Power management method for sharing power bank and related product

By obtaining the remaining battery power of both the shared power bank and the user's terminal, and generating a prompt message to turn off the electronic guide function or the charging function, the problem of battery power management of shared power banks is solved, ensuring user experience and reasonable use of power.

CN120547269BActive Publication Date: 2026-04-10SOYO TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SOYO TECH DEV CO LTD
Filing Date
2025-05-22
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

How to manage the power of shared power banks reasonably to ensure user experience, especially the issue of power banks with electronic guide functions having rapid power consumption.

Method used

By using shared power banks to obtain the remaining power of both the user's and the device's terminals, a prompt message is generated to disable the electronic guide function or the charging function. Based on the power threshold and the user's terminal's power needs, power is managed reasonably to ensure its rational use.

Benefits of technology

It enables reasonable management of the shared power bank's power consumption, avoids affecting user experience, and charges according to the billing standard after the function is turned off, thus improving the rationality of power consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a power management method for a shared power bank and related products. The method is applied to a shared power bank, the shared power bank is located in a shared power bank power management system, the system further includes a user terminal, the shared power bank is connected with the user terminal, and the shared power bank has a charging function and an electronic guide function; the method comprises the following steps: acquiring a first residual power; if the first residual power is less than or equal to a first threshold, acquiring a second residual power of the user terminal; generating a first prompt information based on the first residual power and the second residual power, wherein the first prompt information is used for prompting a user to turn off the electronic guide function or the charging function of the shared power bank; acquiring a first response information for the first prompt information, wherein the first response information is used for indicating to turn off the electronic guide function or the charging function of the shared power bank; and in response to the first response information, turning off the electronic guide function or the charging function.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of shared power banks, and particularly relates to a shared power bank power management method and related products. BACKGROUND

[0002] In the tourism industry, tourists have an increasing demand for convenient information acquisition and guide services. As a new portable power solution, shared power banks not only meet the needs of users for mobile device charging, but also provide additional electronic guide services for users. Through shared power banks, users can conveniently obtain information about scenic spots, historical and cultural backgrounds, route recommendations, and the like, thereby improving the travel experience. The power consumption of power banks with electronic guide functions is faster than that of power banks with only charging functions. Therefore, how to reasonably manage the power of power banks to ensure user experience is a problem to be solved. SUMMARY

[0003] The present application provides a shared power bank power management method and related products, which reasonably manage the power of shared power banks and ensure user experience.

[0004] In a first aspect, the present application provides a shared power bank power management method. The method is applied to a shared power bank, the shared power bank is located in a shared power bank power management system, the system further includes a user terminal, the shared power bank establishes a connection with the user terminal, and the shared power bank has a charging function and an electronic guide function. The method includes:

[0005] obtaining a first remaining power;

[0006] if the first remaining power is less than or equal to a first threshold, obtaining a second remaining power of the user terminal;

[0007] generating a first prompt information based on the first remaining power and the second remaining power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank;

[0008] obtaining a first response information for the first prompt information, wherein the first response information is used to indicate to turn off the electronic guide function or the charging function of the shared power bank;

[0009] in response to the first response information, turning off the electronic guide function or the charging function.

[0010] In a second aspect, the present application provides a shared power bank. The shared power bank is located in a shared power bank power management system, the system further includes a user terminal, the shared power bank establishes a connection with the user terminal, and the shared power bank has a charging function and an electronic guide function. The shared power bank includes a transceiver unit and a processing unit.

[0011] The transceiving unit is configured to acquire a first residual power;

[0012] If the first residual power is less than or equal to a first threshold, the transceiving unit is further configured to acquire a second residual power of the user terminal;

[0013] The processing unit is configured to generate first prompt information based on the first residual power and the second residual power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank;

[0014] The processing unit is further configured to acquire first response information for the first prompt information, wherein the first response information is used to indicate that the electronic guide function or the charging function of the shared power bank is turned off;

[0015] The processing unit is further configured to turn off the electronic guide function or the charging function in response to the first response information.

[0016] In a third aspect, the present application provides a shared power bank power management method. The method is applied to a shared power bank power management system, which includes a shared power bank, a user terminal and a server. The shared power bank is connected with the user terminal, and has a charging function and an electronic guide function. The method includes:

[0017] The shared power bank acquires a first residual power;

[0018] If the first residual power is less than a first threshold, the shared power bank generates first prompt information based on the first residual power and a second residual power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank;

[0019] The shared power bank sends the first prompt information to the user terminal;

[0020] The user terminal acquires first response information in response to a confirmation operation of the user for the first prompt information;

[0021] The user terminal sends the first response information to the shared power bank.

[0022] The shared power bank turns off the electronic guide function or the charging function in response to the first response information;

[0023] The shared power bank sends second prompt information to the user terminal, wherein the second prompt information is used to prompt that the electronic guide function or the charging function of the shared power bank has been turned off;

[0024] The user terminal sends the second prompt information to the server;

[0025] The server charges according to a charging standard of turning off the electronic guide function or the charging function in response to the second prompt information.

[0026] In a fourth aspect, the present application provides a power management system for a shared power bank, the system comprising a shared power bank, a user terminal and a server, the shared power bank being connected to the user terminal, the shared power bank having a charging function and an electronic guide function;

[0027] The shared power bank is configured to acquire a first residual power;

[0028] If the first residual power is less than a first threshold, the shared power bank is further configured to generate a first prompt information based on the first residual power and a second residual power, the first prompt information being used to prompt a user to turn off the electronic guide function or the charging function of the shared power bank;

[0029] The shared power bank is further configured to send the first prompt information to the user terminal;

[0030] The user terminal is configured to acquire a first response information in response to a confirmation operation of the user on the first prompt information;

[0031] The user terminal is further configured to send the first response information to the shared power bank.

[0032] The shared power bank is further configured to turn off the electronic guide function or the charging function in response to the first response information;

[0033] The shared power bank is further configured to send a second prompt information to the user terminal, the second prompt information being used to prompt that the electronic guide function or the charging function of the shared power bank has been turned off;

[0034] The user terminal is further configured to send the second prompt information to the server;

[0035] The server is further configured to charge according to a charging standard of turning off the electronic guide function or the charging function in response to the second prompt information.

[0036] In a fifth aspect, the present application provides an electronic device, comprising a processor and a memory, the processor being connected to the memory, the memory being configured to store a computer program, and the processor being configured to execute the computer program stored in the memory, so that the electronic device executes the method of the first aspect or the third aspect.

[0037] In a sixth aspect, the present application provides a computer readable storage medium, the computer readable storage medium storing a computer program, the computer program causing a computer to execute the method of the first aspect or the third aspect.

[0038] In a seventh aspect, the present application provides a computer program product, the computer program product comprising a non-transitory computer readable storage medium storing a computer program, the computer being operable to cause the computer to execute the method of the first aspect or the third aspect.

[0039] The application is implemented, and has the following beneficial effects:

[0040] In the embodiment of the application, a shared power bank power management method is provided, which is applied to a shared power bank. The shared power bank is located in a shared power bank power management system, and the system further includes a user terminal. The shared power bank establishes a connection with the user terminal, and the connection mode can be wireless connection such as Bluetooth connection or wired connection, which is not limited in the application. The shared power bank has a charging function and an electronic guide function. Then, the shared power bank can obtain a first residual power. If the first residual power is less than or equal to a first threshold, the shared power bank obtains a second residual power of the user terminal. Then, the shared power bank generates a first prompt information based on the first residual power and the second residual power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank. Then, the shared power bank obtains first response information for the first prompt information, wherein the first response information is used to indicate to turn off the electronic guide function or the charging function of the shared power bank. Then, the shared power bank turns off the electronic guide function or the charging function in response to the first response information. That is to say, when the shared power bank detects that the first residual power is less than the first threshold, the shared power bank obtains the second residual power of the user terminal, and then generates the first prompt information for prompting the user to turn off the electronic guide function or the charging function of the shared power bank based on the first residual power and the second residual power of the user terminal, so as to prompt the user to turn off the electronic guide function or the charging function of the shared power bank, that is, to realize the reasonable management of the power of the shared power bank, and avoid affecting the user experience of the shared power bank. After turning off the electronic guide function or the charging function, the server charges according to the charging standard of turning off the electronic guide function or the charging function, which is more reasonable. BRIEF DESCRIPTION OF DRAWINGS

[0041] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can also be obtained by those skilled in the art without any creative effort.

[0042] Figure 1 A schematic diagram of a shared power bank power management system provided by the embodiment of the application;

[0043] Figure 2 A flowchart of a shared power bank power management method provided by the embodiment of the application;

[0044] Figure 3 A flowchart of generating a first prompt information based on a first residual power and a second residual power provided by the embodiment of the application;

[0045] Figure 4 An interactive schematic diagram illustrating a shared power bank power management method provided in an embodiment of this application;

[0046] Figure 5 A functional unit block diagram of a shared power bank provided in an embodiment of this application;

[0047] Figure 6 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. Detailed Implementation

[0048] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0049] The terms "first," "second," "third," and "fourth," etc., used in the specification, claims, and drawings of this application are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or apparatuses.

[0050] In this document, the term "embodiment" means that a particular feature, result, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0051] See Figure 1 , Figure 1 This is a schematic diagram of a shared power bank power management system provided in an embodiment of this application.

[0052] Figure 1 The shared power bank power management system shown includes shared power banks, user terminals, and servers. The functions of the shared power banks include charging and electronic guide functions.

[0053] The shared power bank comprises a display screen and / or at least one physical function button, the function of the physical function button is related to the closing or opening of the electronic guide function and the charging function of the shared power bank, that is, the user can perform corresponding operations through the interaction module such as the display screen or the physical function button on the shared power bank to trigger the closing or opening of the electronic guide function and the charging function, and the present application is not limited. In addition, the display screen can be a touch screen that can sense user touch operations, and then the user can perform corresponding operations through the display screen to realize the closing or opening of the electronic guide function and the charging function; if the display screen is not a touch screen, the user can perform corresponding operations in combination with at least one physical function button on the shared power bank and the content displayed by the display screen to realize the closing or opening of the electronic guide function and the charging function; it should be noted that, Figure 1 The shared power bank mainly comprises a display screen and a physical function button.

[0054] The user terminal and the shared power bank are pre-connected, and the connection mode comprises wireless connection or wired connection, for example, the shared power bank is also provided with a Bluetooth module, and the user terminal can establish a Bluetooth connection with the shared power bank through the Bluetooth module of the shared power bank, it should be noted that, Figure 1 The shared power bank and the user terminal are mainly connected by wire. The user terminal can be a tablet computer, a notebook computer, a desktop computer, a smart phone, a smart television, a desktop computer, a smart watch, a smart vehicle, and the like, and the present application is not limited. The server can be a stand-alone physical server, or a server cluster or distributed system composed of multiple physical servers, or a cloud server providing cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communication, middleware services, domain name services, security services, and big data and artificial intelligence platforms, and the like. The present application is not limited. It should be noted that the number of user terminals and shared power banks can be one or more, and the present application mainly takes one as an example for explanation and description. In addition, Figure 1 The shared power bank and the user terminal shown are only for example and are not limited.

[0055] Of course, the shared power bank can also comprise a loudspeaker, a positioning module, and the like Figure 1 (not shown), the loudspeaker can be used to play electronic guide video, audio type prompt information, and the like, and the positioning module can be used to obtain the current position of the shared power bank, and the present application is not limited.

[0056] The user can rent the shared power bank from the power bank base station, which can also be referred to as a rental station, and can communicate with the shared power bank through the contacts of the shared power bank. When renting, the user can select the functional type of the shared power bank to be rented through the user terminal, such as the functional type of the shared power bank including but not limited to the following types: (1) only supporting charging function; (2) supporting charging function and electronic guide function, which can be further divided into supporting charging function and single-language electronic guide function, supporting charging function and multi-language electronic guide function, etc. Wherein, the charging standards corresponding to each functional type are different, and the user can make corresponding selection based on demand.

[0057] When the user rents a shared power bank supporting charging function and electronic guide function, the shared power bank needs to establish a connection with the user terminal in advance during use. Then the shared power bank obtains the first remaining power; if the first remaining power is less than or equal to the first threshold, the shared power bank obtains the second remaining power of the user terminal; then the shared power bank generates a first prompt information based on the first remaining power and the second remaining power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank; then the shared power bank obtains the first response information for the first prompt information, wherein the first response information is used to indicate to turn off the electronic guide function or the charging function of the shared power bank; then the shared power bank turns off the electronic guide function or the charging function in response to the first response information.

[0058] Further, after the shared power bank turns off the electronic guide function or the charging function, the shared power bank can also send a second prompt information to the server through the user terminal, the second prompt information is used to prompt that the electronic guide function or the charging function of the shared power bank has been turned off, and then the server responds to the second prompt information according to the charging standard of turning off the electronic guide function or the charging function.

[0059] It should be noted that, Figure 1 The shared power bank, user terminal and server in the embodiments can also correspondingly perform other embodiments of the shared power bank power management method provided in the following embodiments, and can achieve the same technical effects, which will not be repeated here.

[0060] In addition, it is uniformly explained that the communication between the power bank base station and the server, the communication between the shared power bank and the user terminal, the communication between the user terminal and the server, the communication between the shared power bank and the server, etc. in the present application can include but is not limited to the following wireless communication modes: Long Range Wide Area Network (LoRA), Fast Long Range Communication (FLRC), Gaussian Frequency Shift Keying (GFSK), 4G, 5G, etc. modulation mode, the communication mode used in each scene can be set according to actual needs, and the present application is not limited.

[0061] Referring to Figure 2 , Figure 2 A flowchart of a shared power bank power management method provided by an embodiment of the present application. The method is applied to the shared power bank described above, which will not be described again here, that is, the shared power bank is taken as the execution subject to execute the shared power bank power management method. The method includes but is not limited to steps S201-S206:

[0062] S201, the shared power bank acquires a first remaining power.

[0063] In an embodiment of the present application, the temporary closing request is used to request to temporarily close the electronic guide function of the shared power bank. For example, if the display screen is a touch screen, the first operation can be that the user touches the first virtual function button on the display screen of the shared power bank to generate a temporary closing request, wherein the function corresponding to the first virtual function button is to close the electronic guide function; if the display screen is a non-touch screen, the first operation can be that the user touches one or more first entity function keys on the shared power bank to generate a temporary closing request, wherein when the user performs a touch operation on the first entity function key, the display screen of the shared power bank displays the content corresponding to the touch operation, and then the user operates according to the content displayed on the display screen until finally selects to confirm closing the electronic guide function. Alternatively, the user can also touch a target entity function key on the shared power bank to generate a temporary closing request, wherein the function corresponding to the target entity function key is also to close the electronic guide function. It should be noted that the above-mentioned trigger operation for the temporary closing request is only an example, and the present application does not limit the trigger operation of the temporary closing request.

[0064] S202, the shared power bank judges whether the first remaining power is less than or equal to a first threshold value, if yes, step S203 is executed.

[0065] S203, the shared power bank acquires a second remaining power of the user terminal.

[0066] In the embodiments of the present application, the shared power bank can obtain its first residual power in real time; if the shared power bank detects that the first residual power is less than or equal to a first threshold value, and the shared power bank establishes a connection with the user terminal, the shared power bank can obtain the second residual power of the user terminal at this time from the user terminal.

[0067] S204, the shared power bank generates first prompt information based on the first residual power and the second residual power.

[0068] In the embodiments of the present application, after obtaining the second residual power of the user terminal, the shared power bank performs comprehensive analysis based on its first residual power and the second residual power of the user terminal to generate first prompt information, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank.

[0069] For example, if the second residual power is greater than or equal to a third threshold value, the shared power bank generates first prompt information for prompting the user to turn off the charging function of the shared power bank; if the second residual power is less than the third threshold value, and the first residual power is less than a fourth threshold value, the shared power bank generates first prompt information for prompting the user to turn off the electronic guide function of the shared power bank, wherein the fourth threshold value is less than the first threshold value, that is, if the residual power of the user terminal is very small, and the power of the shared power bank is also relatively small, the electronic guide function is prompted to be turned off, and the charging function is retained.

[0070] In an alternative embodiment, referring to Figure 3 , Figure 3 A flowchart for generating first prompt information based on the first residual power and the second residual power is provided for the embodiments of the present application. Figure 3 The method shown includes but is not limited to steps S301-S304:

[0071] S301, the shared power bank obtains the current multiple unvisited scenic spots, and obtains the current position of the user.

[0072] In the embodiments of the present application, the shared power bank can also include a positioning module, and the shared power bank can obtain the current position through the positioning module, which can be determined as the current position of the user. Since the shared power bank can obtain its position in real time through the positioning module, the current multiple unvisited scenic spots can be determined based on the position of the shared power bank, that is, the scenic spots that the shared power bank has not reached among all the scenic spots; or the shared power bank can also obtain multiple scenic spots corresponding to the multiple electronic guide audios that have not been played, and determine the multiple scenic spots corresponding to the multiple electronic guide audios that have not been played as the current multiple unvisited scenic spots, which is not limited in the present application.

[0073] S302, the shared power bank determines the consumed power corresponding to playing the electronic tour audio corresponding to each unvisited scenic spot based on the electronic tour audio corresponding to each unvisited scenic spot.

[0074] For example, the shared power bank acquires a first preset power, wherein the first preset power is the consumed power of the shared power bank, and acquires the audio duration of the electronic tour audio corresponding to each unvisited scenic spot; then the shared power bank determines the consumed power corresponding to playing the electronic tour audio corresponding to each unvisited scenic spot based on the first preset power, the audio duration of the electronic tour audio corresponding to each unvisited scenic spot, such as the product of the two; of course, optionally, the shared power bank can also acquire a preset efficiency, and then the shared power bank determines the actual consumed power corresponding to playing the electronic tour audio corresponding to each unvisited scenic spot based on the consumed power corresponding to playing the electronic tour audio corresponding to each unvisited scenic spot and the preset efficiency, such as the ratio of the two; then the actual consumed power corresponding to each electronic tour audio is used as the consumed power corresponding to playing the electronic tour audio corresponding to each unvisited scenic spot in step S302. It should be pointed out that the determination method of the consumed power is not limited in the present application.

[0075] S303, the shared power bank predicts the remaining browsing required power corresponding to the user terminal based on the current multiple unvisited scenic spots and the current position.

[0076] For example, first, the power bank shares the remaining viewing time based on the current multiple unviewed scenic spots, the current location, and the remaining viewing time corresponding to the user, that is, the required time for viewing the current multiple unviewed scenic spots. For example, the power bank shares the remaining distance based on the scenic spot map information, the current location, and the current multiple unviewed scenic spots, that is, the total distance from the current location to the multiple unviewed scenic spots. For example, the multiple unviewed scenic spots include scenic spot A, scenic spot B, and scenic spot C. The remaining distance is the sum of the distance from the current location to scenic spot A, the distance from scenic spot A to scenic spot B, and the distance from scenic spot B to scenic spot C. Then, the power bank determines the first time based on the remaining distance and the preset average speed. Then, the power bank obtains the historical average viewing time corresponding to the multiple unviewed scenic spots, and determines the second time based on the historical average viewing time corresponding to each unviewed scenic spot, for example, summing up. Of course, the second time can also be determined based on the audio time of the electronic tour audio corresponding to each unviewed scenic spot, for example, summing up. The application is not limited. Then, the remaining viewing time is determined based on the first time and the second time, for example, summing up. Then, the power bank determines the remaining viewing required power based on the remaining viewing time and the second preset power, for example, the product of the two, or the sum of the product of the two and the preset safe power value of the user terminal. The application is not limited. The second preset power is the consumption power of the user terminal, and the safe power value can include the minimum power of the user terminal and the normal use power reserved for the user.

[0077] S304, the power bank generates the first prompt information based on the first remaining power, the second remaining power, the consumption power corresponding to each unviewed scenic spot, and the remaining viewing required power.

[0078] For example, step S304 includes but is not limited to the following steps S11-S14:

[0079] S11, if the second remaining power is greater than the remaining viewing required power, the first prompt information for prompting to close the charging function of the power bank is generated.

[0080] If the second remaining power is greater than the remaining viewing required power, that is, the remaining power of the user terminal is greater than the remaining viewing required power, it means that the remaining power of the user terminal can support the whole viewing of the multiple unviewed scenic spots. Therefore, the power bank can generate the first prompt information for prompting to close the charging function of the power bank, so as to preferentially ensure the use of the electronic tour function by the user.

[0081] Further, if the second residual electric quantity is greater than the residual electric quantity required for browsing, when the first prompt information for prompting to turn off the charging function of the shared power bank is generated, the shared power bank can further determine a second difference between the second residual electric quantity and the residual electric quantity required for browsing, that is, how much electric quantity the user terminal will have after browsing all the unvisited scenic spots without continuing to charge the user terminal.

[0082] If the second difference is greater than or equal to the second threshold value, the shared power bank can generate the first prompt information for prompting to turn off the charging function of the shared power bank throughout the whole process, that is, when the residual electric quantity of the user terminal after browsing all the unvisited scenic spots without continuing to charge the user terminal is still sufficient, the user terminal can not be charged throughout the whole process, and the use of the electronic guide function by the user is preferentially guaranteed.

[0083] If the second difference is less than the second threshold, the shared power bank determines a first closing time period corresponding to the charging function, for example, the shared power bank determines a total consumption power corresponding to the plurality of unvisited scenic spots based on the consumption power corresponding to each unvisited scenic spot, for example, summing; then the shared power bank predicts the disposable power of the shared power bank based on the first residual power and the total consumption power, for example, the difference between the first residual power and the total consumption power, wherein the disposable power represents the power remaining in the shared power bank after the plurality of unvisited scenic spots are all visited using the electronic guide function, and the value can be positive, zero or negative; then the shared power bank predicts the remaining visiting time based on the current plurality of unvisited scenic spots and the current location, and the principle can refer to the prediction principle of the remaining visiting time described above, which will not be repeated here; then the shared power bank determines the first closing time length corresponding to the charging function based on the disposable power and the remaining visiting time, for example, the shared power bank determines the chargeable time length corresponding to the user terminal based on the disposable power, for example, the shared power bank obtains the chargeable time length based on the ratio of the disposable power to the preset charging current, or determines the actual disposable power of the shared power bank based on the ratio of the disposable power to the preset charging efficiency, and then obtains the chargeable time length based on the ratio of the actual disposable power to the charging current, which is not limited by the present application; then the shared power bank determines the first closing time length, i.e. the time length during which the user terminal cannot be charged, based on the difference between the remaining visiting time and the chargeable time length; then the shared power bank determines the first closing time period based on the first closing time length, for example, the shared power bank can determine the remaining visiting time period based on the current time and the remaining visiting time, and the starting time of the remaining visiting time period can be the current time or the sum of the current time and the preset threshold, and the ending time of the remaining visiting time period is the sum of the starting time and the remaining visiting time; then the first closing time period corresponding to the first closing time length is selected in the remaining visiting time period, i.e. the time length of the first closing time period is equal to the first closing time length, and the selection method can be random selection, and optionally, the first closing time period can also include a plurality of sub-periods, and the plurality of sub-periods are discontinuous, but the sum of the time lengths of the plurality of sub-periods is equal to the first closing time length, so that the diversity of charging the user terminal can be realized. Further, the shared power bank generates a first prompt information based on the first closing time period to prompt the user to close the charging function of the shared power bank in the first closing time period, so that the user can use the electronic guide function under the premise of guaranteeing the charging demand of the user, and the normal use of the user terminal is not affected.

[0084] Of course, if the value of the above-mentioned disposable power is 0 or negative, the value of the corresponding calculated chargeable duration is 0 or negative, and the corresponding calculated first shutdown duration is the remaining browsing duration or the sum of the remaining browsing duration and the absolute value of the chargeable duration, in which case, shutting down the charging function in the first time period is equivalent to shutting down the charging function of the shared power bank throughout the current time.

[0085] In S12, if the second residual power is less than or equal to the residual browsing required power, the first difference between the residual browsing required power and the first residual power is determined.

[0086] If the second residual power is less than or equal to the residual browsing required power, that is, the residual power of the user terminal is less than or equal to the residual browsing required power, it indicates that the residual power of the user terminal cannot support the full browsing of the multiple unvisited scenic spots, and then the shared power bank determines the first difference between the residual browsing required power and the first residual power, that is, how much the user terminal needs to be charged when the multiple unvisited scenic spots are fully browsed.

[0087] In S13, the shared power bank determines the total consumption power of the multiple unvisited scenic spots based on the consumption power corresponding to each unvisited scenic spot.

[0088] For example, the shared power bank sums up the consumption power corresponding to each unvisited scenic spot to obtain the total consumption power of the multiple unvisited scenic spots.

[0089] In S14, the shared power bank generates first prompt information for prompting to shut down the electronic guide function or the charging function of the shared power bank based on the total consumption power, the first difference, and the first residual power.

[0090] For example, the shared power bank determines a third difference between the first residual power and the total consumption power, which represents the residual power of the shared power bank after the electronic guide function is used throughout the multiple unvisited scenic spots without charging the user terminal, wherein the value of the third difference can be positive, 0, or negative.

[0091] If the first difference is greater than the third difference, it indicates that the user terminal needs to be charged more than the residual power of the shared power bank after browsing the multiple unvisited scenic spots, and then the shared power bank determines a first target scenic spot from the multiple unvisited scenic spots based on the first difference and the third difference, specifically:

[0092] First, the shared power bank determines a fourth difference between the first difference and the third difference, which should be explained as follows: since the first difference is greater than or equal to 0, the third difference can be positive, 0, or negative, and when the third difference is negative, the fourth difference is the sum of the absolute values of the first difference and the third difference.

[0093] Then the shared power bank obtains the familiarity of the user for each unvisited scenic spot. For example, the shared power bank obtains historical browsing data at each unvisited scenic spot, wherein the historical browsing data at each unvisited scenic spot includes a browsing time length of each reference user in a plurality of reference users at each unvisited scenic spot and a number of times that the plurality of reference users play electronic tour audio of each unvisited scenic spot at each unvisited scenic spot. Then the shared power bank averages the browsing time length of each reference user corresponding to each unvisited scenic spot to obtain an average browsing time length corresponding to each unvisited scenic spot. Then the shared power bank obtains a first mapping relationship between the browsing time length and the familiarity, and determines a first familiarity corresponding to each unvisited scenic spot based on the average browsing time length corresponding to each unvisited scenic spot and the first mapping relationship. Then the shared power bank determines a first ratio of the number of the plurality of reference users to the number of times that the plurality of reference users play electronic tour audio of each unvisited scenic spot at each unvisited scenic spot. Then the shared power bank obtains a second mapping relationship between the ratio of the number of users of each scenic spot to the number of times that the users of each scenic spot play electronic tour audio and the familiarity. Then the shared power bank determines a second familiarity corresponding to each unvisited scenic spot based on the first ratio and the second mapping relationship. Then the shared power bank determines the familiarity corresponding to each unvisited scenic spot based on the first familiarity corresponding to each unvisited scenic spot and the second familiarity, for example, by averaging or weighted averaging.

[0094] Then the shared power bank determines a first target scenic spot from the multiple unvisited scenic spots based on the familiarity of each unvisited scenic spot, the power consumption of each unvisited scenic spot, and the fourth difference. For example, the shared power bank sorts the multiple unvisited scenic spots in ascending order of the familiarity of each unvisited scenic spot to obtain a first sequence, wherein the smaller the familiarity, the smaller the sequence number or the earlier the position; and sorts the multiple unvisited scenic spots in descending order of the power consumption of each unvisited scenic spot to obtain a second sequence, wherein the greater the power consumption, the smaller the sequence number or the earlier the position; then determines an average sequence number of each unvisited scenic spot based on the sequence number of each unvisited scenic spot in the first sequence and the sequence number of each unvisited scenic spot in the second sequence, for example, by averaging; sorts the multiple unvisited scenic spots in ascending order of the average sequence number of each unvisited scenic spot to obtain a third sequence; and iterates through the unvisited scenic spots in the third sequence in ascending order of the sequence number until the sum of the power consumption of the first i-1 unvisited scenic spots before the i th unvisited scenic spot in the third sequence is less than or equal to the fourth difference, and the sum of the power consumption of the i th unvisited scenic spot (i.e., the i th unvisited scenic spot and the first i-1 unvisited scenic spots before the i th unvisited scenic spot) is greater than the fourth difference, and then determines the i th unvisited scenic spot as the first target scenic spot. That is, the sum of the power consumption of the first target scenic spot does not exceed the fourth difference, and the number of the first target scenic spot is one or more.

[0095] Finally, the shared power bank generates a first prompt information based on the first target scenic spot to prompt the user to turn off the electronic guide function of the shared power bank at the first target scenic spot. That is, if the user wants to visit all the multiple unvisited scenic spots, and the remaining power of the shared power bank under this condition, i.e., the third difference, is less than the power required by the user terminal, i.e., the first difference, it can be determined that the electronic guide function is turned off at the first target scenic spot to meet the basic charging needs of the user, and when determining the first target scenic spot, the power consumption of each unvisited scenic spot in descending order and the familiarity in descending order can be considered for comprehensive selection, so as to select the unvisited scenic spots with lower familiarity and fewer number as much as possible, thereby meeting the charging needs and skipping as few familiar scenic spots as possible, thereby not affecting the tourists.

[0096] If the first difference is less than the third difference, it is indicated that if the user terminal still needs to be charged after browsing the plurality of unvisited scenic spots, the amount of electricity needed by the user terminal is less than the remaining amount of electricity of the shared power bank. The shared power bank determines a second closing time period corresponding to the charging function, specifically: first, the shared power bank predicts the remaining browsing time based on the current plurality of unvisited scenic spots and the current location, and the principle is not repeated here; then the shared power bank determines a second closing time period corresponding to the charging function based on the first difference and the remaining browsing time, wherein the principle of determining the second closing time period is similar to the principle of determining the first closing time period, and is not repeated here. Then the shared power bank determines a second closing time period based on the second closing time period, and generates a first prompt information to prompt the user to close the charging function of the shared power bank in the second closing time period.

[0097] That is, if the user terminal still needs to be charged after browsing the plurality of unvisited scenic spots, the amount of electricity needed by the user terminal is less than the remaining amount of electricity of the shared power bank. It is indicated that the electronic guide function can be used in the plurality of unvisited scenic spots, and the electronic guide function does not need to be closed, and only the amount of electricity needed by the user terminal during the whole browsing process is needed. Therefore, the second closing time period can be determined based on the amount of electricity needed by the user terminal during the whole browsing process, that is, the first difference, and the charging function is closed in the second closing time period, so that the electricity demand of the user terminal is met, and the problem that the electronic guide function cannot be used in the whole process of the plurality of unvisited scenic spots due to the excessive use of the electricity of the shared power bank by the user terminal is avoided.

[0098] Of course, if the first difference is equal to the third difference, that is, the third difference is greater than or equal to zero, if the third difference is 0, the shared power bank can generate a first prompt information for prompting the user to close the charging function of the shared power bank during the whole process; if the third difference is greater than zero, the shared power bank can determine a third closing time period corresponding to the charging function based on the first difference, wherein the principle of determining the third closing time period is similar to the principle of determining the second closing time period, and is not repeated here. Then the shared power bank generates a first prompt information based on the third closing time period to prompt the user to close the charging function of the shared power bank in the third closing time period.

[0099] S205, the shared power bank acquires first response information for the first prompt information.

[0100] In an embodiment of the present application, the first response information is used to indicate the closing of the electronic guide function or the charging function of the shared power bank. After generating the first prompt information, the shared power bank outputs the first prompt information, specifically:

[0101] When the type of the first prompt information is text, the manner of outputting the first prompt information can be displaying the first prompt information on the display screen of the shared power bank, or alternatively, when the type of the first prompt information is audio, the manner of outputting the first prompt information can be playing the first prompt information through the loudspeaker of the shared power bank to prompt the user to turn off the electronic guide function or the charging function of the shared power bank; further, if the user confirms to turn off the electronic guide function or the charging function of the shared power bank, i.e. the user confirms the first prompt information, the user can touch the confirmation function button on the display screen of the shared power bank or touch the physical button representing the confirmation function on the shared power bank, and accordingly, the shared power bank obtains the first response information for the first prompt information in response to the touch operation of the user.

[0102] Alternatively, when the type of the first prompt information is text, the manner of outputting the first prompt information can be that the shared power bank sends the first prompt information to the user terminal, and then the user terminal displays the first prompt information to prompt the user to turn off the electronic guide function or the charging function of the shared power bank; further, if the user confirms to turn off the electronic guide function or the charging function of the shared power bank, i.e. the user confirms the first prompt information, the user can touch the confirmation function button on the display screen of the user terminal, and accordingly, the user terminal generates the first response information in response to the touch operation, and then sends the first response information to the shared power bank, i.e. the shared power bank obtains the first response information for the first prompt information.

[0103] S206、the shared power bank turns off the electronic guide function or the charging function in response to the first response information.

[0104] The shared power bank turns off the electronic guide function or the charging function in response to the first response information after obtaining the first response information. Further, the shared power bank can also send a second prompt information to the user terminal to prompt that the electronic guide function or the charging function of the shared power bank has been turned off; and then the server charges according to the charging standard of turning off the electronic guide function or the charging function in response to the second prompt information.

[0105] Referring to Figure 4 , Figure 4 An interaction schematic diagram of a shared power bank power management method provided by the embodiment. The method is applied to the shared power bank power management system in the above embodiment, which will not be described here. The method includes but is not limited to steps S401-S411:

[0106] S401、the shared power bank obtains a first remaining power.

[0107] S402, the shared power bank judges whether the first remaining power is less than or equal to a first threshold value, if yes, step S403 is executed.

[0108] S403, the shared power bank acquires the second residual power of the user terminal.

[0109] S404, the shared power bank generates first prompt information based on the first residual power and the second residual power.

[0110] The first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank.

[0111] S405, the shared power bank sends the first prompt information to the user terminal.

[0112] S406, the user terminal acquires first response information in response to the user's confirmation operation on the first prompt information.

[0113] S407, the user terminal sends the first response information to the shared power bank.

[0114] S408, the shared power bank turns off the electronic guide function or the charging function in response to the first response information.

[0115] S409, the shared power bank sends second prompt information to the user terminal.

[0116] The second prompt information is used to prompt that the electronic guide function or the charging function of the shared power bank has been turned off.

[0117] S410, the user terminal sends the second prompt information to the server.

[0118] S411, the server charges according to the charging standard of turning off the electronic guide function or the charging function in response to the second prompt information.

[0119] It should be noted that, Figure 4 The shared power bank, the server and the user terminal in the embodiments can also correspondingly execute other embodiments of the shared power bank power management method provided by the above embodiments, which will not be described here, and Figure 4 The principles of each step in the embodiments can be explained by corresponding reference to the principles of the shared power bank power management method provided by the above embodiments, which will not be described here.

[0120] It can be seen that in the embodiments of the present application, a shared power bank power management method is provided, which is applied to a shared power bank. The shared power bank is located in a shared power bank power management system. The system further includes a user terminal. The shared power bank establishes a connection with the user terminal. The connection mode can be wireless connection such as Bluetooth connection or wired connection. The present application does not make any limitation. The shared power bank has a charging function and an electronic guide function. Then the shared power bank can obtain its first remaining power. If the first remaining power is less than or equal to a first threshold, the shared power bank obtains the second remaining power of the user terminal. Then the shared power bank generates a first prompt information based on the first remaining power and the second remaining power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank. Then the shared power bank obtains the first response information for the first prompt information, wherein the first response information is used to indicate to turn off the electronic guide function or the charging function of the shared power bank. Then the shared power bank turns off the electronic guide function or the charging function in response to the first response information. That is to say, when the shared power bank detects that its first remaining power is less than the first threshold, it obtains the second remaining power of the user terminal. Then based on the first remaining power and the second remaining power of the user terminal, the first prompt information for prompting the user to turn off the electronic guide function or the charging function of the shared power bank is generated to prompt the user to turn off the electronic guide function or the charging function of the shared power bank, that is, to realize the reasonable management of the power of the shared power bank, and to avoid affecting the user's experience of using the shared power bank. And by keeping the shared power bank connected with the user terminal, the server can know that the shared power bank has turned off the electronic guide function or the charging function, so the server charges according to the charging standard of turning off the electronic guide function or the charging function, which is more reasonable. Then the server synchronously charges according to the charging standard of turning off the electronic guide function or the charging function of the shared power bank, which enhances the rationality, and can avoid the situation that the server charging mode has charged according to the charging standard of turning off the electronic guide function or the charging function of the shared power bank, but the electronic guide function or the charging function of the shared power bank has not been turned off.

[0121] Referring to Figure 5 , Figure 5 A functional unit composition block diagram of a shared power bank is provided for the embodiments of the present application. The shared power bank is located in a shared power bank power management system. The system further includes a server and a user terminal. The user terminal and the shared power bank are pre-connected. The shared power bank has a charging function and an electronic guide function. The shared power bank further includes a transceiver unit 501 and a processing unit 502.

[0122] The transceiver unit 501 is used to obtain the first remaining power.

[0123] The transceiver 501 is further configured to acquire a second residual power of the user terminal if the first residual power is less than or equal to a first threshold value.

[0124] The processing unit 502 is configured to generate first prompt information based on the first residual power and the second residual power, wherein the first prompt information is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank.

[0125] The transceiver 501 is further configured to acquire first response information for the first prompt information, wherein the first response information is used to indicate that the electronic guide function or the charging function of the shared power bank is turned off.

[0126] The processing unit 502 is further configured to turn off the electronic guide function or the charging function in response to the first response information.

[0127] In an embodiment of the present application, in terms of generating the first prompt information based on the first residual power and the second residual power, the processing unit 502 is specifically configured to:

[0128] acquire a plurality of unvisited scenic spots and acquire a current location of the user;

[0129] determine a consumed power corresponding to playing the electronic guide audio corresponding to each unvisited scenic spot based on the electronic guide audio corresponding to each unvisited scenic spot;

[0130] predict a residual browsing required power corresponding to the user terminal based on the plurality of unvisited scenic spots and the current location;

[0131] generate the first prompt information based on the first residual power, the second residual power, the consumed power corresponding to each unvisited scenic spot, and the residual browsing required power.

[0132] In an embodiment of the present application, in terms of generating the first prompt information based on the first residual power, the second residual power, the consumed power corresponding to each unvisited scenic spot, and the residual browsing required power, the processing unit 502 is specifically configured to:

[0133] if the second residual power is greater than the residual browsing required power, generate the first prompt information used to prompt to turn off the charging function of the shared power bank;

[0134] if the second residual power is less than or equal to the residual browsing required power, determine a first difference between the residual browsing required power and the second residual power;

[0135] determine a total consumed power corresponding to the plurality of unvisited scenic spots based on the consumed power corresponding to each unvisited scenic spot;

[0136] generate the first prompt information for prompting to turn off the electronic guide function or the charging function of the shared power bank based on the total consumption power, the first difference value and the first residual power.

[0137] In an embodiment of the present application, if the second residual power is greater than the residual browsing required power, in generating the first prompt information for prompting to turn off the charging function of the shared power bank, the processing unit 502 is specifically configured to:

[0138] determine a second difference value between the second residual power and the residual browsing required power;

[0139] if the second difference value is greater than or equal to a second threshold value, generate the first prompt information for prompting to turn off the charging function of the shared power bank throughout the whole journey;

[0140] if the second difference value is less than the second threshold value, determine a first turn-off time period corresponding to the charging function;

[0141] generate the first prompt information based on the first turn-off time period, to prompt to turn off the charging function of the shared power bank in the first turn-off time period.

[0142] In an embodiment of the present application, in determining the first turn-off time period corresponding to the charging function, the processing unit 502 is specifically configured to:

[0143] determine a total consumption power of the plurality of unvisited scenic spots based on the consumption power corresponding to each unvisited scenic spot;

[0144] predict the disposable power of the shared power bank based on the first residual power and the total consumption power;

[0145] predict a residual browsing time length based on the current plurality of unvisited scenic spots and the current location;

[0146] determine a first turn-off time length corresponding to the charging function based on the disposable power and the residual browsing time length;

[0147] determine the first turn-off time period based on the first turn-off time length.

[0148] In an embodiment of the present application, if the second residual power is less than the residual browsing required power, in generating the first prompt information for prompting to turn off the electronic guide function or the charging function of the shared power bank based on the total consumption power, the first difference value and the first residual power, the processing unit 502 is specifically configured to:

[0149] determine a third difference value between the first residual power and the total consumption power;

[0150] if the first difference value is greater than the third difference value, determine a first target scenic spot from the plurality of unvisited scenic spots based on the first difference value and the third difference value;

[0151] Based on the first target attraction, generate the first prompt message to remind users to turn off the electronic guide function of the shared power bank at the first target attraction;

[0152] If the first difference is less than the third difference, determine the second shutdown period corresponding to the charging function;

[0153] Based on the second shutdown period, a first prompt message is generated to remind users to turn off the charging function of the shared power bank during the second shutdown period.

[0154] In one embodiment of this application, in determining a first target attraction from a plurality of unvisited attractions based on a first difference and a third difference, the processing unit 502 is specifically configured to:

[0155] Determine the fourth difference between the first and third differences;

[0156] Get the user's familiarity with each unvisited attraction;

[0157] Based on the familiarity level of each unvisited attraction, the power consumption of each unvisited attraction, and the fourth difference, the first target attraction is determined from multiple unvisited attractions.

[0158] In specific implementations, the transceiver unit 501 and processing unit 502 described in the embodiments of the present invention can execute other implementation methods described in the embodiments of the shared power bank power management method provided in the present invention, which will not be repeated here.

[0159] See Figure 6 , Figure 6 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. Figure 6 As shown, the electronic device 600 includes a transceiver 601, a processor 602, and a memory 603. These are connected via a bus 604. The memory 603 stores computer programs and data, and can transfer data stored in the memory 603 to the processor 602.

[0160] Control transceiver 601 to obtain the first remaining battery power;

[0161] If the first remaining battery power is less than or equal to the first threshold, control transceiver 601 to obtain the second remaining battery power of the user terminal;

[0162] Based on the first remaining battery level and the second remaining battery level, a first prompt message is generated, wherein the first prompt message is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank;

[0163] The transceiver 601 acquires first response information in response to the first prompt information, wherein the first response information is used to instruct the shared power bank to disable its electronic guide function or charging function;

[0164] In response to the first response information, the electronic guide function or the charging function is closed.

[0165] In an embodiment of the present application, in the step of generating the first prompt information based on the first residual power and the second residual power, the processor 602 is specifically configured to perform the following steps:

[0166] obtaining a plurality of unvisited scenic spots and obtaining a current position of the user;

[0167] determining, based on the electronic guide audio corresponding to each unvisited scenic spot, a consumed power corresponding to playing the electronic guide audio corresponding to each unvisited scenic spot;

[0168] predicting, based on the plurality of unvisited scenic spots and the current position, a residual power required for browsing;

[0169] generating the first prompt information based on the first residual power, the second residual power, the consumed power corresponding to each unvisited scenic spot, and the residual power required for browsing.

[0170] In an embodiment of the present application, in the step of generating the first prompt information based on the first residual power, the second residual power, the consumed power corresponding to each unvisited scenic spot, and the residual power required for browsing, the processor 602 is specifically configured to perform the following steps:

[0171] if the second residual power is greater than the residual power required for browsing, generating the first prompt information for prompting to close the charging function of the shared power bank;

[0172] if the second residual power is less than or equal to the residual power required for browsing, determining a first difference between the residual power required for browsing and the second residual power;

[0173] determining a total consumed power corresponding to the plurality of unvisited scenic spots based on the consumed power corresponding to each unvisited scenic spot;

[0174] generating the first prompt information for prompting to close the electronic guide function or the charging function of the shared power bank based on the total consumed power, the first difference, and the first residual power.

[0175] In an embodiment of the present application, if the second residual power is greater than the residual power required for browsing, in the step of generating the first prompt information for prompting to close the charging function of the shared power bank, the processor 602 is specifically configured to perform the following steps:

[0176] determining a second difference between the second residual power and the residual power required for browsing;

[0177] if the second difference is greater than or equal to the second threshold value, generating first prompt information for prompting to turn off the charging function of the shared power bank throughout the whole journey;

[0178] if the second difference is less than the second threshold value, determining a first turn-off period corresponding to the charging function;

[0179] generating the first prompt information based on the first turn-off period, to prompt to turn off the charging function of the shared power bank in the first turn-off period.

[0180] In an embodiment of the present application, in determining the first turn-off period corresponding to the charging function, the processor 602 is specifically configured to perform the following steps:

[0181] determining a total consumption of power corresponding to the plurality of unvisited scenic spots based on the consumption of power corresponding to each unvisited scenic spot;

[0182] predicting the disposable power of the shared power bank based on the first residual power and the total consumption of power;

[0183] predicting the remaining browsing duration based on the current plurality of unvisited scenic spots and the current location;

[0184] determining the first turn-off duration corresponding to the charging function based on the disposable power and the remaining browsing duration;

[0185] determining the first turn-off period based on the first turn-off duration.

[0186] In an embodiment of the present application, if the second residual power is less than the residual browsing required power, in generating the first prompt information for prompting to turn off the electronic guide function or the charging function of the shared power bank based on the total consumption of power, the first difference and the first residual power, the processor 602 is specifically configured to perform the following steps:

[0187] determining a third difference between the first residual power and the total consumption of power;

[0188] if the first difference is greater than the third difference, determining a first target scenic spot from the plurality of unvisited scenic spots based on the first difference and the third difference;

[0189] generating the first prompt information based on the first target scenic spot, to prompt to turn off the electronic guide function of the shared power bank at the first target scenic spot;

[0190] if the first difference is less than the third difference, determining a second turn-off period corresponding to the charging function;

[0191] generating the first prompt information based on the second turn-off period, to prompt to turn off the charging function of the shared power bank in the second turn-off period.

[0192] In an embodiment of the present application, in determining the first target scenic spot from the plurality of unvisited scenic spots based on the first difference value and the third difference value, the processor 602 is specifically configured to perform the following steps:

[0193] determining a fourth difference value between the first difference value and the third difference value;

[0194] obtaining the familiarity of the user for each unvisited scenic spot;

[0195] determining the first target scenic spot from the plurality of unvisited scenic spots based on the familiarity corresponding to each unvisited scenic spot, the power consumption corresponding to each unvisited scenic spot, and the fourth difference value.

[0196] Specifically, the transceiver 601 described above can be the transceiving unit 501 of the shared power bank of the embodiment described above, and the processor 602 described above can be the processing unit 502 of the shared power bank of the embodiment described above. Figure 5 Figure 5

[0197] In a specific implementation, the transceiver 601 and the processor 602 described in the embodiment of the present application can also perform other implementation manners described in the embodiment of the shared power bank power management method provided by the embodiment of the present application, which will not be described here.

[0198] It should be understood that the electronic device in the present application can be the shared power bank or the server described above, wherein the server can be a stand-alone physical server, or a server cluster or a distributed system composed of multiple physical servers, or a cloud server providing cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communication, middleware services, domain name services, security services, and basic cloud computing services such as big data and artificial intelligence platforms, and the present application does not make specific limitations. The above-mentioned electronic device is only an example, but not exhaustive, and includes but is not limited to the above-mentioned electronic device.

[0199] It should be understood that the present application also provides a computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to implement part or all of the steps of any one of the shared power bank power management methods described in the above method embodiments.

[0200] The present application also provides a computer program product, which includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to cause a computer to perform part or all of the steps of any one of the shared power bank power management methods described in the above method embodiments.

[0201] ​​It should be noted that, for the foregoing method embodiments, the sequences of the described actions are not the only ones that can be used to implement the present application. For example, the actions of the various embodiments can be executed in other sequences, or in a concurrent manner. Additionally, some actions can be executed in a different order, or even omitted, and still achieve the desired results. Additionally, some actions can be executed in a different order, or even omitted, and still achieve the desired results.

[0202] In the above embodiments, the description of each embodiment focuses on different aspects, and the parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.

[0203] In the several embodiments provided by the present application, it should be understood that the disclosed apparatus can be implemented in other manners. For example, the described apparatus embodiments are merely schematic. For example, the division of the units is only a logical function division. For another example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed mutual couplings or direct couplings or communication connections can be indirect couplings or communication connections through some interfaces, devices or units, and can be in electrical, mechanical or other forms.

[0204] The units described as separated components can or can not be physically separated, and the components displayed as units can or can not be physical units, i.e., can be located in one place, or can be distributed on a plurality of network units. In actual implementation, some or all of the units can be selected according to actual needs to achieve the purposes of the embodiments of the present application.

[0205] In addition, the various functional units in the embodiments of the present application can be integrated in a processing unit, or each unit can exist physically as a separate unit, or two or more units can be integrated in one unit. The integrated unit can be implemented in the form of hardware, or in the form of software program modules.

[0206] If the integrated unit is realized in the form of a software program module and sold or used as an independent product, it can be stored in a computer readable memory. Based on this understanding, the technical solutions of the present application essentially or the part that contributes to the prior art or the whole or part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a memory and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server or a network device, etc.) to execute all or part of the steps of the embodiments of the present application. The aforementioned memory includes: a U disk, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk or an optical disk, and various media that can store program codes.

[0207] A person of ordinary skill in the art can understand that all or part of the steps of the various methods of the above embodiments can be completed by instructing the relevant hardware through a program, and the program can be stored in a computer readable memory, and the memory can include a flash disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc.

[0208] The embodiments of the present application are described in detail above, and the principles and implementation manners of the present application are described by applying specific examples. The above description of the embodiments is only used to help understand the method of the present application and its core idea; at the same time, for those skilled in the art, according to the idea of the present application, the specific implementation manner and application range will be changed, and the above description of the embodiments should not be understood as a limitation of the present application.

Claims

1. A method for managing the power consumption of a shared power bank, characterized in that, The method is applied to shared power banks, wherein the shared power bank is located in a shared power bank power management system, the system also includes a user terminal, the shared power bank is connected to the user terminal, and the shared power bank has charging and electronic guide functions; the method includes: Get the first remaining battery level; If the first remaining battery power is less than or equal to the first threshold, obtain the second remaining battery power of the user terminal; Based on the first remaining battery level and the second remaining battery level, a first prompt message is generated, wherein the first prompt message is used to prompt the user to turn off the electronic guide function or charging function of the shared power bank; including: The system obtains multiple currently unvisited attractions and the user's current location; based on the electronic guide audio corresponding to each unvisited attraction, it determines the power consumption required to play the electronic guide audio for each unvisited attraction; based on the multiple currently unvisited attractions and the current location, it predicts the remaining power required for browsing the user's terminal. If the second remaining battery power is greater than the remaining battery power required for browsing, a first prompt message is generated to prompt the user to turn off the charging function of the shared power bank; If the second remaining battery power is less than or equal to the remaining battery power required for browsing, a first difference between the remaining battery power required for browsing and the second remaining battery power is determined; based on the battery power consumed for each unvisited attraction, the total battery power consumed for multiple unvisited attractions is determined; a third difference between the first remaining battery power and the total battery power consumed is determined; if the first difference is greater than the third difference, a first target attraction is determined from the multiple unvisited attractions based on the first difference and the third difference; based on the first target attraction, a first prompt message is generated to prompt the user to turn off the electronic guide function of the shared power bank at the first target attraction; if the first difference is less than the third difference, a second shutdown period corresponding to the charging function is determined; based on the second shutdown period, a first prompt message is generated to prompt the user to turn off the charging function of the shared power bank during the second shutdown period; Obtain first response information in response to the first prompt information, wherein the first response information is used to instruct the electronic guide function or charging function of the shared power bank to be turned off; In response to the first response information, the electronic guide function or the charging function is turned off.

2. The method according to claim 1, characterized in that, If the second remaining battery level is greater than the remaining battery level required for browsing, a first prompt message is generated to suggest turning off the charging function of the shared power bank, including: Determine a second difference between the second remaining battery power and the remaining battery power required for browsing; If the second difference is greater than or equal to the second threshold, a first prompt message is generated to prompt the user to turn off the charging function of the shared power bank throughout the process. If the second difference is less than the second threshold, a first shutdown period corresponding to the charging function is determined. Based on the first shutdown period, a first prompt message is generated to remind users to turn off the charging function of the shared power bank during the first shutdown period.

3. The method according to claim 2, characterized in that, Determine the first shutdown period corresponding to the charging function, including: Based on the power consumption of each unvisited attraction, determine the total power consumption of multiple unvisited attractions; Based on the first remaining power and the total power consumed, the available power of the shared power bank is predicted; Based on the current number of unvisited attractions and the current location, predict the remaining browsing time; Based on the available battery power and the remaining browsing time, determine the first off duration corresponding to the charging function; The first shutdown period is determined based on the first shutdown duration.

4. The method according to claim 1, characterized in that, The step of determining the first target attraction from the plurality of unvisited attractions based on the first difference and the third difference includes: Determine a fourth difference between the first difference and the third difference; Get the user's familiarity with each unvisited attraction; Based on the familiarity level of each unvisited attraction, the power consumption of each unvisited attraction, and the fourth difference, the first target attraction is determined from a plurality of unvisited attractions.

5. A shared power bank, wherein the shared power bank is located in a shared power bank power management system, the system further includes a user terminal, the shared power bank is connected to the user terminal, and the shared power bank has a charging function and an electronic guide function; the shared power bank is used to implement the method described in any one of claims 1-4; The shared power bank includes: Transceiver unit and processing unit; The transceiver unit is used to obtain the first remaining battery power; If the first remaining battery power is less than or equal to the first threshold, the transceiver unit is further configured to obtain the second remaining battery power of the user terminal; The processing unit is configured to generate a first prompt message based on the first remaining power and the second remaining power, wherein the first prompt message is used to prompt the user to turn off the electronic guide function or the charging function of the shared power bank; The transceiver unit is further configured to acquire first response information in response to the first prompt information, wherein the first response information is used to instruct the electronic guide function or charging function of the shared power bank to be turned off; The processing unit is also configured to, in response to the first response information, disable the electronic guide function or the charging function.

6. An electronic device, characterized in that, include: A processor and a memory, the processor being connected to the memory, the memory being used to store a computer program, and the processor being used to execute the computer program stored in the memory to cause the electronic device to perform the method as described in any one of claims 1-4.

7. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that is executed by a processor to implement the method as described in any one of claims 1-4.

Citation Information

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