WO2025200545A1 - 一种蓝牙设备状态显示方法及显示设备 - Google Patents
一种蓝牙设备状态显示方法及显示设备Info
- Publication number
- WO2025200545A1 WO2025200545A1 PCT/CN2024/136465 CN2024136465W WO2025200545A1 WO 2025200545 A1 WO2025200545 A1 WO 2025200545A1 CN 2024136465 W CN2024136465 W CN 2024136465W WO 2025200545 A1 WO2025200545 A1 WO 2025200545A1
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- Prior art keywords
- bluetooth
- sub
- display
- state
- pair
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/14—Direct-mode setup
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/005—Discovery of network devices, e.g. terminals
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/22—Processing or transfer of terminal data, e.g. status or physical capabilities
- H04W8/24—Transfer of terminal data
Definitions
- FIG2 is a block diagram of a hardware configuration of a control device according to some embodiments of the present application.
- FIG3 is a block diagram of a hardware configuration of a display device according to some embodiments of the present application.
- FIG6 is a schematic diagram of a Bluetooth setting page after the Bluetooth switch is turned on according to some embodiments of the present application.
- FIG7 is a schematic diagram of a Bluetooth connection scenario according to some embodiments of the present application.
- FIG8 is a schematic diagram showing a prompt when a display device is connected to a monaural hearing aid according to some embodiments of the present application.
- FIG9 is a schematic diagram of a Bluetooth setting page when the Bluetooth hearing aid is in a disconnected state according to some embodiments of the present application.
- FIG10 is a schematic diagram of a Bluetooth setting page when the Bluetooth hearing aid is in a first-side connected state according to some embodiments of the present application.
- FIG11 is a schematic diagram of a Bluetooth setting page when the Bluetooth hearing aid is in a second-side connected state according to some embodiments of the present application.
- FIG12 is a schematic diagram of a Bluetooth setting page when the Bluetooth hearing aid is in a bilaterally connected state according to some embodiments of the present application.
- FIG13 is a first schematic diagram of a shortcut menu according to some embodiments of the present application.
- FIG14 is a first schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application
- FIG15 is a second schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- FIG16 is a third schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- FIG17 is a fourth schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- FIG19 is a schematic diagram of a system architecture according to some embodiments of the present application.
- FIG20 is an interactive logic diagram based on the system architecture shown in FIG19 according to some embodiments of the present application.
- the display device provided in some embodiments of the present application can have various implementation forms, such as a television, a smart TV, a laser projection device, a monitor, an electronic bulletin board, an electronic table, etc.
- Figures 1 and 2 illustrate a specific implementation of the display device of the present application.
- FIG1 is a schematic diagram of an operation scenario between a display device and a control device according to some embodiments of the present application. As shown in FIG1 , a user can operate a display device 200 through a smart device 300 or a control device 100 .
- a smart device 300 (such as a mobile terminal, tablet computer, computer, laptop computer, etc.) can also be used to control the display device 200.
- the display device 200 can be controlled using an application running on the smart device.
- the display device 200 also communicates data with the server 400.
- Display device 200 can be connected to a local area network (LAN), a wireless local area network (WLAN), or other networks.
- Server 400 can provide various content and interactions to display device 200.
- Server 400 can be a single cluster or multiple clusters, and can include one or more types of servers.
- FIG. 2 is a block diagram of a control device according to some embodiments of the present application.
- the control device 100 may include at least one processor 110, a communication interface 130, a user input/output interface 140, a memory, and a power supply.
- the control device 100 may receive user input commands and convert them into commands that the display device 200 can recognize and respond to, acting as an intermediary for interaction between the user and the display device 200.
- the user interface can be used to receive control signals from the control device 100 (such as an infrared remote controller, etc.).
- Detector 230 can be used to collect signals from the external environment or external interactions.
- detector 230 may include a light receiver, a sensor for collecting ambient light intensity; or, detector 230 may include an image collector, such as a camera, for collecting external environmental scenes, user attributes, or user interaction gestures; or, detector 230 may include a sound collector, such as a microphone, for receiving external sounds.
- the tuner-demodulator 210 can receive broadcast television signals via wired or wireless reception, and demodulate audio and video signals and electronic program guide (EPG) data signals from multiple wireless or wired broadcast television signals.
- EPG electronic program guide
- At least one processor 250 and the tuner/demodulator 210 may be located in different separate devices, that is, the tuner/demodulator 210 may also be located in an external device of the main device where the at least one processor 250 is located, such as an external set-top box.
- At least one processor 250 controls the operation of the display device and responds to user operations through various software control programs stored in the memory.
- the at least one processor 250 controls the overall operation of the display device 200. For example, in response to receiving a user command to select a UI object to be displayed on the display 260, the at least one processor 250 may perform operations related to the object selected by the user command.
- a user may input a user command through a graphical user interface (GUI) displayed on display 260, and the user input interface receives the user input command through the GUI.
- GUI graphical user interface
- the user may input a user command through a specific voice or gesture, and the user input interface may recognize the voice or gesture through a sensor to receive the user input command.
- a user interface is the medium for interaction and information exchange between an application or operating system and the user. It converts information between its internal form and a user-friendly form.
- a common user interface is the graphical user interface (GUI), which refers to a graphical user interface related to computer operations. It can be an icon, window, control, or other interface element displayed on an electronic device's display. Controls can include visual interface elements such as icons, buttons, menus, tabs, text boxes, dialog boxes, status bars, navigation bars, and widgets.
- FIG4 is a diagram illustrating a software configuration in a display device according to some embodiments of the present application.
- the system can be divided into four layers: from top to bottom, the application layer (hereinafter referred to as the "application layer”), the application framework layer (hereinafter referred to as the “framework layer”), the Android runtime and system library layer (hereinafter referred to as the “system runtime library layer”), and the kernel layer.
- the application layer hereinafter referred to as the "application layer”
- the application framework layer hereinafter referred to as the “framework layer”
- the Android runtime and system library layer hereinafter referred to as the "system runtime library layer”
- the kernel layer the kernel layer.
- At least one application runs in the application layer.
- These applications can be window programs, system settings programs, clock programs, etc. that come with the operating system, or applications developed by third-party developers.
- the application packages in the application layer are not limited to the above examples.
- the framework layer provides applications with an application programming interface (API) and programming framework.
- the application framework layer may include predefined functions.
- the application framework layer acts as a processing center, determining the actions taken by applications in the application layer. Through the API, applications can access system resources and services during execution.
- the activity manager can be used to manage the lifecycle of each application and common navigation back functions, such as controlling the exit, opening, and backing of an application.
- the window manager can be used to manage all window programs, such as obtaining the display screen size, determining whether there is a status bar, locking the screen, taking screenshots, and controlling display window changes (for example, shrinking the display window, shaking the display, distorting the display, etc.).
- FIG. 5 is a schematic diagram of a Bluetooth settings page according to some embodiments of the present application.
- a user can access the system settings page through a preset portal.
- the system settings page may include multiple setting options, including but not limited to image settings, sound settings, network settings, Bluetooth settings, remote control settings, and general settings.
- the display device controls the display to display the Bluetooth settings page.
- the Bluetooth settings page includes at least a Bluetooth switch 51.
- the user can enable or disable the Bluetooth function of the display device. If Bluetooth switch 51 is off, the Bluetooth module in the communication device cannot actively scan for other Bluetooth devices, nor can it be scanned by other Bluetooth devices.
- Bluetooth devices may include, but are not limited to, mobile phones, Bluetooth headsets, Bluetooth hearing aids, Bluetooth speakers, Bluetooth game controllers, and the like.
- status mark information is set for the scanned Bluetooth device on the Bluetooth setting page.
- the status mark information can be used to indicate the connection status of the Bluetooth device.
- the connection status may include but is not limited to connected state, paired state, unpaired state, etc.
- the device scan list 61 may include three pieces of device information, corresponding to Bluetooth device A, Bluetooth device B, and Bluetooth device C, respectively.
- Bluetooth device A is marked as connected
- Bluetooth device B is marked as paired
- Bluetooth device C is marked as unpaired.
- Bluetooth device A has been paired and connected to the display device
- Bluetooth device B has previously been paired with the display device but is not currently connected
- Bluetooth device C is not paired and is not connected to the display device.
- an associated disconnect button 61a can be set for a Bluetooth device in a connected state (e.g., Bluetooth device A), and an associated unpairing button 61b can be set for a Bluetooth device in a paired state (e.g., Bluetooth device B).
- a connected state e.g., Bluetooth device A
- an associated unpairing button 61b can be set for a Bluetooth device in a paired state (e.g., Bluetooth device B).
- the display device in response to the user triggering the unpairing button 61b corresponding to Bluetooth device B, controls the Bluetooth module to release the historical pairing with Bluetooth device B, so that Bluetooth device B switches to an unpaired state.
- the display device responds to the user triggering the device information of Bluetooth device B, skips the pairing process, and controls the Bluetooth module to directly establish a Bluetooth connection with Bluetooth device B. After the Bluetooth connection is successful, the display device and Bluetooth device B can interact with data based on the Bluetooth connection.
- the display device controls the Bluetooth module to pair with the Bluetooth device C and establish a Bluetooth connection in response to the user triggering the device information of the Bluetooth device C. After the Bluetooth connection is successful, the display device and the Bluetooth device C can interact with data based on the Bluetooth connection.
- FIG. 7 is a schematic diagram of a Bluetooth connection scenario according to some embodiments of the present application.
- some special Bluetooth devices are generally used in pairs, for example, a Bluetooth headset may include a left earphone and a right earphone, and a Bluetooth hearing aid may include a left ear hearing aid and a right ear hearing aid.
- such supporting Bluetooth devices are referred to as a Bluetooth device pair, and the at least two individual pairs that a Bluetooth device pair may comprise are referred to as sub-devices.
- a Bluetooth headset is one type of Bluetooth device pair A, with the left and right headsets being its two sub-devices.
- a Bluetooth hearing aid is another type of Bluetooth device pair B, with the left and right hearing aids being its two sub-devices.
- Bluetooth device pairs are not limited to Bluetooth headsets and Bluetooth hearing aids; they may also be other similar Bluetooth devices with at least two sub-devices used as a set or supporting system, such as a left and right wristband in a wearable device.
- the Bluetooth hearing aid may include two usage modes: monaural mode and binaural mode.
- Monaural mode refers to wearing only one of the left and right hearing aids
- binaural mode refers to wearing both hearing aids.
- the display device may include a display, which may be configured to display images and/or user interfaces from a broadcast system; a Bluetooth module, which may be configured to communicate with a Bluetooth device; a memory, which may be configured to store computer instructions; at least one processor, connected to the display, the Bluetooth module and the memory, may be configured to execute the computer instructions to cause the display device to execute: controlling the Bluetooth module to monitor the connection status of a Bluetooth device pair; the Bluetooth device pair may include a first sub-device and a second sub-device, and the connection status of the Bluetooth device pair is one of a disconnected state, a first-side connected state, a second-side connected state and a bilaterally connected state; wherein the disconnected state indicates that both the first sub-device and the second sub-device are not connected, the first-side connected state indicates that the first sub-device is connected and the second sub-device is not connected, the second-side connected state indicates that the second sub-device is connected and the first sub-device is
- the at least one processor is further configured to execute the computer instructions to cause the display device to perform: when the Bluetooth device pair is in the first-side connected state, the display can be controlled to display a first prompt page, and the first prompt page can be used to prompt the display device that the first sub-device is connected and to ask whether to connect the second sub-device; in response to the user agreeing to connect the second sub-device, the Bluetooth module can be controlled to establish a Bluetooth connection with the second sub-device; when the Bluetooth module is connected to the second sub-device, the display can be controlled to update the status prompt information so that the updated status prompt information can be used to prompt that the Bluetooth device pair is in the bilaterally connected state; or, in response to the user refusing to connect the second sub-device, the Bluetooth module is not controlled to establish a Bluetooth connection with the second sub-device, and the Bluetooth device pair maintains the first-side connected state.
- the at least one processor is further configured to execute the computer instructions to cause the display device to perform: when the Bluetooth device pair is in the second-side connected state, the display can be controlled to display a second prompt page, and the second prompt page can be used to prompt the display device that the second sub-device is connected and to ask whether to connect the first sub-device; in response to the user agreeing to connect the first sub-device, the Bluetooth module can be controlled to establish a Bluetooth connection with the first sub-device; when the Bluetooth module is connected to the first sub-device, the display can be controlled to update the status prompt information so that the updated status prompt information is used to prompt that the Bluetooth device pair is in the bilaterally connected state; or, in response to the user refusing to connect the first sub-device, the Bluetooth module is not controlled to establish a Bluetooth connection with the first sub-device, and the Bluetooth device pair maintains the second-side connected state.
- the at least one processor is further configured to execute the computer instructions to cause the display device to execute: when the Bluetooth device pair is in the disconnected state, if the Bluetooth module is ready to establish a Bluetooth connection with the target device, identifying the category of the target device; if the category of the target device is the Bluetooth device pair, obtaining a subordinate type identifier from the device information of the target device, and the subordinate type identifier can be used to indicate that the target device is the first sub-device or the second sub-device of the Bluetooth device pair; if the subordinate type identifier indicates that the target device is the first sub-device, then after the Bluetooth module is connected to the target device, the display can be controlled to update the status prompt information so that the updated status prompt information can be used to prompt that the Bluetooth device pair is in the first-side connected state; if the subordinate type identifier indicates that the target device is the second sub-device, then after the Bluetooth module is connected to the target device, the display can be controlled to update the status prompt information so that the updated status
- the at least one processor is further configured to execute the computer instructions to cause the display device to execute: when the Bluetooth device pair is in the bilaterally connected state, if the Bluetooth module is ready to disconnect from the target device, the category of the target device can be identified; if the category of the target device is the Bluetooth device pair, a subordinate type identifier is obtained from the device information of the target device, and the subordinate type identifier can be used to indicate that the target device is the first sub-device or the second sub-device of the Bluetooth device pair; if the subordinate type identifier indicates that the target device is the first sub-device, then after the Bluetooth module is disconnected from the target device, the display can be controlled to update the status prompt information, so that the updated status prompt information can be used to prompt that the Bluetooth device pair is in the second-side connected state; if the subordinate type identifier indicates that the target device is the second sub-device, then after the Bluetooth module is disconnected from the target device, the display can be controlled to update the status prompt information, so that the updated
- the at least one processor is further configured to execute the computer instructions to cause the display device to perform: when the Bluetooth device pair is in the first-side connected state, if the Bluetooth module is disconnected from the first sub-device, the display can be controlled to update the status prompt information so that the updated status prompt information can be used to prompt that the Bluetooth device pair is in the disconnected state; or, when the Bluetooth device pair is in the second-side connected state, if the Bluetooth module is disconnected from the second sub-device, the display can be controlled to update the status prompt information so that the updated status prompt information can be used to prompt that the Bluetooth device pair is in the disconnected state.
- the at least one processor is further configured to execute the computer instructions to cause the display device to perform: in response to a first preset operation input by the user, the display can be controlled to display a shortcut menu, the shortcut menu may include a first control, and the first control can be used to prompt and switch the connection status of the Bluetooth device pair; when the focus moves to the first control, in response to a second preset operation input by the user, the target connection state to which the Bluetooth device pair is about to switch can be determined based on the first connection state of the Bluetooth device pair, the switching direction indicated by the second preset operation, and the state rotation order; wherein the state rotation order can be a preset arrangement order of the disconnected state, the first-side connected state, the second-side connected state, and the bilaterally connected state; controlling the Bluetooth module to switch the Bluetooth device pair to the target connection state; updating the first control so that the updated first control can prompt that the Bluetooth device pair is in the target connection state.
- the at least one processor is further configured to execute the computer instructions to cause the display device to perform: in response to a first preset operation input by a user, the display can be controlled to display a shortcut menu, the shortcut menu may include a first control, the first control can be used to prompt and switch the connection status of the Bluetooth device pair, the first control may include: a first status icon corresponding to the bilateral connected state, a second status icon corresponding to the first side connected state, a third status icon corresponding to the second side connected state, and a fourth status icon corresponding to the disconnected state; in response to the user selecting a target status icon from the first control, the Bluetooth module can be controlled to switch the Bluetooth device pair to the target connection state corresponding to the target status icon; the first control is updated so that the updated first control can prompt that the Bluetooth device pair is in the target connection state.
- the at least one processor is further configured to execute the computer instructions to enable the display device to perform: when the first focus moves to the first control, in response to a third preset operation input by the user, the control function of the first focus can be paused so that the first focus is locked at the position of the first control; a second focus is generated, and the control function of the second focus can be turned on; when the second focus moves to the target status icon, in response to a confirmation operation input by the user, the Bluetooth module can be controlled to switch the Bluetooth device pair to the target connection state corresponding to the target status icon; the first control is updated so that the updated first control can prompt that the Bluetooth device pair is in the target connection state; in response to a fourth preset operation input by the user, the second focus is canceled, and the control function of the first focus can be restored.
- the present application expands the connection states of the Bluetooth device pair with respect to the characteristics of the Bluetooth device pair, which may include but is not limited to: a disconnected state, a first-side connected state, a second-side connected state, and a bilaterally connected state.
- the first-side connected state means that the display device is connected to the first sub-device in the Bluetooth device pair.
- the first sub-device can be a left earphone, a left-ear hearing aid, etc.
- the second-side connected state means that the display device is connected to the second sub-device in the Bluetooth device pair.
- the second sub-device can be a right earphone, a right-ear hearing aid, etc.
- the bilaterally connected state means that the display device is simultaneously connected to the first sub-device and the second sub-device in the Bluetooth device pair.
- the disconnected state also known as the unconnected state, means that the display device is not connected/disconnected to the Bluetooth device pair as a whole, that is, the display device is not connected/disconnected to both the first sub-device and the second sub-device.
- a Bluetooth device pair may set a slave type identifier for each of the first and second sub-devices.
- the slave type identifier may be used to indicate which sub-device in the Bluetooth device pair the sub-device belongs to.
- the slave type identifier of the first sub-device may be "left,” “left ear,” or “left”
- the slave type identifier of the second sub-device may be "right,” “right ear,” or “right.”
- a Bluetooth device pair can independently control the Bluetooth switches of sub-devices, allowing each sub-device to pair and connect with the display device independently. For example, in single-ear mode, the Bluetooth device pair can turn on the Bluetooth switch of either the first sub-device or the second sub-device; in dual-ear mode, the Bluetooth device pair can turn on the Bluetooth switches of both the first sub-device and the second sub-device simultaneously.
- the Bluetooth module can control the Bluetooth module to scan for connectable Bluetooth devices within a preset range. For example, assuming that when the display device is connected to Bluetooth device D, the Bluetooth module obtains the device information of Bluetooth device D and first identifies whether Bluetooth device D is a Bluetooth device pair. For example, if the device category of Bluetooth device D is a Bluetooth hearing aid or a Bluetooth headset, the Bluetooth module determines that Bluetooth device D is a Bluetooth device pair. For another example, if the device category of Bluetooth device D is a Bluetooth speaker, the Bluetooth module determines that Bluetooth device D is not a Bluetooth device pair.
- the Bluetooth module reads the slave type identifier from the device information of the Bluetooth device D, and further identifies which sub-device in the Bluetooth device pair is currently connected (hereinafter referred to as: target sub-device), and the target sub-device is one of the first sub-device and the second sub-device.
- the Bluetooth module after connecting to the target sub-device, sets the connection state of the Bluetooth device D as a Bluetooth device pair according to the slave type identifier of the target sub-device.
- the Bluetooth module when the Bluetooth device D is in a disconnected state, if the target sub-device connected to the Bluetooth module is a first sub-device, the Bluetooth module switches the connection state of the Bluetooth device D to a first-side connected state.
- the Bluetooth module when the Bluetooth device D is in a disconnected state, if the target sub-device connected to the Bluetooth module is the second sub-device, the Bluetooth module switches the connection state of the Bluetooth device D to a second-side connected state.
- the connection state of the Bluetooth device D is switched to the bilaterally connected state.
- the connection state of the Bluetooth device D is switched to the bilaterally connected state.
- the Bluetooth module when the Bluetooth device D is in the bilaterally connected state, if the Bluetooth module disconnects the Bluetooth connection with the first sub-device in the Bluetooth device D, the Bluetooth module switches the connection state of the Bluetooth device D to the second-side connected state.
- the Bluetooth module when the Bluetooth device D is in the bilaterally connected state, if the Bluetooth module disconnects the Bluetooth connection with the second sub-device in the Bluetooth device D, the Bluetooth module switches the connection state of the Bluetooth device D to the first-side connected state.
- the display device when displaying the Bluetooth setting page, may obtain the connection status of the Bluetooth device pair from the Bluetooth module, and display the Bluetooth setting page differently based on different connection statuses.
- FIG9 is a schematic diagram of a Bluetooth settings page when a Bluetooth hearing aid is in a disconnected state according to some embodiments of the present application.
- Bluetooth device D is a Bluetooth hearing aid
- the Bluetooth hearing aid belongs to a Bluetooth device pair.
- the display device is not connected to either the left or right hearing aid (see FIG9 ). Therefore, the Bluetooth hearing aid is marked "Not Connected" on the Bluetooth settings page.
- the user may trigger the first cancel control 101c.
- the display device controls the display to close the first prompt pop-up window 101 and does not control the Bluetooth module to connect to the second sub-device of the Bluetooth hearing aid (for example, the right-ear hearing aid).
- the second sub-device control 101b can be triggered.
- the display device controls the display to close the first prompt pop-up window 101, and controls the Bluetooth module to connect the second sub-device of the Bluetooth hearing aid (for example, the right ear hearing aid).
- the Bluetooth module is controlled to continue to connect to the second sub-device, thereby completing a pair of complete Bluetooth hearing aids.
- a second prompt pop-up window 111 can be displayed on the upper layer of the Bluetooth setting page.
- the second prompt pop-up window 111 may include a second prompt message 111a, a connect first sub-device control 111b and a second cancel control 111c.
- the second prompt message 111a may be used to indicate that the second sub-device of the Bluetooth hearing aid is connected and to ask the user whether to connect the first sub-device of the Bluetooth hearing aid.
- the second prompt message 111a may be, “The display device is connected to the right hearing aid. Do you want to connect the left hearing aid to complete a pair of Bluetooth hearing aids?”
- the second cancel control 111c can be triggered.
- the display device controls the display to close the second prompt pop-up window 111 and does not control the Bluetooth module to connect to the first sub-device of the Bluetooth hearing aid (for example, the left ear hearing aid).
- the display device when the Bluetooth device pair is in the first-side connected state or the second-side connected state, the display device can also control the Bluetooth module to automatically search for and connect to unconnected sub-devices in the Bluetooth device pair, so that the display does not need to be controlled to display the prompt pop-up window shown in Figures 10 and 11.
- a prompt indicating the connection failure of the sub-device can be displayed in the interface.
- FIG12 is a schematic diagram of a Bluetooth settings page when a Bluetooth hearing aid is in a bilaterally connected state according to some embodiments of the present application.
- the Bluetooth hearing aid is marked as "Both left and right hearing aids connected" on the Bluetooth settings page.
- the Bluetooth module after the Bluetooth module scans the Bluetooth device, it can monitor the connection status of the Bluetooth device pair through the device information and subordinate type identification of the Bluetooth device pair, and give different prompts for different connection states of the Bluetooth device pair in the Bluetooth settings page, so that the user can clearly and accurately know which sub-device or sub-devices of the Bluetooth device pair the display device is connected to, making it easier for the user to use the Bluetooth device pair.
- Figure 13 is a schematic diagram of a shortcut menu according to some embodiments of the present application.
- the display device in response to a preset user input, controls the display to display a shortcut menu 131 on top of the current interface, as shown in Figure 13.
- This shortcut menu 131 can be presented in the user interface in various forms, such as floating, stacked, or as a pop-up window.
- shortcut menu 131 includes at least a functional control for switching the connection status of a Bluetooth device pair (hereinafter referred to as a first control 131 a).
- Shortcut menu 131 may also include other options for convenient user operations, such as system settings (Settings), gallery application options, image settings, sound settings, signal source switching controls, audio output options, etc.
- the first control 131 a can be used to indicate the current connection status of a Bluetooth device pair.
- the Bluetooth device pair is a Bluetooth hearing aid, and the Bluetooth hearing aid is disconnected.
- the user can clearly understand the connection status of the Bluetooth device pair through the first control 131 a in the shortcut menu 131 and switch the connection status of the Bluetooth device pair according to usage needs and preferences.
- the user can adjust the focus position by using the direction keys of the control device 100 .
- the shortcut menu displays multiple options in a row
- the user can use the left and right keys to move the focus to the target position in the shortcut menu.
- a rotational switching mode can be implemented to allow the user to switch the connection state of a Bluetooth device pair. Assuming the order is connection state a ⁇ connection state b ⁇ connection state c ⁇ connection state d, the display device can determine the target connection state to switch to based on this state rotation order, the current connection state of the Bluetooth device pair, and the switching direction input by the user.
- connection state a as a bilaterally connected state
- connection state b as a first-side connected state
- connection state c as a second-side connected state
- connection state d as a disconnected state
- the state rotation order of the Bluetooth device pair is: bilaterally connected state ⁇ first-side connected state ⁇ second-side connected state ⁇ disconnected state.
- the display device controls the Bluetooth module to disconnect the second sub-device of the Bluetooth device pair, and connects to the first sub-device in the Bluetooth device pair, thereby switching the Bluetooth device pair to the first-side connected state; if the switching direction is the next or next one (presenting forward), the display device controls the Bluetooth module to disconnect the second sub-device of the Bluetooth device pair, thereby switching the Bluetooth device pair to the disconnected state.
- the display device controls the Bluetooth module to connect to the second sub-device in the Bluetooth device pair, thereby switching the Bluetooth device pair to a bilaterally connected state; if the switching direction is the next or next one (presenting a forward direction), the display device controls the Bluetooth module to disconnect the first sub-device of the Bluetooth device pair, and connect to the second sub-device in the Bluetooth device pair, thereby switching the Bluetooth device pair to a second-side connected state.
- the state rotation order of the Bluetooth device pair is not limited.
- the order can be based on a preset priority or a user-defined priority. For example, if the priority is bilaterally connected state > first-side connected state > second-side connected state > disconnected state, the state rotation order of the Bluetooth device pair can be set to: bilaterally connected state ⁇ first-side connected state ⁇ second-side connected state ⁇ disconnected state.
- the Bluetooth module can analyze the user's usage habits and preferences based on the historical connection records of the Bluetooth device pair, thereby setting the state rotation order of the Bluetooth device pair. For example, if the user uses binaural mode the most, followed by right ear mode, and then left ear mode, the state rotation order of the Bluetooth device pair can be set as: bilaterally connected state ⁇ second side connected state ⁇ first side connected state ⁇ disconnected state.
- the user can input different operations to switch the connection state of the Bluetooth device pair.
- the user can input the switching direction by using the up and down keys of the control device 100.
- the corresponding switching direction is the previous or previous (presented in reverse direction)
- the corresponding switching direction is the next or next (presented in forward direction).
- the user can click a preset button on the control device 100. Based on the number of times the preset button is clicked, the connection state of the Bluetooth device pair is switched according to the default switching direction.
- the state rotation order of the Bluetooth device pair can be set as: bilaterally connected state ⁇ first-side connected state ⁇ second-side connected state ⁇ disconnected state.
- the preset button is a confirmation button/OK button, the default switching direction is forward.
- the Bluetooth device pair is currently in the bilaterally connected state. If the user quickly clicks the OK button twice in succession, the display device controls the Bluetooth module to disconnect the first sub-device of the Bluetooth device pair, thereby switching the Bluetooth device pair to the second-side connected state.
- FIG 14 is a first schematic diagram illustrating a user switching the connection status of a Bluetooth hearing aid via a shortcut menu according to some embodiments of the present application.
- the state rotation sequence is bilaterally connected state ⁇ first-side connected state ⁇ second-side connected state ⁇ disconnected state.
- a first control 131a may include a connection status icon, status information, and a toggle bit icon 131b.
- connection status icon is used to indicate the connection status of the Bluetooth hearing aid in the form of a legend.
- the connection status icon is presented as a grayed-out left-ear hearing aid view and a right-ear hearing aid view.
- the status information may be used to indicate the connection status of the Bluetooth hearing aid in text form.
- the status information may be “Bluetooth hearing aid (not connected)”.
- the switch bit icon 131b may include four status bit identifiers (for example, presented as a hollow circle ⁇ or a solid circle ⁇ ).
- the first status bit identifier corresponds to the bilaterally connected state
- the second status bit identifier corresponds to the first side connected state
- the third status bit identifier corresponds to the second side connected state
- the fourth status bit identifier corresponds to the disconnected state.
- each status bit identifier may include two forms: a first form (e.g., a hollow circle ⁇ ) indicates that the Bluetooth hearing aid is not in the connected state indicated by the status bit, and a second form (e.g., a solid circle ⁇ ) indicates that the Bluetooth hearing aid is in the connected state indicated by the status bit.
- a first form e.g., a hollow circle ⁇
- a second form e.g., a solid circle ⁇
- the first three status bit identifiers are set to the first form
- the fourth status bit identifier is set to the second form.
- FIG15 is a second schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- the connection status icon is presented as a single highlighted right-ear hearing aid view, or can also be presented as a grayed-out left-ear hearing aid view and a highlighted right-ear hearing aid view, and the status information can be “Bluetooth hearing aid (connected to right ear only)”, and the third status bit flag is set to the second form (e.g., presented as a solid circle ⁇ ), and the first, second, and fourth status bit flags are set to the first form (e.g., presented as hollow circles ⁇ ).
- FIG16 is a third schematic diagram of a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- the connection status icon is presented as a single highlighted left-ear hearing aid view, or can also be presented as a highlighted left-ear hearing aid view and a grayed-out right-ear hearing aid view.
- the status information can be “Bluetooth hearing aid (connected to left ear only)”, and the second status bit flag is set to the second form (e.g., presented as a solid circle ⁇ ), and the first, third, and fourth status bit flags are set to the first form (e.g., presented as hollow circles ⁇ ).
- FIG17 is a fourth schematic diagram illustrating a user switching the connection status of a Bluetooth hearing aid through a shortcut menu according to some embodiments of the present application.
- the connection status icon is displayed as a simultaneously highlighted left and right hearing aid view, and the status information may be "Bluetooth hearing aid (connected to both ears)", with the first status bit indicator set to the second state (e.g., a solid circle ⁇ ), and the second, third, and fourth status bit indicators set to the first state (e.g., hollow circles ⁇ ).
- the user can input the switching direction through the up key or the down key, and the display device can control the Bluetooth module to switch the connection status of the Bluetooth hearing aid according to a preset state rotation sequence, and can also control the display to refresh the content and effects displayed by the first control 131a in the shortcut menu according to the examples of Figures 14 to 17.
- FIG18 is a second schematic diagram of a shortcut menu according to some embodiments of the present application.
- connection status icons corresponding to different connection states of the Bluetooth hearing aid may be displayed.
- a bilaterally connected state corresponds to a simultaneously highlighted left and right hearing aid views
- a first-side connected state corresponds to a highlighted left hearing aid view and a grayed-out right hearing aid view
- a second-side connected state corresponds to a grayed-out left hearing aid view and a highlighted right hearing aid view
- a disconnected state corresponds to a simultaneously grayed-out left and right hearing aid views.
- the display device after the first focus 18a is locked, the display device generates a second focus 18b and activates the control function of the second focus 18b.
- the initial position of the second focus 18b is the connection status icon corresponding to the current connection status of the Bluetooth hearing aid. For example, if the Bluetooth hearing aid is currently in the first-side connected state, as shown in FIG18 , after the display device generates the second focus 18b, it defaults to displaying the second focus 18b at the position of the connection status icon (the highlighted left hearing aid view and the grayed-out right hearing aid view) in the first row and second column.
- the user can use the arrow keys of the control device 100 to move the second focus 18b to switch the connection status of the Bluetooth hearing aid.
- the display device controls the second focus 18b to move to the position of the connection status icon in the second row and second column (the left hearing aid view and the right hearing aid view are both grayed out).
- the display device controls the Bluetooth module to disconnect from the left hearing aid (i.e., the first sub-device), thereby switching the Bluetooth hearing aid to a disconnected state. Simultaneously, the status information in the first control 131a changes to "Not Connected.”
- the display device controls the second focus 18b to move to the position of the connection status icon in the first row and first column (the left ear hearing aid view and the right ear hearing aid view are highlighted at the same time) in response to the left key command input by the user, and controls the Bluetooth module to connect to the right ear hearing aid (i.e., the second sub-device) in response to the OK key command input by the user, thereby switching the Bluetooth hearing aid to the bilaterally connected state.
- the status information in the first control 131a is changed to "left and right ears connected".
- the first control 131a can be set in a shortcut menu so that it is displayed after the shortcut menu is called out and is hidden when the shortcut menu is closed.
- the first control 131a can also be set in a preset position on the user interface, for example, the first control 131a is displayed in the upper right corner of the interface, so that the user can switch the connection status of the Bluetooth device pair through the first control 131a without having to call out the shortcut menu.
- the first control 131a can be accessed or triggered through other shortcuts and is not limited to the examples in the embodiments of the present application.
- the embodiment of the present application adds a first control 131a to the shortcut menu, allowing the user to quickly switch the connection status of the Bluetooth device pair through the first control 131a after calling up the shortcut menu, and supports continuous and rapid rotation between multiple different connection states.
- the user does not need to go through the system settings portal, open the system settings page, access the next level Bluetooth settings page, or switch the connection status of the Bluetooth device pair on the Bluetooth settings page, thereby reducing a large amount of tedious manual operations for the user.
- the user can call up the shortcut menu at any time to switch the connection status of the Bluetooth device pair as needed, thereby improving the flexibility and operational efficiency of connection status switching and enhancing the user experience.
- a Bluetooth device pair is a Bluetooth device that may include a first sub-device and a second sub-device, such as a Bluetooth headset and a Bluetooth hearing aid.
- the present application formulates more refined categories of connection status, which may include a disconnected state, a first-side connected state, a second-side connected state, and a bilaterally connected state, wherein the disconnected state is a state in which both sub-devices are not connected, the first-side connected state is a state in which the first sub-device is connected and the second sub-device is not connected, the second-side connected state is a state in which the first sub-device is not connected and the second sub-device is connected, and the bilaterally connected state is a state in which both sub-devices are connected.
- the Bluetooth module monitors the connection status of the Bluetooth device pair, it will perform independent status detection on each sub-device in the Bluetooth device pair to which it belongs, and then obtain which of the four states the overall connection status of the Bluetooth device pair is, and provide a status prompt in the Bluetooth settings page, so that the user can clearly and accurately know which sub-device or sub-devices in the Bluetooth device pair the display device is connected to, which is convenient for the user to use.
- the application layer included in the display device can be implemented through interaction with the framework layer: obtaining Bluetooth device information to identify whether it is a Bluetooth device pair, and when monitoring the connection status changes of the Bluetooth device pair, updating the connection status of the Bluetooth device pair mark in the shortcut menu and the Bluetooth settings page; when the Bluetooth device pair is in the first side connected state or the second side connected state, asking the user through a prompt pop-up window whether to continue connecting to another unpaired sub-device; realizing the connection status switching of the Bluetooth device pair through the shortcut menu, etc.
- the interaction objects may include BluetoothAdapter, LocalBluetoothManager, and BluetoothDevicesService at the application layer and the framework layer.
- the interaction logic may include but is not limited to the following program steps:
- Step S1 The application layer registers to monitor the connection status of the Bluetooth device through LocalBluetoothManager.
- Step S2 The application layer obtains the device scan list from the BluetoothAdapter.
- step S3 the application layer displays a Bluetooth setting page according to the device scan list and the connection status of the Bluetooth devices included in the list.
- Step S4 When LocalBluetoothManager detects a connection status change of any Bluetooth device A, it sends a status change notification message to the application layer.
- Step S5 The application layer updates the connection status of Bluetooth device A displayed on the Bluetooth setting page according to the status change notification message.
- Step S6 The application layer displays the shortcut menu in response to the user's operation of calling up the shortcut menu.
- Step S7 In response to the user's operation of switching the Bluetooth device pair to the target connection state through the shortcut menu, the application layer sends a state switching instruction to the BluetoothDevicesService.
- the target connection state may be one of a bilaterally connected state, a first-side connected state, a second-side connected state, and a disconnected state.
- Step S8 In response to the state switching instruction, the BluetoothDevicesService controls the Bluetooth module to switch the Bluetooth device pair to the target connection state.
- step S9 the BluetoothDevicesService sends a switched state message to the LocalBluetoothManager.
- the switched state message is used to indicate that the Bluetooth device pair has switched to the target connection state.
- step S10 LocalBluetoothManager sends a switched status message to the application layer.
- step S11 the application layer updates the connection status of the Bluetooth device pair displayed in the shortcut menu according to the switched status message.
- a computer-readable non-volatile storage medium may store a program.
- the program when executed, may include the program steps involved in the method for displaying the status of a Bluetooth device for a display device executed by the display device in the above embodiment.
- the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
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Abstract
一种蓝牙设备状态显示方法及显示设备,该显示设备可包括显示器、蓝牙模块、存储器和至少一个处理器,该显示设备可被配置为执行存储器内存储的计算机指令以使显示设备执行:控制蓝牙模块监听蓝牙设备对的连接状态;蓝牙设备对包括第一子设备和第二子设备,蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;断开状态指示第一子设备和第二子设备均未连接,第一侧已连接状态指示第一子设备已连接且第二子设备未连接,第二侧已连接状态指示第二子设备已连接且第一子设备未连接,双侧已连接状态指示第一子设备和第二子设备均已连接;在蓝牙设置页面显示状态提示信息,以方便用户使用。
Description
相关申请的交叉引用
本申请要求在2024年03月26日提交、申请号为202410350649.X的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请涉及蓝牙是技术领域,尤其涉及一种用于显示设备的蓝牙设备状态显示方法及显示设备。
一些应用场景中,蓝牙设备可能是配对使用,例如蓝牙耳机包括左耳机和右耳机,蓝牙助听机包括左耳助听器和右耳助听器等。以蓝牙助听器为例,显示设备在扫描蓝牙设备后,连接了蓝牙助听器,则提示已连接蓝牙助听器,但用户据此不能准确区分左耳助听器和右耳助听器独立的连接状态。
例如,显示设备仅连接单耳助听器,如果提示已连接蓝牙助听器,用户可能以为双耳助听器都已连接显示设备,但在使用蓝牙助听器时,发现仅一耳助听器可用,另一耳助听器不可用。
根据本申请一些实施例的一种显示设备,可包括:显示器,可被配置为显示来自广播系统的图像和/或用户界面;蓝牙模块,可被配置为与蓝牙设备通信连接;存储器,可被配置为保存计算机指令;至少一个处理器,与所述显示器、所述蓝牙模块和所述存储器连接,可被配置为执行所述计算机指令以使所述显示设备执行:控制所述蓝牙模块监听蓝牙设备对的连接状态;所述蓝牙设备对可包括第一子设备和第二子设备,所述蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;其中,所述断开状态指示所述第一子设备和所述第二子设备均未连接,所述第一侧已连接状态指示所述第一子设备已连接且所述第二子设备未连接,所述第二侧已连接状态指示所述第二子设备已连接且所述第一子设备未连接,所述双侧已连接状态指示所述第一子设备和所述第二子设备均已连接;可控制所述显示器在蓝牙设置页面显示状态提示信息,所述状态提示信息可用于提示所述蓝牙设备对所处的连接状态。
根据本申请一些实施例的一种用于显示设备的蓝牙设备状态显示方法,可包括:控制蓝牙模块监听蓝牙设备对的连接状态;所述蓝牙设备对可包括第一子设备和第二子设备,所述蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;其中,所述断开状态指示所述第一子设备和所述第二子设备均未连接,所述第一侧已连接状态指示所述第一子设备已连接且所述第二子设备未连接,所述第二侧已连接状态指示所述第二子设备已连接且所述第一子设备未连接,所述双侧已连接状态指示所述第一子设备和所述第二子设备均已连接;在蓝牙设置页面显示状态提示信息,所述状态提示信息用于提示所述蓝牙设备对所处的连接状态。
根据本申请一些实施例的一种计算机可读的非易失性存储介质,该存储介质中存储有程序指令,当程序指令在计算机上运行时,使得计算机执行以上各方面及其各个实现方式中涉及的方法。
图1为根据本申请一些实施例的显示设备与控制装置之间操作场景;
图2为根据本申请一些实施例的控制装置的硬件配置框图;
图3为根据本申请一些实施例的显示设备的硬件配置框图;
图4为根据本申请一些实施例的显示设备中软件配置图;
图5为根据本申请一些实施例的蓝牙设置页面的示意图;
图6为根据本申请一些实施例的打开蓝牙开关后的蓝牙设置页面示意图;
图7为根据本申请一些实施例的一种蓝牙连接场景的示意图;
图8为根据本申请一些实施例的显示设备连接单耳助听器时的提示示意图;
图9为根据本申请一些实施例的蓝牙助听器处于断开状态时蓝牙设置页面的示意图;
图10为根据本申请一些实施例的蓝牙助听器处于第一侧已连接状态时蓝牙设置页面的示意图;
图11为根据本申请一些实施例的蓝牙助听器处于第二侧已连接状态时蓝牙设置页面的示意图;
图12为根据本申请一些实施例的蓝牙助听器处于双侧已连接状态时蓝牙设置页面的示意图;
图13为根据本申请一些实施例的快捷菜单的示意图一;
图14为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图一;
图15为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图二;
图16为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图三;
图17为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图四;
图18为根据本申请一些实施例的快捷菜单的示意图二;
图19为根据本申请一些实施例的一种系统架构示意图;
图20为根据本申请一些实施例的基于图19所示的系统架构的交互逻辑图。
为使本申请的目的、方案和优点更加清楚,下面将结合本申请一些实施例中的附图,对本申请一些实施例中的方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。
基于本申请中示出的一些实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。此外,虽然本申请中公开内容按照示范性一个或几个实例来介绍,但应理解,可以就这些公开内容的各个方面也可以单独构成一个完整方案。
应当理解,本申请中说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,例如能够根据本申请一些实施例图示或描述中给出那些以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖但不排他的包含,例如,包含了一系列组件的产品或设备不必限于清楚地列出的那些组件,而是可包括没有清楚地列出的或对于这些产品或设备固有的其它组件。
本申请一些实施例提供的显示设备可以具有多种实施形式,例如,可以是电视、智能电视、激光投影设备、显示器(monitor)、电子白板(electronic bulletin board)、电子桌面(electronic table)等。图1和图2为本申请的显示设备的一种具体实施方式。
图1为根据本申请一些实施例的显示设备与控制装置之间操作场景的示意图。如图1所示,用户可通过智能设备300或控制装置100操作显示设备200。
在一些实施例中,控制装置100可以是遥控器,遥控器和显示设备的通信可包括红外协议通信或蓝牙协议通信,及其他短距离通信方式,通过无线或有线方式来控制显示设备200。用户可以通过遥控器上按键、语音输入、控制面板输入等输入用户指令,来控制显示设备200。
在一些实施例中,也可以使用智能设备300(如移动终端、平板电脑、计算机、笔记本电脑等)以控制显示设备200。例如,使用在智能设备上运行的应用程序控制显示设备200。
在一些实施例中,显示设备可以不使用上述的智能设备或控制设备接收指令,而是通过触摸或者手势等接收用户的控制。
在一些实施例中,显示设备200还可以采用除了控制装置100和智能设备300之外的方式进行控制,例如,可以通过显示设备200设备内部配置的获取语音指令的模块接收用户的语音指令控制,也可以通过显示设备200设备外部设置的语音控制装置来接收用户的语音指令控制。
在一些实施例中,显示设备200还与服务器400进行数据通信。可允许显示设备200通过局域网(Local Area Network,LAN)、无线局域网(Wireless Local Area Network,WLAN)和其他网络进行通信连接。服务器400可以向显示设备200提供各种内容和互动。服务器400可以是一个集群,也可以是多个集群,可以包括一类或多类服务器。
图2为根据本申请一些实施例的控制装置的配置框图。如图2所示,控制装置100可包括至少一个处理器110、通信接口130、用户输入/输出接口140、存储器、供电电源。控制装置100可接收用户的输入操作指令,且将操作指令转换为显示设备200可识别和响应的指令,起用用户与显示设备200之间交互中介作用。
图3为根据本申请一些实施例的显示设备的硬件配置框图。如图3所示,显示设备200可包括调谐解调器210、通信装置220、检测器230、外部装置接口240、至少一个处理器250、显示器260、音频输出接口270、存储器、供电电源、用户接口中的至少一种。
在一些实施例中,处理器可包括中央处理器(Central Processing Unit,CPU),视频处理器,音频处理器,图形处理器(Graphics Processing Unit,GPU),随机存取存储器(Random Access Memory,RAM),只读存储器(Read-Only Memory,ROM),用于输入/输出的第一接口至第n接口,通信总线(Bus)等中的至少一种。
显示器260可包括用于呈现画面的显示屏组件,以及驱动图像显示的驱动组件,可用于接收源自至少一个处理器输出的图像信号,进行显示视频内容、图像内容以及菜单操控界面的组件以及用户操控UI界面。
显示器260可为液晶显示器、有机发光二级管(Organic Light-Emitting Diode,OLED)显示器、以及投影显示器,还可以为一种投影装置和投影屏幕。
通信装置220是可用于根据各种通信协议类型与外部设备或服务器进行通信的组件。例如:通信装置可以包括Wifi模块,蓝牙模块,有线以太网模块等其他网络通信协议芯片或近场通信协议芯片,以及红外接收器中的至少一种。显示设备200可以通过通信装置220与控制装置100或服务器400建立控制信号和数据信号的发送和接收。
用户接口,可用于接收控制装置100(如:红外遥控器等)的控制信号。
检测器230可用于采集外部环境或与外部交互的信号。例如,检测器230可包括光接收器,用于采集环境光线强度的传感器;或者,检测器230可包括图像采集器,如摄像头,可以用于采集外部环境场景、用户的属性或用户交互手势,再或者,检测器230可包括声音采集器,如麦克风等,用于接收外部声音。
外部装置接口240可以包括但不限于如下:高清多媒体接口(High Definition Multimedia Interface,HDMI)、模拟或数据高清分量输入接口(分量)、复合视频输入接口(Composite Video Broadcast Signal或Composite Video Blanking and Sync,CVBS)、通用串行总线(Universal Serial Bus,USB)输入接口(简称为USB)、RGB端口等任一个或多个接口。也可以是上述多个接口形成的复合性的输入/输出接口。
调谐解调器210可通过有线或无线接收方式接收广播电视信号,以及从多个无线或有线广播电视信号中解调出音视频信号以及电子节目指南(Electrical Program Guide,EPG)数据信号。
在一些实施例中,至少一个处理器250和调谐解调器210可以位于不同的分体设备中,即调谐解调器210也可在至少一个处理器250所在的主体设备的外置设备中,如外置机顶盒等。
至少一个处理器250,通过存储在存储器上中各种软件控制程序,来控制显示设备的工作和响应用户的操作。至少一个处理器250控制显示设备200的整体操作。例如:响应于接收到用于选择在显示器260上显示UI对象的用户命令,至少一个处理器250便可以执行与由用户命令选择的对象有关的操作。
用户可在显示器260上显示的图形用户界面(Graphical User Interface,GUI)输入用户命令,则用户输入接口通过图形用户界面(GUI)接收用户输入命令。或者,用户可通过输入特定的声音或手势进行输入用户命令,则用户输入接口通过传感器识别出声音或手势,来接收用户输入命令。
“用户界面”,是应用程序或操作系统与用户之间进行交互和信息交换的介质接口,它实现信息的内部形式与用户可以接受形式之间的转换。用户界面常用的表现形式是图形用户界面(GUI),是指采用图形方式显示的与计算机操作相关的用户界面。它可以是在电子设备的显示屏中显示的一个图标、窗口、控件等界面元素,其中控件可以包括图标、按钮、菜单、选项卡、文本框、对话框、状态栏、导航栏、Widget等可视的界面元素。
图4为根据本申请一些实施例的显示设备中软件配置图。如图4所示,在一些实施例中,可将系统分为四层,从上至下分别为应用程序(Applications)层(简称“应用层”),应用程序框架(Application Framework)层(简称“框架层”),安卓运行时(Android runtime)和系统库层(简称“系统运行库层”),以及内核层。
在一些实施例中,应用程序层中运行有至少一个应用程序,这些应用程序可以是操作系统自带的窗口(Window)程序、系统设置程序或时钟程序等;也可以是第三方开发者所开发的应用程序。在具体实施时,应用程序层中的应用程序包不限于以上举例。
框架层可为应用程序提供应用编程接口(application programming interface,API)和编程框架。应用程序框架层可包括一些预先定义的函数。应用程序框架层相当于一个处理中心,这个中心决定让应用层中的应用程序做出动作。应用程序通过API接口,可在执行中访问系统中的资源和取得系统的服务。
如图4所示,本申请一些实施例中,应用程序框架层可包括管理器(Managers),内容提供者(Content Provider)等,其中,管理器可包括以下模块中的至少一个:活动管理器(Activity Manager)可用与和系统中正在运行的所有活动进行交互;位置管理器(Location Manager)可用于给系统服务或应用提供了系统位置服务的访问;文件包管理器(Package Manager)可用于检索当前安装在设备上的应用程序包相关的各种信息;通知管理器(Notification Manager)可用于控制通知消息的显示和清除;窗口管理器(Window Manager)可用于管理用户界面上的括图标、窗口、工具栏、壁纸和桌面部件。
在一些实施例中,活动管理器可用于管理各个应用程序的生命周期以及通常的导航回退功能,比如控制应用程序的退出、打开、后退等。窗口管理器可用于管理所有的窗口程序,比如获取显示屏大小,判断是否有状态栏,锁定屏幕,截取屏幕,控制显示窗口变化(例如将显示窗口缩小显示、抖动显示、扭曲变形显示等)等。
在一些实施例中,系统运行库层为上层即框架层提供支撑,当框架层被使用时,安卓操作系统会运行系统运行库层中包含的C/C++库以实现框架层要实现的功能。
在一些实施例中,内核层是硬件和软件之间的层。如图4所示,内核层至少可包含以下驱动中的至少一种:音频驱动、显示驱动、蓝牙驱动、摄像头驱动、WIFI驱动、USB驱动、HDMI驱动、传感器驱动(如指纹传感器,温度传感器,压力传感器等)、以及电源驱动等。
图5为根据本申请一些实施例的蓝牙设置页面的示意图。用户可以通过预设入口打开系统设置页面,参见图5,系统设置页面可具有多个设置选项,可包括但不限于图像设置、声音设置、网络设置、蓝牙设置、遥控器设置和通用设置等。显示设备响应于用户选定蓝牙设置选项的操作,控制显示器显示蓝牙设置页面。
在一些实施例中,参见图5,蓝牙设置页面至少包括蓝牙开关51,用户通过切换蓝牙开关51的状态,可以开启或关闭显示设备的蓝牙功能。若蓝牙开关51被关闭,通信装置中的蓝牙模块无法主动扫描其他蓝牙设备,也无法被其他蓝牙设备扫描到。其中,蓝牙设备可包括但不限于手机、蓝牙耳机、蓝牙助听器、蓝牙音响、蓝牙游戏手柄等。
图6为根据本申请一些实施例的打开蓝牙开关后的蓝牙设置页面示意图。若蓝牙开关51被开启,蓝牙模块可以主动扫描周围指定范围内可配对/可连接的蓝牙设备,以生成设备扫描列表,参见图6,显示设备控制显示器在蓝牙设置页面中展示设备扫描列表61,设备扫描列表61可包括被显示设备扫描到的蓝牙设备的设备信息,设备信息可包括但不限于蓝牙设备的名称、标识、型号等。
在一些实施例中,继续参见图6,在蓝牙设置页面为扫描到的蓝牙设备设置状态标记信息,该状态标记信息可用于指示蓝牙设备的连接状态,连接状态可包括但不限于已连接状态、已配对状态、未配对状态等。
在一些实施例中,继续参见图6,设备扫描列表61可包括三项设备信息,分别对应蓝牙设备A、蓝牙设备B和蓝牙设备C,其中蓝牙设备A被标记为已连接状态,蓝牙设备B被标记为已配对状态,蓝牙设备C被标记为未配对状态。这样,蓝牙设备A已与显示设备完成配对及蓝牙连接,蓝牙设备B在先与显示设备配对过但当前未连接,蓝牙设备C与显示设备未配对并且未连接。
在一些实施例中,继续参见图6,可以为处于已连接状态的蓝牙设备(例如蓝牙设备A)设置关联的断开按钮61a,为处于已配对状态的蓝牙设备(例如蓝牙设备B)设置关联的解除配对按钮61b。
在一些实施例中,显示设备响应于用户触发蓝牙设备A对应的断开按钮61a的操作,控制蓝牙模块断开与蓝牙设备A的蓝牙连接,这样蓝牙设备A切换到已配对状态。
在一些实施例中,显示设备响应于用户触发蓝牙设备B对应的解除配对按钮61b的操作,控制蓝牙模块解除与蓝牙设备B的历史配对,这样蓝牙设备B切换到未配对状态。
在一些实施例中,显示设备响应于用户触发蓝牙设备B的设备信息的操作,跳过配对流程,控制蓝牙模块直接与蓝牙设备B建立蓝牙连接,在蓝牙连接成功后,显示设备与蓝牙设备B可基于该蓝牙连接进行数据交互。
在一些实施例中,显示设备响应于用户触发蓝牙设备C的设备信息的操作,控制蓝牙模块与蓝牙设备C配对并建立蓝牙连接,在蓝牙连接成功后,显示设备与蓝牙设备C可基于该蓝牙连接进行数据交互。
图7为根据本申请一些实施例的一种蓝牙连接场景的示意图。参见图7,某些特殊的蓝牙设备一般是配套使用的,例如蓝牙耳机可以包括左耳机和右耳机,蓝牙助听器可以包括左耳助听器和右耳助听器。
为便于描述,本申请实施例中这类配套使用的蓝牙设备简称为蓝牙设备对,将蓝牙设备对可包括的至少两个组对个体简称为子设备。例如蓝牙耳机为一种蓝牙设备对A,左耳机和右耳机为蓝牙耳机的两个子设备,又例如蓝牙助听器为另一种蓝牙设备对B,左耳助听器和右耳助听器为蓝牙助听器的两个子设备。蓝牙设备对的种类不限于蓝牙耳机和蓝牙助听器,还可以是其他至少两个子设备成套/配套使用的类似蓝牙设备,例如可穿戴设备中的左手环和右手环等。
在一些实施例中,以显示设备连接蓝牙助听器为例,蓝牙助听器可包括两种使用模式,模式一是单耳模式,模式二是双耳模式,单耳模式是指仅佩戴左耳助听器和右耳助听器中任一个,双耳模式是指同时佩戴左耳助听器和右耳助听器。无论显示设备连接的是左耳助听器和/或右耳助听器,显示设备仅提示已连接蓝牙助听器,导致用户并不能清楚分辨当前连接的是左耳助听器或是右耳助听器,还是同时连接双耳助听器。
图8为根据本申请一些实施例的显示设备连接单耳助听器时的提示示意图。参见图8,在显示设备连接蓝牙助听器后,蓝牙设置页面的设备扫描列表61中增加蓝牙助听器的设备信息81,并标记蓝牙助听器为已连接状态,还可以在界面上显示设备连接信息82,例如设备连接信息82呈现为“已连接蓝牙助听器,快去使用吧”,这样用户并不能清楚辨别显示设备连接的是左耳助听器和/或右耳助听器,从而影响用户使用,例如显示设备仅连接左耳助听器和右耳助听器中的一个,但用户想要使用双耳模式,则存在一耳助听器由于未连接显示设备而无法使用。此外,用户通过系统设置入口,选择蓝牙设置选项以访问蓝牙设置页面,并在蓝牙设置页面连接或断开任一蓝牙设备,用户手动操作繁琐。
根据本申请一些实施例的显示设备,该显示设备可包括显示器,可被配置为显示来自广播系统的图像和/或用户界面;蓝牙模块,可被配置为与蓝牙设备通信连接;存储器,可被配置为保存计算机指令;至少一个处理器,与所述显示器、所述蓝牙模块和所述存储器连接,可被配置为执行所述计算机指令以使所述显示设备执行:控制蓝牙模块监听蓝牙设备对的连接状态;所述蓝牙设备对可包括第一子设备和第二子设备,所述蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;其中,所述断开状态指示所述第一子设备和所述第二子设备均未连接,所述第一侧已连接状态指示所述第一子设备已连接且所述第二子设备未连接,所述第二侧已连接状态指示所述第二子设备已连接且所述第一子设备未连接,所述双侧已连接状态指示所述第一子设备和所述第二子设备均已连接;可控制所述显示器在蓝牙设置页面显示状态提示信息,所述状态提示信息可用于提示所述蓝牙设备对所处的连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第一侧已连接状态时,可控制所述显示器显示第一提示页面,所述第一提示页面可用于提示显示设备已连接所述第一子设备,并询问是否连接所述第二子设备;响应于用户同意连接所述第二子设备的操作,可控制所述蓝牙模块与所述第二子设备建立蓝牙连接;在所述蓝牙模块已连接所述第二子设备时,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述双侧已连接状态;或者,响应于用户拒绝连接所述第二子设备的操作,不控制所述蓝牙模块与所述第二子设备建立蓝牙连接,并且所述蓝牙设备对保持所述第一侧已连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第二侧已连接状态时,可控制所述显示器显示第二提示页面,所述第二提示页面可用于提示显示设备已连接所述第二子设备,并询问是否连接所述第一子设备;响应于用户同意连接所述第一子设备的操作,可控制所述蓝牙模块与所述第一子设备建立蓝牙连接;在所述蓝牙模块已连接所述第一子设备时,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述双侧已连接状态;或者,响应于用户拒绝连接所述第一子设备的操作,不控制所述蓝牙模块与所述第一子设备建立蓝牙连接,并且所述蓝牙设备对保持所述第二侧已连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述断开状态时,如果所述蓝牙模块准备与目标设备建立蓝牙连接,则识别所述目标设备的类别;如果所述目标设备的类别为所述蓝牙设备对,则从所述目标设备的设备信息中获取从属类型标识,所述从属类型标识可用于指示所述目标设备为所述蓝牙设备对的第一子设备或第二子设备;如果所述从属类型标识指示所述目标设备为所述第一子设备,则在所述蓝牙模块与所述目标设备连接完成后,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述第一侧已连接状态;如果所述从属类型标识指示所述目标设备为所述第二子设备,则在所述蓝牙模块与所述目标设备连接完成后,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述第二侧已连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述双侧已连接状态时,如果所述蓝牙模块准备与目标设备断开连接,则可识别所述目标设备的类别;如果所述目标设备的类别为所述蓝牙设备对,则从所述目标设备的设备信息中获取从属类型标识,所述从属类型标识可用于指示所述目标设备为所述蓝牙设备对的第一子设备或第二子设备;如果所述从属类型标识指示所述目标设备为所述第一子设备,则在所述蓝牙模块与所述目标设备断开连接后,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述第二侧已连接状态;如果所述从属类型标识指示所述目标设备为所述第二子设备,则在所述蓝牙模块与所述目标设备断开连接后,可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述第一侧已连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第一侧已连接状态时,如果所述蓝牙模块与所述第一子设备断开连接,则可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述断开状态;或者,在所述蓝牙设备对处于所述第二侧已连接状态时,如果所述蓝牙模块与所述第二子设备断开连接,则可控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息可用于提示所述蓝牙设备对处于所述断开状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:响应于用户输入的第一预设操作,可控制所述显示器显示快捷菜单,所述快捷菜单可包括第一控件,所述第一控件可用于提示和切换所述蓝牙设备对的连接状态;在焦点移动至所述第一控件时,响应于用户输入的第二预设操作,根据所述蓝牙设备对所处的第一连接状态、所述第二预设操作指示的切换方向以及状态轮转顺序,可确定所述蓝牙设备对即将切换到的目标连接状态;其中,所述状态轮转顺序可以是所述断开状态、所述第一侧已连接状态、所述第二侧已连接状态和所述双侧已连接状态的预设排列顺序;控制所述蓝牙模块将所述蓝牙设备对切换至所述目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件可提示所述蓝牙设备对处于所述目标连接状态。
在一些实施例中,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:响应于用户输入的第一预设操作,可控制所述显示器显示快捷菜单,所述快捷菜单可包括第一控件,所述第一控件可用于提示和切换所述蓝牙设备对的连接状态,所述第一控件可包括:对应所述双侧已连接状态的第一状态图标、对应所述第一侧已连接状态的第二状态图标、对应所述第二侧已连接状态的第三状态图标和对应所述断开状态的第四状态图标;响应于用户从所述第一控件中选定目标状态图标的操作,可控制所述蓝牙模块将所述蓝牙设备对切换至所述目标状态图标对应的目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件可提示所述蓝牙设备对处于所述目标连接状态。
在一些实施例中,在显示所述快捷菜单之后,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在第一焦点移动至所述第一控件时,响应于用户输入的第三预设操作,可暂停所述第一焦点的控制功能,以使所述第一焦点被锁定在所述第一控件的位置;生成第二焦点,并可开启所述第二焦点的控制功能;在所述第二焦点移动至所述目标状态图标时,响应于用户输入的确认操作,可控制所述蓝牙模块将所述蓝牙设备对切换至所述目标状态图标对应的目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件可提示所述蓝牙设备对处于所述目标连接状态;响应于用户输入的第四预设操作,取消所述第二焦点,并可恢复所述第一焦点的控制功能。
在对本申请一些实施例中的显示设备执行的操作进行简要说明后,下面结合具体实施例对该显示设备执行的操作进行详细说明。
在一些实施例中,本申请针对蓝牙设备对的特性,扩展蓝牙设备对的连接状态,可包括但不限于:断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态。其中,第一侧已连接状态是指显示设备已连接蓝牙设备对中的第一子设备。例如,第一子设备可以为左耳机、左耳助听器等。第二侧已连接状态是指显示设备已连接蓝牙设备对中的第二子设备。例如,第二子设备可以为右耳机、右耳助听器等。双侧已连接状态是指显示设备同时连接蓝牙设备对中的第一子设备和第二子设备。断开状态,又称未连接状态,是指显示设备与蓝牙设备对整体未连接/断开,即显示设备与第一子设备和第二子设备均未连接/断开。
在一些实施例中,蓝牙设备对可以为第一子设备和第二子设备分别设置从属类型标识,从属类型标识可用于指示子设备属于蓝牙设备对中的哪一个。例如,第一子设备的从属类型标识可以为左、左耳或left,第二子设备的从属类型标识可以为右、右耳、right。
在一些实施例中,蓝牙设备对可独立控制子设备的蓝牙开关,使子设备能够单独与显示设备进行配对及连接。例如在单耳模式下,蓝牙设备对可以打开第一子设备或第二子设备的蓝牙开关;在双耳模式下,蓝牙设备对可以同时打开第一子设备和第二子设备的蓝牙开关。
在一些实施例中,显示设备开启自身蓝牙开关后,可以控制蓝牙模块扫描周围预设范围内可连接的蓝牙设备,例如,假设显示设备在连接蓝牙设备D时,蓝牙模块获取蓝牙设备D的设备信息,首先识别蓝牙设备D是否为蓝牙设备对。例如,如果蓝牙设备D的设备类别为蓝牙助听器或蓝牙耳机,则蓝牙模块确定蓝牙设备D为蓝牙设备对;又例如,如果蓝牙设备D的设备类别为蓝牙音箱,则蓝牙模块确定蓝牙设备D不是蓝牙设备对。
在一些实施例中,如果蓝牙设备D为蓝牙设备对,则蓝牙模块从蓝牙设备D的设备信息中读取从属类型标识,进一步识别当前连接的是蓝牙设备对中的哪一子设备(以下简称:目标子设备),目标子设备为第一子设备和第二子设备中的一个。
在一些实施例中,蓝牙模块在连接目标子设备后,根据目标子设备的从属类型标识,设置作为蓝牙设备对的蓝牙设备D的连接状态。
在一些实施例中,在蓝牙设备D处于断开状态时,如果蓝牙模块连接的目标子设备为第一子设备,则蓝牙模块将蓝牙设备D的连接状态切换为第一侧已连接状态。
在一些实施例中,在蓝牙设备D处于断开状态时,如果蓝牙模块连接的目标子设备为第二子设备,则蓝牙模块将蓝牙设备D的连接状态切换为第二侧已连接状态。
在一些实施例中,在蓝牙设备D处于第一侧已连接状态时,如果蓝牙模块连接蓝牙设备D中的第二子设备,此时蓝牙模块已连接同一蓝牙设备对内的第一子设备和第二子设备,则将蓝牙设备D的连接状态切换为双侧已连接状态。
在一些实施例中,在蓝牙设备D处于第二侧已连接状态时,如果蓝牙模块连接蓝牙设备D中的第一子设备,此时蓝牙模块已连接同一蓝牙设备对内的第一子设备和第二子设备,则将蓝牙设备D的连接状态切换为双侧已连接状态。
在一些实施例中,在蓝牙设备D处于双侧已连接状态时,如果蓝牙模块断开与蓝牙设备D中的第一子设备的蓝牙连接,则蓝牙模块将蓝牙设备D的连接状态切换为第二侧已连接状态。
在一些实施例中,在蓝牙设备D处于双侧已连接状态时,如果蓝牙模块断开与蓝牙设备D中的第二子设备的蓝牙连接,则蓝牙模块将蓝牙设备D的连接状态切换为第一侧已连接状态。
在一些实施例中,在蓝牙设备D处于第一侧已连接状态时,如果蓝牙模块断开与蓝牙设备D中的第一子设备的蓝牙连接,则蓝牙模块将蓝牙设备D的连接状态切换为断开状态。
在一些实施例中,在蓝牙设备D处于第二侧已连接状态时,如果蓝牙模块断开与蓝牙设备D中的第二子设备的蓝牙连接,则蓝牙模块将蓝牙设备D的连接状态切换为断开状态。
在一些实施例中,在显示蓝牙设置页面时,显示设备可以从蓝牙模块获取蓝牙设备对的连接状态,并基于不同的连接状态,对蓝牙设置页面进行不同展示。
图9为根据本申请一些实施例的蓝牙助听器处于断开状态时蓝牙设置页面的示意图。以蓝牙设备D是蓝牙助听器为例,蓝牙助听器属于一种蓝牙设备对,并且在断开状态下,显示设备未连接左耳助听器和右耳助听器,参见图9,则在蓝牙设置页面中为蓝牙助听器标记“未连接”。
图10为根据本申请一些实施例的蓝牙助听器处于第一侧已连接状态时蓝牙设置页面的示意图。假设蓝牙助听器的第一子设备为左耳助听器,则在蓝牙助听器处于第一侧已连接状态时,参见图10,在蓝牙设置页面中为蓝牙助听器标记“仅连接左耳助听器”。
在一些实施例中,在蓝牙助听器处于第一侧已连接状态时,继续参见图10,可以在蓝牙设置页面的上层显示第一提示弹窗101,第一提示弹窗101可以包括第一提示信息101a、连接第二子设备控件101b和第一取消控件101c。
在一些实施例中,第一提示信息101a可用于提示蓝牙助听器的第一子设备已连接,并询问用户是否连接蓝牙助听器的第二子设备。参见图10,第一提示信息101a可以为“显示设备已连接左耳助听器,是否连接右耳助听器,以凑成完整的一对蓝牙助听器?”。
在一些实施例中,如果用户想要使用单耳模式(例如具体为左耳模式),则可以触发第一取消控件101c。显示设备响应于用户触发第一取消控件101c的操作,控制显示器关闭第一提示弹窗101,不控制蓝牙模块连接蓝牙助听器的第二子设备(例如右耳助听器)。
在一些实施例中,如果用户想要使用双耳模式,则可以触发连接第二子设备控件101b。显示设备响应于用户触发连接第二子设备控件101b的操作,控制显示器关闭第一提示弹窗101,以及,控制蓝牙模块连接蓝牙助听器的第二子设备(例如右耳助听器)。这样,在检测到显示设备仅连接蓝牙设备对的第一子设备时,通过第一提示弹窗101获取用户使用偏好,如果用户想要使用双耳模式,则控制蓝牙模块继续连接第二子设备,从而凑齐一对完整的蓝牙助听器。
图11为根据本申请一些实施例的蓝牙助听器处于第二侧已连接状态时蓝牙设置页面的示意图。假设蓝牙助听器的第二子设备为右耳助听器,则在蓝牙助听器处于第二侧已连接状态时,参见图11,在蓝牙设置页面中为蓝牙助听器标记“仅连接右耳助听器”。
在一些实施例中,在蓝牙助听器处于第二侧已连接状态时,继续参见图11,可以在蓝牙设置页面的上层显示第二提示弹窗111,第二提示弹窗111可以包括第二提示信息111a、连接第一子设备控件111b和第二取消控件111c。
在一些实施例中,第二提示信息111a可用于提示蓝牙助听器的第二子设备已连接,并询问用户是否连接蓝牙助听器的第一子设备。参见图11,第二提示信息111a可以为“显示设备已连接右耳助听器,是否连接左耳助听器,以凑成完整的一对蓝牙助听器?”。
在一些实施例中,如果用户想要使用单耳模式(例如具体为右耳模式),则可以触发第二取消控件111c。显示设备响应于用户触发第二取消控件111c的操作,控制显示器关闭第二提示弹窗111,不控制蓝牙模块连接蓝牙助听器的第一子设备(例如左耳助听器)。
在一些实施例中,如果用户想要使用双耳模式,则可以触发连接第一子设备控件111b。显示设备响应于用户触发连接第一子设备控件111b的操作,控制显示器关闭第二提示弹窗111,以及,控制蓝牙模块连接蓝牙助听器的第一子设备(例如左耳助听器)。这样,在检测到显示设备仅连接蓝牙设备对的第二子设备时,通过第二提示弹窗111获取用户使用偏好,如果用户想要使用双耳模式,则控制蓝牙模块继续连接第一子设备,从而凑齐一对完整的蓝牙助听器。
在一些实施例中,参见图10和图11所示,在蓝牙设备对处于第一侧已连接状态或第二侧已连接状态时,通过提示弹窗引导用户连接缺乏的目标子设备。
在一些实施例中,在蓝牙设备对处于第一侧已连接状态或第二侧已连接状态时,显示设备也可以控制蓝牙模块自动搜索及连接蓝牙设备对中未连接的子设备,这样可以不控制显示器显示如图10和图11示出的提示弹窗。在缺乏的子设备连接失败时,可以在界面中提示该子设备连接失败。
图12为根据本申请一些实施例的蓝牙助听器处于双侧已连接状态时蓝牙设置页面的示意图。在蓝牙助听器处于双侧已连接状态时,在蓝牙设置页面中为蓝牙助听器标记“左右耳助听器均已连接”。
本申请实施例中,蓝牙模块扫描蓝牙设备后,通过蓝牙设备对的设备信息和从属类型标识,可以监听蓝牙设备对的连接状态,以及在蓝牙设置页面中针对蓝牙设备对的不同连接状态给出不同的提示,使用户可以清楚、准确地获知显示设备已连接蓝牙设备对中的哪个或哪些子设备,方便用户使用蓝牙设备对。此外,在显示设备仅连接蓝牙设备对的第一子设备或第二子设备时,可以通过提示弹窗询问用户是否继续连接另一子设备以凑成对,从而便于用户根据使用需求和偏好,决策蓝牙设备对的使用模式(左耳模式、右耳模式或双耳模式),提升用户体验。
在一些实施例中,为便于用户快速切换蓝牙设备对的连接状态,在一快捷菜单中预置蓝牙设备对连接状态的切换入口。用户可以通过执行预设操作来调出快捷菜单,预设操作不限定,例如预设操作设定为触发控制装置100上的菜单键/Menu键。
图13为根据本申请一些实施例的快捷菜单的示意图一。在显示设备运行应用A、播放视频等不同场景中,显示设备响应于用户输出的预设操作,参见图13,控制显示器在当前界面的上层显示快捷菜单131,快捷菜单131例如可通过悬浮、层叠、弹窗等不同形式呈现于用户界面。
在一些实施例中,参见图13,快捷菜单131至少包括用于切换蓝牙设备对的连接状态的功能控件(以下简称:第一控件131a)。快捷菜单131还可以包括其他方便用户快捷操作的选项,例如可包括系统设置(Settings)选项、图库应用选项、图像设置选项、声音设置选项、信号源切换控件、音频输出选项等。
在一些实施例中,参见图13,第一控件131a可用于提示蓝牙设备对当前的连接状态,例如图13中蓝牙设备对为蓝牙助听器,蓝牙助听器处于断开状态。这样,用户通过快捷菜单131中的第一控件131a,可以清楚了解蓝牙设备对的连接状态,并根据使用需求和偏好,切换蓝牙设备对的连接状态。
在一些实施例中,参见图13,用户可以通过控制装置100的方向键调节焦点位置,例如快捷菜单按行展示多个选项时,用户可以通过左键和右键,将焦点移动至快捷菜单中的目标位置。
在一些实施例中,参见图13,在焦点移动至第一控件131a时,显示设备激活第一控件131a,这样用户通过对第一控件131a执行不同操作,以切换蓝牙设备对的连接状态,例如从断开状态切换到双侧已连接状态,从双侧已连接状态切换到第一侧已连接状态或第二侧已连接状态,等等。
在一些实施例中,可以实施轮转切换模式,使用户切换蓝牙设备对的连接状态。假设排序为连接状态a→连接状态b→连接状态c→连接状态d,显示设备可以基于该状态轮转顺序,根据蓝牙设备对当前的连接状态和用户输入的切换方向,决策切换到的目标连接状态。
在一些实施例中,以连接状态a为双侧已连接状态,连接状态b为第一侧已连接状态,连接状态c为第二侧已连接状态,连接状态d为断开状态为例,即蓝牙设备对的状态轮转顺序为:双侧已连接状态→第一侧已连接状态→第二侧已连接状态→断开状态。如果蓝牙设备对当前处于断开状态:若切换方向为前一个或上一个(呈现逆向),则显示设备控制蓝牙模块与该蓝牙设备对中的第二子设备连接,从而将蓝牙设备对切换至第二侧已连接状态;若切换方向为后一个或下一个(呈现顺向),则显示设备控制蓝牙模块与该蓝牙设备对的第一子设备和第二子设备同时连接,从而将蓝牙设备对切换至双侧已连接状态。
在一些实施例中,如果蓝牙设备对当前处于第二侧已连接状态:若切换方向为前一个或上一个(呈现逆向),则显示设备控制蓝牙模块断开蓝牙设备对的第二子设备,并与该蓝牙设备对中的第一子设备连接,从而将蓝牙设备对切换至第一侧已连接状态;如果切换方向为后一个或下一个(呈现顺向),则显示设备控制蓝牙模块断开蓝牙设备对的第二子设备,从而将蓝牙设备对切换至断开状态。
在一些实施例中,如果蓝牙设备对当前处于第一侧已连接状态:若切换方向为前一个或上一个(呈现逆向),则显示设备控制蓝牙模块与该蓝牙设备对中的第二子设备连接,从而将蓝牙设备对切换至双侧已连接状态;若切换方向为后一个或下一个(呈现顺向),则显示设备控制蓝牙模块断开蓝牙设备对的第一子设备,并与该蓝牙设备对中的第二子设备连接,从而将蓝牙设备对切换至第二侧已连接状态。
在一些实施例中,如果蓝牙设备对当前处于双侧已连接状态:若切换方向为前一个或上一个(呈现逆向),则显示设备控制蓝牙模块断开该蓝牙设备对的第一子设备和第二子设备,从而将蓝牙设备对切换至断开状态;若切换方向为后一个或下一个(呈现顺向),则显示设备控制蓝牙模块断开蓝牙设备对的第二子设备,从而将蓝牙设备对切换至第一侧已连接状态。
在一些实施例中,蓝牙设备对的状态轮转顺序不限定。例如,可以按照预设优先级或用户定义优先级进行排序,例如优先级为双侧已连接状态>第一侧已连接状态>第二侧已连接状态>断开状态,则蓝牙设备对的状态轮转顺序可设置为:双侧已连接状态→第一侧已连接状态→第二侧已连接状态→断开状态。
在一些实施例中,蓝牙模块可以根据蓝牙设备对的历史连接记录,分析用户使用习惯和偏好,从而设置蓝牙设备对的状态轮转顺序。例如,用户使用双耳模式的次数最多,其次是右耳模式,再然后是左耳模式,则蓝牙设备对的状态轮转顺序可设置为:双侧已连接状态→第二侧已连接状态→第一侧已连接状态→断开状态。
在一些实施例中,第一控件131a可以仅提供两种连接状态的切换,例如从断开状态切换为双侧已连接状态,或者从双侧已连接状态切换到断开状态。该场景中支持断开模式和双耳模式之间的切换,不支持切换到单耳模式。
在一些实施例中,为适配蓝牙设备对的状态轮转顺序,在第一控件131a获取焦点被激活后,用户可以输入不同操作来切换蓝牙设备对的连接状态。例如,用户可以通过控制装置100的上键和下键输入切换方向,用户触发上键时对应的切换方向为前一个或上一个(呈现逆向),用户触发下键时对应的切换方向为后一个或下一个(呈现顺向)。
在一些实施例中,在第一控件131a获取焦点被激活后,用户可以点击控制装置100上的预设按键,根据预设按键被点击的次数,按照默认切换方向,切换蓝牙设备对的连接状态。例如,蓝牙设备对的状态轮转顺序可设置为:双侧已连接状态→第一侧已连接状态→第二侧已连接状态→断开状态,假设预设按键为确认键/OK键,默认切换方向为顺向,蓝牙设备对当前处于双侧已连接状态,如果用户连续快速点击OK键2次,则显示设备控制蓝牙模块断开该蓝牙设备对的第一子设备,从而将蓝牙设备对切换到第二侧已连接状态。
图14为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图一。以蓝牙设备对为蓝牙助听器,状态轮转顺序为双侧已连接状态→第一侧已连接状态→第二侧已连接状态→断开状态作为举例,参见图14,第一控件131a可以包括连接状态图标、状态信息和切换位图标131b。
在一些实施例中,参见图14,连接状态图标用于与图例形式提示蓝牙助听器的连接状态,在蓝牙模块将蓝牙助听器切换到断开状态时,连接状态图标呈现为被置灰的左耳助听器视图和右耳助听器视图。
在一些实施例中,参见图14,状态信息可用于以文本形式提示蓝牙助听器的连接状态,在蓝牙模块将蓝牙助听器切换到断开状态时,状态信息可以为“蓝牙助听器(未连接)”。
在一些实施例中,参见图14,切换位图标131b可包括四个状态位标识(例如呈现为空心圆形○或实心圆形●),按照从上往下的顺序,第1个状态位标识对应于双侧已连接状态,第2个状态位标识对应于第一侧已连接状态,第3个状态位标识对应于第二侧已连接状态,第4个状态位标识对应于断开状态。
在一些实施例中,参见图14,每个状态位标识可包括两种形态,第一形态(例如呈现为空心圆形○)表征蓝牙助听器未处于该状态位指示的连接状态,第二形态(例如呈现为实心圆形●)表征蓝牙助听器处于该状态位指示的连接状态。参见图14,在蓝牙模块将蓝牙助听器切换到断开状态后时,前3个状态位标识被设置为第一形态,第4个状态位标识被设置为第二形态。
图15为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图二。参见图15,在蓝牙模块将蓝牙助听器切换到第二侧已连接状态时,连接状态图标呈现为单独高亮的右耳助听器视图,或者还可呈现为被置灰的左耳助听器视图和高亮显示的右耳助听器视图,状态信息可以为“蓝牙助听器(仅连接右耳)”,以及,第3个状态位标识被设置为第二形态(例如呈现为实心圆形●),第1、第2和第4个状态位标识被设置为第一形态(例如呈现为空心圆形○)。
图16为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图三。参见图16,在蓝牙模块将蓝牙助听器切换到第一侧已连接状态时,连接状态图标呈现为单独高亮的左耳助听器视图,或者还可呈现为高亮显示的左耳助听器视图和被置灰的右耳助听器视图,状态信息可以为“蓝牙助听器(仅连接左耳)”,以及,第2个状态位标识被设置为第二形态(例如呈现为实心圆形●),第1、第3和第4个状态位标识被设置为第一形态(例如呈现为空心圆形○)。
图17为根据本申请一些实施例的用户通过快捷菜单切换蓝牙助听器的连接状态的示意图四。参见图17,在蓝牙模块将蓝牙助听器切换到双侧已连接状态时,连接状态图标呈现为同时高亮显示的左耳助听器视图和右耳助听器视图,状态信息可以为“蓝牙助听器(已连接左右耳)”,以及,第1个状态位标识被设置为第二形态(例如呈现为实心圆形●),第2、第3和第4个状态位标识被设置为第一形态(例如呈现为空心圆形○)。
在一些实施例中,在第一控件131a获取焦点被激活后,用户可以通过上键或下键,输入切换方向,显示设备可以根据预设的状态轮转顺序,控制蓝牙模块切换蓝牙助听器的连接状态,还可控制显示器按照图14~图17的举例刷新快捷菜单中第一控件131a显示的内容和效果。
图18为根据本申请一些实施例的快捷菜单的示意图二。参见图18,在第一控件131a获取焦点而被显示设备激活后,可以显示蓝牙助听器在不同连接状态下对应的连接状态图标,例如:双侧已连接状态对应于同时高亮显示的左耳助听器视图和右耳助听器视图,第一侧已连接状态对应于高亮显示的左耳助听器视图和被置灰的右耳助听器视图,第二侧已连接状态对应于被置灰的左耳助听器视图和高亮显示的右耳助听器视图,断开状态对应于同时被置灰的左耳助听器视图和右耳助听器视图。
在一些实施例中,参见图18,显示设备可以运行双焦点控制机制,可包括第一焦点18a和第二焦点18b。在第一焦点18a移动至第一控件131a时,显示设备响应于用户输入的状态切换操作(不限定,例如为用户触发OK键),激活第一控件131a,并暂停第一焦点18a的控制功能,以使第一焦点18a被锁定于第一控件131a的位置不动,确保第一控件131a保持激活状态,以便用户切换蓝牙助听器的连接状态。
在一些实施例中,在第一焦点18a被锁定后,显示设备生成第二焦点18b,开启第二焦点18b的控制功能,此时第二焦点18b的初始化位置为:蓝牙助听器当前所处的连接状态对应的连接状态图标。例如,蓝牙助听器当前处于第一侧已连接状态,参见图18,显示设备在生成第二焦点18b之后,默认将第二焦点18b显示在第1行第2列的连接状态图标(高亮显示的左耳助听器视图和被置灰的右耳助听器视图)的位置。
在一些实施例中,用户可以通过控制装置100的方向键,移动第二焦点18b以切换蓝牙助听器的连接状态。例如,参见图18,显示设备响应于用户输入的下键指令,控制第二焦点18b移动至第2行第2列的连接状态图标(同时被置灰的左耳助听器视图和右耳助听器视图)的位置,响应于用户输入的OK键指令,控制蓝牙模块断开与左耳助听器(即第一子设备)的连接,从而将蓝牙助听器切换至断开状态,同步地,第一控件131a中的状态信息变更为“未连接”。
在一些实施例中,又例如,参见图18,显示设备响应于用户输入的左键指令,控制第二焦点18b移动至第1行第1列的连接状态图标(同时高亮显示的左耳助听器视图和右耳助听器视图)的位置,响应于用户输入的OK键指令,控制蓝牙模块与右耳助听器(即第二子设备)连接,从而将蓝牙助听器切换至双侧已连接状态,同步地,第一控件131a中的状态信息变更为“已连接左右耳”。
在一些实施例中,显示设备响应于用户输入的结束状态切换指令,可以取消第二焦点18b及其控制功能,恢复第一焦点18a的控制功能,从而退出针对蓝牙助听器的状态切换,这样用户可以移动第一焦点18a在快捷菜单中的位置,从而执行其他快捷功能。其中,触发结束状态切换指令的操作不限定,例如用户可以触发遥控器的返回键或菜单键等。
在一些实施例中,第一控件131a可以设置于快捷菜单内,实现在快捷菜单被调出后显示,以及在快捷菜单被关闭时隐藏。或者,第一控件131a也可设置在用户界面上的预设位置,例如将第一控件131a显示在界面的右上角位置,这样用户可以不必调出快捷菜单就能通过第一控件131a切换蓝牙设备对的连接状态。需要说明的是,第一控件131a可以通过其他快捷途径被访问或触发,而不局限于本申请实施例的举例。
本申请实施例通过在快捷菜单中增设第一控件131a,使用户在调出快捷菜单后,可通过第一控件131a快速切换蓝牙设备对的连接状态,可支持在多个不同连接状态之间连续、快速轮转。这样,用户就不用通过系统设置入口,打开系统设置页面,访问下一级的蓝牙设置页面,也不用在蓝牙设置页面切换蓝牙设备对的连接状态,减少了用户大量繁琐的手动操作,用户可以随时调出快捷菜单按需切换蓝牙设备对的连接状态,提升了连接状态切换的灵活性和操作效率,提升用户使用体验。
需要说明的是,本申请实施例及附图主要以蓝牙助听器为例描述方案的逻辑,对于其他类别的蓝牙设备对,均可执行本申请实施例的方案,以实现精准的连接状态提示,以及实现高效的连接状态切换。
本申请实施例中,蓝牙设备对是一种可包括第一子设备和第二子设备的蓝牙设备,例如蓝牙耳机和蓝牙助听器等。针对蓝牙设备对,本申请制定更精细的连接状态的类别,可包括断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态,其中,断开状态即两个子设备均未连接的状态,第一侧已连接状态即第一子设备已连接并且第二子设备未连接的状态,第二侧已连接状态即第一子设备未连接并且第二子设备已连接的状态,双侧已连接状态即两个子设备均已连接的状态。这样,蓝牙模块在监听蓝牙设备对的连接状态时,会针对所属蓝牙设备对中的每个子设备进行独立的状态检测,进而获得蓝牙设备对整体连接状态为上述四种状态中的哪一种,并在蓝牙设置页面中进行状态提示,这样,用户可以清楚准确地获知显示设备连接蓝牙设备对中的哪个或哪些子设备,方便用户使用。
在结合具体实施例对显示设备执行的操作进行详细描述后,下面结合图19示出的本申请一些实施例中的系统架构的交互逻辑进行说明。
在图4示出的显示设备的软件配置图的基础上,参见图19,显示设备包括的框架层还可包括但不限于:BluetoothAdapter(蓝牙适配器)、LocalBluetoothManager(本地蓝牙管理)、BluetoothDevicesService(蓝牙设备服务)、LocalBluetoothProfileManager(本地蓝牙配置文件管理)。其中,BluetoothAdapter,可用于执行基本的蓝牙任务,包括但不限于扫描蓝牙设备、管理扫描设备列表等。BluetoothAdapter,可用于注册并监听蓝牙设备的连接状态变化和更新。BluetoothDevicesService,可用于对蓝牙设备进行操作,例如连接,断开,重命名等。LocalBluetoothProfileManager,可用于识别蓝牙设备的类别(例如蓝牙音响,蓝牙助听器,蓝牙耳机等),识别是否为蓝牙设备对,以及,在当前设备的类别为蓝牙设备对时,根据从属类型标识确定当前设备为蓝牙设备对中的哪一子设备。显示设备包括的应用层可通过与框架层的交互实现:获取蓝牙设备信息以识别是否为蓝牙设备对,在监听到蓝牙设备对的连接状态变化时,更新快捷菜单和蓝牙设置页面中蓝牙设备对标记的连接状态;在蓝牙设备对处于第一侧已连接状态或第二侧已连接状态时,通过提示弹窗询问用户是否继续连接另一未凑对的子设备;通过快捷菜单实现蓝牙设备对的连接状态切换等。
参见图20,交互对象可包括应用层以及框架层的BluetoothAdapter、LocalBluetoothManager、BluetoothDevicesService,该交互逻辑可包括但不限于如下程序步骤:
步骤S1,应用层通过LocalBluetoothManager注册对蓝牙设备的连接状态监听。
步骤S2,应用层从BluetoothAdapter获取设备扫描列表。
步骤S3,应用层根据设备扫描列表,以及列表中包括的蓝牙设备的连接状态,展示蓝牙设置页面。
步骤S4,在LocalBluetoothManager监听到任一蓝牙设备A的连接状态变化时,向应用层发送状态变化通知消息。
步骤S5,应用层根据状态变化通知消息,更新蓝牙设置页面显示的蓝牙设备A的连接状态。
步骤S6,应用层响应于用户调出快捷菜单的操作,展示快捷菜单。
步骤S7,应用层响应于用户通过快捷菜单将蓝牙设备对切换到目标连接状态的操作,向BluetoothDevicesService发送状态切换指令。
其中,目标连接状态可为双侧已连接状态、第一侧已连接状态、第二侧已连接状态和断开状态中的一种。
步骤S8,BluetoothDevicesService响应于状态切换指令,控制蓝牙模块将蓝牙设备对切换到目标连接状态。
步骤S9,BluetoothDevicesService向LocalBluetoothManager发送已切换状态消息。该已切换状态消息用于指示蓝牙设备对已切换为目标连接状态。
步骤S10,LocalBluetoothManager将已切换状态消息发送给应用层。
步骤S11,应用层根据已切换状态消息,更新快捷菜单显示的蓝牙设备对的连接状态。
在一些实施例中,根据本申请一些实施例的一种计算机可读的非易失性存储介质,该存储介质可存储有程序。当计算机存储介质配置在显示设备中时,该程序执行时可包括以上实施例中显示设备执行的用于显示设备的蓝牙设备状态显示方法涉及的程序步骤。其中,该存储介质可为磁碟、光盘、只读存储记忆体(ROM)或随机存储记忆体(RAM)等。
最后应说明的是:以上各实施例仅用以说明本申请的方案,而非对其限制;尽管参照前述各实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应方案的本质脱离本申请各实施例方案的范围。
Claims (10)
- 一种显示设备,包括:显示器,被配置为显示来自广播系统的图像和/或用户界面;蓝牙模块,被配置为与蓝牙设备通信连接;存储器,被配置为保存计算机指令;至少一个处理器,与所述显示器、所述蓝牙模块和所述存储器连接,被配置为执行所述计算机指令以使所述显示设备执行:控制所述蓝牙模块监听蓝牙设备对的连接状态;所述蓝牙设备对包括第一子设备和第二子设备,所述蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;其中,所述断开状态指示所述第一子设备和所述第二子设备均未连接,所述第一侧已连接状态指示所述第一子设备已连接且所述第二子设备未连接,所述第二侧已连接状态指示所述第二子设备已连接且所述第一子设备未连接,所述双侧已连接状态指示所述第一子设备和所述第二子设备均已连接;控制显示器在蓝牙设置页面显示状态提示信息,所述状态提示信息用于提示所述蓝牙设备对所处的连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第一侧已连接状态时,控制所述显示器显示第一提示页面,所述第一提示页面用于提示显示设备已连接所述第一子设备,并询问是否连接所述第二子设备;响应于用户同意连接所述第二子设备的操作,控制所述蓝牙模块与所述第二子设备建立蓝牙连接;在所述蓝牙模块已连接所述第二子设备时,控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述双侧已连接状态;或者,响应于用户拒绝连接所述第二子设备的操作,不控制所述蓝牙模块与所述第二子设备建立蓝牙连接,并且所述蓝牙设备对保持所述第一侧已连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第二侧已连接状态时,控制所述显示器显示第二提示页面,所述第二提示页面用于提示显示设备已连接所述第二子设备,并询问是否连接所述第一子设备;响应于用户同意连接所述第一子设备的操作,控制所述蓝牙模块与所述第一子设备建立蓝牙连接;在所述蓝牙模块已连接所述第一子设备时,控制显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述双侧已连接状态;或者,响应于用户拒绝连接所述第一子设备的操作,不控制所述蓝牙模块与所述第一子设备建立蓝牙连接,并且所述蓝牙设备对保持所述第二侧已连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述断开状态时,如果所述蓝牙模块准备与目标设备建立蓝牙连接,则识别所述目标设备的类别;如果所述目标设备的类别为所述蓝牙设备对,则从所述目标设备的设备信息中获取从属类型标识,所述从属类型标识用于指示所述目标设备为所述蓝牙设备对的第一子设备或第二子设备;如果所述从属类型标识指示所述目标设备为所述第一子设备,则在所述蓝牙模块与所述目标设备连接完成后,控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述第一侧已连接状态;如果所述从属类型标识指示所述目标设备为所述第二子设备,则在所述蓝牙模块与所述目标设备连接完成后,控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述第二侧已连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述双侧已连接状态时,如果所述蓝牙模块准备与目标设备断开连接,则识别所述目标设备的类别;如果所述目标设备的类别为所述蓝牙设备对,则从所述目标设备的设备信息中获取从属类型标识,所述从属类型标识用于指示所述目标设备为所述蓝牙设备对的第一子设备或第二子设备;如果所述从属类型标识指示所述目标设备为所述第一子设备,则在所述蓝牙模块与所述目标设备断开连接后,控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述第二侧已连接状态;如果所述从属类型标识指示所述目标设备为所述第二子设备,则在所述蓝牙模块与所述目标设备断开连接后,控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述第一侧已连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在所述蓝牙设备对处于所述第一侧已连接状态时,如果所述蓝牙模块与所述第一子设备断开连接,则控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述断开状态;或者,在所述蓝牙设备对处于所述第二侧已连接状态时,如果所述蓝牙模块与所述第二子设备断开连接,则控制所述显示器更新所述状态提示信息,以使更新后的状态提示信息用于提示所述蓝牙设备对处于所述断开状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:响应于用户输入的第一预设操作,控制所述显示器显示快捷菜单,所述快捷菜单包括第一控件,所述第一控件用于提示和切换所述蓝牙设备对的连接状态;在焦点移动至所述第一控件时,响应于用户输入的第二预设操作,根据所述蓝牙设备对所处的第一连接状态、所述第二预设操作指示的切换方向以及状态轮转顺序,确定所述蓝牙设备对即将切换到的目标连接状态;其中,所述状态轮转顺序是所述断开状态、所述第一侧已连接状态、所述第二侧已连接状态和所述双侧已连接状态的预设排列顺序;控制所述蓝牙模块将所述蓝牙设备对切换至所述目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件提示所述蓝牙设备对处于所述目标连接状态。
- 根据权利要求1所述的显示设备,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:响应于用户输入的第一预设操作,控制所述显示器显示快捷菜单,所述快捷菜单包括第一控件,所述第一控件用于提示和切换所述蓝牙设备对的连接状态,所述第一控件包括:对应所述双侧已连接状态的第一状态图标、对应所述第一侧已连接状态的第二状态图标、对应所述第二侧已连接状态的第三状态图标和对应所述断开状态的第四状态图标;响应于用户从所述第一控件中选定目标状态图标的操作,控制所述蓝牙模块将所述蓝牙设备对切换至所述目标状态图标对应的目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件提示所述蓝牙设备对处于所述目标连接状态。
- 根据权利要求8所述的显示设备,在显示所述快捷菜单之后,所述至少一个处理器还被配置为执行所述计算机指令以使所述显示设备执行:在第一焦点移动至所述第一控件时,响应于用户输入的第三预设操作,暂停所述第一焦点的控制功能,以使所述第一焦点被锁定在所述第一控件的位置;生成第二焦点,并开启所述第二焦点的控制功能;在所述第二焦点移动至所述目标状态图标时,响应于用户输入的确认操作,控制所述蓝牙模块将所述蓝牙设备对切换至所述目标状态图标对应的目标连接状态;对所述第一控件进行更新,以使更新后的所述第一控件提示所述蓝牙设备对处于所述目标连接状态;响应于用户输入的第四预设操作,取消所述第二焦点,并恢复所述第一焦点的控制功能。
- 一种用于显示设备的蓝牙设备状态显示方法,包括:控制蓝牙模块监听蓝牙设备对的连接状态;所述蓝牙设备对包括第一子设备和第二子设备,所述蓝牙设备对的连接状态为断开状态、第一侧已连接状态、第二侧已连接状态和双侧已连接状态中的一种;其中,所述断开状态指示所述第一子设备和所述第二子设备均未连接,所述第一侧已连接状态指示所述第一子设备已连接且所述第二子设备未连接,所述第二侧已连接状态指示所述第二子设备已连接且所述第一子设备未连接,所述双侧已连接状态指示所述第一子设备和所述第二子设备均已连接;在蓝牙设置页面显示状态提示信息,所述状态提示信息用于提示所述蓝牙设备对所处的连接状态。
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