Information delivery method, device and equipment
By detecting the attention status of sub-screens in real time on the display panel of the information delivery device, and adjusting the display format and position of information resources, the problem of inaccurate information resource delivery in existing technologies is solved, and more efficient information promotion is achieved.
Patent Information
- Application Number
- CN202210611859.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-05-31
AI Technical Summary
Existing information delivery equipment cannot detect environmental information in real time, thus failing to achieve accurate delivery of information resources.
By setting a status acquisition module on the display panel, the attention status of each sub-screen is obtained, and the display format and position of information resources are adjusted according to the sub-screen status, including the stretching coefficient and display position, to form information resources to be displayed.
It enables precise delivery of information resources, maximizing the display of information resources that visitors are interested in, and improving the promotion effect of information resources.
Smart Images

Figure CN114912960B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the field of information delivery, and in particular, to an information delivery method, device and equipment. BACKGROUND
[0002] Information delivery devices promote resources through multimedia resources such as pictures, texts, videos, and small plug-ins, which is a new and important information delivery channel in the field of video multimedia. The interactivity of information delivery devices enables them to have many public service functions, thereby attracting customers to actively browse information. SUMMARY
[0003] Embodiments of the present disclosure provide an information delivery method, device and equipment.
[0004] In a first aspect, embodiments of the present disclosure provide an information delivery device for delivering information on a display panel, the display panel including a plurality of sub-screens located in different areas, wherein the information delivery device includes:
[0005] a state acquisition module configured to acquire a state of each of the sub-screens, wherein the state of the sub-screen indicates whether the sub-screen is focused on;
[0006] a control module configured to determine a target information resource and its display form information according to an initial information resource of at least one of the sub-screens and the state of each of the sub-screens, wherein when at least one of the sub-screens is focused on, the target information resource is the initial information resource of the sub-screen that is focused on;
[0007] a processing module configured to perform adaptive processing on the target information resource according to the display form information to form a to-be-displayed information resource;
[0008] an output module configured to send the to-be-displayed information resource to the display panel for display.
[0009] In some embodiments, the state acquisition module is specifically configured to:
[0010] receive monitoring information of each of the sub-screens, the monitoring information of the sub-screen including image information in a preset area in front of the sub-screen;
[0011] determine whether at least one visitor stays in the preset area in front of the sub-screen for more than a first preset time length according to the monitoring information of each of the sub-screens;
[0012] if yes, determine that the state of the sub-screen is a focused state;
[0013] otherwise, determine that the state of the sub-screen is an un-focused state.
[0014] In some embodiments, the display form information of the target information resource comprises:
[0015] a stretching coefficient of the target information resource of each concerned sub-screen, and a target display position of the stretched information resource of each concerned sub-screen on the display panel.
[0016] In some embodiments, the processing module specifically comprises:
[0017] a cache unit;
[0018] a stretching unit configured to perform stretching processing on the target information resource according to the stretching coefficient, to generate a stretched information resource;
[0019] a write control unit configured to write the stretched information resource of the concerned sub-screen into the cache unit according to the target display position, to generate a to-be-displayed information resource stored in the cache unit;
[0020] a read control unit configured to read the to-be-displayed information resource and send it to the output module.
[0021] In some embodiments, the display panel comprises N sub-screens arranged in sequence along a first direction, N being an integer greater than 1.
[0022] when the concerned sub-screen is one and the target information resource comprises a plurality of sub-resources,
[0023] the stretching unit is specifically configured to perform stretching processing on the plurality of sub-resources respectively according to a first stretching coefficient, to generate stretched sub-resources;
[0024] the write control unit is specifically configured to determine a write sequence according to the target display position, write the plurality of stretched sub-resources into the cache unit according to the write sequence, to generate the to-be-displayed information resource, the to-be-displayed information resource comprising the plurality of stretched sub-resources which are displayed on the display panel.
[0025] In some embodiments, the display panel comprises a plurality of first regions, and the plurality of first regions display the plurality of stretched sub-resources in turn.
[0026] In some embodiments, the display panel comprises N sub-screens arranged in sequence along a first direction, N being an integer greater than 1.
[0027] when the concerned sub-screen is I and each target information resource comprises m sub-resources, m and I are both integers, and 1 the display panel is divided into I regions,
[0028] The stretching unit is specifically configured to perform stretching processing on the m sub-resources respectively according to a second stretching coefficient to generate stretched sub-resources, and the second stretching coefficient is N / I.
[0029] The writing control unit is specifically configured to determine a writing sequence according to the target display position, and write the m stretched sub-resources corresponding to each concerned sub-screen into the cache unit according to the writing sequence to generate the information resource to be displayed, and the information resource to be displayed includes the m stretched sub-resources corresponding to each concerned sub-screen, and the m stretched sub-resources corresponding to the ith concerned sub-screen are displayed in the ith region of the display panel cyclically, i is an integer, and 1≤i≤I.
[0030] In some embodiments, the display panel includes N sub-screens arranged in sequence along a first direction, and N is an integer greater than 1.
[0031] When the concerned sub-screen is 0 or N, the initial information resource of each sub-screen includes m sub-resources, m is an integer, and 1≤m≤N,
[0032] The stretching unit is specifically configured to perform stretching processing on the m sub-resources respectively according to a third stretching coefficient to generate stretched sub-resources, and the third stretching coefficient is 1.
[0033] The writing control unit is specifically configured to determine a writing sequence according to the target display position, and write the m stretched sub-resources corresponding to each sub-screen into the cache unit according to the writing sequence to generate the information resource to be displayed, and the information resource to be displayed includes the m stretched sub-resources corresponding to each sub-screen, and the m stretched sub-resources corresponding to the nth sub-screen are displayed in the nth sub-screen cyclically, n is an integer, and 1≤n≤N.
[0034] In some embodiments, the device further includes:
[0035] The communication module is configured to be connected to a server in communication to obtain the initial information resource corresponding to each sub-screen.
[0036] The storage module is configured to store the initial information resource.
[0037] In a second aspect, the embodiments of the present disclosure provide an information delivery method for delivering information on a display panel, and the display panel includes a plurality of sub-screens located in different regions, and the information delivery method includes:
[0038] acquire a state of each of the sub-screens, wherein the state of the sub-screens indicates whether the sub-screens are focused on;
[0039] determine target information resources and display form information of the target information resources according to the initial information resources of at least one of the sub-screens and the state of each of the sub-screens, wherein the target information resources include initial information resources of each of the sub-screens that are focused on when at least one of the sub-screens is focused on;
[0040] perform adaptive processing on the target information resources according to the display form information to form to-be-displayed information resources;
[0041] send the to-be-displayed information resources to the display panel for display.
[0042] In some embodiments, the acquiring of the state of each of the sub-screens includes:
[0043] receiving monitoring information of each of the sub-screens, wherein the monitoring information of the sub-screens includes image information in a preset area in front of the sub-screens;
[0044] determining whether at least one visitor stays in the preset area in front of the sub-screens for more than a first preset time length according to the monitoring information of each of the sub-screens;
[0045] if yes, determining that the state of the sub-screens is a focused state;
[0046] otherwise, determining that the state of the sub-screens is an unfocused state.
[0047] In some embodiments, the display form information of the target information resources includes:
[0048] a stretching coefficient of the target information resources of each of the focused sub-screens, and a target display position of the stretched information resources of each of the focused sub-screens on the display panel.
[0049] In some embodiments, the performing of the adaptive processing on the target information resources according to the display form information to form the to-be-displayed information resources includes:
[0050] performing stretching processing on the target information resources according to the stretching coefficient to generate stretched information resources;
[0051] generating the to-be-displayed information resources according to the target display position and the stretched information resources.
[0052] In some embodiments, the display panel includes N sub-screens arranged in a first direction in sequence, and N is an integer greater than 1.
[0053] When the sub-screen of interest is one, and the target information resource includes multiple sub-resources,
[0054] According to the stretching coefficient, the initial information resource of the sub-screen of interest is stretched to generate a stretched information resource, including:
[0055] According to the first stretching coefficient, the multiple sub-resources are respectively stretched to generate stretched sub-resources;
[0056] According to the target display position and the stretched information resource, the information resource to be displayed is generated, including:
[0057] The multiple stretched sub-resources are arranged according to the target display position to generate the information resource to be displayed, and the multiple stretched sub-resources are displayed on the display panel.
[0058] In some embodiments, the display panel includes multiple first areas, and the multiple first areas display the multiple stretched sub-resources in turn.
[0059] In some embodiments, the display panel includes N sub-screens arranged in a first direction in sequence, and N is an integer greater than 1.
[0060] When the sub-screen of interest is I, each target information resource includes m sub-resources, m and I are integers, and 1
[0061] According to the stretching coefficient, the initial information resource of the sub-screen of interest is stretched to generate a stretched information resource, including:
[0062] According to the second stretching coefficient, the m sub-resources are respectively stretched to generate stretched sub-resources, and the second stretching coefficient is N / I.
[0063] According to the target display position and the stretched information resource, the information resource to be displayed is generated, including:
[0064] The m stretched sub-resources corresponding to each sub-screen of interest are arranged according to the target display position to generate the information resource to be displayed, and the information resource to be displayed includes the m stretched sub-resources corresponding to each sub-screen of interest, wherein the m stretched sub-resources corresponding to the i-th sub-screen of interest are cyclically displayed in the i-th area of the display panel, i is an integer, and 1≤i≤I.
[0065] In some embodiments, the display panel includes N sub-screens arranged in a first direction in sequence, and N is an integer greater than 1.
[0066] when the sub-screen of interest is 0 or N, each target information resource includes m sub-resources, m is an integer, and 1≤m≤N,
[0067] According to the stretching coefficient, the initial information resource of each sub-screen is stretched to generate a stretched information resource, including:
[0068] According to the third stretching coefficient, the m sub-resources are stretched respectively to generate stretched sub-resources, and the third stretching coefficient is 1;
[0069] According to the target display position and the stretched information resource, the information resource to be displayed is generated, including:
[0070] The m stretched sub-resources corresponding to each sub-screen are arranged according to the target display position to generate the information resource to be displayed, and the information resource to be displayed includes m stretched sub-resources corresponding to each sub-screen, wherein the m stretched sub-resources corresponding to each sub-screen are displayed in the nth sub-screen in a loop, n is an integer, and 1≤n≤N.
[0071] In some embodiments, the method further includes:
[0072] In communication with the server to obtain the initial information resource corresponding to each sub-screen;
[0073] Store the initial information resource.
[0074] In a third aspect, the embodiments of the present disclosure provide an information delivery device, wherein the device includes a processor and a memory storing computer program instructions; the processor reads and executes the computer program instructions to realize the information delivery method of the second aspect.
[0075] In a fourth aspect, the embodiments of the present disclosure provide an information delivery device, including the information delivery device of the first aspect or the third aspect and a display panel. BRIEF DESCRIPTION OF DRAWINGS
[0076] The accompanying drawings are used to provide a further understanding of the present disclosure and constitute a part of the specification, and together with the following detailed description, serve to explain the present disclosure, but do not constitute a limitation on the present disclosure. In the drawings:
[0077] Figure 1 A structural schematic diagram of an information delivery device provided by the embodiments of the present disclosure.
[0078] Figure 2 A structural schematic diagram of a processing module provided by the embodiments of the present disclosure.
[0079] Figure 3 A schematic flow chart of an information delivery method provided by an embodiment of the present disclosure.
[0080] Figure 4 A schematic flow chart of another information delivery method provided by an embodiment of the present disclosure.
[0081] Figure 5 A planar schematic view of a display panel provided by an embodiment of the present disclosure.
[0082] Figure 6 A structural schematic view of another information delivery device provided by an embodiment of the present disclosure.
[0083] Figure 7 A structural schematic view of an information delivery device provided by an embodiment of the present disclosure. DETAILED DESCRIPTION
[0084] The specific embodiments of the present disclosure will be described below in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present disclosure, and are not intended to limit the present disclosure.
[0085] To make the objectives, technical solutions and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be described clearly and completely below with reference to the accompanying drawings of the embodiments of the present disclosure. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, rather than all the embodiments of the present disclosure. Based on the described embodiments of the present disclosure, any other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present disclosure.
[0086] Unless otherwise defined, the technical terms or scientific terms used in the embodiments of the present disclosure should be understood as the common meanings thereof by those skilled in the art to which the present disclosure belongs. The terms “first”, “second” and similar terms used in the present disclosure do not represent any order, quantity or importance, but are only used to distinguish different components. Similarly, the terms “include” or “contain” and similar terms mean that the elements or objects before the terms encompass the elements or objects listed after the terms and their equivalents, without excluding other elements or objects. The terms “connect” or “connected” and similar terms are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. The terms “up”, “down”, “left”, “right” and the like are only used to represent relative positional relationships, and when the absolute positions of the described objects are changed, the relative positional relationships can also be changed accordingly.
[0087] In the field of video multimedia information, the application of information delivery devices to display information resources is an emerging and important channel for information dissemination. For example, information delivery devices can be distributed in public places such as high-end buildings, photo studios, hotels, shopping malls, chain stores, banks, train stations, airports, subways, buses, and taxis, displaying a wealth of information resources, which may include advertising resources. Additionally, information delivery devices can also be installed in museums or other public places to display information about museum exhibits.
[0088] However, in related technologies, the information delivery device does not monitor the device's environmental information in real time to form a feedback mechanism for the degree of interest of visitors in the delivered information resources. Therefore, it is impossible to achieve accurate delivery of information resources.
[0089] To address at least one of the aforementioned technical problems, this disclosure provides an information delivery device for achieving precise delivery of information resources.
[0090] Figure 1 This is a schematic diagram of the structure of an information delivery device provided in an embodiment of this disclosure, as shown below. Figure 1 As shown, the information projection device is used to project information onto a display panel, which includes multiple sub-screens located in different areas. The information projection device includes a status acquisition module 10, a control module 20, a processing module 30, and an output module 40.
[0091] The status acquisition module 10 is configured to acquire the status of each sub-screen; wherein, the status of the sub-screen indicates whether the sub-screen is being monitored.
[0092] By obtaining information on whether each sub-screen is being viewed, we can get feedback on visitors' interest in the information resources displayed on each sub-screen, and thus deliver information to visitors more accurately.
[0093] The control module 20 is configured to determine the target information resource and its display format information based on the initial information resources of at least one sub-screen and the state of each sub-screen; wherein, when at least one sub-screen is followed, the initial information resource of each followed sub-screen is used as the target information resource. For ease of description, the followed sub-screen will be referred to as the target sub-screen in the following text.
[0094] The initial information resource of the sub-screen refers to an information resource allocated by an information delivery source (for example, a server end) to the sub-screen. The display form information of the target information resource is used to indicate a mode or state in which the target information resource is presented on the display panel. The display form information of the target information resource can include a stretching coefficient of the target information resource of each target sub-screen, and a target display position of the information resource of each target sub-screen after stretching on the display panel. That is, the target information resource of the target sub-screen needs to be adaptively adjusted to highlight the target information resource on the display panel and achieve a better promotion effect. The initial information resource of the sub-screen that is not focused on can no longer be displayed.
[0095] The stretching coefficient and the target display position in the display form information will be specifically described in the following embodiments, and will not be described here in detail.
[0096] It should be noted that, for each sub-screen, the initial information resource can include one sub-resource or multiple content strongly related sub-resources, and the information resource can be displayed in the form of an image or a video, which is not limited in the embodiments of the present disclosure. For example, each sub-resource can be an image, or each sub-resource can be a video.
[0097] The processing module 30 is configured to perform adaptive processing on the target information resource according to the display form information to form a to-be-displayed information resource.
[0098] The output module 40 is configured to send the to-be-displayed information resource to the display panel for display.
[0099] The information delivery device provided by the embodiments of the present disclosure determines whether each sub-screen in the display panel is focused on by a visitor according to the state of each sub-screen, obtains the degree of interest of the information resource delivered by the visitor to each sub-screen, and adaptively adjusts the target information resource of the target sub-screen to maximize the display of the information resource interested by the visitor, thereby realizing accurate delivery of the information resource and improving the promotion effect of the information resource.
[0100] In some embodiments, as shown in Figure 1 The information delivery device further includes a communication module 50 and a storage module 60.
[0101] The communication module 50 is configured to be in communication connection with a server to obtain the initial information resource corresponding to each sub-screen, and the storage module 60 is configured to store the initial information resource.
[0102] In some embodiments, the state acquisition module 10 is specifically configured to:
[0103] The monitoring information of each sub-screen includes image information in a preset area in front of the sub-screen; and whether at least one visitor stays in the preset area in front of the sub-screen for more than a first preset time length is determined according to the monitoring information of each sub-screen. If yes, it is determined that the state of the sub-screen is an attention state, and the sub-screen is a target sub-screen; otherwise, it is determined that the state of the sub-screen is an unattended state.
[0104] Specifically, an image acquisition device can be installed at a preset position of each sub-screen to determine whether a visitor exists in the preset area in front of the sub-screen, and to determine whether the sub-screen is in an attention state. The acquisition area of the image acquisition device is the preset area in front of each sub-screen, which can be an area within 2 m or within 3 m in front of the sub-screen. The preset area can be flexibly set by adjusting the image acquisition device. When one visitor appears in the preset area in front of the sub-screen and stays for a preset time length, it indicates that the visitor is interested in the information resource displayed by the sub-screen. At this time, the sub-screen is determined as a target sub-screen, and the initial information resource of the sub-screen is used as a target information resource. Meanwhile, the image acquisition device tracks the visitor until the visitor leaves the preset area in front of the sub-screen.
[0105] In one example, for one of the sub-screens, the image acquisition device acquires that a visitor A appears in the preset area in front of the sub-screen. When the visitor A stays in the preset area for more than a first preset time length, it is determined that the sub-screen is in an attention state. Before the visitor A leaves the preset area, a visitor B enters the preset area and also stays for more than the first preset time length. At this time, the sub-screen is still in the attention state until the visitor A and the visitor B both leave the preset area. In addition, if the visitor A leaves but the visitor B still stays, at this time, a visitor C enters the preset area. When the stay time of the visitor C is more than the first preset time length, whether the visitor B leaves or not has no effect on the state of the sub-screen. That is, whether the sub-screen is in an attention state has nothing to do with the number of visitors in the preset area of the sub-screen. As long as the stay time of one visitor is more than the first preset time length, the sub-screen is in the attention state. Whether the visitor who stays for more than the first preset time length is one or more has no effect on the state of the sub-screen.
[0106] As can be known from the above example, the image acquisition device needs to track each visitor who enters the preset area in front of the sub-screen. The image acquisition device can use face recognition technology or human posture tracking technology. In addition, the image acquisition device can be a camera, or a mobile phone, a tablet computer or other terminal device with a photographing function and a communication function. The embodiments of the present disclosure do not make any limitation on this.
[0107] In one example, all the image acquisition devices of the sub-screens are in communication connection with the state acquisition module 10, that is, the state acquisition module 10 can acquire the monitoring information of all the image acquisition devices 202.
[0108] In some embodiments, the first preset time length can be 5s, 10s, 15s, 30s, etc., and the present disclosure does not limit this.
[0109] Figure 2 The structural schematic diagram of the processing module provided by the embodiments of the present disclosure is shown in some embodiments, as shown in Figure 2 The processing module 30 specifically includes a stretching unit 301, a write control unit 302, a cache unit 303, and a read control unit 304.
[0110] The stretching unit 301 is connected with the storage module 60 and the control module 20, and is configured to acquire the initial information resource (i.e., the target information resource) of the target sub-screen from the storage module 60 according to the stretching coefficient, and perform stretching processing on the target information resource to generate the stretched information resource.
[0111] It should be understood that, since the target sub-screen is the sub-screen to be concerned, that is, the target sub-screen can be one or multiple, and it is not the entire number of sub-screens. At this time, the target information resource is adapted to the target sub-screen, and at this time, it needs to be displayed on the entire display panel, so the target information resource needs to be stretched.
[0112] The write control unit 302 is configured to write the stretched information resource of the target sub-screen into the cache unit 303 according to the target display position, to generate the to-be-displayed information resource stored in the cache unit 303.
[0113] It should be understood that the target information resource can include one sub-resource or multiple sub-resources, and when it includes multiple sub-resources, the layout of the multiple sub-resources needs to be set when they are displayed on the display panel. Therefore, the write control unit 302 is set to write the multiple sub-resources into the stretched information resource according to the target display position, to be cached in the cache unit 303, to form the to-be-displayed information resource.
[0114] The read control unit 304 is configured to read the to-be-displayed information resource from the cache unit 303 and send it to the output module 40.
[0115] In the information delivery device provided by the embodiments of the present disclosure, when the number of target sub-screens is different, the display form of the target information resource on the display panel is also different. The delivery strategy of the information delivery device when the number of target sub-screens is different is specifically described below in combination with specific embodiments.
[0116] The information putting device provided by the embodiments of the present disclosure is used for putting information on a display panel, wherein the display panel comprises N sub-screens arranged in sequence along a first direction, and N is an integer greater than 1.
[0117] Embodiment one,
[0118] When no sub-screen is concerned, that is, there is no target sub-screen, the initial information resource of each sub-screen can comprise m sub-resources, m is an integer, and 1≤m≤N.
[0119] The stretching unit 301 is specifically configured to perform stretching processing on the m sub-resources respectively according to a third stretching coefficient to generate stretched sub-resources, and the third stretching coefficient is 1.
[0120] It should be understood that when there is no target sub-screen, each sub-screen can directly perform display on its initial information resource, at this time, the information resource does not need to be stretched, and therefore the third stretching coefficient is set to 1, which can be adapted to the display panel.
[0121] The writing control unit 302 is specifically configured to determine a writing sequence according to the target display position, and write the m stretched sub-resources corresponding to each sub-screen into the cache unit 303 according to the writing sequence to generate a to-be-displayed information resource, wherein the to-be-displayed information resource comprises the m stretched sub-resources corresponding to each sub-screen, and the m stretched sub-resources corresponding to the nth sub-screen are cyclically displayed in the nth sub-screen, n is an integer, and 1≤n≤N.
[0122] It should be noted that for any one sub-screen, the display order of the m sub-resources in a cycle is pre-configured when the m sub-resources are cyclically displayed in the corresponding display area of the display panel, and the display order can be flexibly adjusted, and in addition, the display time of the m sub-resources can be the same or different, and the embodiments of the present disclosure do not limit this.
[0123] Embodiment two,
[0124] When the target sub-screen is N, that is, all sub-screens are concerned, at this time, it is also necessary to display the initial information resource of all sub-screens on the display panel, and therefore each sub-screen can directly display its initial information resource.
[0125] That is, for the case that the state of all sub-screens of the display panel is the concerned state, and for the case that the state of all sub-screens is the un-concerned state, the information putting device has the same putting strategy for the information resource. Therefore, for the case that the target sub-screen is N, no longer be described.
[0126] Embodiment three,
[0127] When the target sub-screen is one and the target information resource includes multiple sub-resources, the stretching unit 301 is specifically configured to respectively perform stretching processing on the multiple sub-resources according to a first stretching coefficient to generate stretched sub-resources.
[0128] The first stretching coefficient is a preconfigured parameter. The multiple sub-resources are stretched according to the first stretching system to highlight the resource on the display panel. The first stretching coefficient can be 1.3 or 1.5 or 2, as long as it does not exceed the display area of the display panel.
[0129] The writing control unit 302 is specifically configured to determine a writing order according to the target display position, and write the multiple stretched sub-resources into the cache unit 303 according to the writing order to generate a to-be-displayed information resource. The to-be-displayed information resource includes the multiple stretched sub-resources and is displayed on the display panel.
[0130] It should be noted that in some embodiments, when the number of the multiple stretched sub-resources is small, the multiple stretched sub-resources can be displayed on the display panel in a tiled manner, that is, the multiple stretched sub-resources are displayed in the same display screen. For example, the target information resource of the target sub-screen can include m sub-resources. At this time, the display panel can be divided into m display areas with equal areas. After the m sub-resources are stretched, the m sub-resources can be correspondingly displayed in the m display areas.
[0131] In other embodiments, when the number of the multiple stretched sub-resources is large or the stretching coefficient is large, the multiple stretched sub-resources can be displayed on the display panel in turn. For example, the target information resource of the target sub-screen can include m sub-resources. After the m sub-resources are stretched, the m stretched sub-resources can be displayed on the display panel in turn. That is, the display form of the multiple stretched sub-resources on the display panel is not limited in the embodiments of the present disclosure.
[0132] In yet other embodiments, the display panel includes multiple first areas, and the multiple first areas display the multiple stretched sub-resources in turn. The number of the stretched sub-resources displayed in each first area is not limited in the embodiments of the present disclosure.
[0133] When the target sub-screen is one, that is, only one sub-screen is focused, the target information resource of the sub-screen needs to be displayed on the display panel. At the same time, whether the initial target information resource of other sub-screens is displayed on the display panel is not limited in the embodiments of the present disclosure.
[0134] In addition, since the plurality of stretched sub-resources need to be displayed on the display panel in a certain order, the writing control unit 302 determines a writing order according to the target display position after display, so as to write into the cache unit 303 in the order, so that the plurality of sub-resources are arranged according to the target display position, and the information resource to be displayed is generated.
[0135] Embodiment three,
[0136] When the target sub-screen is I, each target information resource includes m sub-resources, m and I are integers, and 1
[0137] The stretching unit 301 is specifically configured to perform stretching processing on the m sub-resources respectively according to a second stretching coefficient, and generate stretched sub-resources, and the second stretching coefficient is N / I.
[0138] The writing control unit 302 is specifically configured to determine a writing order according to the target display position, write the m stretched sub-resources corresponding to each target sub-screen into the cache unit 303 in the writing order, so as to generate the information resource to be displayed, and the information resource to be displayed includes the m stretched sub-resources corresponding to each target sub-screen, wherein the m stretched sub-resources corresponding to the i-th target sub-screen are displayed in the i-th area of the display panel in a cycle, and i is an integer, and 1≤i≤I.
[0139] It should be understood that when the number of target sub-screens is greater than 1 and less than N, that is, a part of the sub-screens is concerned, at this time, the display area of the display panel is divided into I parts, and the information resource corresponding to the i-th target sub-screen is displayed in the i-th area of the display panel in a cycle, and i is an integer, and 1≤i≤I. Therefore, the target information resource of any target sub-screen before stretching is adapted to one sub-screen, and the resolution is 1 / N of the resolution of the display panel, and after stretching, it needs to be adapted to a display panel with a size of 1 / I. Therefore, the second stretching coefficient is N / I.
[0140] In addition, since each target sub-screen can include m sub-resources, and the m stretched sub-resources of each target sub-screen need to be displayed on the display panel in a certain order, the writing control unit 302 determines a writing order according to the target display position after display, so as to write into the cache unit 303 in the order, so that the m sub-resources are arranged according to the target display position, and the information resource to be displayed is generated.
[0141] It also needs to be explained that, in the information putting device provided by the embodiments of the present disclosure, the state acquisition module 10 monitors the state of each sub-screen on the display panel in real time, that is, the state of each sub-screen changes with the flow of visitors at any time, and the state acquisition module 10 acquires the change in real time, and then the control module 20 controls the processing module 30 to adjust the display form of the information resource in real time according to the change of the number of target sub-screens. Thus, the information resource that the visitors are interested in is maximally displayed, and the accurate putting of the information resource is realized.
[0142] Figure 3 The schematic flowchart of the information putting method provided by the embodiments of the present disclosure is shown in FIG. 2, and the information putting method is used for putting information on a display panel, and the display panel includes a plurality of sub-screens located in different areas. The information putting method includes the following steps. Figure 3
[0143] In step S1, the state of each sub-screen is acquired, and the state of the sub-screen indicates whether the sub-screen is focused.
[0144] In step S2, target information resource and its display form information are determined according to the initial information resource of at least one sub-screen and the state of each sub-screen. When at least one sub-screen is focused, the target information resource includes the initial information resource of each focused sub-screen.
[0145] The display form information of the target information resource includes the stretching coefficient of the target information resource of each target sub-screen, and the target display position of the stretched information resource of each target sub-screen on the display panel, and the above-mentioned target sub-screen is a focused sub-screen.
[0146] In step S3, the target information resource is adaptively processed according to the display form information to form a to-be-displayed information resource.
[0147] In step S4, the to-be-displayed information resource is sent to the display panel for display.
[0148] The information putting method provided by the embodiments of the present disclosure judges whether each sub-screen in the display panel is focused by the visitors according to the state of each sub-screen, to acquire the degree of interest of the information resource put by the visitors for each sub-screen, and then adaptively adjusts the target information resource of the target sub-screen, to maximally display the information resource that the visitors are interested in, and realizes the accurate putting of the information resource.
[0149] It should be understood that the above-mentioned display panel including a plurality of sub-screens located in different areas specifically means that the display areas of the plurality of sub-screens on the display panel are different, which can be a plurality of sub-screens connected with each other, or a plurality of sub-screens spaced from each other, and the area of each sub-screen can be equal or not equal, and the embodiments of the present disclosure do not limit this.
[0150] Figure 4 Another schematic flowchart of the information delivery method provided by the embodiments of the present disclosure is shown in FIG. 3. In some embodiments, the information delivery method can further include, before step S2, the steps of: Figure 4
[0151] Step S15, communicating with the server to obtain initial information resources corresponding to each sub-screen; and storing the initial information resources.
[0152] As shown in FIG. 2, the information delivery method includes the steps S1, S15, S2-S4. In some embodiments, in the information delivery method shown in FIG. 2, step S1 can specifically include the steps of: Figure 4 Figure 4
[0153] Step S11, receiving monitoring information of each sub-screen, the monitoring information of the sub-screen including image information in a preset area in front of the sub-screen.
[0154] Step S12, determining whether at least one visitor stays in the preset area in front of the sub-screen for more than a first preset time length according to the monitoring information of each sub-screen; if yes, executing step S13, otherwise, executing step S14.
[0155] Step S13, determining that the state of the sub-screen is an attention state.
[0156] Step S14, determining that the state of the sub-screen is an unattended state.
[0157] Since the state of each sub-screen changes with the flow of visitors, the state acquisition module 10 acquires the change in real time, therefore, whether there is an attended sub-screen at this time, and whether the attended sub-screen is one or more, step S12 returns to step S11 to monitor the state change of each sub-screen in real time.
[0158] In some embodiments, as shown in FIG. 2, step S3 can specifically include the steps of: Figure 4
[0159] Step S31, performing stretching processing on the target information resources according to the stretching coefficient to generate stretched information resources.
[0160] It should be understood that since the target sub-screen is an attended sub-screen, that is, the target sub-screen can be one or more, it is not all the number of sub-screens. At this time, the target information resources are adapted to the target sub-screen, at this time, it is needed to be displayed on the entire display panel, therefore, it is needed to stretch the target information resources.
[0161] At step S32, the information resource to be displayed is generated according to the target display position and the stretched information resource.
[0162] It should be understood that the target information resource can include one sub-resource or multiple sub-resources. When the target information resource includes multiple sub-resources, the layout of the multiple sub-resources needs to be set when the multiple sub-resources are displayed on the display panel. Therefore, the setting and writing control unit 302 writes the multiple sub-resources into the stretched information resource according to the target display position, so as to perform frame buffering in the cache unit 303, and form the information resource to be displayed.
[0163] In some embodiments, the display panel includes N sub-screens arranged in sequence along a first direction, and N is an integer greater than 1. When the target sub-screen is one, and the target information resource includes multiple sub-resources, step S31 can specifically include: performing stretching processing on the multiple sub-resources according to a first stretching coefficient, to generate stretched sub-resources.
[0164] The first stretching coefficient is a pre-configured parameter. The multiple sub-resources are stretched according to the first stretching system, so as to highlight the resource on the display panel. The first stretching coefficient can be 1.3, 1.5, 2, or the like, as long as the display area of the display panel is not exceeded.
[0165] Step S32 can specifically include: arranging the multiple stretched sub-resources according to the target display position, to generate the information resource to be displayed, and the multiple stretched sub-resources are displayed on the display panel.
[0166] It should be noted that in some embodiments, when the number of the multiple stretched sub-resources is small, the multiple stretched sub-resources can be displayed on the display panel in a tiled manner, that is, the multiple stretched sub-resources are displayed in the same display screen. For example, the target information resource of the target sub-screen can include m sub-resources. After the stretching processing, the m sub-resources can be correspondingly displayed in m display areas of the display panel.
[0167] In other embodiments, when the number of the multiple stretched sub-resources is large, or the stretching coefficient is large, the multiple stretched sub-resources can be displayed on the display panel in a round-robin manner. For example, the target information resource of the target sub-screen can include m sub-resources. After the stretching processing, the m stretched sub-resources can be displayed on the display panel in a round-robin manner. That is, the display form of the multiple stretched sub-resources on the display panel is not limited in the embodiments of the present disclosure.
[0168] In some embodiments, the display panel includes a plurality of first regions, and the plurality of first regions displays the plurality of stretched sub-resources in turn.
[0169] When the target sub-screen is one, i.e., only one sub-screen is focused, the target information resource of the sub-screen needs to be displayed on the display panel, and meanwhile, whether the initial target information resource of other sub-screens is displayed on the display panel is not limited in the embodiments of the present disclosure.
[0170] Figure 5 A planar schematic diagram of a display panel is provided in the embodiments of the present disclosure. In one example, as shown in FIG. 1, Figure 5 The display panel includes three sub-screens (i.e., N=3) arranged in the first direction in turn, which are a first sub-screen a1, a second sub-screen a2, and a third sub-screen a3, and the initial information resource of the first sub-screen a1 includes two sub-resources p1 and p2, the initial information resource of the second sub-screen a2 includes two sub-resources p3 and p4, and the initial information resource of the third sub-screen a3 includes two sub-resources p5 and p6 (i.e., m=2). The display panel is divided into a first region b1 and a second region b2, wherein the first region b1 includes the left half of the first sub-screen a1 and the second sub-screen a2, the second region b2 includes the right half of the third sub-screen a3 and the second sub-screen a2, and the areas of the first region b1 and the second region b2 can be equal.
[0171] The resolution of the display panel can be 3840x2160bpi, and the resolution of each sub-screen can be 1280x2160bpi, and the resolution of the first region and the second region can be 1920x2160bpi.
[0172] For the specific example shown in FIG. 1, assuming that the target sub-screen is the first sub-screen a1, the execution process of the steps S31 and S32 can be regarded as: stretching the two sub-resources p1 and p2 of the first sub-screen a1 by 1.5 times; and displaying the stretched information resources in the first region and the second region, respectively. Figure 5
[0173] In some embodiments, the display panel includes N sub-screens arranged in the first direction in turn, N is an integer greater than 1; when the target sub-screen is I, each target information resource includes m sub-resources, m and I are integers, and 1
[0174] The step S31 can specifically include: performing stretching processing on the m sub-resources respectively according to a second stretching coefficient to generate stretched sub-resources, and the second stretching coefficient is N / i.
[0175] Step S32 may specifically include: arranging the m stretched sub-resources corresponding to each target sub-screen according to the target display position to generate information resources to be displayed. The information resources to be displayed include the m stretched sub-resources corresponding to each target sub-screen, wherein the m stretched sub-resources corresponding to the i-th target sub-screen are displayed cyclically in the i-th area of the display panel, where i is an integer, 1≤i≤I.
[0176] for Figure 5 In the specific example shown, assuming the target sub-screens are the first sub-screen a1 and the second sub-screen a2 (i.e., I=2), the execution process of the above steps S31 and S32 can be regarded as: stretching the two sub-resources p1 and p2 of the first sub-screen and the two sub-resources p3 and p4 of the second sub-screen by 1.5 times; and displaying the stretched information resources p1' and p2' in a loop in the first area, and displaying the stretched information resources p3' and p4' in a loop in the second area.
[0177] In some other embodiments, the display panel includes N sub-screens arranged sequentially along a first direction, where N is an integer greater than 1; when there are 0 or N target sub-screens, and each target information resource includes m sub-resources, where m is an integer and 1≤m≤N, step S31 may specifically include: stretching the m sub-resources according to a third stretching coefficient to generate stretched sub-resources, where the third stretching coefficient is 1.
[0178] Step S32 may specifically include: arranging the m stretched sub-resources corresponding to each target sub-screen according to the target display position to generate information resources to be displayed. The information resources to be displayed include the m stretched sub-resources corresponding to each target sub-screen, wherein the m stretched sub-resources corresponding to the nth target sub-screen are displayed cyclically, where n is an integer and 1≤n≤N.
[0179] for Figure 5 In the specific example shown, assuming there are 0 or 3 target sub-screens, the execution process of the above steps S31 and S32 can be regarded as: displaying information resources p1 and p2 in a loop on the display area corresponding to the first sub-screen a1; displaying information resources p3 and p4 in a loop on the display area corresponding to the second sub-screen a2; and displaying information resources p5 and p6 in a loop on the display area corresponding to the third sub-screen a3.
[0180] It should be noted that when the information resources are displayed in a loop on the display panel in the above examples, the loop period can be flexibly set, such as 3s, 5s, 10s, etc., and this embodiment does not limit it.
[0181] Figure 6 This is a schematic diagram of another information delivery device provided in the embodiments of this disclosure, as shown below.Figure 6 As shown, the information delivery device 100 includes a memory 101 and a processor 102. The memory 101 stores a computer program. When the computer program is executed by the processor 102, the information delivery method described above is implemented, for example, steps S1 to S4 in the method are implemented. Figure 3
[0182] The information delivery device 100 can be a desktop computer, a notebook computer, a palm computer, a cloud server, or other computing devices. The information delivery device 100 can include, but is not limited to, the processor 102 and the memory 101. Those skilled in the art can understand that the information delivery device 100 is only an example and does not constitute a limitation on the information delivery device 100, and can include more or fewer components than shown, or combine certain components, or include different components, for example, the information delivery device 100 can also include an input / output device, a network access device, a bus, and the like. Figure 6
[0183] The processor 102 can be a central processing unit (CPU), and can also be other general-purpose processors, a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic device, discrete hardware component, or the like. The general-purpose processor 102 can be a microprocessor or the processor can also be any conventional processor.
[0184] The memory 101 can be an internal storage unit of the information delivery device 100, for example, a hard disk or a memory of the information delivery device 100. The memory 101 can also be an external storage device of the information delivery device 100, for example, a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, or the like. Further, the memory 101 can include both the internal storage unit and the external storage device of the information delivery device 100. The memory 101 is used to store the computer program and other programs and data required by the terminal device. The memory 101 can also be used to temporarily store data that has been output or will be output.
[0185] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above functional units and modules is exemplified, and in actual application, the above functions can be completed by different functional units and modules according to needs, that is, the internal structure of the device is divided into different functional units or modules to complete all or part of the above described functions. The functional units and modules in the embodiments can be integrated in one processing unit, or each unit can be physically present separately, or two or more units can be integrated in one unit, and the integrated unit can be realized in the form of hardware or software function unit. In addition, the specific names of each functional unit and module are only for easy distinction, and do not limit the protection scope of the present application. The specific working process of the units and modules in the above system can refer to the corresponding process in the foregoing method embodiments, and will not be repeated here.
[0186] Figure 7 A structural schematic diagram of an information delivery device provided by the embodiments of the present disclosure is shown in FIG. 1, which includes the information delivery device 100 and the display panel 200 shown in the above Figure 7 or Figure 1 or Figure 6 The information delivery device 100 includes the state acquisition module 10, the control module 20, the processing module 30, the output module 40, the communication module 50 and the storage module 60, wherein the processing module 30 includes the stretching unit 301, the write control unit 302, the cache unit 303 and the read control module 304, and the display panel 200 includes a plurality of sub-screens 201.
[0187] The output module 40 can perform data transmission with the display panel 100 according to the v-by-one protocol.
[0188] It should be noted that since the target sub-screen to be focused can be one or more, and the sub-resource in the target information resource corresponding to each target sub-screen can also be one or more, the sub-resource that needs to be stretched and read and written can be multiple, and each sub-resource needs to be displayed according to the target display position. Therefore, the stretching unit configured to stretch multiple sub-resources can include N stretching sub-units, and the read control unit configured to write the stretched multiple sub-resources into the cache unit according to the write order can also include N read control sub-units, and the write order is determined according to the target display position.
[0189] In addition, the display panel 200 further includes an image acquisition device 202 configured to monitor a preset area in front of each sub-screen 201 to determine whether each sub-screen 201 is focused.
[0190] The functions of the modules in the above delivery device are described above in the information delivery device, and will not be described again here.
[0191] It can be understood that the above embodiments are only exemplary embodiments adopted for illustrating the principles of the present disclosure, and the present disclosure is not limited thereto. Various modifications and improvements can be made by those of ordinary skill in the art without departing from the spirit and essence of the present disclosure, and these modifications and improvements are also considered to be within the protection scope of the present disclosure.
Claims
1. An information delivery device for delivering information on a display panel, the display panel comprising N sub-screens located in different areas, N being an integer greater than 1; wherein, The information delivery device comprises: a state acquisition module configured to acquire a state of each of the sub-screens; wherein the state of the sub-screens indicates whether the sub-screens are focused on; a control module configured to determine target information resources and their display form information according to initial information resources of at least one of the sub-screens and the state of each of the sub-screens; wherein when at least one of the sub-screens is focused on, the target information resources are the initial information resources of the sub-screens that are focused on; a processing module configured to perform adaptive processing on the target information resources according to the display form information to form information resources to be displayed; an output module configured to send the information resources to be displayed to the display panel for display; when the sub-screens that are focused on are one and the target information resources comprise a plurality of sub-resources, the processing module is at least configured to perform stretching processing on the plurality of sub-resources respectively according to a first stretching coefficient to generate a plurality of stretched sub-resources; the display panel comprises a plurality of first areas, and the plurality of first areas display the plurality of stretched sub-resources respectively; when the sub-screens that are focused on are I, the processing module is at least configured to perform stretching processing on the target information resources according to a second stretching coefficient to generate a stretched sub-resource; the second stretching coefficient is N / I; the display panel is divided into I areas, and 1 The display form information of the target information resources comprises a stretching coefficient of the target information resources of each of the sub-screens that are focused on and a target display position of the stretched information resources of each of the sub-screens that are focused on on the display panel; The processing module specifically comprises: a cache unit; a stretching unit configured to perform stretching processing on the target information resources according to the stretching coefficient to generate stretched information resources; a write control unit configured to write the stretched information resources of the sub-screens that are focused on into the cache unit according to the target display position to generate information resources to be displayed stored in the cache unit; and a read control unit configured to read the information resources to be displayed and send them to the output module; The stretching unit comprises N stretching sub-units, and the N stretching sub-units are arranged in one-to-one correspondence with the N sub-screens; the write control unit comprises N write control sub-units, and the N write control sub-units are arranged in one-to-one correspondence with the N sub-screens.
2. The apparatus of claim 1, wherein, The state acquisition module is specifically configured to: receive monitoring information of each of the sub-screens, wherein the monitoring information of the sub-screens comprises image information in a preset area in front of the sub-screens; determine whether at least one visitor stays in the preset area in front of the sub-screens for more than a first preset time length according to the monitoring information of each of the sub-screens; if yes, determine that the state of the sub-screens is a focused state; otherwise, determine that the state of the sub-screens is an unfocused state.
3. The apparatus of claim 1, wherein, The display panel comprises N sub-screens arranged in sequence along a first direction; When the concerned sub-screen is one, and the target information resource includes multiple sub-resources, The stretching unit is specifically configured to perform stretching processing on the multiple sub-resources respectively according to a first stretching coefficient, to generate stretched sub-resources. The write control unit is specifically configured to determine a write sequence according to the target display position, and write the multiple stretched sub-resources into the cache unit according to the write sequence, to generate the information resource to be displayed, which includes the multiple stretched sub-resources and is displayed on the display panel.
4. The apparatus of claim 1, wherein, The display panel includes N sub-screens arranged in sequence along a first direction; When the concerned sub-screen is I, and each target information resource includes m sub-resources, m and I are integers, and 1≤m≤N, the display panel is divided into I regions, The stretching unit is specifically configured to perform stretching processing on the m sub-resources respectively according to a second stretching coefficient, to generate stretched sub-resources, the second stretching coefficient being N / I. The write control unit is specifically configured to determine a write sequence according to the target display position, and write the m stretched sub-resources corresponding to each concerned sub-screen into the cache unit according to the write sequence, to generate the information resource to be displayed, which includes the m stretched sub-resources corresponding to each concerned sub-screen.
5. The apparatus of claim 1, wherein, The display panel includes N sub-screens arranged in sequence along a first direction, N being an integer greater than 1; When the concerned sub-screen is 0 or N, and the initial information resource of each sub-screen includes m sub-resources, m being an integer, and 1≤m≤N, The stretching unit is specifically configured to perform stretching processing on the m sub-resources respectively according to a third stretching coefficient, to generate stretched sub-resources, the third stretching coefficient being 1. The write control unit is specifically configured to determine a write sequence according to the target display position, and write the m stretched sub-resources corresponding to each sub-screen into the cache unit according to the write sequence, to generate the information resource to be displayed, which includes the m stretched sub-resources corresponding to each sub-screen, wherein the m stretched sub-resources corresponding to each sub-screen are cyclically displayed in the nth sub-screen, n being an integer, and 1≤n≤N.
6. The apparatus of claim 1, wherein, The device further includes: A communication module configured to be communicatively connected with a server, to acquire the initial information resource corresponding to each sub-screen; A storage module configured to store the initial information resource.
7. An information delivery method for delivering information on a display panel, the display panel comprising a plurality of sub-panels located in different areas, wherein, The information delivery method includes: Acquiring the state of each sub-screen, wherein the state of the sub-screen indicates whether the sub-screen is concerned; Determining a target information resource and its display form information according to the initial information resource of at least one sub-screen and the state of each sub-screen, wherein when at least one sub-screen is concerned, the target information resource includes the initial information resource of each concerned sub-screen; Performing adaptive processing on the target information resource according to the display form information, to form an information resource to be displayed; sending the information resource to be displayed to the display panel for display; when the sub-screen being concerned is one and the target information resource comprises a plurality of sub-resources, the adapting processing of the target information resource according to the display form information at least comprises: performing stretching processing on the plurality of sub-resources respectively according to a first stretching coefficient to generate a plurality of stretched sub-resources; the display panel comprises a plurality of first areas, and the plurality of first areas display the plurality of stretched sub-resources respectively; when the sub-screens being concerned are I, the adapting processing of the target information resource according to the display form information at least comprises: performing stretching processing on the target information resource according to a second stretching coefficient to generate a stretched sub-resource; the second stretching coefficient is N / I; the display panel is divided into I areas, and 1 the display form information of the target information resource comprises: a stretching coefficient of the target information resource of each sub-screen being concerned, and a target display position of the stretched information resource of each sub-screen being concerned on the display panel; the adapting processing of the target information resource to form the information resource to be displayed comprises: performing stretching processing on the target information resource according to the stretching coefficient to generate a stretched information resource, and generating the information resource to be displayed according to the target display position and the stretched information resource.
8. The method of claim 7, wherein, the obtaining of the state of each sub-screen comprises: receiving monitoring information of each sub-screen, wherein the monitoring information of the sub-screen comprises image information in a preset area in front of the sub-screen; determining whether at least one visitor stays in the preset area in front of the sub-screen for more than a first preset time length according to the monitoring information of each sub-screen; if yes, determining that the state of the sub-screen is a concerned state; otherwise, determining that the state of the sub-screen is an unconcerned state.
9. The method of claim 7, wherein, the display panel comprises N sub-screens arranged in sequence along a first direction; when the sub-screen being concerned is one and the target information resource comprises a plurality of sub-resources, the stretching processing on the initial information resource of the sub-screen being concerned according to the stretching coefficient to generate a stretched information resource comprises: performing stretching processing on the plurality of sub-resources respectively according to a first stretching coefficient to generate a plurality of stretched sub-resources; the generating of the information resource to be displayed according to the target display position and the stretched information resource comprises: arranging the plurality of stretched sub-resources according to the target display position to generate the information resource to be displayed, and the plurality of stretched sub-resources are displayed on the display panel.
10. The method of claim 7, wherein, the display panel comprises N sub-screens arranged in sequence along a first direction; when the sub-screens being concerned are I, each target information resource comprises m sub-resources, m and I are both integers, and 1 According to the stretching coefficient, the initial information resource of the sub-screen concerned is stretched to generate a stretched information resource, including: According to a second stretching coefficient, the m sub-resources are respectively stretched to generate stretched sub-resources, the second stretching coefficient being N / I; According to the target display position and the stretched information resource, the information resource to be displayed is generated, including: The m stretched sub-resources corresponding to each sub-screen concerned are arranged according to the target display position to generate the information resource to be displayed, the information resource to be displayed including the m stretched sub-resources corresponding to each sub-screen concerned.
11. The method of claim 7, wherein, The display panel includes N sub-screens arranged in sequence along a first direction, N being an integer greater than 1; When the sub-screen concerned is 0 or N, each target information resource includes m sub-resources, m being an integer and 1≤m≤N, According to the stretching coefficient, the initial information resource of each sub-screen is stretched to generate a stretched information resource, including: According to a third stretching coefficient, the m sub-resources are respectively stretched to generate stretched sub-resources, the third stretching coefficient being 1; According to the target display position and the stretched information resource, the information resource to be displayed is generated, including: The m stretched sub-resources corresponding to each sub-screen are arranged according to the target display position to generate the information resource to be displayed, the information resource to be displayed including the m stretched sub-resources corresponding to each sub-screen, wherein the m stretched sub-resources corresponding to the nth sub-screen are cyclically displayed in the nth sub-screen, n being an integer and 1≤n≤N.
12. The method of claim 7, wherein, The method further includes: In communication connection with a server to obtain the initial information resource corresponding to each sub-screen; The initial information resource is stored.
13. An information delivery device, wherein, The device includes a processor and a memory storing computer program instructions; the processor reads and executes the computer program instructions to implement the information delivery method of any one of claims 7-12.
14. An information delivery device, including the information delivery device and the display panel of any one of claims 1-6 and 13.
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