Image processing methods, wearable devices, apparatus, electronic devices, and storage media

JP2026139555APending Publication Date: 2026-09-01BEIJING ZITIAO NETWORK TECH CO LTD
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Patent Information

Application Number
JP2025183095
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2025-02-20
Filing Date
2025-10-30
Publication Date
2026-09-01

Smart Images

  • Figure 2026139555000001_ABST
    Figure 2026139555000001_ABST
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Abstract

The embodiments of this disclosure provide, in the field of computer technology, image processing methods, wearable devices, apparatus, electronic devices, and storage media. [Solution] The method, when a user is wearing a wearable device, includes determining a target resolution in response to a shooting command and controlling the camera to capture a first image at a target resolution which is a first resolution greater than a second resolution for the current environment or the second resolution. This disclosure allows the wearable device to be controlled to capture images at different resolutions, and the wearable device can be applied to multiple scenes.
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Description

Technical Field

[0001] Embodiments of the present disclosure relate to the field of computer technology, and in particular, to an image processing method, a wearable device, an apparatus, an electronic device, and a storage medium.

Background Art

[0002] A wearable device is an electronic device worn by a user, and wearable devices are generally used to provide various functions such as audio and / or video.

[0003] At present, wearable devices support collecting images, uploading them to a service end, and implementing visual inquiry, which meets various visual inquiry scenarios of users, such as inquiring about car emblems, clothing brands, celebrity information, real-time translation of menus, and instant translation when reading foreign language publications. However, existing wearable devices have the problem that the resolution of collected images is single, which further affects the use of wearable devices.

Summary of Invention

[0004] Embodiments of the present disclosure provide an image processing method, a wearable device, an apparatus, an electronic device, and a storage medium for solving the problem that the resolution of collected images is single.

[0005] In a first aspect, an embodiment of the present disclosure provides an image processing method for use in a wearable device including a camera, the method comprising: when a user wears the wearable device, determining a target resolution in response to a shooting instruction; and controlling the camera to shoot a first image with a target resolution for a current environment, wherein the target resolution is a first resolution greater than a second resolution or the second resolution.

[0006] In a second aspect, embodiments of the present disclosure provide an image processing method used in a target device, the method being: Receiving voice commands transmitted by a wearable device, Identifying the shooting intent of the voice command and determining a target resolution that is either a first resolution greater than the second resolution or a second resolution, This includes transmitting a capture command to a wearable device to control the wearable device to capture a first image that includes the target resolution and has the target resolution.

[0007] In a third aspect, embodiments of the present disclosure provide an image processing method used in a target device, the method being: Receiving voice commands transmitted by a wearable device, Identifying the shooting intent of the voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission command is sent to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0008] In a fourth aspect, embodiments of the present disclosure provide a wearable device, the wearable device including a camera, When the user is wearing a wearable device, a decision unit is provided to determine the target resolution in response to a shooting command, The system further includes a control unit for controlling the camera to capture a first image of a target resolution which is a first resolution greater than a second resolution or a second resolution relative to the current environment.

[0009] In a fifth aspect, embodiments of the present disclosure provide an image processing apparatus used in a target device, the apparatus is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of a voice command and determining the target resolution, wherein the target resolution is a first resolution or a second resolution, and the first resolution is greater than the second resolution. A transmission unit for transmitting a shooting command including the target resolution to the wearable device, wherein the shooting command includes a transmission unit used to control the wearable device to capture a first image of the target resolution.

[0010] In a sixth aspect, embodiments of the present disclosure provide an image processing apparatus used in a target device, the apparatus is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of a voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission unit is used to send a transmission command to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0011] In a seventh aspect, embodiments of the present disclosure provide an electronic device comprising a processor and memory, Memory stores computer execution instructions. The processor executes computer execution instructions stored in memory, causing at least one processor to perform various possible image processing methods according to the first, second, or third embodiment described above.

[0012] In the eighth aspect, an embodiment of the present disclosure provides a computer-readable storage medium in which computer execution instructions are stored, and when a processor executes the computer execution instructions, various possible image processing methods of the first, second, or third aspects described above are realized.

[0013] In a ninth aspect, embodiments of the present disclosure provide a computer program product that, when executed by a processor, implements various possible image processing methods of the first, second, or third aspects described above.

[0014] The image processing method according to this embodiment is used in a wearable device including a camera. When a user is wearing the wearable device, in response to a shooting command, the method determines a target resolution and controls the camera to capture a first image at a target resolution which is either a first resolution greater than a second resolution or the second resolution relative to the current environment. This disclosure allows the wearable device to be controlled to capture images at different resolutions, enabling the wearable device to be applied to multiple scenes.

[0015] To more clearly illustrate the embodiments of this disclosure or the technical concepts in the prior art, the following briefly introduces the drawings that may be used in describing the embodiments or the prior art. Clearly, the drawings in the following description are some embodiments of this disclosure, and those skilled in the art can obtain further drawings based on these without requiring any creative effort. [Brief explanation of the drawing]

[0016] [Figure 1] This figure shows an example of an application scene for the image processing method according to the embodiments of this disclosure. [Figure 2] This is one flowchart of an image processing method according to an embodiment of the present disclosure. [Figure 3] This is the second flowchart of the image processing method according to the embodiments of this disclosure. [Figure 4]It is the third flow chart of the image processing method according to the embodiment of the present disclosure. [Figure 5] It is the fourth flow chart of the image processing method according to the embodiment of the present disclosure. [Figure 6] It is the fifth flow chart of the image processing method according to the embodiment of the present disclosure. [Figure 7] It is the sixth flow chart of the image processing method according to the embodiment of the present disclosure. [Figure 8] It is a structural block diagram of the wearable device according to the embodiment of the present disclosure. [Figure 9] It is the first structural block diagram of the image processing apparatus according to the embodiment of the present disclosure. [Figure 10] It is the second structural block diagram of the image processing apparatus according to the embodiment of the present disclosure. [Figure 11] It is a structural schematic diagram of the electronic device according to the embodiment of the present disclosure. DETAILED DESCRIPTION OF EMBODIMENTS

[0017] In order to make the objectives, technical solutions and advantages of the embodiments of the present disclosure clearer, the following clearly and completely describes the technical solutions in the embodiments of the present disclosure with reference to the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments are some but not all of the embodiments of the present disclosure. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the protection scope of the present disclosure.

[0018] It can be understood that, before using the technical solutions disclosed in each embodiment of the present disclosure, the type, scope of use, application scenarios, etc. of personal information involved in the present disclosure should be notified to target users in an appropriate manner in accordance with relevant laws and regulations, and permission should be obtained from the target users.

[0019] For example, in response to receiving a voluntary request from the user, a notification is sent to the user to clearly inform them that the operation requested to be performed requires the acquisition and use of the user's personal information. This allows the user to choose whether or not to provide personal information to software or hardware such as electronic devices, application programs, servers, or storage media that perform the operation of the proposed technical method of this disclosure based on the notification.

[0020] One selective but non-restrictive implementation is a method of sending notification information to a user in response to receiving a voluntary request from the user. This method may be, for example, a pop-up window, and the notification information may be presented in text format within the pop-up window. Furthermore, the pop-up window may include a selection control that allows the user to choose whether to "agree" or "disagree" to providing personal information to the electronic device.

[0021] The above notice and the process for obtaining target user permission are illustrative examples only and do not limit the forms in which this disclosure may be implemented. It should be understood that other methods that comply with applicable laws and regulations may also be applicable to the implementation of this disclosure.

[0022] In related technologies, when a user makes a visual query, a wearable device must collect an image, upload it to a target device, call a visual query algorithm to process the image, obtain response content, and send the response content back to the wearable device. However, the wearable device can only capture images at one resolution. If the image resolution is high, it consumes a lot of transmission bandwidth and causes significant delays. If the image resolution is low, it affects the user's visual experience, and in low-resolution images, it may not be possible to accurately identify the detailed content in the image.

[0023] To solve the technical problems, this disclosure provides an image processing method that, when a user is wearing a wearable device, can control the wearable device to capture images of different resolutions by determining a target resolution in response to a capture command and capturing a first image at a target resolution which is either a first resolution greater than a second resolution for the current environment or the second resolution, thereby enabling the wearable device to be applied to multiple scenes.

[0024] It should be noted that the image processing method described herein can be used in any one of the wearable devices. The image processing method according to an embodiment of this disclosure will be described in detail below, with accompanying drawings.

[0025] Figure 1 is a diagram illustrating an example of an application scene of the image processing method according to an embodiment of the present disclosure. As shown in Figure 1, the wearable device is a head-mounted device 11. When the head-mounted device 11 is attached to the user's head, it receives a shooting command from the user, determines the target resolution based on the shooting command, and if the target resolution is a first resolution, it can capture a first image a1 at the first resolution, and if the target resolution is a second resolution, it can capture a first image a2 at the second resolution.

[0026] Figure 1 is merely an illustrative application scenario and can be used in any wearable device; this disclosure does not limit the type of wearable device.

[0027] Figure 2 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used in a wearable device and may include several steps as follows.

[0028] S201, if the user is wearing a wearable device, responds to the shooting command and determines the target resolution.

[0029] In this disclosure, a wearable device includes one of a head-mounted display, earphones, or glasses. Here, the head-mounted display is, for example, VR (Virtual Reality), XR (Extended Reality), MR (Mixed Reality), or AR (Augmented Reality) glasses, the earphones are earphones with cameras, and the glasses are glasses with cameras.

[0030] In this disclosure, the target device is a device on which a model is deployed and / or a device capable of displaying an image. The target device may be a terminal device or a server, and the wearable device and the target device may communicate wirelessly, for example, via Wi-Fi or Bluetooth®, and may also communicate via wired means, but are not limited to these.

[0031] In this disclosure, a shooting command is either a voice command or a physical operation command. A voice command is a command in which the user triggers shooting by voice. A physical operation command is a command in which the user triggers shooting by clicking a wearable device with their limbs.

[0032] Here, the target resolution is either the first resolution or the second resolution, where the first resolution is greater than the second resolution.

[0033] In one embodiment, a shooting command includes an audio command, and determining the target resolution in response to the shooting command includes identifying the shooting intent of the audio command in response to the audio command, determining that the target resolution is a first resolution if the shooting intent indicates the capture of a clear image, and determining that the target resolution is a second resolution if the shooting intent does not indicate the capture of a clear image.

[0034] The wearable device is understood to be a speaker capable of collecting the user's voice commands. In this disclosure, the wearable device may identify the intent to capture the voice command, or the target device may identify the intent to capture the voice command.

[0035] Specifically, when the wearable device identifies the intent to capture a voice command, the wearable device identifies the intent to capture a voice command, and then the wearable device determines, based on the intent to capture, that the target resolution is either a first resolution or a second resolution.

[0036] When the target device identifies the intent to capture a voice command, in one case, the wearable device receives the voice command, sends the voice command to the target device, and after the target device identifies the intent to capture a voice command, sends the intent to capture to the wearable device, and the wearable device determines that the target resolution is either the first or second resolution based on the intent to capture. In the other case, the wearable device receives the voice command, sends the voice command to the target device, and after the target device identifies the intent to capture a voice command, determines that the target resolution is either the first or second resolution based on the intent to capture, and sends the determined target resolution to the wearable device.

[0037] Furthermore, identifying the shooting intent of a voice command includes identifying whether the voice command contains a pre-set keyword for instructing the capture of a clear image, determining if the keyword is present, determining that the shooting intent of the voice command is to capture a clear image, and, if the keyword is not present, performing shooting intent identification on the voice command using a pre-trained identification model to obtain the shooting intent of the voice command.

[0038] Here, pre-set keywords include, for example, "in detail," "carefully," "identify," "text," "translate," "clear," and "distinct." As can be seen, these pre-set keywords instruct the system to take a clear image, and only by taking a clear image can the detailed content in that image be identified. Another pre-set keyword is "take a picture," and when the voice command includes "take a picture," it indicates that the user needs to view the image rather than recognize it, thus instructing the system to take a clear image and improving the user's image viewing experience.

[0039] Furthermore, if a voice command does not contain pre-set keywords, the identification model can identify the voice command and obtain the intent behind the voice command. Here, the intent identified by the identification model may be to instruct the capture of a clear image or a blurry image. For example, if the user's voice command is "What is written on that sign?", it is clear that the user wants to know the specific content of the text in the image, so the intent identified by the identification model is to capture a clear image. If the user's voice command is "What is this?", "Take a look, what is that flower?", or "Take a look, what color is that?", these indicate that the user wants to know attribute information such as the name and color of an object in the image. This attribute information can be obtained with a low-resolution image.

[0040] In this disclosure, in one case, the wearable device or target device identifies whether a voice command contains a pre-set keyword for instructing the capture of a clear image, and if it does, determines that the intent to capture a clear image in the voice command is to capture a clear image; if it does not, it performs intent identification on the voice command using a pre-trained identification model and obtains the intent to capture the voice command. In the other case, the wearable device identifies whether a voice command contains a pre-set keyword, and if it does, determines that the intent to capture a clear image in the voice command is to capture a clear image; if it does not, it transmits the voice command to the target device, the target device performs intent identification on the voice command using a pre-trained identification model, obtains the intent to capture the voice command, and transmits the intent to capture to the wearable device. Furthermore, the wearable device determines the target resolution based on the intent to capture, or the target device determines the target resolution based on the intent to capture.

[0041] Here, the discriminative model is a pre-trained model, such as an LLM (Large Language Model).

[0042] In one embodiment, a shooting command includes a physical operation command, and determining the target resolution in response to the shooting command includes determining that the target resolution is a first resolution if the physical operation corresponding to the physical operation command is a first physical operation, and determining that the target resolution is a second resolution if the physical operation corresponding to the physical operation command is a second physical operation.

[0043] Furthermore, the first physical operation and the second physical operation differ in the number of touches, or in the touch duration, or in the touch target.

[0044] For example, if a wearable device is equipped with a touch sensor, and the user triggers the touch sensor once, the target resolution is determined to be the first resolution. If the user triggers the touch sensor twice, the target resolution is determined to be the second resolution. Furthermore, for example, if the time it takes for the user to trigger the touch sensor is less than 3 seconds, the target resolution is determined to be the first resolution. If the time it takes for the user to trigger the touch sensor is 3 seconds or more, the target resolution is determined to be the second resolution. Also, for example, if a wearable device is equipped with touch sensors c1 and c2, and the target of the user's first physical operation is touch sensor c1, the target resolution is determined to be the first resolution, and if the target of the user's second physical operation is touch sensor c2, the target resolution is determined to be the second resolution.

[0045] In summary, in this disclosure, the corresponding target resolution can be determined by setting different first and second physical operations.

[0046] In one embodiment, determining the target resolution in response to a shooting command includes determining that the target resolution is a first resolution if the shooting command is a physical operation command, and determining that the target resolution is a second resolution if the shooting command is a voice command, or determining that the target resolution is a second resolution if the shooting command is a physical operation command, and determining that the target resolution is a first resolution if the shooting command is a voice command.

[0047] In one case, it can be understood that if the user needs a high-resolution image (e.g., a first resolution), the capture can be triggered by a physical command, and if they need a low-resolution image (e.g., a second resolution), the capture can be triggered by a voice command. In another case, if the user needs a low-resolution image (e.g., a second resolution), the capture can be triggered by a physical command, and if they need a high-resolution image (e.g., a first resolution), the capture can be triggered by a voice command.

[0048] In this disclosure, whether physical operation commands correspond to a first resolution or a second resolution, and whether voice commands correspond to a first resolution or a second resolution, is preconfigurable and can be further adjusted according to the user's habits, but is not limited thereto.

[0049] In summary, this disclosure allows for the determination of a corresponding target resolution based on a shooting command.

[0050] S202 controls the camera to capture a first image of the target resolution for the current environment.

[0051] In one case, the wearable device includes a camera capable of capturing images of different resolutions, for example, the camera capable of capturing not only an image of a first resolution but also an image of a second resolution, wherein the camera is controlled to capture a first image of the first resolution when the target resolution is the first resolution, and the camera is controlled to capture a first image of the second resolution when the target resolution is the second resolution.

[0052] In one case, the wearable device includes two cameras, and the two cameras capture images at the same resolution. For example, the wearable device is an earphone including a left ear and a right ear, with one camera in the left ear and one in the right ear, where both the left and right ears can capture images at a first resolution and a second resolution, and both the left and right ears simultaneously capture images at the same resolution. Here, if the target resolution is the first resolution, the cameras in the left and right ears are controlled to capture a first image at the first resolution, and if the target resolution is the second resolution, the cameras in the left and right ears are controlled to capture a first image at the second resolution.

[0053] In one case, a wearable device includes two cameras, and the two cameras capture images at different resolutions. For example, a wearable device is an earphone including a left ear and a right ear, with one camera in the left ear and one in the right ear. If the left ear can capture an image at a first resolution and the right ear can capture an image at a second resolution, then the camera in the left ear is controlled to capture the first image if the target resolution is the first resolution, and the camera in the right ear is controlled to capture the first image if the target resolution is the second resolution. If the left ear can capture an image at a second resolution and the right ear can capture an image at a first resolution, then the camera in the right ear is controlled to capture the first image if the target resolution is the first resolution, and the camera in the left ear is controlled to capture the first image if the target resolution is the second resolution.

[0054] In embodiments of this disclosure, a wearable device has the ability to capture images of different resolutions, determines a target resolution based on a capture command, and can capture a first image of the target resolution. Here, if the current scene requires a high-resolution image, the capture command can determine to capture a first image of the first resolution, improving the user's visual experience and allowing for the identification of detailed content in the first image. If the current scene requires a low-resolution image, the capture command can determine to capture a first image of the second resolution, reducing delay when transmitting the first image.

[0055] Figure 3 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used in a wearable device and may include several steps as follows.

[0056] S301, if the user is wearing a wearable device, the system determines the target resolution in response to a shooting command.

[0057] The specific implementation process for this step is described in S201 and is omitted here.

[0058] S302 controls the camera to capture a first and second image of the target resolution for the current environment.

[0059] Here, if the target resolution is the first resolution (i.e., the resolution of the first image is the first resolution), then the resolution of the second image is the second resolution, and if the target resolution is the second resolution (i.e., the resolution of the first image is the second resolution), then the resolution of the second image is the first resolution.

[0060] In this disclosure, regardless of the shooting command, a first image and a second image of different resolutions are captured, and the shooting command is used to determine the target resolution of the image to be transmitted to the target device.

[0061] Furthermore, in one case, the wearable device includes a camera capable of capturing images of different resolutions, for example, the camera capable of capturing not only an image of a first resolution but also an image of a second resolution. Here, if the target resolution is the first resolution, the camera is controlled to capture a first image of the first resolution and a second image of the second resolution, and if the target resolution is the second resolution, the camera is controlled to capture a first image of the second resolution and a second image of the first resolution.

[0062] In one case, the wearable device includes two cameras, and the two cameras capture images at the same resolution. For example, the wearable device is an earphone including a left ear and a right ear, with one camera in the left ear and one in the right ear, where both the left and right ears can capture images at a first resolution and a second resolution, and both the left and right ears simultaneously capture images at the same resolution. Here, if the target resolution is the first resolution, the cameras in the left and right ears are controlled to capture a first image at the first resolution and a second image at the second resolution, and if the target resolution is the second resolution, the cameras in the left and right ears are controlled to capture a first image at the second resolution and a second image at the first resolution.

[0063] In one case, a wearable device includes two cameras, and the two cameras capture images at different resolutions. For example, a wearable device is an earphone including a left ear and a right ear, with one camera in the left ear and one in the right ear. Here, if the left ear can capture an image at a first resolution and the right ear can capture an image at a second resolution, then if the target resolution is the first resolution, the left ear camera is controlled to capture the first image and the right ear camera is controlled to capture the second image; if the target resolution is the second resolution, the right ear camera is controlled to capture the first image and the left ear camera is controlled to capture the second image. If the left ear can capture an image at a second resolution and the right ear can capture an image at a first resolution, then if the target resolution is the first resolution, the right ear camera is controlled to capture the first image and the left ear camera is controlled to capture the second image; if the target resolution is the second resolution, the left ear camera is controlled to capture the first image and the right ear camera is controlled to capture the second image.

[0064] S303 transmits the first image to the target device.

[0065] It can be understood that the resolution of the image transmitted to the target device is determined based on the capture command. For example, if a wearable device captures an image of a first resolution and an image of a second resolution, and the capture command determines that the target resolution is the first resolution, it transmits the image of the first resolution to the target device, and this image is also the first image of the first resolution. If the capture command determines that the target resolution is the second resolution, it transmits the image of the second resolution to the target device, and this image is the first image of the second resolution.

[0066] Furthermore, the first image transmitted to the target device can be used for viewing by the user or for input and processing into an identification model, but is not limited to this.

[0067] In this disclosure, the target device may be a terminal device or a server, and is not limited thereto.

[0068] In one embodiment, the capture command is an audio command, and the method further includes transmitting the audio command and a first image to a target device, receiving a response audio from the target device which is content related to the first image in response to the audio command, and playing the response audio. Here, if the wearable device includes two cameras and the two cameras capture two first images of the same resolution, then the target device may be transmitted either two first images or one of them. If the wearable device captures only one first image, then that first image is transmitted to the target device.

[0069] Furthermore, after receiving the first image and voice command, the target device can employ a language model to process the first image and voice command and obtain a response voice.

[0070] In summary, this disclosure can capture a first image and a second image of different resolutions, determine a target resolution based on a capture command, and further transmit the first image of the target resolution to a target device.

[0071] Figure 4 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used in a wearable device and may include several steps as follows.

[0072] S401, when the user is wearing a wearable device, responds to voice commands and controls the camera to capture a first and second image of the current environment.

[0073] Here, after receiving a voice command, the camera is controlled to capture a first image and a second image of different resolutions, for example, a first image of the first resolution and a second image of the second resolution, or a first image of the second resolution and a second image of the first resolution.

[0074] S402, based on the content of the voice command, decides to send either the first or second image to the target device.

[0075] In embodiments of the present disclosure, if the content of a voice command indicates that a clear image is required, the higher-resolution image of the first and second images is transmitted to the target device. If the content of a voice command indicates that a blurry image is required, the lower-resolution image of the first and second images is transmitted to the target device.

[0076] For example, if the resolution of the first image is the first resolution and the resolution of the second image is the second resolution, and the content of the voice command is "a sharp image is needed", the first image is sent to the target device. If the content of the voice command is "a normal image is needed", the second image is sent to the target device.

[0077] S403 receives the target device's response audio to a voice command.

[0078] Here, the response audio is content related to either the first or second image. When the first image is transmitted to the target device, the response audio is content related to the first image, and when the second image is transmitted to the target device, the response audio is content related to the second image.

[0079] S404, playing the response audio.

[0080] In embodiments of the present disclosure, the wearable device includes a speaker, which can be used to play a response voice. For example, a user's voice command may be "What is the flower in front?" and a second image may be sent to a target device, which then identifies the second image, determines the name of the flower in the second image, sends the name to the wearable device, and the wearable device plays the name.

[0081] In summary, this disclosure allows for the capture of a first image and a second image at different resolutions, the determination to transmit either the first image or the second image to a target device based on the content of a user's voice command, the acquisition of a response voice from the target device, and the use of this response to the user.

[0082] Figure 5 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used in a wearable device and may include several steps as follows.

[0083] S501, when the user is wearing a wearable device, responds to voice commands and controls the camera to capture a first and second image of the current environment.

[0084] The specific implementation process of this step is described in S401 and is omitted here.

[0085] S502 transmits the first and second images to the target device.

[0086] In embodiments of this disclosure, a first image and a second image can be transmitted to a target device. Here, the first image and the second image are images of the same environment at different resolutions. For example, the resolution of the first image is a first resolution and the resolution of the second image is a second resolution, or the resolution of the first image is a second resolution and the resolution of the second image is a first resolution.

[0087] In this disclosure, the target device can obtain images of different resolutions and can be used in different scenes. For example, it can display a higher resolution image when the user needs to view an image, it can identify a higher resolution image when the user needs to identify details in the current environment, and it can identify a lower resolution image when the user needs to identify attribute information such as the name, shape, or color of an object in the current environment.

[0088] Figure 6 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used on a target device and may include several of the following steps.

[0089] S601 receives voice commands transmitted by a wearable device.

[0090] Here, it can be understood that the wearable device receives a voice command from the user and then transmits that voice command to the target device.

[0091] S602 identifies the shooting intent of the voice command and determines the target resolution.

[0092] The target resolution is either the first resolution or the second resolution, where the first resolution is greater than the second resolution.

[0093] Here, identifying the shooting command in the voice command and determining the target resolution includes identifying the shooting intention of the voice command, determining that the target resolution is a first resolution if the shooting intention indicates the capture of a clear image, and determining that the target resolution is a second resolution if the shooting intention does not indicate the capture of a clear image.

[0094] Furthermore, identifying the shooting intent of a voice command includes identifying whether the voice command contains a pre-set keyword for instructing the capture of a clear image, determining if the keyword is present, determining that the shooting intent of the voice command is to capture a clear image, and, if the keyword is not present, performing shooting intent identification on the voice command using a pre-trained identification model to obtain the shooting intent of the voice command.

[0095] The specific implementation process of this step may be explained by referring to the related steps in S201, and will not be explained here.

[0096] S603 sends a shooting command, including the target resolution, to the wearable device.

[0097] The capture command is used to control the wearable device to capture a first image at the target resolution.

[0098] Here, the target device, after determining the target resolution, can send a capture command to the wearable device, which can control the wearable device to capture a first image at the target resolution.

[0099] The specific implementation process of this step may be described in S202, and will not be explained here.

[0100] In summary, in this disclosure, the target device can determine a target resolution based on a user's voice command and further control the wearable device to capture a first image at the target resolution.

[0101] Figure 7 is a flowchart of an image processing method according to an embodiment of the present disclosure, which is used on a target device and may include several of the following steps.

[0102] S701 receives voice commands transmitted by a wearable device.

[0103] The specific implementation process of this step is described in S601 and is omitted here.

[0104] S702 identifies the shooting intent of the voice command and determines the target resolution.

[0105] The specific implementation process for this step is omitted here, as it is explained in the relevant section of S201.

[0106] S703, when the wearable device captures a first image with a first resolution and a second image with a second resolution, transmits a transmission command to the wearable device.

[0107] Here, a transmission command is used to instruct a wearable device to transmit a first target image to a target device, where the first target image is the first image if the target resolution is the first resolution, and the first target image is the second image if the target resolution is the second resolution.

[0108] In this disclosure, it can be understood that a wearable device captures a first image and a second image of different resolutions, a target device can send a transmission command to the wearable device based on a determined target resolution, the transmission command may include the target resolution, and the wearable device can decide to send an image of the target resolution to the target device based on the target resolution in the transmission command.

[0109] Furthermore, the target device can display the first target image after receiving it, and can also determine a response voice associated with the first target image based on the user's voice, and transmit and play it back on the wearable device.

[0110] Furthermore, the method further includes receiving a first image and a second image transmitted by a wearable device, which are taken from the same environment but have different resolutions; displaying a second target image, which is the lower-resolution image of the first and second images; and displaying a third target image, which is the higher-resolution image of the first and second images, in response to a pre-set operation by the user on the second target image, the pre-set operation may be a click, for example, a click on the second target image by the user, or a zoom, for example, a zoom operation by the user on the second target image.

[0111] A wearable device can transmit both a first image and a second image of different resolutions to a target device, which can understand that it will display the lower-resolution image, and then, after the user clicks on the lower-resolution image, it will display the higher-resolution image.

[0112] In summary, in this disclosure, the target device can identify the user's voice commands and control the wearable device to capture and transmit images, and the wearable device can be applied to various scenarios.

[0113] Figure 8 is a schematic diagram of the structure of a wearable device according to an embodiment of the present disclosure, the wearable device 80 including a camera, When the user is wearing a wearable device, a determination unit 801 for determining the target resolution in response to a shooting command, The system may include several units, including a control unit 802 for controlling the camera to capture a first image of a target resolution which is a first resolution greater than the second resolution or the second resolution relative to the current environment.

[0114] In one optional embodiment, the shooting command includes a voice command, and the decision unit 801 specifically, In response to a voice command, it identifies the intent behind the voice command's recording. If the shooting intention is to capture a clear image, the target resolution is determined to be the first resolution. If the shooting intent does not indicate the capture of a sharp image, the target resolution is used to determine that the second resolution is appropriate.

[0115] In one optional embodiment, when the decision unit 801 identifies the intent to photograph a voice command, specifically, Identify whether the voice command contains pre-set keywords for instructing the capture of a clear image. If included, the intention of the voice command to capture a clear image is determined to be the capture of a clear image. If not included, a pre-trained identification model is used to identify the intent to photograph in response to a voice command, thereby obtaining the intent to photograph from the voice command.

[0116] In one optional embodiment, the shooting command includes a physical operation command, and the decision unit 801 specifically, If the physical operation corresponding to the physical operation instruction is the first physical operation, then it is determined that the target resolution is the first resolution. If the physical operation corresponding to a physical operation instruction is the second physical operation, this is used to determine that the target resolution is the second resolution.

[0117] In one optional embodiment, the first physical operation and the second physical operation differ in the number of touches, or in the touch duration, or in the touch target.

[0118] In one optional embodiment, the decision unit 801 specifically, If the shooting command is a physical operation command, the target resolution is determined to be the first resolution; if the shooting command is a voice command, the target resolution is determined to be the second resolution. Alternatively, if the shooting command is a physical operation command, it is used to determine that the target resolution is the second resolution, and if the shooting command is a voice command, it is used to determine that the target resolution is the first resolution.

[0119] In one optional embodiment, if the control unit 802 controls the camera to take a picture of the current environment in response to a shooting command, a second image is obtained, where, If the target resolution is the first resolution, then the resolution of the second image is the second resolution. If the target resolution is the second resolution, then the resolution of the second image is the first resolution.

[0120] In one optional embodiment, the shooting command is a voice command, and the wearable device is A transmitting unit (not shown) for sending voice commands and a first image to the target device, A receiving unit (not shown) for receiving a response audio from a target device, which is content related to the first image in response to a voice command, It further includes a playback unit (not shown) for playing back the response audio.

[0121] In one optional embodiment, a transmitting unit (not shown) is further used to transmit a first image and a second image to a target device.

[0122] The specific implementation process of the wearable device according to the embodiments of this disclosure may be described by referring to the embodiments of the image processing method, and will not be described here.

[0123] Figure 9 is a schematic diagram of the structure of an image processing apparatus according to an embodiment of the present disclosure, wherein the image processing apparatus 90 is used in a target device, and specifically, A receiving unit 901 for receiving voice commands transmitted by a wearable device, An identification unit 902 for identifying the shooting intent of a voice command and determining the target resolution, wherein the target resolution is a first resolution or a second resolution, and the first resolution is greater than the second resolution. A transmission unit 903 for transmitting a shooting command including the target resolution to the wearable device, wherein the shooting command includes several units with the transmission unit 903 used to control the wearable device to capture a first image of the target resolution.

[0124] The specific implementation process of the image processing apparatus according to the embodiments of this disclosure may be described by referring to the embodiments of the image processing method, and will not be described here.

[0125] Figure 10 is a schematic diagram of the structure of an image processing apparatus according to an embodiment of the present disclosure, wherein the image processing apparatus 100 is used in a target device, and specifically, A receiving unit 1001 for receiving voice commands transmitted by a wearable device, An identification unit 1002 for identifying the shooting intent of a voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission unit 1003 is used to send a transmission command to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0126] In one optional embodiment, The receiving unit 1001 is further used to receive a first image and a second image transmitted by a wearable device, which are taken from the same environment but have different resolutions. The image processing device 100 includes a first display unit (not shown) for displaying a second target image, which is the lower-resolution image of the first image and the second image, The system further includes a second display unit (not shown) for displaying a third target image, which is the higher-resolution image of the first and second images, in response to a user click on a second target image.

[0127] The specific implementation process of the image processing apparatus according to the embodiments of this disclosure may be described by referring to the embodiments of the image processing method, and will not be described here.

[0128] To realize the above embodiments, the embodiments of this disclosure further provide a computer-readable storage medium in which computer execution instructions are stored, and when a processor executes a computer execution instruction, the image processing method of any one of the above embodiments is realized.

[0129] To realize the above embodiments, the embodiments of the present disclosure further provide a computer program product that, when executed by a processor, implements the image processing method of any one of the above embodiments.

[0130] To realize the above embodiments, embodiments of the present disclosure further provide an electronic device which includes a processor and memory. Memory stores computer execution instructions. The processor executes computer execution instructions stored in memory, causing the processor to perform the image processing method of one of the above embodiments.

[0131] Figure 11 is a schematic diagram of the structure of an electronic device according to an embodiment of the present disclosure, where the electronic device 110 may be an electronic device or a server. Here, the electronic device may include, but is not limited to, mobile devices such as mobile phones, laptop computers, digital broadcast receivers, personal digital assistants (abbreviated as PDAs), tablet computers (abbreviated as Portable Android Devices, PADs), portable multimedia players (abbreviated as PMPs), in-vehicle terminals (e.g., in-vehicle navigation terminals), and fixed terminals such as digital TVs and desktop computers. The electronic device shown in Figure 11 is merely an example and does not imply any limitation on the functions and scope of use of the embodiments of the present disclosure.

[0132] As shown in Figure 11, the electronic device 110 may include a processing unit (e.g., a central processor, graphics processor, etc.) 111, which can perform various appropriate operations and processes based on programs stored in read-only memory (ROM) 112 or programs loaded from storage device 118 into random access memory (RAM) 113. The RAM 113 further stores various programs and data necessary for the operation of the electronic device 110. The processing unit 111, ROM 112, and RAM 113 are connected to each other via a bus 114. An input / output (I / O) interface 115 is also connected to the bus 114.

[0133] Generally, devices such as input devices 116 including, for example, touchscreens, touchpads, keyboards, mice, cameras, microphones, accelerometers, and gyroscopes; output devices 117 including, for example, liquid crystal displays (LCDs), speakers, and vibrators; storage devices 118 including, for example, magnetic tapes and hard disks; and communication devices 119 can be connected to the I / O interface 115. The communication device 119 can allow the electronic device 110 and other devices to exchange data via wireless or wired communication. Figure 11 shows an electronic device 110 with various devices, but it should be understood that it is not required to implement or have all of the devices shown. More or fewer devices may be implemented or have all of them instead.

[0134] In particular, according to embodiments of the present disclosure, the process described above with reference to the flowchart may be implemented as a computer software program. For example, embodiments of the present disclosure include a computer program product which includes a computer program placed on a computer-readable medium, and the computer program includes program code for performing the method shown in the flowchart. In such embodiments, the computer program may be downloaded and installed from a network by a communication device 119, or installed from a storage device 118, or installed from a ROM 112. When the computer program is executed by the processing device 111, the above-described functions, limited by the methods of embodiments of the present disclosure, are performed.

[0135] The computer-readable medium in this disclosure may be a computer-readable signal medium, a computer-readable storage medium, or any combination of both. The computer-readable storage medium may be, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples of computer-readable storage mediums may include, but are not limited to, an electrical connection having one or more wires, a portable computer magnetic disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact magnetic disk read-only memory (CD-ROM), optical memory device, magnetic memory device, or any suitable combination thereof. In this disclosure, the computer-readable storage medium may be any tangible medium containing or storing a program, the program may be used by or in combination with an instruction execution system, apparatus, or device. In this disclosure, a computer-readable signaling medium may include data signals propagated in the baseband or as part of a carrier, which carry computer-readable program code. Such propagated data signals may include, but are not limited to, electromagnetic signals, optical signals, or any suitable combination thereof. The computer-readable signaling medium may be any computer-readable medium other than a computer-readable storage medium, which can transmit, propagate, or transmit programs for use by or in combination with instruction execution systems, apparatus, or devices. Program code contained on the computer-readable medium may be transmitted by any suitable medium, including, but not limited to, electric wires, optical cables, RF (radio frequency), or any suitable combination thereof.

[0136] The computer-readable medium described above may be included in the electronic device described above, or it may be a standalone entity not incorporated into the electronic device.

[0137] The computer-readable medium contains one or more programs, and when these one or more programs are executed by the electronic device, the electronic device is made to perform the method shown in the above embodiment.

[0138] Computer program code for performing the operations of the Disclosure can be organized in one or a variety of programming languages ​​or a combination thereof, and such programming languages ​​include object-oriented programming languages, such as Java®, Smalltalk®, and C++, and further include general procedural programming languages, such as the "C" language or similar programming languages. The program code may run entirely on the target user computer, partially on the target user computer, run as a single standalone software package, run partially on the target user computer and partially on a remote computer, or run entirely on a remote computer or server. In the case of a remote computer, the remote computer may be connected to the target user computer via any type of network, including a Local Area Network (LAN) or a Wide Area Network (WAN), or it may be connected to an external computer (for example, connected via the Internet using an Internet service provider).

[0139] The flowcharts and block diagrams in the drawings illustrate the systematic architectures, functions, and operations that can be implemented according to the systems, methods, and computer program products of each embodiment of the present disclosure. In this regard, each block in the flowchart or block diagram may represent a module, program segment, or portion of code, which contains one or more executable instructions for implementing a defined logic function. It should be noted that in some implementations as alternatives, the functions described in the blocks may occur in a different order than those shown in the drawings. For example, two blocks shown consecutively may actually be executed almost in parallel, or in some cases in reverse order, depending on the function. Furthermore, it should be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, may be implemented by a dedicated hardware-based system that performs the defined function or operation, or by a combination of dedicated hardware and computer instructions.

[0140] The units referred to in the descriptions of the embodiments of this disclosure may be implemented in software or in hardware. Herein, the names of the units are not limited in any case to the units themselves; for example, the first acquisition unit may be described as "a unit that acquires at least two Internet Protocol addresses."

[0141] The functions described above in this specification may be performed, at least in part, by one or more hardware logic components. For example, typical types of hardware logic components that can be used include, but are not limited to, field-programmable gate arrays (FPGAs), application-specific integrated circuits (ASICs), application-specific standard products (ASSPs), systems on chips (SOCs), and composite programmable logic circuits (CPLDs).

[0142] In the context of this disclosure, a machine-readable medium may be a tangible medium that contains or stores a program for use by or in combination with an instruction execution system, apparatus, or device. A machine-readable medium may be a machine-readable signal medium or a machine-readable storage medium. A machine-readable medium may include, but is not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any appropriate combination of the above. More specific examples of machine-readable storage media include one or more wire-based electrical connections, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any appropriate combination of the above.

[0143] In a first aspect, according to one or more embodiments of the present disclosure, an image processing method for use in a wearable device including a camera is provided, the method is: If the user is wearing a wearable device, the system will respond to the capture command by determining the target resolution, This includes controlling the camera to capture a first image of a target resolution which is a first resolution greater than a second resolution or a second resolution relative to the current environment.

[0144] According to one or more embodiments of this disclosure, a shooting command includes an audio command, and in response to the shooting command, the target resolution is determined. Responding to voice commands, identifying the intent behind the voice command's recording, When the intention to capture an image is to capture a clear image, the target resolution is determined to be the first resolution, This includes determining that the target resolution is a second resolution if the shooting intent does not indicate the capture of a clear image.

[0145] According to one or more embodiments of this disclosure, identifying the intent to capture a voice command is: Identifying whether the voice command contains pre-set keywords for instructing the capture of a clear image, If included, it will be determined that the intention of the voice command to take a clear image, If not included, it includes identifying the intent to photograph in response to a voice command using a pre-trained identification model and obtaining the intent to photograph from the voice command.

[0146] According to one or more embodiments of this disclosure, a shooting command includes a physical operation command, and in response to the shooting command, the target resolution is determined. If the physical operation corresponding to the physical operation instruction is the first physical operation, then it is determined that the target resolution is the first resolution, This includes determining that the target resolution is the second resolution if the physical operation corresponding to the physical operation instruction is the second physical operation.

[0147] According to one or more embodiments of this disclosure, the first physical operation and the second physical operation differ in the number of touches, or in the touch duration, or in the touch target of the first physical operation and the second physical operation.

[0148] According to one or more embodiments of this disclosure, determining the target resolution in response to a shooting command is: If the shooting command is a physical operation command, the target resolution is determined to be the first resolution; if the shooting command is a voice command, the target resolution is determined to be the second resolution. Alternatively, if the shooting command is a physical operation command, it is determined that the target resolution is a second resolution, and if the shooting command is an audio command, it is determined that the target resolution is a first resolution.

[0149] According to one or more embodiments of this disclosure, in response to a shooting command, the camera is controlled to take a picture of the current environment, and a second image is obtained, wherein If the target resolution is the first resolution, then the resolution of the second image is the second resolution. If the target resolution is the second resolution, then the resolution of the second image is the first resolution.

[0150] According to one or more embodiments of this disclosure, the shooting command is an audio command, and the method is To transmit a voice command and a first image to the target device, Receiving a response audio from a target device, which is content related to the first image in response to a voice command, This further includes playing back the response audio.

[0151] According to one or more embodiments of this disclosure, the method is The process further includes transmitting the first image and the second image to the target device.

[0152] In a second aspect, according to one or more embodiments of the present disclosure, an image processing method for use in a target device is provided, the image processing method is Receiving voice commands transmitted by a wearable device, Identifying the shooting intent of the voice command and determining a target resolution that is either a first resolution greater than the second resolution or a second resolution, This includes transmitting a capture command to a wearable device to control the wearable device to capture a first image that includes the target resolution and has the target resolution.

[0153] In a third aspect, according to one or more embodiments of the present disclosure, an image processing method for use in a target device is provided, the image processing method is Receiving voice commands transmitted by a wearable device, Identifying the shooting intent of the voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission command is sent to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0154] According to one or more embodiments of this disclosure, the method is Receiving a first image and a second image transmitted by a wearable device, both taken in the same environment but with different resolutions, The second target image is the lower-resolution image among the first and second images, and The further includes displaying a third target image, which is the higher-resolution image of the first and second images, in response to a user click on a second target image.

[0155] In a fourth aspect, according to one or more embodiments of the present disclosure, a wearable device is provided, the wearable device includes a camera, When the user is wearing a wearable device, a decision unit is provided to determine the target resolution in response to a shooting command, The system further includes a control unit for controlling the camera to capture a first image of a target resolution which is a first resolution greater than a second resolution or a second resolution relative to the current environment.

[0156] In a fifth aspect, according to one or more embodiments of the present disclosure, an image processing apparatus used in a target device is provided, the apparatus is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of a voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission unit is used to send a transmission command to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0157] In a sixth aspect, according to one or more embodiments of the present disclosure, an image processing apparatus used in a target device is provided, the apparatus is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of a voice command and determining the target resolution, When a wearable device captures a first image of a first resolution and a second image of a second resolution, a transmission unit is used to send a transmission command to the wearable device instructing it to transmit the first target image to a target device, wherein the first target image is the first image when the target resolution is the first resolution, and the first target image is the second image when the target resolution is the second resolution.

[0158] In a seventh aspect, according to one or more embodiments of the present disclosure, an electronic device is provided, the electronic device comprising at least one processor and memory, Memory stores computer execution instructions. At least one processor executes computer execution instructions stored in memory, causing at least one processor to execute an image processing method of various possible designs from the first to third embodiments described above.

[0159] In the eighth aspect, according to one or more embodiments of the present disclosure, a computer-readable storage medium is provided, the computer-readable storage medium stores computer execution instructions, and when a processor executes the computer execution instructions, an image processing method of various possible designs of the first to third aspects described above is realized.

[0160] In a ninth aspect, according to one or more embodiments of the present disclosure, a computer program product is provided which, when executed by a processor, implements an image processing method of various possible designs of the first to third aspects described above.

[0161] The above description is merely an explanation of preferred embodiments and the technical principles in which the present disclosure is applied. Those skilled in the art will understand that the scope of the disclosure is not limited to technical solutions formed by specific combinations of the above technical features, but encompasses other technical solutions formed by any combination of the above technical features or their equivalents, without departing from the disclosed concepts. For example, technical solutions in which the above features are replaced with similar functional technical features disclosed (but not limited to) in this disclosure.

[0162] While the operations are described based on a specific order, this should not be understood as requiring that these operations be performed in a specific order or sequence. In certain environments, multitasking and parallel processing may be advantageous. Similarly, while the above discussion includes some specific implementation details, these should not be understood as limiting the scope of this disclosure. Some features described in the context of a single embodiment may be implemented in combination in a single embodiment. Conversely, various features described in the context of a single embodiment may be implemented in multiple embodiments, either individually or in any suitable subcombination.

[0163] While this topic has been described using terminology specific to structural features and / or the logical operation of the method, it should be understood that the topic limited to the attached claims is not limited to the specific features or operations described above. Rather, the specific features and operations described above are merely illustrative forms of realizing the claims.

Claims

1. An image processing method, used in a wearable device including a camera, wherein the method is When the user is wearing the wearable device, the system will determine the target resolution in response to a shooting command. An image processing method characterized by controlling the camera to capture a first image of a target resolution which is a first resolution greater than a second resolution or a second resolution relative to the current environment.

2. The aforementioned shooting command includes an audio command, and the target resolution is determined in response to the shooting command. In response to the aforementioned voice command, the intention of the voice command to take a photograph is identified, When the shooting intention indicates the capture of a clear image, the target resolution is determined to be the first resolution. The image processing method according to claim 1, characterized in that if the shooting intention does not indicate the capture of a clear image, the target resolution is determined to be the second resolution.

3. Identifying the intention behind the aforementioned voice command is: Identifying whether the aforementioned voice command contains a pre-set keyword for instructing the capture of a clear image, If included, the intention of the voice command to take a photograph is determined to be to take a clear image, The image processing method according to claim 2, characterized in that, if not included, the method includes performing a pre-trained identification model to identify the intent to take a photograph in response to the voice command and obtaining the intent to take a photograph in the voice command.

4. The aforementioned shooting command includes a physical operation command, and the target resolution is determined in response to the shooting command. If the physical operation corresponding to the physical operation command is a first physical operation, then it is determined that the target resolution is the first resolution. The image processing method according to claim 1, further comprising determining that the target resolution is the second resolution when the physical operation corresponding to the physical operation command is a second physical operation.

5. The image processing method according to claim 4, characterized in that the first physical operation and the second physical operation differ in the number of touches, or the touch duration differs, or the touch target differs between the first physical operation and the second physical operation.

6. Determining the target resolution in response to the aforementioned shooting command is: If the shooting command is a physical operation command, the target resolution is determined to be the first resolution; if the shooting command is a voice command, the target resolution is determined to be the second resolution. Alternatively, the image processing method according to claim 1, characterized in that, if the shooting command is a physical operation command, the target resolution is determined to be the second resolution, and if the shooting command is a voice command, the target resolution is determined to be the first resolution.

7. When the camera is controlled to take a picture of the current environment in response to the aforementioned shooting command, a second image is obtained, where, If the target resolution is the first resolution, then the resolution of the second image is the second resolution. The image processing method according to claim 1, characterized in that, when the target resolution is the second resolution, the resolution of the second image is the first resolution.

8. The aforementioned shooting command is a voice command, and the method is Transmitting the voice command and the first image to the target device, The target device receives a response voice, which is content related to the first image, in response to the voice command. The image processing method according to claim 7, further comprising playing back the aforementioned response audio.

9. The aforementioned method, The image processing method according to claim 7, further comprising transmitting a first image and a second image to a target device.

10. An image processing method, used in a target device, wherein the method is Receiving voice commands transmitted by a wearable device, Identifying the shooting intent of the voice command, and determining a target resolution that is a first resolution greater than the second resolution or the second resolution, An image processing method characterized by transmitting a shooting command to the wearable device to control the wearable device to capture a first image that includes the target resolution and has the target resolution.

11. An image processing method, used in a target device, wherein the method is Receiving voice commands transmitted by a wearable device, The process involves identifying the shooting intent of the aforementioned voice command and determining the target resolution. An image processing method characterized by sending a transmission command to the wearable device to instruct the wearable device to transmit a first target image to the target device, wherein the first target image is a first image when the target resolution is a first resolution, and the first target image is a second image when the target resolution is a second resolution.

12. The aforementioned method, Receiving a first image and a second image transmitted by the wearable device, which were taken in the same environment but have different resolutions, Displaying a second target image, which is the lower-resolution image among the first and second images, The image processing method according to claim 11, further comprising displaying a third target image, which is the image with the higher resolution among the first and second images, in response to a pre-set operation by the user on the second target image.

13. A wearable device, wherein the wearable device includes a camera, When the user is wearing the wearable device, a determination unit for determining the target resolution in response to a shooting command, A wearable device further comprising a control unit for controlling the camera to capture a first image of a target resolution which is a first resolution greater than a second resolution or a second resolution relative to the current environment.

14. An image processing device, used in a target device, said device is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of the voice command and determining the target resolution, wherein the target resolution is a first resolution or a second resolution, and the first resolution is greater than the second resolution. An image processing apparatus comprising a transmission unit for transmitting a shooting command including the target resolution to the wearable device, wherein the shooting command is used to control the wearable device to capture a first image of the target resolution.

15. An image processing device, used in a target device, said device is A receiving unit for receiving voice commands transmitted by a wearable device, An identification unit for identifying the shooting intent of the aforementioned voice command and determining the target resolution, An image processing apparatus comprising: a transmission unit used to transmit a transmission command to the wearable device for instructing the wearable device to transmit a first target image to the target device, wherein, when the target resolution is a first resolution, the first target image is a first image, and when the target resolution is a second resolution, the first target image is a second image.

16. An electronic device, including a processor and memory, The aforementioned memory stores computer execution instructions. An electronic device characterized in that the processor executes computer execution instructions stored in the memory, causing the processor to execute the image processing method described in any one of claims 1 to 12.

17. A computer-readable storage medium, wherein computer execution instructions are stored in the computer-readable storage medium, and when a processor executes the computer execution instructions, the image processing method described in any one of claims 1 to 12 is realized.

18. A computer program characterized in that, when the computer program is executed by a processor, it realizes the image processing method described in any one of claims 1 to 12.