is converted into a vibration information number and transmitted through the bone medium, the voice signal for further controlling the bone conduction speaker to play the message is converted into a vibration signal and transmitted through the bone medium; if the account information corresponds to The sending user does not belong to the contacts in the contact list, further identifying whether the sending user corresponding to the account information is a public user, for example, weather information push account, China Mobile message push account (10086), etc., if the account information is identified If the corresponding sending user belongs to a public user, then obtain the second associated information of the public user, the second associated information includes the account information, and control the bone conduction speaker to first convert the voice signal used to play the second associated information into a vibration information number And after transmitting through the bone medium, the bone conduction horn is further controlled to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. If the sending user corresponding to the account information is neither a contact in the contact list nor a public user, further identify whether the sending user corresponding to the account information is a recorded harassing user, and if it is a harassing user, obtain the The third related information of the harassing user, the third related information includes the account information and information indicating that the message is a harassing message, the bone conduction speaker is controlled to first convert the voice signal used to play the third related information into a vibration information number and After transmission through the bone medium, the bone conduction horn is further controlled to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium.
通过上述实施方式,进一步对消息进行智能识别,然后先控制骨传导喇叭播放该消息的关联信息,以便用户在接收消息内容之前先获知消息的来源,然后用户可以根据消息的来源确定是否需要继续接收消息内容。Through the above implementation, the message is further intelligently identified, and then the bone conduction speaker is first controlled to play the relevant information of the message, so that the user can know the source of the message before receiving the content of the message, and then the user can determine whether to continue receiving according to the source of the message Message content.
在本发明实施例中,可穿戴设备检测到消息到来时,检测可穿戴设备是否接收到用于触发消息播放的播放指令,在检测到用于触发消息播放的播放指令后,控制可穿戴设备的骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。可以看出,实施本发明实施例,在可穿戴设备检测到消息到来时,通过播放指令激活骨传导喇叭用于播放消息的语音信号,有利于提升用户接收消息的便捷性,同时,由于骨传导喇叭将语音信号转换成振动信号并通过骨介质传递,不会导致声音外泄,能够降低消息被窃听到的风险,从而起到保护用户隐私的目的。In the embodiment of the present invention, when the wearable device detects the arrival of a message, it detects whether the wearable device has received a playback instruction for triggering message playback, and after detecting the playback instruction for triggering message playback, controls the wearable device's The bone conduction horn converts the voice signal used to play the message into a vibration signal and transmits it through the medium of bone. It can be seen that the implementation of the embodiment of the present invention, when the wearable device detects the arrival of a message, activates the bone conduction speaker to play the voice signal of the message through the play instruction, which is conducive to improving the convenience for the user to receive the message. At the same time, due to the bone conduction The speaker converts the voice signal into a vibration signal and transmits it through the bone medium, which will not cause sound leakage and can reduce the risk of messages being eavesdropped, thereby protecting user privacy.
实施例二Embodiment two
请参阅图2,图2为本发明实施例公开的可穿戴设备的消息播放方法的另一流程示意图;如图2所示,一种可穿戴设备的消息播放方法可包括:Please refer to FIG. 2. FIG. 2 is another schematic flowchart of a message playing method for a wearable device disclosed in an embodiment of the present invention; as shown in FIG. 2, a message playing method for a wearable device may include:
201、可穿戴设备检测是否有消息到来;201. The wearable device detects whether there is news coming;
202、如果检测到消息到来,可穿戴设备控制外置喇叭播放该消息的消息提醒;202. If the arrival of a message is detected, the wearable device controls an external speaker to play a message reminder of the message;
其中,可穿戴设备默认通过振动方式播放消息提醒,振动可以通过可穿戴设备中的马达实现。Wherein, the wearable device plays a message reminder by vibration by default, and the vibration can be realized by a motor in the wearable device.
203、可穿戴设备检测其是否处于被佩戴状态;203. The wearable device detects whether it is being worn;
在本发明提供的一些实施方式中,可穿戴设备通过设置在壳体底部的人体特征采集设备采集人体特征信息,当人体特征信息的数值在预设范围内时,确定可穿戴设备处于被佩戴状态,当人体特征信息的数值不在预设范围内时,确定可穿戴设备不处于被佩戴状态。其中,人体特征采集设备可以是温度采集设备、心率采集设备或者血压采集设备等。举例来说,当人体特征采集设备为温度采集设备时,通过该温度采集设备采集温度,当采集到的温度在预设温度范围内时,确定可穿戴设备处于被佩戴状态,当采集到的温度不在预设温度范围内时,确定可穿戴设备不处于被佩戴状态。In some embodiments provided by the present invention, the wearable device collects the human body characteristic information through the human body characteristic collection device arranged at the bottom of the housing, and when the value of the human body characteristic information is within a preset range, it is determined that the wearable device is in the worn state , when the value of the human body characteristic information is not within the preset range, it is determined that the wearable device is not in the worn state. Wherein, the human body feature collection device may be a temperature collection device, a heart rate collection device, or a blood pressure collection device. For example, when the human body characteristic collection device is a temperature collection device, the temperature is collected by the temperature collection device, and when the collected temperature is within the preset temperature range, it is determined that the wearable device is in the wearing state, and when the collected temperature When the temperature is not within the preset temperature range, it is determined that the wearable device is not in a worn state.
在本发明提供的另一些实施方式中,可穿戴设备通过设置在壳体底部的红外检测模块检测可穿戴设备壳体与外部障碍物之间的距离值,当该距离值小于预设距离值时,确定该可穿戴设备处于被佩戴状态,当该距离值不小于预设距离值时,确定该可穿戴设备处于被佩戴状态。In other embodiments provided by the present invention, the wearable device detects the distance between the wearable device housing and the external obstacle through the infrared detection module arranged at the bottom of the housing, and when the distance value is less than the preset distance value , it is determined that the wearable device is in the worn state, and when the distance value is not less than the preset distance value, it is determined that the wearable device is in the worn state.
204、如果处于被佩戴状态,可穿戴设备检测是否接收到用于触发播放该消息的播放指令;204. If it is in the worn state, the wearable device detects whether a playback instruction for triggering playback of the message is received;
205、当检测到用于触发播放该消息的播放指令时,可穿戴设备控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递;205. When a play instruction for triggering the play of the message is detected, the wearable device controls the bone conduction speaker to convert the voice signal for playing the message into a vibration signal and transmit it through the bone medium;
206、可穿戴设备在控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递的过程中,检测是否发生用于触发控制骨传导喇叭停止播放该消息的语音信号的第二手势动作;206. During the process of controlling the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmitting it through the bone medium, the wearable device detects whether the voice signal used to trigger the bone conduction speaker to stop playing the message occurs The second gesture action of
207、可穿戴设备控制可穿戴设备的骨传导喇叭停止播放该消息的语音信号。207. The wearable device controls the bone conduction speaker of the wearable device to stop playing the voice signal of the message.
第二手势动作可以是可穿戴设备检测到的佩戴着该可穿戴设备手臂的第二手臂动作,可穿戴设备检测到第二手臂动作时,将控制骨传导喇叭停止播放该语音信号。通过该实施方式,用户只需要利用佩戴着可穿戴设备的手臂实现语音信号的停播,操作方便,给以用户更好的体验。The second gesture action may be a second arm movement of the arm wearing the wearable device detected by the wearable device. When the wearable device detects the second arm movement, it will control the bone conduction speaker to stop playing the voice signal. Through this embodiment, the user only needs to use the arm wearing the wearable device to stop the broadcast of the voice signal, which is convenient to operate and gives the user a better experience.
第二手臂动作预先设置并保存在可穿戴设备中,同时将第二手臂动作与停播指令进行关联保存。可以理解,通过可穿戴设备设置的动作传感器检测第二手臂动作,根据上述介绍的利用骨传导模式时用户的使用姿势,当第一手臂动作为手臂水平横放到向上竖直,对应地,可以将手臂向上竖直到向下垂直作为第二手臂动作。The motion of the second arm is preset and saved in the wearable device, and at the same time, the motion of the second arm is associated and saved with the stop broadcasting instruction. It can be understood that the second arm motion is detected by the motion sensor set on the wearable device. According to the user's posture when using the bone conduction mode described above, when the first arm motion is the arm is horizontally placed upward and vertically, correspondingly, it can be Lift the arm vertically up and down vertically as a second arm motion.
在本发明提供的另一些实施方式中,第二手势动作是可穿戴设备检测到的佩戴着该可穿戴设备手臂的第二手臂动作和第二手指动作的结合,可穿戴设备先检测手臂发生的第二手臂动作,在检测到第二手臂动作后,进一步检测佩戴着可穿戴设备手臂的预设手指的第二手指动作(比如食指动作),如果在检测到手臂发生第二手臂动作之后,再检测到预设手指发生的第二手指动作时,控制骨传导喇叭停止播放该消息的语音信号。In some other embodiments provided by the present invention, the second gesture action is a combination of the second arm motion and the second finger motion of the arm wearing the wearable device detected by the wearable device, and the wearable device first detects that the arm has After detecting the second arm movement, further detect the second finger movement (such as the index finger movement) of the preset finger wearing the wearable device arm, if after detecting the second arm movement of the arm, When the second finger motion of the preset finger is detected, the bone conduction speaker is controlled to stop playing the voice signal of the message.
在这个实施方式中,根据上述介绍的利用骨传导模式时用户的使用姿势,可以将手臂向上竖直作为第二手臂动作,同时将手指弯曲作为第二手指动作,根据第二手臂动作和第二手指动作停播用于播放该消息的振动信号,以实现单手操作可穿戴设备,为用户控制可穿戴设备带来便利,以提高用户的使用体验感。In this embodiment, according to the user's posture when using the bone conduction mode described above, the arm can be raised vertically as the second arm action, and at the same time, the fingers can be bent as the second finger action. According to the second arm action and the second The finger movement stops broadcasting the vibration signal used to play the message, so as to realize one-hand operation of the wearable device, bring convenience to the user to control the wearable device, and improve the user experience.
可以理解,在上述实施例中,可穿戴设备若要检测第二手指动作,可以在可穿戴设备中增加设置肌肉传感器,通过肌肉传感器检测第二手指动作,同样,肌肉传感器可以凸起设置在可穿戴设备的壳体底部,以便在佩戴可穿戴设备后,肌肉传感器能够紧贴着手臂,从而准确地检测出第二手指动作。It can be understood that, in the above embodiment, if the wearable device wants to detect the movement of the second finger, a muscle sensor can be added to the wearable device to detect the movement of the second finger through the muscle sensor. The bottom of the housing of the wearable device, so that after wearing the wearable device, the muscle sensor can be closely attached to the arm, thereby accurately detecting the movement of the second finger.
在本发明提供的另一些实施方式中,可穿戴设备表面上同样可以通过设置物理按钮,通过操作该物理按钮触发停播消息的语音信号。In other embodiments provided by the present invention, a physical button can also be set on the surface of the wearable device, and the voice signal of the off-broadcast message can be triggered by operating the physical button.
在本发明提供的一些实施方式中,可穿戴设备控制骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递的过程中或者之后,可穿戴设备检测发生的用于表明选择消息的第三手势动作;根据第三手势动作,获取下一条未阅读消息;控制骨传导喇叭将用于播放下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。In some embodiments provided by the present invention, during or after the wearable device controls the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium, the wearable device detects the Select the third gesture action of the message; obtain the next unread message according to the third gesture action; control the bone conduction speaker to convert the voice signal used to play the next unread message into a vibration signal and transmit it through the bone medium.
进一步地,可穿戴设备在检测到发生的用于表明选择消息的第三手势动作时,先判断是否还有未阅读消息,若有,将获取下一条未阅读消息,控制骨传导喇叭将用于播放下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。Further, when the wearable device detects the third gesture action used to indicate the selection of the message, it first judges whether there are unread messages, and if so, it will obtain the next unread message, and the bone conduction speaker will be used to The speech signal to play the next unread message is converted to a vibration signal and transmitted through the bone medium.
可以理解,第三手势动作可以是佩戴该可穿戴设备手臂的第三手指动作,在可穿戴设备控制骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递的过程中或者之后,若检测到第三手指动作,将获取下一条未阅读消息,控制骨传导喇叭将用于播放该下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。在该实施方式中,可以设置中指作为执行第三手指动作的执行主体,根据通过骨传导喇叭将用于播放消息的语音信号转换成振动信号并通过骨介质传递时,需要抬起手臂用手指抵住耳部,在此情景下,可以该第三手指动作对应为中指弯曲。还可以相应地将中指伸直作为选择上一条消息、并控制骨传导喇叭将用于播放上一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递的执行指令。It can be understood that the third gesture action may be the action of the third finger of the arm wearing the wearable device. During the process of the wearable device controlling the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium Or later, if the third finger action is detected, the next unread message will be obtained, and the bone conduction speaker will be controlled to convert the voice signal used to play the next unread message into a vibration signal and transmit it through the bone medium. In this embodiment, the middle finger can be set as the execution subject of the third finger action. According to the conversion of the voice signal used to play the message into a vibration signal through the bone conduction speaker and transmission through the bone medium, it is necessary to lift the arm and touch it with the finger. Hold the ear, in this situation, the third finger movement can correspond to the bending of the middle finger. Correspondingly, straightening the middle finger can be used as an execution instruction to select the last message, and control the bone conduction speaker to convert the voice signal used to play the last unread message into a vibration signal and transmit it through the bone medium.
实施例三Embodiment three
请参阅图3,图3为本发明实施例公开的可穿戴设备的另一结构示意图;如图3所示,一种可穿戴设备可包括:Please refer to Fig. 3, Fig. 3 is another structural schematic diagram of the wearable device disclosed in the embodiment of the present invention; as shown in Fig. 3, a wearable device may include:
指令检测单元310,用于当可穿戴设备检测到消息到来时,检测可穿戴设备是否接收到用于触发播放消息的播放指令;An instruction detection unit 310, configured to detect whether the wearable device has received a playback instruction for triggering the playback of the message when the wearable device detects that a message arrives;
消息播放单元320,用于当指令检测单元310检测到用于触发播放消息的播放指令时,控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递。The message playing unit 320 is configured to control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium when the instruction detection unit 310 detects a play command for triggering the play of the message .
在本发明实施例中,在可穿戴设备中有消息到来时,指令检测单元310检测是否接收到用于触发消息播放的播放指令,在指令检测单元310检测到用于触发消息播放的播放指令后,消息播放单元320控制骨传导喇叭将用于播放该消息的语音信号转换为振动信号并通过骨介质进行传递。可以看出,实施本发明实施例,在可穿戴设备检测到消息到来时,通过播放指令激活骨传导喇叭用于播放消息的语音信号,有利于提升用户接收消息的便捷性,同时,由于骨传导喇叭将语音信号转换成振动信号并通过骨介质传递,不会导致声音外泄,能够降低消息被窃听到的风险,从而起到保护用户隐私的目的。In the embodiment of the present invention, when a message arrives in the wearable device, the instruction detection unit 310 detects whether a playback instruction for triggering message playback is received, and after the instruction detection unit 310 detects the playback instruction for triggering message playback , the message playing unit 320 controls the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. It can be seen that the implementation of the embodiment of the present invention, when the wearable device detects the arrival of a message, activates the bone conduction speaker to play the voice signal of the message through the play instruction, which is conducive to improving the convenience for the user to receive the message. At the same time, due to the bone conduction The speaker converts the voice signal into a vibration signal and transmits it through the bone medium, which will not cause sound leakage and can reduce the risk of messages being eavesdropped, thereby protecting user privacy.
请结合图3,在图4所示的可穿戴设备中,上述指令检测单元310具体包括:Please refer to FIG. 3, in the wearable device shown in FIG. 4, the above instruction detection unit 310 specifically includes:
提醒单元410,用于当可穿戴设备检测到消息到来时,控制可穿戴设备的外置喇叭播放针对消息的消息提醒;The reminder unit 410 is used to control the external speaker of the wearable device to play a message reminder for the message when the wearable device detects the arrival of the message;
第一动作检测单元420,用于在提醒单元410控制可穿戴设备的外置喇叭播放消息的消息提醒时,检测可穿戴设备是否发生用于触发播放消息的第一手势动作;The first action detection unit 420 is used to detect whether the wearable device has a first gesture action for triggering the playback of the message when the reminder unit 410 controls the external speaker of the wearable device to play a message reminder;
指令确认单元430,用于当第一动作检测单元420检测到用于触发播放消息的第一手势动作时,将第一手势动作作为播放指令,并确定检测到用于触发播放消息的播放指令。The instruction confirming unit 430 is configured to use the first gesture action as the play instruction when the first motion detection unit 420 detects the first gesture action for triggering the message to be played, and determine that the play instruction for triggering the message to be played is detected.
通过该实施方式,用户可以通过佩戴可穿戴设备的手臂执行预设的用于触发播放消息的手势动作,从而控制可穿戴设备进行播放模式切换,操作更加便捷简单。Through this embodiment, the user can control the wearable device to switch the playback mode through the arm wearing the wearable device to perform preset gestures for triggering the playback of messages, and the operation is more convenient and simple.
需要说明,本发明的实现情景是佩戴者通过将可穿戴设备佩戴在手臂上(通常是在手腕上),然后利用手指(通常为食指)抵住耳部或者伸进耳朵以通过骨介质完成将播放消息的语音信号转换为振动信号进行传递,基于该情景,第一手势动作可以是可穿戴设备检测到的佩戴着该可穿戴设备手臂的第一手臂动作,第一动作检测单元420检测到第一手臂动作并被指令确认单元430确认为播放指令时,消息播放单元320激活可穿戴设备中的骨传导喇叭,从而消息播放单元320控制骨传导喇叭将用于播放该消息的语音信号转换成振动信号并通过骨介质传递。通过该实施方式,用户只需要利用佩戴着可穿戴设备的手臂完成激活骨传导喇叭的操作,从而实现利用骨传导喇叭传递语音信号,操作方便,给以用户更好的体验。It should be noted that the realization scenario of the present invention is that the wearer wears the wearable device on the arm (usually on the wrist), and then uses the finger (usually the index finger) to touch the ear or put it into the ear to complete the wearable device through the bone medium. The voice signal of playing the message is converted into a vibration signal for transmission. Based on this scenario, the first gesture action can be the first arm movement detected by the wearable device on the arm wearing the wearable device. The first motion detection unit 420 detects the first When an arm movement is confirmed by the instruction confirmation unit 430 as a playback instruction, the message playback unit 320 activates the bone conduction speaker in the wearable device, so that the message playback unit 320 controls the bone conduction speaker to convert the voice signal used to play the message into vibration Signals are transmitted through the bone medium. Through this embodiment, the user only needs to use the arm wearing the wearable device to complete the operation of activating the bone conduction speaker, so that the bone conduction speaker can be used to transmit voice signals, which is easy to operate and gives users a better experience.
第一手臂动作预先设置并保存在可穿戴设备中,同时将第一手臂动作与播放指令进行关联保存。可以理解,第一动作检测单元420通过动作传感器检测第一手臂动作,动作传感器可以凸起设置在壳体底部,以便动作传感器能够紧贴在手臂上,以精确检测到第一手臂动作。手臂动作可以包括手臂水平横放、手臂向上竖直、手臂向下垂直、手臂水平横放到向上竖直、手臂水平横放到向下垂直、手臂向上竖直到水平横放、手臂向上竖直到向下垂直等等。根据上述介绍的利用骨传导模式时用户的使用姿势,可以优选手臂从手臂水平横放到向上竖直作为第一手臂动作。The first arm motion is pre-set and stored in the wearable device, and at the same time, the first arm motion is associated and saved with the playback instruction. It can be understood that the first motion detection unit 420 detects the first arm motion through the motion sensor, and the motion sensor can be protruded on the bottom of the housing so that the motion sensor can be closely attached to the arm to accurately detect the first arm motion. Arm movements can include arms horizontally, arms up vertically, arms down vertically, arms horizontally down vertically, arms horizontally down vertically, arms up vertically until horizontally horizontally, arms up vertically to down vertically and so on. According to the user's posture when using the bone conduction mode described above, it may be preferable to move the arm from horizontal to vertical upward as the first arm action.
在本发明提供的另一些实施方式中,第一手势动作是检测到的佩戴着该可穿戴设备手臂的第一手臂动作和第一手指动作的结合,第一动作检测单元420先检测手臂发生的第一手臂动作,在检测到第一手臂动作后,进一步检测佩戴着可穿戴设备手臂的预设手指的第一手指动作(比如食指动作),如果在检测到手臂发生第一手臂动作之后,再检测到预设手指发生的第一手指动作时,指令确认单元430确定可穿戴设备接收到用户触发播放消息的播放指令。In other embodiments provided by the present invention, the first gesture action is a combination of the detected first arm action and the first finger action of the arm wearing the wearable device, and the first action detection unit 420 first detects the movement of the arm The first arm movement, after detecting the first arm movement, further detect the first finger movement (such as the index finger movement) of the preset finger wearing the wearable device arm, if after detecting the first arm movement of the arm, then When the first finger action of the preset finger is detected, the instruction confirming unit 430 determines that the wearable device has received a play instruction triggered by the user to play the message.
手指动作可以包括手指伸直、手指弯曲等,根据上述介绍的利用骨传导模式时用户的使用姿势,将上述介绍的手臂动作中手臂水平横放到向上竖直作为第一手臂动作,将手指伸直作为第一手指动作,根据第一手臂动作和第一手指动作关联播放指令,以实现单手操作可穿戴设备,为用户控制可穿戴设备带来便利,以提高用户的使用体验感。Finger movements can include finger straightening, finger bending, etc. According to the user's posture when using the bone conduction mode described above, put the arm horizontally and vertically upward in the arm movement described above as the first arm movement, and extend the finger Straight as the first finger movement, according to the first arm movement and the first finger movement, associate the playback instruction to realize one-handed operation of the wearable device, bringing convenience for the user to control the wearable device, and improving the user experience.
实施例四Embodiment Four
请参阅图5,图5为本发明实施例公开的可穿戴设备的另一结构示意图;图5所示的可穿戴设备是在图3所示的可穿戴设备的基础上进行优化得到的,如图5所示,该可穿戴设备还包括:Please refer to Figure 5, Figure 5 is another structural schematic diagram of the wearable device disclosed in the embodiment of the present invention; the wearable device shown in Figure 5 is optimized on the basis of the wearable device shown in Figure 3, as As shown in Figure 5, the wearable device also includes:
文本识别单元510,用于当指令检测单元310检测到用于触发播放消息的播放指令时,以及消息播放单元320控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递之前,识别消息是否为文本消息;The text recognition unit 510 is used to control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal when the instruction detection unit 310 detects the play command for triggering the play message, and the message play unit 320 Identifying whether the message is a text message prior to delivery through the bone medium;
语音转换单元520,用于当文本识别单元510识别出消息为文本消息时,将消息转换成语音信号;A voice conversion unit 520, configured to convert the message into a voice signal when the text recognition unit 510 recognizes that the message is a text message;
消息播放单元320具体用于,在语音转换单元520将消息转换成语音信号后,控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递。The message playing unit 320 is specifically configured to, after the voice conversion unit 520 converts the message into a voice signal, control the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium.
如果文本识别单元510识别出消息为文本消息,语音转换单元520对该文本消息进行语言学分析处理,以获得处理好的文本,然后对处理好的文本进行语音合成,得到合成语音,对合成语音进行音质处理,得到语音消息。If the text recognition unit 510 recognizes that the message is a text message, the voice conversion unit 520 performs linguistic analysis on the text message to obtain a processed text, and then performs speech synthesis on the processed text to obtain a synthesized voice. Perform sound quality processing to obtain voice messages.
其中,语音转换单元520在对文本进行语言学分析中,逐句进行词汇、语法和语义的分析,以确定句子的低层结构和每个字的音素的组成,包括文本的断句、字词切分、多音字的处理、数字的处理、缩略语的处理等。Among them, in the linguistic analysis of the text, the voice conversion unit 520 analyzes the vocabulary, grammar and semantics sentence by sentence to determine the low-level structure of the sentence and the phoneme composition of each word, including sentence segmentation and word segmentation of the text. , the processing of polyphonic characters, the processing of numbers, the processing of abbreviations, etc.
语音转换单元520进行语音合成时,包括把处理好的文本所对应的单字或者短语从语音合成库中提取,把语言学描述转化成言语波形。语音转换单元520进行音质处理时,对合成语音从清晰度、自然度和连贯性等方面出发进行处理,以确保合成语音的音质。When the speech conversion unit 520 performs speech synthesis, it includes extracting the words or phrases corresponding to the processed text from the speech synthesis library, and converting the linguistic description into speech waveforms. When performing sound quality processing, the voice conversion unit 520 processes the synthesized voice in terms of clarity, naturalness, and coherence, so as to ensure the voice quality of the synthesized voice.
在本发明提供的另一些实施方式中,如果文本识别单元510识别出消息为文本消息,语音转换单元520将文本消息上传到文本-语音转换服务器,由文本-语音转换服务器将该文本消息转换为语音消息并返回到语音转换单元520,语音转换单元520接收到文本-语音转换服务器返回的语音消息后,消息播放单元320控制骨传导喇叭将用于播放该语音消息的语音信号转换为振动信号并通过骨介质进行传递。通过该实施方式,将文本-语音的转换工作交由文本-语音转换服务器,能够降低可穿戴设备的处理负担,从而降低内存压力,提高可穿戴设备的处理速度。In other embodiments provided by the present invention, if the text recognition unit 510 recognizes that the message is a text message, the voice conversion unit 520 uploads the text message to the text-to-speech conversion server, and the text-to-speech conversion server converts the text message into The voice message is returned to the voice conversion unit 520. After the voice conversion unit 520 receives the voice message returned by the text-to-speech conversion server, the message playback unit 320 controls the bone conduction speaker to convert the voice signal used to play the voice message into a vibration signal and Delivery is through the bone medium. Through this embodiment, the text-to-speech conversion work is handed over to the text-to-speech conversion server, which can reduce the processing load of the wearable device, thereby reducing memory pressure and improving the processing speed of the wearable device.
实施例五Embodiment five
请参阅图6,图6为本发明实施例公开的可穿戴设备的另一结构示意图;图6所示的可穿戴设备是在图3所示的可穿戴设备的基础上进行优化得到的,如图6所示,该可穿戴设备还包括:Please refer to Figure 6, Figure 6 is another structural schematic diagram of the wearable device disclosed in the embodiment of the present invention; the wearable device shown in Figure 6 is optimized on the basis of the wearable device shown in Figure 3, as As shown in Figure 6, the wearable device also includes:
第二动作检测单元610,用于在消息播放单元320控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递的过程中,检测可穿戴设备是否发生用于触发控制可穿戴设备的骨传导喇叭停止播放消息的语音信号的第二手势动作;The second action detection unit 610 is used to detect whether the wearable device is in the process of controlling the bone conduction speaker of the wearable device by the message playing unit 320 to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. A second gesture action for triggering a voice signal that controls the bone conduction speaker of the wearable device to stop playing the message;
停播单元620,用于当第二动作检测单元610检测到用于触发控制可穿戴设备的骨传导喇叭停止播放消息的语音信号的第二手势动作时,控制可穿戴设备的骨传导喇叭停止播放消息的语音信号。The off-broadcasting unit 620 is configured to control the bone conduction speaker of the wearable device to stop when the second action detection unit 610 detects a second gesture action for triggering the voice signal of the bone conduction speaker of the wearable device to stop playing the message. Play a voice signal for the message.
通过该实施方式,用户只需要利用佩戴着可穿戴设备的手臂实现语音信号的停播,操作方便,给以用户更好的体验。Through this embodiment, the user only needs to use the arm wearing the wearable device to stop the broadcast of the voice signal, which is convenient to operate and gives the user a better experience.
第二手臂动作预先设置并保存在可穿戴设备中,同时将第二手臂动作与停播指令进行关联保存。可以理解,第二动作检测单元610通过动作传感器检测第二手臂动作,根据上述介绍的利用骨传导模式时用户的使用姿势,当第一手臂动作为手臂水平横放到向上竖直,对应地,可以将手臂向上竖直到向下垂直作为第二手臂动作。The motion of the second arm is preset and saved in the wearable device, and at the same time, the motion of the second arm is associated and saved with the stop broadcasting instruction. It can be understood that the second motion detection unit 610 detects the motion of the second arm through the motion sensor. According to the user's use posture when using the bone conduction mode described above, when the first arm motion is the arm is placed horizontally and vertically upward, correspondingly, It is possible to move the arm vertically up and down vertically as a second arm motion.
在本发明提供的另一些实施方式中,第二手势动作是第二动作检测单元610检测到的佩戴着该可穿戴设备手臂的第二手臂动作和第二手指动作的结合,第二动作检测单元610先检测手臂发生的第二手臂动作,在检测到第二手臂动作后,进一步检测佩戴着可穿戴设备手臂的预设手指的第二手指动作(比如食指动作),如果在检测到手臂发生第二手臂动作之后,再检测到预设手指发生的第二手指动作时,停播单元620控制骨传导喇叭停止播放该消息的语音信号。In other embodiments provided by the present invention, the second gesture action is a combination of the second arm action and the second finger action of the arm wearing the wearable device detected by the second action detection unit 610, and the second action detection Unit 610 first detects the second arm movement that occurs on the arm. After detecting the second arm movement, it further detects the second finger movement (such as the index finger movement) of the preset finger on the arm wearing the wearable device. After the second arm movement, when the second finger movement of the preset finger is detected, the broadcast stop unit 620 controls the bone conduction speaker to stop playing the voice signal of the message.
在这个实施方式中,根据上述介绍的利用骨传导模式时用户的使用姿势,可以将手臂向上竖直作为第二手臂动作,同时将手指弯曲作为第二手指动作,根据第二手臂动作和第二手指动作停播用于播放该消息的振动信号,以实现单手操作可穿戴设备,为用户控制可穿戴设备带来便利,以提高用户的使用体验感。In this embodiment, according to the user's posture when using the bone conduction mode described above, the arm can be raised vertically as the second arm action, and at the same time, the fingers can be bent as the second finger action. According to the second arm action and the second The finger movement stops broadcasting the vibration signal used to play the message, so as to realize one-hand operation of the wearable device, bring convenience to the user to control the wearable device, and improve the user experience.
实施例六Embodiment six
请参阅图7,图7为本发明实施例公开的可穿戴设备的另一结构示意图;图7所示的可穿戴设备是在图3所示的可穿戴设备的基础上进行优化得到的,如图7所示,该可穿戴设备还包括:Please refer to Fig. 7, Fig. 7 is another structural schematic diagram of the wearable device disclosed in the embodiment of the present invention; the wearable device shown in Fig. 7 is optimized on the basis of the wearable device shown in Fig. 3, as As shown in Figure 7, the wearable device also includes:
第三动作检测单元710,用于在消息播放单元320控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递之后,检测可穿戴设备发生的用于表明选择消息的第三手势动作;The third action detection unit 710 is used to detect the action of the wearable device after the message playing unit 320 controls the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium. A third gesture action indicating selection of a message;
消息获取单元720,用于根据第三手势动作,获取下一条未阅读消息;A message acquiring unit 720, configured to acquire the next unread message according to the third gesture action;
消息播放单元320还用于,控制可穿戴设备的骨传导喇叭将用于播放下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。The message playing unit 320 is also used to control the bone conduction speaker of the wearable device to convert the voice signal for playing the next unread message into a vibration signal and transmit it through the bone medium.
进一步地,第三动作检测单元710在检测到发生的用于表明选择消息的第三手势动作时,消息获取单元720先判断是否还有未阅读消息,若有,消息获取单元720将获取下一条未阅读消息,消息播放单元320控制骨传导喇叭将用于播放下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。Further, when the third action detection unit 710 detects the third gesture action used to indicate the selection of a message, the message acquisition unit 720 first judges whether there are unread messages, and if so, the message acquisition unit 720 will acquire the next For unread messages, the message playing unit 320 controls the bone conduction speaker to convert the voice signal used to play the next unread message into a vibration signal and transmit it through the bone medium.
可以理解,第三手势动作可以是佩戴该可穿戴设备手臂的第三手指动作,在消息播放单元320控制骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递的过程中或者之后,如果第三动作检测单元710检测到第三手指动作,消息获取单元720将获取下一条未阅读消息,消息播放单元320控制骨传导喇叭将用于播放该下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。在该实施方式中,可以设置中指作为执行第三手指动作的执行主体,根据通过骨传导喇叭将用于播放消息的语音信号转换成振动信号并通过骨介质传递时,需要抬起手臂用手指抵住耳部,在此情景下,可以该第三手指动作对应为中指弯曲。还可以相应地将中指伸直作为选择上一条消息、并由消息播放单元320控制骨传导喇叭将用于播放上一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递的执行指令。It can be understood that the third gesture action may be the action of the third finger on the arm wearing the wearable device, and the message playback unit 320 controls the bone conduction speaker to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium During or after, if the third motion detection unit 710 detects the third finger action, the message acquisition unit 720 will acquire the next unread message, and the message playback unit 320 will control the bone conduction speaker to play the voice of the next unread message The signal is converted into a vibration signal and transmitted through the bone medium. In this embodiment, the middle finger can be set as the execution subject of the third finger action. According to the conversion of the voice signal used to play the message into a vibration signal through the bone conduction speaker and transmission through the bone medium, it is necessary to lift the arm and touch it with the finger. Hold the ear, in this situation, the third finger movement can correspond to the bending of the middle finger. Correspondingly, straightening the middle finger can be used as an execution instruction to select the last message, and the message playback unit 320 controls the bone conduction speaker to convert the voice signal used to play the last unread message into a vibration signal and transmit it through the bone medium.
在本发明提供的一些实施方式中,该可穿戴设备还包括佩戴检测单元,在可穿戴设备接收到消息到来时,以及在指令检测单元310检测是否接收到用于触发播放该消息的播放指令之前,该可穿戴设备中的佩戴检测单元用于检测其是否处于被佩戴状态,当检测到处于被佩戴状态时,指令检测单元310检测是否接收到用于触发播放该消息的播放指令。In some embodiments provided by the present invention, the wearable device further includes a wearing detection unit, when the wearable device receives a message and before the instruction detection unit 310 detects whether a play instruction for triggering the play of the message is received , the wearing detection unit in the wearable device is used to detect whether it is in the worn state, and when it is detected to be in the worn state, the instruction detection unit 310 detects whether a play instruction for triggering the playing of the message is received.
其中,佩戴检测单元通过设置在壳体底部的人体特征采集设备采集人体特征信息,当人体特征信息的数值在预设范围内时,确定可穿戴设备处于被佩戴状态,当人体特征信息的数值不在预设范围内时,确定可穿戴设备不处于被佩戴状态。其中,人体特征采集设备可以是温度采集设备、心率采集设备或者血压采集设备等。举例来说,当人体特征采集设备为温度采集设备时,佩戴检测单元通过该温度采集设备采集温度,当采集到的温度在预设温度范围内时,确定可穿戴设备处于被佩戴状态,当采集到的温度不在预设温度范围内时,确定可穿戴设备不处于被佩戴状态。Wherein, the wearing detection unit collects the human body feature information through the human body feature collection device arranged at the bottom of the housing, and when the value of the human body feature information is within the preset range, it is determined that the wearable device is in the worn state; when the value of the human body feature information is not in the When within the preset range, it is determined that the wearable device is not in a worn state. Wherein, the human body feature collection device may be a temperature collection device, a heart rate collection device, or a blood pressure collection device. For example, when the human body feature collection device is a temperature collection device, the wearing detection unit collects the temperature through the temperature collection device, and when the collected temperature is within the preset temperature range, it is determined that the wearable device is in the worn state. When the detected temperature is not within the preset temperature range, it is determined that the wearable device is not being worn.
可选地,佩戴检测单元还可以通过设置在壳体底部的红外检测模块检测可穿戴设备壳体与外部障碍物之间的距离值,当该距离值小于预设距离值时,确定该可穿戴设备处于被佩戴状态,当该距离值不小于预设距离值时,确定该可穿戴设备处于被佩戴状态。Optionally, the wearing detection unit can also detect the distance value between the wearable device housing and the external obstacle through the infrared detection module arranged at the bottom of the housing, and when the distance value is less than the preset distance value, it is determined that the wearable device The device is in the worn state, and when the distance value is not less than the preset distance value, it is determined that the wearable device is in the worn state.
实施例七Embodiment seven
请结合图1b,在图1b所示的可穿戴设备中,包括骨传导喇叭,外置喇叭、麦克风(Microphone)、动作传感器、马达、一个及以上处理器(CPU)、存储器、电池、通信模块和显示屏等,处理器与其余模块之间通过总线电性连接。Please combine with Figure 1b. The wearable device shown in Figure 1b includes bone conduction speakers, external speakers, microphones (Microphone), motion sensors, motors, one or more processors (CPU), memory, batteries, and communication modules. and the display screen, etc., and the processor and other modules are electrically connected through a bus.
其中,存储器用于存储程序指令,处理器通过运行存储在存储器的程序指令,从而执行各种功能应用以及数据处理。存储器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)等;存储数据区可存储根据终端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。相应地,存储器还可以包括存储器控制器,以提供处理器对存储器的访问。Wherein, the memory is used to store program instructions, and the processor executes various functional applications and data processing by running the program instructions stored in the memory. The memory may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, at least one application program required by a function (such as a sound playback function), etc.; Data (such as audio data, phone book, etc.) and so on. In addition, the memory may include high-speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid-state storage devices. Correspondingly, the memory may also include a memory controller to provide processor access to the memory.
其中,处理器通过运行存储器的程序指令,执行以下步骤:当可穿戴设备检测到消息到来时,检测可穿戴设备是否接收到用于触发播放消息的播放指令;当检测到用于触发播放消息的播放指令时,控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递。Wherein, the processor executes the following steps by running the program instructions in the memory: when the wearable device detects that a message arrives, detect whether the wearable device has received a play instruction for triggering playing the message; When playing instructions, the bone conduction speaker that controls the wearable device converts the voice signal used to play the message into a vibration signal and transmits it through the bone medium.
作为一种可选的实施方式,上述处理器还执行以下步骤:当可穿戴设备检测到消息到来时,控制可穿戴设备的外置喇叭播放针对消息的消息提醒;当可穿戴设备的外置喇叭播放消息的消息提醒时,检测可穿戴设备是否发生用于触发播放消息的第一手势动作;当检测到用于触发播放消息的第一手势动作时,将第一手势动作作为播放指令,并确定检测到用于触发播放消息的播放指令。As an optional implementation manner, the above-mentioned processor also performs the following steps: when the wearable device detects that a message arrives, control the external speaker of the wearable device to play a message reminder for the message; when the external speaker of the wearable device When playing the message reminder of the message, detect whether the first gesture action for triggering the playback of the message occurs on the wearable device; when the first gesture action for triggering the playback of the message is detected, use the first gesture action as the playback instruction, and determine A play command was detected to trigger a play message.
作为一种可选的实施方式,上述处理器还执行以下步骤:当检测到用于触发播放消息的播放指令时,识别消息是否为文本消息;如果消息为文本消息,将消息转换成语音信号,以及控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递。As an optional implementation manner, the above-mentioned processor also performs the following steps: when detecting a play instruction for triggering playing a message, identifying whether the message is a text message; if the message is a text message, converting the message into a voice signal, And the bone conduction speaker that controls the wearable device converts the voice signal used to play the message into a vibration signal and transmits it through the bone medium.
作为一种可选的实施方式,上述处理器还执行以下步骤:在控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递的过程中,检测可穿戴设备是否发生用于触发控制可穿戴设备的骨传导喇叭停止播放消息的语音信号的第二手势动作;当检测到用于触发控制可穿戴设备的骨传导喇叭停止播放消息的语音信号的第二手势动作时,控制可穿戴设备的骨传导喇叭停止播放消息的语音信号。As an optional implementation manner, the above-mentioned processor also performs the following steps: in the process of controlling the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmit it through the bone medium, the detection can Whether the second gesture action used to trigger the voice signal for controlling the bone conduction speaker of the wearable device to stop playing the message occurs on the wearable device; When the second gesture is performed, the bone conduction speaker of the wearable device is controlled to stop playing the voice signal of the message.
作为一种可选的实施方式,上述处理器还执行以下步骤:在控制可穿戴设备的骨传导喇叭将用于播放消息的语音信号转换为振动信号并通过骨介质进行传递之后,检测可穿戴设备发生的用于表明选择消息的第三手势动作;根据第三手势动作,获取下一条未阅读消息;控制可穿戴设备的骨传导喇叭将用于播放下一条未阅读消息的语音信号转换为振动信号并通过骨介质进行传递。As an optional implementation manner, the above-mentioned processor further performs the following steps: after controlling the bone conduction speaker of the wearable device to convert the voice signal used to play the message into a vibration signal and transmitting it through the bone medium, detect the vibration signal of the wearable device. The third gesture action that occurs to indicate the selection of the message; according to the third gesture action, the next unread message is obtained; the bone conduction speaker of the wearable device is controlled to convert the voice signal used to play the next unread message into a vibration signal and delivered through the bone medium.
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,存储介质包括只读存储器(Read-Only Memory,ROM)、随机存储器(Random Access Memory,RAM)、可编程只读存储器(Programmable Read-only Memory,PROM)、可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、一次可编程只读存储器(One-time Programmable Read-Only Memory,OTPROM)、电子抹除式可复写只读存储器(Electrically-Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(CompactDisc Read-Only Memory,CD-ROM)或其他光盘存储器、磁盘存储器、磁带存储器、或者能够用于携带或存储数据的计算机可读的任何其他介质。Those of ordinary skill in the art can understand that all or part of the steps in the various methods of the above-mentioned embodiments can be completed by instructing related hardware through a program, and the program can be stored in a computer-readable storage medium, and the storage medium includes read-only Memory (Read-Only Memory, ROM), Random Access Memory (Random Access Memory, RAM), Programmable Read-Only Memory (Programmable Read-only Memory, PROM), Erasable Programmable Read-Only Memory (Erasable Programmable Read Only Memory, EPROM), One-time Programmable Read-Only Memory (OTPROM), Electronically Erasable Programmable Read-Only Memory (EEPROM), Compact Disc Read-Only Memory (CompactDisc Read -Only Memory, CD-ROM) or other optical disk storage, magnetic disk storage, tape storage, or any other computer-readable medium that can be used to carry or store data.
以上对本发明实施例公开的一种可穿戴设备的消息播放方法及可穿戴设备进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。The message playing method of a wearable device disclosed in the embodiment of the present invention and the wearable device have been introduced in detail above. In this paper, specific examples are used to illustrate the principle and implementation of the present invention. The description of the above embodiment is only used To help understand the method of the present invention and its core idea; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation and scope of application. In summary, this specification The content should not be construed as a limitation of the invention.
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