Battery intelligent discharging method and related device

By obtaining working and battery information and adjusting the discharge strategy to meet mission requirements, the system interruption problem caused by insufficient battery energy storage is solved, and reasonable battery power supply and system stability are achieved.

CN120342040BActive Publication Date: 2025-10-17深圳市百酷新能源有限公司
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Patent Information

Application Number
CN202510829041.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-10-17
Estimated Expiration
2045-06-20

AI Technical Summary

Technical Problem

In the existing technology, when the battery energy storage is insufficient, the system still runs at high speed, causing the battery energy to be quickly depleted, which may cause system interruption. In addition, the battery energy storage capacity indication does not match the actual capacity, and accurate warnings cannot be issued, posing a safety risk.

Method used

By obtaining working information and battery information, determining the working task and remaining power, judging whether the task requirements are met, adjusting the discharge strategy according to energy requirements, and generating a target discharge strategy based on the working environment, reasonable battery power supply is achieved.

Benefits of technology

It achieves reasonable adjustment of battery discharge according to mission requirements, avoids rapid depletion of battery energy, ensures stable operation of the system, and improves battery utilization efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a battery intelligent discharging method and related device. By obtaining working information and battery information, the working task information is determined according to the working information, and the residual power information is determined according to the battery information; the first discharging strategy is determined in the battery information, and whether the working task information is met is judged according to the first discharging strategy; if not, the energy demand information is determined according to the working information; the second discharging strategy is determined according to the energy demand information and the residual power information; the target discharging strategy is generated by updating the second discharging strategy according to the working environment information in the working information, and the working power supply is carried out. By judging whether the working task information is met, the switching of the battery power supply is realized, the discharging strategy is adjusted in combination with the working environment information, and the technical effect of effectively carrying out the power supply is realized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of battery, in particular to a battery intelligent discharging method and related device. BACKGROUND

[0002] Portable electronic devices such as smart phones, tablets or laptops are equipped with internal power supply to meet the requirements of on-the-go operation. Currently, the internal power supply is mostly implemented by batteries. Since the energy storage of the battery is limited, how to efficiently use the energy storage in the battery is an important issue. The simplest method is to reduce unnecessary energy consumption, for example, after the system is on standby for a period of time, the device (such as the screen) that is not needed to be used immediately is turned off or part of the application program is temporarily stopped to reduce energy consumption. However, this method focuses on the system state and does not consider the state of the battery itself, which may cause the energy storage to be depleted in a very short period of time if the system is still running at high speed when the energy storage of the battery is severely insufficient, even causing the system to be improperly interrupted, resulting in data loss and damage to the software and hardware. In addition, since the battery has its charging and discharging characteristics, the maximum energy storage capacity of the battery is reduced after being used for a period of time, which causes the battery energy storage capacity on the system to be often not equivalent to the actual capacity. If the system is allowed to run at high speed when the actual energy storage is almost insufficient, the user will not be properly warned of the correct capacity, which will make the above-mentioned problem more serious. Currently, there are methods for monitoring the battery energy storage capacity to adjust the throttle rate of the system clock, which can reduce the consumption of battery energy storage, but the system is still running at high clock rate, which itself has a certain energy consumption. When the energy storage is insufficient or the actual capacity is not equivalent to the detected capacity, there is still a risk to the safety of the system.

[0003] Therefore, how to reasonably control the battery to discharge has become a technical problem to be solved. SUMMARY

[0004] In order to reasonably control the battery to discharge, the present application provides a battery intelligent discharging method and related device.

[0005] In a first aspect, the present application provides a battery intelligent discharging method adopting the following technical solution: a battery intelligent discharging method, comprising:

[0006] obtaining working information and battery information;

[0007] determining working task information according to the working information, and determining residual capacity information according to the battery information;

[0008] obtaining a first discharging strategy in the battery information, and judging whether the residual capacity information meets the working task information according to the first discharging strategy;

[0009] If not, determining energy demand information according to the working information;

[0010] Determining a second discharging strategy according to the residual power information and the energy demand information;

[0011] Determining working environment information in the working information and updating the second discharging strategy to generate a target discharging strategy;

[0012] Supplying power for working according to the target discharging strategy.

[0013] Optionally, the step of determining whether the residual power information meets the working task information according to the first discharging strategy includes:

[0014] Obtaining a first discharging strategy in the battery information;

[0015] Determining an actual use duration according to the first discharging strategy and the residual power information;

[0016] Determining a working residual duration according to the working task information;

[0017] Determining whether the residual power information meets the working task information according to the actual use duration and the working residual duration.

[0018] Optionally, the step of determining an actual use duration according to the first discharging strategy and the residual power information includes:

[0019] Obtaining discharging detail process information in the first discharging strategy;

[0020] Determining discharging detail information in each process interval according to the discharging detail process information;

[0021] Determining an actual use duration according to the discharging detail information and the residual power information.

[0022] Optionally, the step of determining energy demand according to the working information includes:

[0023] Determining working plan content in the working information;

[0024] Obtaining output change conditions in the working plan content;

[0025] Determining corresponding working segmented plans according to the output change conditions;

[0026] Determining corresponding energy demands according to the working segmented plans.

[0027] Optionally, the step of determining corresponding energy demands according to the working segmented plans includes:

[0028] determining a segment output target in the work segment plan;

[0029] determining a segment output plan according to the segment output target;

[0030] determining an energy demand according to all the segment output plans.

[0031] Optionally, the step of determining a second discharge strategy according to the residual power information and the energy demand information comprises:

[0032] determining a stage demand plan according to the energy demand information;

[0033] judging whether the stage demand plan is a single demand plan in the stage demand plan;

[0034] if yes, determining a second discharge strategy according to the stage demand plan and the residual power information;

[0035] if no, determining stage energy supply information according to the demand plan to generate a stage energy supply set with stage label information;

[0036] determining a second discharge strategy according to the stage energy supply set in combination with the residual power information.

[0037] Optionally, the step of determining work environment information in the work information and updating the second discharge strategy to generate a target discharge strategy comprises:

[0038] determining work environment information in the work information;

[0039] determining power supply limitation conditions according to the work environment;

[0040] updating the second discharge strategy according to the power supply limitation conditions to generate a target discharge strategy.

[0041] In a second aspect, the present application provides a battery intelligent discharge device, which comprises:

[0042] an information acquisition module, configured to acquire work information and battery information;

[0043] a residual power module, configured to determine work task information according to the work information, and determine residual power information according to the battery information;

[0044] a condition judgment module, configured to acquire a first discharge strategy in the battery information, and judge whether the residual power information meets the work task information according to the first discharge strategy;

[0045] determining energy demand information according to the working information if not;

[0046] determining a second discharging strategy according to the residual power information and the energy demand information;

[0047] updating the second discharging strategy according to working environment information in the working information to generate a target discharging strategy;

[0048] performing working power supply according to the target discharging strategy.

[0049] In a third aspect, the present application provides a computer device, comprising a memory and a processor, wherein the processor executes the method according to any one of the above aspects when running computer instructions stored in the memory.

[0050] In a fourth aspect, the present application provides a computer readable storage medium comprising instructions, which, when running on a computer, cause the computer to execute the method according to the above aspects.

[0051] In summary, the present application has the following beneficial technical effects:

[0052] The present application obtains working information and battery information, determines working task information according to the working information and determines residual power information according to the battery information; determines a first discharging strategy in the battery information and judges whether the working task information is met according to the first discharging strategy; if not, determines energy demand information according to the working information; determines a second discharging strategy according to the energy demand information and the residual power information; updates the second discharging strategy according to working environment information in the working information to generate a target discharging strategy and performs working power supply. The present application realizes the switching of battery power supply by judging whether the working task information is met, adjusts the discharging strategy in combination with the working environment information, and realizes the technical effect of effectively performing power supply. BRIEF DESCRIPTION OF DRAWINGS

[0053] Figure 1 is a computer device structure schematic diagram of a hardware running environment related to an embodiment scheme of the present application;

[0054] Figure 2 is a flow schematic diagram of a first embodiment of a battery intelligent discharging method of the present application;

[0055] Figure 3 is a structure block diagram of a first embodiment of a battery intelligent discharging device of the present application. DETAILED DESCRIPTION

[0056] In order to make the purposes, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not intended to limit the present application.

[0057] Referring to Figure 1 , Figure 1 The computer device structure schematic diagram of the hardware running environment involved in the embodiment of the present application.

[0058] As Figure 1 shown, the computer device can include a processor 1001, such as a central processing unit (CPU), a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. The communication bus 1002 is used to realize the connection and communication between these components. The user interface 1003 can include a display, an input unit such as a keyboard, and an optional user interface 1003 can also include a standard wired interface, a wireless interface. The network interface 1004 can optionally include a standard wired interface, a wireless interface (such as a wireless fidelity (Wi-Fi) interface). The memory 1005 can be a high-speed random access memory (RAM), or a stable non-volatile memory (NVM), such as a disk memory. The memory 1005 can also be an independent storage device from the aforementioned processor 1001.

[0059] Those skilled in the art can understand that Figure 1 the structure shown in the above does not constitute a limitation on the computer device, and can include more or fewer components than the illustrated, or combine certain components, or different component arrangements.

[0060] As Figure 1 shown, the memory 1005 as a storage medium can include an operating system, a network communication module, a user interface module, and a battery intelligent discharge program.

[0061] In Figure 1 the computer device shown, the network interface 1004 is mainly used for data communication with a network server; the user interface 1003 is mainly used for data interaction with a user; the processor 1001 and the memory 1005 in the computer device of the present application can be provided in the computer device, and the computer device calls the battery intelligent discharge program stored in the memory 1005 through the processor 1001, and executes the battery intelligent discharge method provided by the embodiment of the present application.

[0062] The embodiment of the present application provides a battery intelligent discharging method, referring to Figure 2 , Figure 2 FIG. 1 is a flowchart of a first embodiment of the battery intelligent discharging method of the present application.

[0063] In the embodiment, the battery intelligent discharging method comprises the following steps:

[0064] Step S10: obtaining working information and battery information.

[0065] It should be noted that the working information and the battery information are obtained from the execution subject of the embodiment, and the execution subject of the embodiment can be an electric vehicle or other equipment with an automatic working function, and the embodiment is not limited herein.

[0066] It can be understood that the battery (Battery) refers to a cup, a groove or other container or a part of space of a composite container containing an electrolyte solution and a metal electrode to generate current, and a device capable of converting chemical energy into electrical energy. It is divided into positive and negative poles. With the progress of science and technology, the battery refers to a small device capable of generating electrical energy. Such as solar cells. The performance parameters of the battery mainly include electromotive force, capacity, specific energy and resistance. Using the battery as an energy source, a current with stable voltage, stable current, long-time stable power supply, little influence from the outside world can be obtained, and the battery structure is simple, convenient to carry, easy to charge and discharge, not affected by the outside climate and temperature, stable and reliable in performance, and plays a great role in various aspects of modern social life. In the embodiment, the battery information acquisition mode refers to using a sensing device with information acquisition or an information display device provided with the battery to acquire information.

[0067] It should be noted that the working information in the embodiment refers to the working progress information of the execution subject in the embodiment after starting, and the working information can be used to determine the current working specific situation of the execution subject in the embodiment and the subsequent working plan. The working information can be obtained by receiving the working information actively reported by the execution subject in the embodiment, or by accessing a preset address to determine the working information.

[0068] It should be noted that the present application relates to a battery intelligent discharging method, and therefore two basic types of information, namely the battery information and the working information, need to be obtained. The working task is determined by the working information, and the corresponding energy supply demand is determined according to the working task. If the energy supply demand conflicts with the current battery information, it is determined that the battery needs to be controlled to intelligently discharge.

[0069] Step S20: determining working task information according to the working information, and determining residual power information according to the battery information.

[0070] It should be noted that determining the work task information according to the work information refers to determining the subsequent work process according to the work plan in the work information, so as to realize the acquisition of the work task information.

[0071] In a specific implementation, determining the residual capacity information according to the battery information refers to determining the residual capacity of the battery, the current actual capacity of the battery, and the battery loss information according to the specific parameters of the battery in the battery information.

[0072] Step S30: acquiring a first discharge strategy in the battery information, and determining whether the residual capacity information meets the work task information according to the first discharge strategy.

[0073] It should be noted that the first discharge strategy refers to the discharge strategy of the battery in the current work process, and specifically includes the discharge parameters of the battery and the specific behavior information of the discharge. In the embodiment, there are the first discharge strategy and the second discharge strategy, and the first and the second have no chronological significance, and are only used to distinguish different discharge strategies. The specific naming is not limited in the embodiment.

[0074] In a specific implementation, determining whether the residual capacity information meets the work task information according to the first discharge strategy refers to acquiring the information of power supply demand in the future work plan in the work task information. According to the power supply demand information and the first discharge strategy, it is determined whether the work task information is met.

[0075] It should be noted that acquiring the first discharge strategy in the battery information refers to determining the first discharge strategy according to the recorded battery discharge information by recording the discharge mode in the battery information. The first discharge strategy includes the specific value of the battery releasing the capacity and the discharge duration.

[0076] Further, in order to improve the judgment accuracy, the step of acquiring the first discharge strategy in the battery information and determining whether the residual capacity information meets the work task information according to the first discharge strategy includes: acquiring the first discharge strategy in the battery information; determining the actual use duration according to the first discharge strategy and the residual capacity information; determining the work residual duration according to the work task information; and determining whether the residual capacity information meets the work task information according to the actual use duration and the work residual duration.

[0077] In a specific implementation, the step of determining the actual use duration according to the first discharge strategy and the residual capacity information includes: acquiring discharge detail process information in the first discharge strategy; determining discharge detail information in each process interval according to the discharge detail process information; and determining the actual use duration according to the discharge detail information and the residual capacity information.

[0078] It should be noted that, in order to realize the judgment of the working mode switching, the step of obtaining the energy consumption information and combining the current working progress information to determine whether the working mode switching is needed, comprises: obtaining the energy consumption information, determining the remaining working time according to the energy consumption information; determining the target working time according to the current working progress information; if the target working time exceeds the remaining working time, it is determined that the working mode switching is needed.

[0079] Step S40: If not, the energy demand information is determined according to the working information.

[0080] It can be understood that if it is determined that the remaining power information meets the working task information, the first discharging strategy will be maintained for working power supply, and the condition for meeting the mode switching is not reached.

[0081] Further, in order to improve the accuracy of energy demand determination, the step of determining the energy demand according to the working information comprises: determining the working plan content in the working information; obtaining the output change condition in the working plan content; determining the corresponding working segmented plan according to the output change condition; and determining the corresponding energy demand according to the working segmented plan.

[0082] It should be noted that the step of determining the corresponding energy demand according to the working segmented plan comprises: determining the segmented output target in the working segmented plan; determining the segmented output plan according to the segmented output target; and determining the energy demand according to all the segmented output plans.

[0083] In specific implementation, before the step of determining the working plan content in the working information is performed, it further comprises the need to clean the collected data. In this embodiment, data cleaning refers to the process of re-examining and verifying data, aiming to delete duplicate information, correct errors, and provide data consistency.

[0084] It can be understood that the above steps of determining the working plan content in the working information, obtaining the output change condition in the working plan content, determining the corresponding working segmented plan according to the output change condition, and determining the corresponding energy demand according to the working segmented plan, need to clean the collected working information before this process, the purpose is to delete useless data, simplify data to save resource consumption required for calculation in subsequent process and improve the accuracy in the process of determining energy demand.

[0085] In specific implementation, it is judged whether the current working task information belongs to a default task or a specified task, wherein the default task is a task without specific actual task or a monotonous task; and the specified task includes task progress, task duration, task content, and task note information, etc.

[0086] Step S50: The second discharging strategy is determined according to the remaining power information and the energy demand information.

[0087] Further, in order to achieve the technical effect of determining the second discharge strategy, the step of determining the second discharge strategy according to the residual power information and the energy demand information comprises: determining a stage demand plan according to the energy demand information; determining whether the stage demand plan is a single demand plan; if yes, determining the second discharge strategy according to the stage demand plan and the residual power information; if no, determining stage energy supply information according to the demand plan to generate a stage energy supply set with stage label information; and determining the second discharge strategy according to the stage energy supply set in combination with the residual power information.

[0088] In a specific implementation, the second discharge strategy is determined by obtaining a preset strategy set after determining the actual power demand, generating a traversal condition in combination with the actual battery power condition, and traversing the preset strategy set according to the traversal condition to obtain the second discharge strategy.

[0089] It should be noted that the so-called traversal refers to sequentially accessing each node in a tree (or graph) along a certain search route. The operation of accessing a node depends on the specific application problem, and the specific access operation can be checking the value of the node, updating the value of the node, etc. Different traversal methods have different node access sequences. Traversal is one of the most important operations on a binary tree and is the basis for other operations on a binary tree. Of course, the concept of traversal is also suitable for the case of a multi-element set, such as an array.

[0090] Step S60: determining work environment information in the work information and updating the second discharge strategy to generate a target discharge strategy.

[0091] Further, in order to reasonably generate the discharge strategy, the step of determining the work environment information in the work information and updating the second discharge strategy to generate the target discharge strategy comprises: determining the work environment information in the work information; determining a power supply restriction condition according to the work environment; and updating the second discharge strategy according to the power supply restriction condition to generate the target discharge strategy.

[0092] It should be noted that the work environment includes a restriction condition of the current power demand of the execution subject of the embodiment, and the second discharge strategy is adjusted according to the work environment.

[0093] Step S70: performing work power supply according to the target discharge strategy.

[0094] The embodiment obtains work information and battery information, determines work task information according to the work information and determines residual power information according to the battery information, determines a first discharge strategy in the battery information, judges whether the work task information is met according to the first discharge strategy, determines energy demand information according to the work information if the work task information is not met, determines a second discharge strategy according to the energy demand information and the residual power information, generates a target discharge strategy by updating the second discharge strategy according to work environment information in the work information, and performs work power supply according to the target discharge strategy. The switching of battery power supply is realized by judging whether the work task information is met, the discharge strategy is adjusted in combination with the work environment information, and the technical effect of effectively performing power supply is realized.

[0095] In addition, the embodiment of the application further provides a computer readable storage medium, and the storage medium stores a battery intelligent discharge program. The battery intelligent discharge program is executed by a processor to realize the steps of the battery intelligent discharge method.

[0096] Reference Figure 3 , Figure 3 is a structural block diagram of the first embodiment of the battery intelligent discharge device.

[0097] As Figure 3 shown, the battery intelligent discharge device provided by the embodiment of the application comprises:

[0098] An information acquisition module 10 is configured to acquire work information and battery information.

[0099] A residual power module 20 is configured to determine work task information according to the work information and determine residual power information according to the battery information.

[0100] A condition judgment module 30 is configured to acquire a first discharge strategy in the battery information and judge whether the residual power information meets the work task information according to the first discharge strategy.

[0101] An energy demand determination module 40 is configured to determine energy demand information according to the work information if the work task information is not met.

[0102] A second discharge strategy determination module 50 is configured to determine a second discharge strategy according to the residual power information and the energy demand information.

[0103] A target discharge strategy module 60 is configured to determine work environment information in the work information, update the second discharge strategy to generate a target discharge strategy, and perform work power supply according to the target discharge strategy.

[0104] A work power supply module 70 is configured to perform work power supply according to the target discharge strategy.

[0105] It should be understood that the above is only an example, and does not constitute any limitation on the technical solutions of the present application. In specific applications, those skilled in the art can set up as needed, and the present application does not limit this.

[0106] The embodiment obtains working information and battery information, determines working task information according to the working information and determines residual power information according to the battery information; determines a first discharge strategy in the battery information and judges whether the working task information is met according to the first discharge strategy; if not, determines energy demand information according to the working information; determines a second discharge strategy according to the energy demand information and the residual power information; updates the second discharge strategy according to working environment information in the working information to generate a target discharge strategy and performs working power supply. The switching of battery power supply is realized by judging whether the working task information is met, and the discharge strategy is adjusted in combination with the working environment information, thereby realizing the technical effect of effectively performing power supply.

[0107] In an embodiment, the condition judging module 30 is further configured to obtain a first discharge strategy in the battery information; determine an actual use duration according to the first discharge strategy in combination with the residual power information; determine a working residual duration according to the working task information; and judge whether the residual power information meets the working task information according to the actual use duration and the working residual duration.

[0108] In an embodiment, the condition judging module 30 is further configured to obtain discharge detail process information in the first discharge strategy; determine discharge detail information in each process interval according to the discharge detail process information; and determine an actual use duration according to the discharge detail information in combination with the residual power information.

[0109] In an embodiment, the energy demand determining module 40 is further configured to determine working plan content in the working information; obtain an output change condition in the working plan content; determine a corresponding working segmented plan according to the output change condition; and determine a corresponding energy demand according to the working segmented plan.

[0110] In an embodiment, the energy demand determining module 40 is further configured to determine a segmented output target in the working segmented plan; determine a segmented output plan according to the segmented output target; and determine an energy demand according to all the segmented output plans.

[0111] In an embodiment, the second discharge strategy determining module 50 is further configured to determine a stage demand plan according to the energy demand information; judge whether the stage demand plan is a single demand plan; if yes, determine a second discharge strategy according to the stage demand plan and the residual power information; if not, determine stage power supply information according to the demand plan to generate a stage power supply set with stage label information; and determine a second discharge strategy according to the stage power supply set in combination with the residual power information.

[0112] In an embodiment, the target discharging strategy module 60 is further configured to determine working environment information in the working information; determine a power supply limitation condition according to the working environment; and update the second discharging strategy according to the power supply limitation condition to generate the target discharging strategy.

[0113] It should be noted that the above-described workflow is merely illustrative and does not limit the scope of protection of the present application. In actual applications, a person skilled in the art can select part or all of the above-described workflow to achieve the purpose of the embodiment according to actual needs, and the selection is not limited herein.

[0114] In addition, technical details not described in detail in the embodiment can be found in the battery intelligent discharging method provided by any embodiment of the present application, and will not be described again here.

[0115] In addition, it should be noted that in this document, the terms "comprise", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or system. Without more limitations, the element defined by the statement "comprises a" does not exclude the presence of another identical element in the process, method, article or system that includes the element.

[0116] The serial numbers of the above embodiments of the present application are only for description, and do not represent the advantages or disadvantages of the embodiments.

[0117] From the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment method can be realized by means of software and necessary general hardware platform, of course, it can also be realized by hardware, but in many cases, the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as a read only memory (ROM) / RAM, a magnetic disk, an optical disk), and includes a plurality of instructions for making a terminal device (which can be a mobile phone, a computer, a server, or a network device, etc.) execute the methods described in various embodiments of the present application.

[0118] The above is only the preferred embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the present application specification and drawings, or directly or indirectly applied to other related technical fields, is also included in the patent protection scope of the present application.

Claims

1. A battery intelligent discharge method, characterized in that: include: Get working information and battery information; Determine work task information based on the work information, and determine remaining power information based on the battery information; Obtaining a first discharge strategy from the battery information, and determining whether the remaining power information meets the work task information according to the first discharge strategy; If not, determining energy demand information based on the work information; determining a second discharging strategy according to the remaining power information and the energy demand information; determining working environment information in the working information and updating the second discharging strategy to generate a target discharging strategy; Providing working power supply according to the target discharge strategy; The step of determining the energy demand according to the working information includes: Determining the work plan content in the work information; Obtaining output change conditions in the work plan content; Determine the corresponding work segmentation plan according to the output change condition; Determining corresponding energy requirements according to the work segmentation plan; The step of determining the working environment information in the working information and updating the second discharge strategy to generate a target discharge strategy includes: determining work environment information in the work information; determining power supply restriction conditions according to the working environment; updating the second discharging strategy according to the power supply constraint condition to generate a target discharging strategy; The step of determining the corresponding energy demand according to the work segmentation plan includes: Determining segment output targets in the work segment plan; Determine a segmented output plan according to the segmented output target; determining energy requirements based on all of the described segmented output plans; The step of determining the second discharge strategy according to the remaining power information and the energy demand information includes: determining a phase demand plan based on the energy demand information; Determining whether the demand plan for the stage is a single demand plan; If so, determining a second discharge strategy according to the stage demand plan and the remaining power information; If not, determining the stage energy supply information according to the demand plan to generate a stage energy supply set with stage tag information; Determining a second discharging strategy based on the stage energy supply set and the remaining power information; The second discharge strategy is determined by obtaining a preset strategy set after determining the actual power demand, generating a traversal condition based on the actual battery power, and traversing the preset strategy set according to the traversal condition to obtain the second discharge strategy.

2. The battery intelligent discharging method according to claim 1, characterized in that: The step of obtaining a first discharge strategy from the battery information and determining whether the remaining power information meets the work task information according to the first discharge strategy includes: Acquire a first discharging strategy from the battery information; determining an actual usage time according to the first discharging strategy and the remaining power information; Determine the remaining time of the work according to the work task information; It is determined whether the remaining power information meets the work task information based on the actual usage time and the remaining work time.

3. The battery intelligent discharging method according to claim 2, characterized in that: The step of determining the actual usage time according to the first discharge strategy and the remaining power information includes: Acquiring discharge detail process information in the first discharge strategy; determining discharge detail information in each process interval according to the discharge detail process information; The actual usage time is determined based on the discharge details information and the remaining power information.

4. A battery intelligent discharge device, characterized in that: The battery intelligent discharge device comprises: Information acquisition module, used to obtain working information and battery information; A remaining power module is used to determine work task information based on the work information and to determine remaining power information based on the battery information; a condition judgment module, configured to obtain a first discharge strategy from the battery information, and judge whether the remaining power information satisfies the work task information according to the first discharge strategy; an energy demand determination module, configured to, if not, determine energy demand information based on the working information; a second discharge strategy determination module, configured to determine a second discharge strategy based on the remaining power information and the energy demand information; a target discharge strategy module, configured to determine working environment information in the working information and update the second discharge strategy to generate a target discharge strategy; A working power supply module, configured to provide working power supply according to the target discharge strategy; The step of determining the energy demand according to the working information includes: Determining the work plan content in the work information; Obtaining output change conditions in the work plan content; Determine the corresponding work segmentation plan according to the output change condition; Determining corresponding energy requirements according to the work segmentation plan; The step of determining the working environment information in the working information and updating the second discharge strategy to generate a target discharge strategy includes: determining work environment information in the work information; determining power supply restriction conditions according to the working environment; updating the second discharging strategy according to the power supply constraint condition to generate a target discharging strategy; The step of determining the corresponding energy demand according to the work segmentation plan includes: Determining segment output targets in the work segment plan; Determine a segmented output plan according to the segmented output target; determining energy requirements based on all of the described segmented output plans; The step of determining the second discharge strategy according to the remaining power information and the energy demand information includes: determining a phase demand plan based on the energy demand information; Determining whether the demand plan for the stage is a single demand plan; If so, determining a second discharge strategy according to the stage demand plan and the remaining power information; If not, determining the stage energy supply information according to the demand plan to generate a stage energy supply set with stage tag information; Determining a second discharging strategy based on the stage energy supply set and the remaining power information; The second discharge strategy is determined by obtaining a preset strategy set after determining the actual power demand, generating a traversal condition based on the actual battery power, and traversing the preset strategy set according to the traversal condition to obtain the second discharge strategy.

5. A computer device, characterized in that: The device comprises: a memory and a processor, wherein the processor executes the method according to any one of claims 1 to 3 when running computer instructions stored in the memory.

6. A computer-readable storage medium, characterized in that The method comprises instructions, which, when executed on a computer, cause the computer to execute the method according to any one of claims 1 to 3.

Citation Information

Patent Citations

  • Information handling system with battery power management

    US20220271555A1