The application discloses a storage battery intelligent monitoring management method and device based on an intelligent monitoring management host, computer equipment and a storage medium.

By automating the acquisition and display of battery information through an intelligent monitoring and management host, the problem of low efficiency in traditional manual monitoring is solved, and efficient battery monitoring is achieved.

CN120749266BActive Publication Date: 2025-12-16ENG CONSTR MANAGEMENT BRANCH OF CHINA SOUTHERN POWERGRID POWER GENERATION CO LTD +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202511157518.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2025-12-16
Estimated Expiration
2045-08-19

AI Technical Summary

Technical Problem

Traditional manual monitoring of batteries is inefficient and consumes a lot of time and manpower.

Method used

The intelligent monitoring and management host acquires information on battery packs and individual cells, builds a battery model, and displays it on the interface to achieve automated monitoring.

Benefits of technology

It improves battery monitoring efficiency, avoids the waste of time and manpower caused by manual intervention, and enhances monitoring efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120749266B_ABST
    Figure CN120749266B_ABST
Patent Text Reader

Abstract

The application relates to a storage battery intelligent monitoring management method and device based on an intelligent monitoring management host, computer equipment, a storage medium and a computer program product. The method comprises the following steps: in response to a click operation of a storage battery group option on an interface of the intelligent monitoring management host, obtaining storage battery group information of a target storage battery group corresponding to the storage battery group option collected by a group module connected to the intelligent monitoring management host, and obtaining single battery information of each storage battery in the target storage battery group collected by a single module connected to the intelligent monitoring management host; in response to a click operation of a battery information option on the interface, constructing a storage battery model of each storage battery in the target storage battery group according to the single battery information of each storage battery in the target storage battery group; and displaying the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group on the interface. The method can improve the monitoring efficiency of the storage battery.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power grid, in particular to a storage battery intelligent monitoring management method and device based on an intelligent monitoring management host, computer equipment, a computer readable storage medium and a computer program product. BACKGROUND

[0002] At present, in order to ensure the stable operation of the power system, how to efficiently monitor the storage battery is crucial.

[0003] In the prior art, in the process of monitoring the storage battery, an artificial monitoring method is adopted. However, this artificial monitoring method consumes a large amount of time and manpower, resulting in low monitoring efficiency of the storage battery. SUMMARY

[0004] Therefore, it is necessary to provide a storage battery intelligent monitoring management method and device based on an intelligent monitoring management host, computer equipment, a computer readable storage medium and a computer program product, which can improve the monitoring efficiency of the storage battery.

[0005] In a first aspect, the present application provides a storage battery intelligent monitoring management method based on an intelligent monitoring management host, comprising:

[0006] In response to a click operation on a storage battery group option on an interface of the intelligent monitoring management host, storage battery group information of a target storage battery group corresponding to the storage battery group option collected by a group module connected to the intelligent monitoring management host is acquired, and single battery information of each storage battery in the target storage battery group collected by a single module connected to the intelligent monitoring management host is acquired; the storage battery group information at least includes group voltage, group current and battery capacity; the single battery information at least includes storage battery voltage, storage battery temperature, storage battery internal resistance, storage battery bulging information and storage battery leakage information;

[0007] In response to a click operation on a battery information option on the interface, a storage battery model of each storage battery in the target storage battery group is constructed according to the single battery information of each storage battery in the target storage battery group.

[0008] The storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group are displayed on the interface. The corresponding single battery information is displayed on each storage battery model.

[0009] In one embodiment, in response to the click operation on the battery information option on the interface, the storage battery model of each storage battery in the target storage battery group is constructed according to the single battery information of each storage battery in the target storage battery group, comprising:

[0010] in response to a click operation on the battery information option on the interface, display a sub-battery information option in the battery information option on the interface; the sub-battery information option at least includes a battery pack option, a voltage option, an alarm option, an internal resistance option and a health status option;

[0011] in response to a click operation on the sub-battery information option, according to the single battery information of each battery in the target battery pack, construct a battery model of each battery in the target battery pack;

[0012] the displaying of the battery pack information of the target battery pack and the battery model of each battery in the target battery pack on the interface comprises:

[0013] determine the arrangement order of the battery model according to the clicked sub-battery information option;

[0014] display the battery pack information of the target battery pack on a first area on the interface, and display the battery model of each battery in the target battery pack on a second area on the interface according to the arrangement order.

[0015] in one embodiment, after the displaying of the battery pack information of the target battery pack and the battery model of each battery in the target battery pack on the interface, further comprising:

[0016] in response to a click operation on the alarm information option on the interface, according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, determine the current alarm information of the target battery pack; the current alarm information at least includes the fault battery number, alarm content and trigger time of the target battery pack;

[0017] display the current alarm information on the interface.

[0018] in one embodiment, before the determining of the current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, further comprising:

[0019] in response to a threshold setting instruction of the target battery pack, determine the corresponding alarm threshold of the target battery pack; the alarm threshold at least includes the corresponding voltage alarm threshold, internal resistance alarm threshold, current alarm threshold, temperature alarm threshold and capacity alarm threshold of the target battery pack;

[0020] The current alarm information of the target battery pack is determined according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, and the current alarm information of the target battery pack includes:

[0021] The current alarm information of the target battery pack is determined according to the battery pack information, the single battery information and the alarm threshold.

[0022] In one embodiment, after the current alarm information of the target battery pack is determined according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, the method further includes:

[0023] In response to a click operation on an operation task option on the interface, a candidate test option corresponding to the operation task option is displayed on the interface; the candidate test option at least includes an internal resistance test option, a connection bar test option and a standby time test option;

[0024] In response to a click operation on the candidate test option, test information corresponding to the clicked candidate test option is obtained;

[0025] According to the test information, the target battery pack is tested.

[0026] In one embodiment, before the battery pack information of the target battery pack collected by the group module connected to the intelligent monitoring and management host and the single battery information of each battery in the target battery pack collected by the single module connected to the intelligent monitoring and management host are obtained in response to a click operation on a battery pack option on an interface of the intelligent monitoring and management host, the method further includes:

[0027] The first configuration information of the battery pack to be configured and the second configuration information of the intelligent monitoring and management host to be configured are obtained; the first configuration information at least includes the battery parameters, the coding parameters, the floating parameters and the battery balancing parameters of the battery pack to be configured; the second configuration information at least includes the network connection information of the intelligent monitoring and management host to be configured;

[0028] According to the first configuration information, the battery pack to be configured is configured to obtain the battery pack connected to the intelligent monitoring and management host, and according to the second configuration information, the intelligent monitoring and management host to be configured is configured to obtain the intelligent monitoring and management host; the battery pack connected to the intelligent monitoring and management host includes the target battery pack.

[0029] In a second aspect, the application further provides a battery intelligent monitoring and management device based on an intelligent monitoring and management host, which includes:

[0030] an information obtaining module, configured to, in response to a click operation on a battery pack option on an interface of the intelligent monitoring management host, obtain battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host, and obtain single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host; the battery pack information at least includes group voltage, group current and battery capacity; and the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information;

[0031] a model constructing module, configured to, in response to a click operation on a battery information option on the interface, construct a battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack;

[0032] an information displaying module, configured to display the battery pack information of the target battery pack and the battery model of each battery in the target battery pack on the interface; and each battery model is displayed with corresponding single battery information.

[0033] In a third aspect, the present application further provides a computer device, comprising a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program:

[0034] in response to a click operation on a battery pack option on an interface of the intelligent monitoring management host, obtain battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host, and obtain single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host; the battery pack information at least includes group voltage, group current and battery capacity; and the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information;

[0035] in response to a click operation on a battery information option on the interface, construct a battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack;

[0036] display the battery pack information of the target battery pack and the battery model of each battery in the target battery pack on the interface; and each battery model is displayed with corresponding single battery information.

[0037] In a fourth aspect, 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 the following steps:

[0038] In response to a click operation on a battery pack option on an interface of the intelligent monitoring management host, battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host is acquired, and single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host is acquired; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information;

[0039] In response to a click operation on a battery information option on the interface, a battery model of each battery in the target battery pack is constructed according to the single battery information of each battery in the target battery pack;

[0040] The battery pack information of the target battery pack and the battery model of each battery in the target battery pack are displayed on the interface; and the corresponding single battery information is displayed on each battery model.

[0041] In a fifth aspect, the present application also provides a computer program product, which includes a computer program, and the computer program is executed by a processor to implement the following steps:

[0042] In response to a click operation on a battery pack option on an interface of the intelligent monitoring management host, battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host is acquired, and single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host is acquired; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information;

[0043] In response to a click operation on a battery information option on the interface, a battery model of each battery in the target battery pack is constructed according to the single battery information of each battery in the target battery pack;

[0044] The battery pack information of the target battery pack and the battery model of each battery in the target battery pack are displayed on the interface; and the corresponding single battery information is displayed on each battery model.

[0045] The above battery intelligent monitoring management method and device based on the intelligent monitoring management host, computer equipment, storage medium and computer program product, first, in response to a click operation on a battery pack option on the interface of the intelligent monitoring management host, obtain battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host, such as group voltage, group current and battery capacity, and obtain single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host, such as battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information, then, in response to a click operation on a battery information option on the interface, construct a battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack, and finally, display the battery pack information of the target battery pack and the battery model of each battery in the target battery pack on the interface. The corresponding single battery information is displayed on each battery model. In this way, during the monitoring of the battery, the battery pack information of the target battery pack and the battery model of each battery in the target battery pack can be quickly obtained in response to the click operation on the battery pack option on the interface of the intelligent monitoring management host and the click operation on the battery information option on the interface, and then the above information can be directly displayed on the interface, which is beneficial to improve the monitoring efficiency of the battery. Moreover, the whole process does not need manual intervention, which avoids the defect that the manual monitoring method consumes a lot of time and manpower and leads to low monitoring efficiency of the battery, and thus improves the monitoring efficiency of the battery. BRIEF DESCRIPTION OF DRAWINGS

[0046] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related art, the drawings needed to be used in the description of the embodiments of the present application or the related art will be briefly introduced. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other related drawings can be obtained without creative labor.

[0047] Figure 1 A flowchart of a battery intelligent monitoring management method based on an intelligent monitoring management host in an embodiment;

[0048] Figure 2 A schematic diagram of a battery information page in an embodiment;

[0049] Figure 3 A schematic diagram of a battery alarm page in an embodiment;

[0050] Figure 4 A schematic diagram of a battery health status page in an embodiment;

[0051] Figure 5 Fig. 1 is a schematic diagram of a current alarm page in one embodiment;

[0052] Figure 6 Fig. 2 is a schematic diagram of an alarm setting page in one embodiment;

[0053] Figure 7 Fig. 3 is a schematic diagram of an internal resistance operation task page in one embodiment;

[0054] Figure 8 Fig. 4 is a schematic diagram of a connection strip test page in one embodiment;

[0055] Figure 9 Fig. 5 is a schematic diagram of a standby time test page in one embodiment;

[0056] Figure 10 Fig. 6 is a schematic diagram of a battery parameter page in one embodiment;

[0057] Figure 11 Fig. 7 is a schematic diagram of a module address page in one embodiment;

[0058] Figure 12 Fig. 8 is a schematic diagram of a float management page in one embodiment;

[0059] Figure 13 Fig. 9 is a schematic diagram of a battery equalization page in one embodiment;

[0060] Figure 14 Fig. 10 is a schematic diagram of a network connection page in one embodiment;

[0061] Figure 15 Fig. 11 is a schematic diagram of a flow of a storage battery intelligent monitoring management method based on an intelligent monitoring management host in another embodiment;

[0062] Figure 16 Fig. 12 is a structural block diagram of a storage battery intelligent monitoring management device based on an intelligent monitoring management host in one embodiment;

[0063] Figure 17 Fig. 13 is an internal structure diagram of a computer device in one embodiment. DETAILED DESCRIPTION

[0064] In order to make the purpose, technical scheme 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 are not used to limit the present application.

[0065] It should be noted that the user information (including but not limited to user equipment information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in the present application are all information and data authorized by the user or authorized by all parties, and the collection, use and processing of related data need to comply with relevant regulations.

[0066] In one exemplary embodiment, as shown in Figure 1 A battery intelligent monitoring management method based on an intelligent monitoring management host is provided, and the present embodiment takes the method applied to an intelligent monitoring management host as an example; it can be understood that the method can also be applied to a server, can also be applied to a terminal, and can also be applied to a system including a terminal and a server, and is realized through interaction between the terminal and the server. The terminal can be, but is not limited to, various personal computers, notebook computers, smart phones and tablet computers; the server can be realized by an independent server or a server cluster composed of multiple servers. In the present embodiment, the method comprises the following steps:

[0067] In step S101, in response to a click operation on a battery pack option on the interface of the intelligent monitoring management host, battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host is acquired, and single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host is acquired; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information.

[0068] The intelligent monitoring management host refers to a device for monitoring all battery packs in the current location (such as the current site) and each battery in each battery pack.

[0069] The battery pack option refers to a clickable selection item representing different battery packs on the interface of the intelligent monitoring management host. As shown in Figure 2 The battery pack option includes "battery pack one", "battery pack two", "battery pack three" and "battery pack four".

[0070] The group module refers to a module connected to the intelligent monitoring management host for collecting battery pack information of the battery pack.

[0071] The battery pack information at least includes group voltage, group current and battery capacity.

[0072] The group voltage refers to the voltage value between the two ends of the battery pack.

[0073] The group current refers to the current value flowing through the battery pack.

[0074] The battery capacity is used to represent the ability of the battery pack to store electricity.

[0075] The target battery pack refers to the specific battery pack selected after clicking the battery pack option on the interface of the intelligent monitoring and management host. It should be noted that the target battery pack includes multiple batteries. For example, the target battery pack "battery pack one" includes battery 1, battery 2, battery 3, battery 4, battery 5, battery 6, and battery 7.

[0076] The single module refers to a module connected to the intelligent monitoring and management host, used to collect single battery information of each single battery in the target battery pack.

[0077] The single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information, and battery leakage information.

[0078] The battery voltage refers to the voltage value between the two terminals of the battery.

[0079] The battery temperature refers to the temperature value of the battery.

[0080] The battery internal resistance refers to the internal resistance of the battery.

[0081] The battery bulging information is used to represent the bulging condition of the battery.

[0082] The battery leakage information is used to represent the leakage condition of the battery.

[0083] Exemplarily, in response to a click operation on the battery pack option on the interface of the intelligent monitoring and management host, the intelligent monitoring and management host determines the battery pack corresponding to the battery pack option as the target battery pack; then, the intelligent monitoring and management host generates a battery pack information collection instruction and a single battery information collection instruction for the target battery pack, and sends the battery pack information collection instruction to the group module connected to the intelligent monitoring and management host, and sends the single battery information collection instruction to the single module connected to the intelligent monitoring and management host; the group module collects the group voltage, the group current, and the battery capacity of the target battery pack according to the battery pack information collection instruction, as the battery pack information of the target battery pack, and returns the battery pack information of the target battery pack to the intelligent monitoring and management host; the single module collects the battery voltage, the battery temperature, the battery internal resistance, the battery bulging information, and the battery leakage information of each battery in the target battery pack according to the single battery information collection instruction, as the single battery information of each battery in the target battery pack, and returns the single battery information of each battery in the target battery pack to the intelligent monitoring and management host.

[0084] In response to a click operation on the battery information option on the interface, the battery model of each battery in the target battery pack is constructed according to the single battery information of each battery in the target battery pack.

[0085] The battery information option refers to a clickable selection item representing the battery information of each battery on the interface of the intelligent monitoring and management host. Figure 2 As shown in the figure, the battery information option refers to the option "battery information" on the interface of the intelligent monitoring and management host.

[0086] The battery model is used to represent the information model of each battery.

[0087] For example, in response to a click operation on the battery information option on the interface, the intelligent monitoring and management host pre-processes (such as denoising) the single battery information of each battery in the target battery pack, and obtains the denoised single battery information of each battery in the target battery pack. Then, the intelligent monitoring and management host constructs the battery model of each battery in the target battery pack based on the denoised single battery information of each battery in the target battery pack according to a preset model construction method.

[0088] In step S103, the battery pack information of the target battery pack and the battery model of each battery in the target battery pack are displayed on the interface. The corresponding single battery information is displayed on each battery model.

[0089] For example, in response to the information display instruction of the target battery pack, the intelligent monitoring and management host divides the interface to obtain a region for displaying the battery pack information and a region for displaying the battery model. Then, the intelligent monitoring and management host displays the battery pack information of the target battery pack on the region for displaying the battery pack information, and displays the battery model of each battery in the target battery pack on the region for displaying the battery model.

[0090] In the above intelligent monitoring management method for the storage battery based on the intelligent monitoring management host, in response to a click operation on a storage battery group option on an interface of the intelligent monitoring management host, storage battery group information of a target storage battery group corresponding to the storage battery group option collected by a group module connected to the intelligent monitoring management host is acquired, and single battery information of each storage battery in the target storage battery group collected by a single module connected to the intelligent monitoring management host is acquired. In response to a click operation on a battery information option on the interface, a storage battery model of each storage battery in the target storage battery group is constructed according to the single battery information of each storage battery in the target storage battery group. Finally, the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group are displayed on the interface. The corresponding single battery information is displayed on each storage battery model. In this way, in the process of monitoring the storage battery, the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group can be quickly obtained in response to the click operation on the storage battery group option on the interface of the intelligent monitoring management host and the click operation on the battery information option on the interface. The above information can be directly displayed on the interface, which is beneficial to improving the monitoring efficiency of the storage battery. Moreover, the whole process does not need manual intervention, which avoids the defects that the manual monitoring method consumes a large amount of time and manpower and leads to a low monitoring efficiency of the storage battery, thereby improving the monitoring efficiency of the storage battery.

[0091] In one exemplary embodiment, the step S102 of constructing the storage battery model of each storage battery in the target storage battery group according to the single battery information of each storage battery in the target storage battery group in response to the click operation on the battery information option on the interface specifically includes the following contents: in response to the click operation on the battery information option on the interface, a sub battery information option in the battery information option is displayed on the interface; the sub battery information option at least includes a battery group option, a voltage option, an alarm option, an internal resistance option and a health status option; in response to the click operation on the sub battery information option, the storage battery model of each storage battery in the target storage battery group is constructed according to the single battery information of each storage battery in the target storage battery group.

[0092] Then, the step S103 of displaying the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group on the interface specifically includes the following contents: the arrangement order of the storage battery model is determined according to the clicked sub battery information option; the storage battery group information of the target storage battery group is displayed on a first area on the interface, and the storage battery model of each storage battery in the target storage battery group is displayed on a second area on the interface according to the arrangement order.

[0093] The sub-battery information option includes at least a battery group option, a voltage option, an alarm option, an internal resistance option, and a health status option.

[0094] The battery group option is used to represent an option of displaying the battery models in a default order, such as a battery number. It should be noted that the interface obtained by clicking the battery group option is as shown in FIG. 6. Figure 2

[0095] The voltage option is used to represent an option of displaying the battery models in an order of voltage values.

[0096] The alarm option is used to represent an option of displaying the battery models in an order of alarm levels. It should be noted that the interface obtained by clicking the alarm option is as shown in FIG. 7. Figure 3

[0097] The internal resistance option is used to represent an option of displaying the battery models in an order of internal resistance values.

[0098] The health status option is used to represent an option of displaying the battery models in an order of battery capacities. It should be noted that the interface obtained by clicking the health status option is as shown in FIG. 8. Figure 4

[0099] The arrangement order is used to represent the display order of the battery models on the interface.

[0100] The first area is used to represent an area on the interface for displaying the battery group information of the target battery group.

[0101] The second area is used to represent an area on the interface for displaying the battery models of each battery in the target battery group.

[0102] ​​​Exemplarily, the intelligent monitoring management host determines, in response to a click operation on the battery information option on the interface, that the battery group option, the voltage option, the alarm option, the internal resistance option, and the health status option in the battery information option are all sub-battery information options in the battery information option, and displays the sub-battery information options in the battery information option on the interface. Then, the intelligent monitoring management host pre-processes (such as denoising processing) the single battery information of each storage battery in the target storage battery group in response to a click operation on the sub-battery information option, to obtain denoised single battery information of each storage battery in the target storage battery group. Then, the intelligent monitoring management host constructs, according to a preset model construction manner, a storage battery model of each storage battery in the target storage battery group based on the denoised single battery information of each storage battery in the target storage battery group. Then, the intelligent monitoring management host queries, according to the clicked sub-battery information option, a corresponding relationship between the sub-battery information option and the arrangement order, to obtain the arrangement order corresponding to the clicked sub-battery information option as the arrangement order of the storage battery model. Then, the intelligent monitoring management host divides the interface according to a preset division manner, to obtain a region for displaying the storage battery group information and a region for displaying the storage battery model, and takes the region for displaying the storage battery group information as the first region on the interface and takes the region for displaying the storage battery model as the second region on the interface. Then, the intelligent monitoring management host displays the storage battery group information of the target storage battery group on the first region on the interface and displays the storage battery model of each storage battery in the target storage battery group on the second region on the interface according to the arrangement order.

[0103] In this embodiment, the related information of the target storage battery group is used for dynamic sorting and partition display, so that the operation personnel can obtain the most critical data with the least operation steps and the shortest visual path, and the intelligent and fine level of the storage battery monitoring is significantly improved.

[0104] In one exemplary embodiment, after the step S103 of displaying the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group on the interface, the step S103 specifically includes the following content: in response to a click operation on the alarm information option on the interface, the current alarm information of the target storage battery group is determined according to the storage battery group information of the target storage battery group and the single battery information of each storage battery in the target storage battery group; the current alarm information at least includes the fault storage battery number, the alarm content, and the trigger time of the target storage battery group; and the current alarm information is displayed on the interface.

[0105] The alarm information option refers to an option for displaying the alarm information of the target storage battery group.

[0106] The current alarm information at least includes the fault storage battery number, the alarm content, and the trigger time of the target storage battery group, such asFigure 5 as shown.

[0107] wherein the fault battery number is used to represent the unique identification of the battery triggering the alarm in the target battery pack.

[0108] wherein the alarm content refers to the text information describing the fault type and specific abnormality of the battery.

[0109] wherein the triggering time refers to the specific time when the battery triggers the alarm.

[0110] Exemplarily, in response to a click operation on the alarm information option on the interface, the intelligent monitoring and management host respectively pre-processes the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, to obtain pre-processed battery pack information of the target battery pack and pre-processed single battery information of each battery in the target battery pack; then, the intelligent monitoring and management host respectively performs feature extraction processing on the pre-processed battery pack information and the pre-processed single battery information, to obtain a first feature vector of the pre-processed battery pack information and a second feature vector of the pre-processed single battery information, and inputs the first feature vector and the second feature vector into the trained alarm content prediction model, to obtain the alarm content corresponding to the pre-processed battery pack information and the pre-processed single battery information as the current alarm content of the target battery pack; then, the intelligent monitoring and management host obtains the fault battery number and the triggering time of the target battery pack, and combines the current alarm content, the fault battery number and the triggering time of the target battery pack, to obtain the current alarm information of the target battery pack; then, the intelligent monitoring and management host determines the area on the interface for displaying the current alarm information, and displays the current alarm information in the area for displaying the current alarm information.

[0111] In this embodiment, by combining the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, the current alarm information of the target battery pack can be quickly determined and displayed in real time, thereby shortening the fault response time and improving the fault response efficiency of the target battery pack.

[0112] In one exemplary embodiment, before determining the current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, specifically including the following content: in response to a threshold setting instruction for the target battery pack, determining the alarm threshold corresponding to the target battery pack; the alarm threshold at least includes the voltage alarm threshold, the internal resistance alarm threshold, the current alarm threshold, the temperature alarm threshold and the capacity alarm threshold corresponding to the target battery pack.

[0113] Then, according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, the current alarm information of the target battery pack is determined, which specifically includes the following contents: according to the battery pack information, the single battery information and the alarm threshold, the current alarm information of the target battery pack is determined.

[0114] The threshold setting instruction is an instruction for setting the alarm threshold corresponding to the target battery pack.

[0115] The alarm threshold at least includes the voltage alarm threshold, the internal resistance alarm threshold, the current alarm threshold, the temperature alarm threshold and the capacity alarm threshold corresponding to the target battery pack, as shown in Figure 6

[0116] The voltage alarm threshold is an alarm threshold for monitoring whether the voltage of the battery pack or the single battery is abnormal, including the single voltage overcharge alarm value, the single voltage overcharge alarm recovery value, the single voltage overdischarge alarm value, the single voltage overdischarge alarm recovery value, the group voltage overcharge alarm value, the group voltage overcharge alarm recovery value, the group voltage overdischarge alarm value and the group voltage overdischarge alarm recovery value, as shown in Figure 6

[0117] The internal resistance alarm threshold is an alarm threshold for monitoring the internal chemical performance and health status of the battery, including the internal resistance overlarge alarm coefficient and the internal resistance overlarge alarm coefficient recovery value, as shown in Figure 6

[0118] The current alarm threshold is an alarm threshold for monitoring whether the charge and discharge current of the battery pack exceeds the safe range, including the charge overcurrent alarm value and the charge overcurrent alarm recovery value, as shown in Figure 6

[0119] The temperature alarm threshold is an alarm threshold for monitoring the temperature of the battery pack or the single battery, including the battery high temperature alarm value, the battery high temperature alarm recovery value, the environment high temperature alarm value and the environment high temperature alarm recovery value, as shown in Figure 6

[0120] The capacity alarm threshold is an alarm threshold for monitoring the remaining capacity of the battery pack, including the SOC (State of Charge, remaining capacity) low alarm value and the SOC low alarm recovery value, as shown in Figure 6

[0121] ​​​​​​Exemplarily, the intelligent monitoring management host determines, in response to a threshold setting instruction for the target battery pack, a voltage alarm threshold, an internal resistance alarm threshold, a current alarm threshold, a temperature alarm threshold and a capacity alarm threshold corresponding to the target battery pack as alarm thresholds corresponding to the target battery pack; then, the intelligent monitoring management host queries, according to the battery pack information, the single battery information and the alarm thresholds, a correspondence between the battery pack information, the single battery information, the alarm thresholds and alarm contents, obtains alarm contents corresponding to the battery pack information, the single battery information and the alarm thresholds as current alarm contents of the target battery pack; and then, the intelligent monitoring management host obtains a fault battery number and a triggering time of the target battery pack, and combines the current alarm contents, the fault battery number and the triggering time of the target battery pack to obtain current alarm information of the target battery pack.

[0122] In this embodiment, the voltage, internal resistance, current, temperature and capacity alarm thresholds are flexibly configured in response to a threshold setting instruction, and the real-time battery pack information and single battery information are compared and analyzed, so that the current alarm information can be accurately and timely determined, and the battery pack fault early warning and processing efficiency can be improved.

[0123] In one exemplary embodiment, after the current alarm information of the target battery pack is determined according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, the following content is included: in response to a click operation on an operation task option on the interface, a candidate test option corresponding to the operation task option is displayed on the interface; the candidate test option at least includes an internal resistance test option, a connecting strip test option and a standby duration test option; in response to a click operation on the candidate test option, test information corresponding to the clicked candidate test option is obtained; and the target battery pack is tested according to the test information.

[0124] The operation task option is an option on the interface for triggering battery pack testing.

[0125] The candidate test option at least includes an internal resistance test option, a connecting strip test option and a standby duration test option.

[0126] The internal resistance test option is an option for triggering measurement and analysis of the internal resistance of the battery pack. It should be noted that the interface obtained by clicking the internal resistance test option is as shown in Figure 7 .

[0127] The connecting strip test option is an option for triggering measurement and analysis of the electrical connection state of the connecting strip (or pole) of the battery pack. It should be noted that the interface obtained by clicking the connecting strip test option is as shown in Figure 8 .

[0128] The standby duration test option is an option for triggering measurement and analysis of the duration of the battery pack providing power after being disconnected from the main power supply. It should be noted that the interface obtained by clicking the standby duration test option is as shown in FIG. 8. Figure 9

[0129] The test information is used to represent specific test parameters bound to the candidate test options, such as the battery pack to be tested, the task start time, the interval days, the cycle number, etc.

[0130] For example, the intelligent monitoring and management host displays the internal resistance test option, the connection strip test option, and the standby duration test option corresponding to the operation task option on the interface as the candidate test options corresponding to the operation task option in response to the clicking operation on the operation task option on the interface. Then, the intelligent monitoring and management host obtains the test information corresponding to the clicked candidate test option in response to the clicking operation on the candidate test option. Then, the intelligent monitoring and management host performs a verification process on the test information to obtain a verification result of the test information. In the case where the verification result indicates that the test information is passed, the intelligent monitoring and management host performs a test on the target battery pack according to the test information.

[0131] In this embodiment, the hierarchical design of the interface operation task option guides the user to conveniently select the candidate test options of internal resistance, connection strip, and standby duration, and automatically performs targeted tests in combination with the preset test information, thereby realizing the process standardization and operation visualization of the battery pack maintenance test.

[0132] In one exemplary embodiment, before the step S101 of obtaining the battery pack information of the target battery pack corresponding to the battery pack option collected by the group module connected to the intelligent monitoring and management host and obtaining the single battery information of each battery in the target battery pack collected by the single module connected to the intelligent monitoring and management host in response to the clicking operation on the battery pack option on the interface of the intelligent monitoring and management host, the step S101 specifically includes the following contents: obtaining first configuration information of a battery pack to be configured and second configuration information of the intelligent monitoring and management host to be configured; the first configuration information at least includes battery parameters, coding parameters, floating parameters, and battery equalization parameters of the battery pack to be configured; the second configuration information at least includes network connection information of the intelligent monitoring and management host to be configured; configuring the battery pack to be configured according to the first configuration information to obtain the battery pack connected to the intelligent monitoring and management host, and configuring the intelligent monitoring and management host to be configured according to the second configuration information to obtain the intelligent monitoring and management host; the battery pack connected to the intelligent monitoring and management host includes the target battery pack.

[0133] The battery pack to be configured is a battery pack that needs to be configured.

[0134] ​The first configuration information at least includes battery parameters, encoding parameters, float parameters and battery equalization parameters of the to-be-configured battery pack.

[0135] The battery parameters refer to related parameters of the battery to be configured, including a battery pack, a specification, a number of batteries, and a capacity. Figure 10

[0136] The encoding parameters refer to related parameters of the battery encoding to be configured, including a battery management host ID (identity), a battery pack, and a current number. Figure 11

[0137] The float parameters refer to related parameters of the battery float to be configured, including a cutoff voltage, a maintenance time, and a recovery voltage. Figure 12

[0138] The battery equalization parameters refer to related parameters of the battery equalization to be configured, including manual and automatic. Figure 13

[0139] The to-be-configured intelligent monitoring management host refers to the intelligent monitoring management host to be configured.

[0140] The second configuration information at least includes network connection information of the to-be-configured intelligent monitoring management host, including an IP (Internet Protocol), a subnet mask, a gateway, a port, a domain name, and a port. Figure 14

[0141] ​​​​​Exemplarily, the intelligent monitoring management host analyzes the first configuration instruction in response to the first configuration instruction for the to-be-configured battery pack, obtains the battery parameter, the coding parameter, the float parameter and the battery equalization parameter of the to-be-configured battery pack as the first configuration information of the to-be-configured battery pack; then, the intelligent monitoring management host analyzes the second configuration instruction in response to the second configuration instruction for the to-be-configured intelligent monitoring management host, obtains the network connection information of the to-be-configured intelligent monitoring management host as the second configuration information of the to-be-configured intelligent monitoring management host; then, the intelligent monitoring management host pre-processes the first configuration information and the second configuration information respectively, obtains the pre-processed first configuration information and the pre-processed second configuration information; then, the intelligent monitoring management host configures the to-be-configured battery pack according to the pre-processed first configuration information, obtains the battery pack connected with the intelligent monitoring management host, and configures the to-be-configured intelligent monitoring management host according to the pre-processed second configuration information, obtains the intelligent monitoring management host.

[0142] In the embodiment, by obtaining the first configuration information such as the battery parameter and the coding parameter of the battery pack and the second configuration information such as the network connection information of the intelligent monitoring management host, the accurate and personalized configuration of the battery pack and the intelligent monitoring management host is realized, and a reliable data foundation and technical support for subsequent battery state early warning, fault diagnosis and operation and maintenance management are provided.

[0143] In one exemplary embodiment, as shown in Figure 15 Another battery intelligent monitoring management method based on an intelligent monitoring management host is provided, which is applied to a server as an example and includes the following steps:

[0144] In step S1501, the first configuration information of the to-be-configured battery pack and the second configuration information of the to-be-configured intelligent monitoring management host are obtained; the first configuration information at least includes the battery parameter, the coding parameter, the float parameter and the battery equalization parameter of the to-be-configured battery pack; and the second configuration information at least includes the network connection information of the to-be-configured intelligent monitoring management host.

[0145] In step S1502, the to-be-configured battery pack is configured according to the first configuration information, the intelligent monitoring management host connected battery pack is obtained, and the to-be-configured intelligent monitoring management host is configured according to the second configuration information, the intelligent monitoring management host is obtained; the intelligent monitoring management host connected battery pack includes the target battery pack.

[0146] Step S1503, in response to a click operation on the battery pack option on the interface of the intelligent monitoring management host, obtaining the battery pack information of the target battery pack corresponding to the battery pack option collected by the group module connected to the intelligent monitoring management host, and obtaining the single battery information of each battery in the target battery pack collected by the single module connected to the intelligent monitoring management host; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulge information and battery leakage information.

[0147] Step S1504, in response to a click operation on the battery information option on the interface, displaying the sub-battery information option in the battery information option on the interface; the sub-battery information option at least includes the battery pack option, the voltage option, the alarm option, the internal resistance option and the health status option.

[0148] Step S1505, in response to a click operation on the sub-battery information option, constructing the battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack.

[0149] Step S1506, according to the clicked sub-battery information option, determining the arrangement order of the battery model.

[0150] Step S1507, displaying the battery pack information of the target battery pack on the first area on the interface, and displaying the battery model of each battery in the target battery pack on the second area on the interface according to the arrangement order; each battery model displays the corresponding single battery information.

[0151] In the above-mentioned battery intelligent monitoring management method based on the intelligent monitoring management host, in the process of monitoring the battery, by responding to the click operation on the battery pack option on the interface of the intelligent monitoring management host and the click operation on the battery information option on the interface, the battery pack information of the target battery pack and the battery model of each battery in the target battery pack can be quickly obtained, and then the above information can be directly displayed on the interface, which is beneficial to improve the monitoring efficiency of the battery; moreover, the whole process does not need manual intervention, which avoids the defect that the manual monitoring method easily consumes a lot of time and manpower, leading to low monitoring efficiency of the battery, and thus improves the monitoring efficiency of the battery.

[0152] In one exemplary embodiment, in order to more clearly illustrate the intelligent monitoring and management host-based battery intelligent monitoring and management method provided by the embodiments of the present application, the intelligent monitoring and management host-based battery intelligent monitoring and management method is specifically described below with one specific embodiment. In one embodiment, the present application also provides another intelligent monitoring and management host-based battery intelligent monitoring and management method. Specifically, it includes the following contents:

[0153] Entering "battery information", the group voltage, battery current, battery capacity, single cell voltage, temperature, internal resistance, bulging information, and liquid leakage information of the battery pack can be viewed in a visual graphical manner, and other sub-menu functions:

[0154] Battery pack: according to the battery number, the single cell voltage, temperature, internal resistance, bulging information, and liquid leakage information of each battery are displayed in sequence from 1: Figure 2

[0155] Voltage: according to the voltage value of the single cell battery in the battery pack, the battery position is rearranged from large to small, and the first battery number is the single cell with the highest voltage in the battery pack, and the end is the battery with the smallest voltage value;

[0156] Internal resistance: according to the internal resistance value of the single cell battery in the battery pack, the battery position is rearranged from large to small, and the first battery number is the single cell with the highest internal resistance in the battery pack, and the end is the battery with the smallest internal resistance value.

[0157] Alarm: display the battery that has an abnormal alarm, and display the alarm parameters in red, as shown in Figure 3

[0158] Health status: the management host can intelligently analyze and calculate the battery capacity according to the discharge data of the battery, and display it from large to small, as shown in Figure 4

[0159] Analyze the battery information, and automatically alarm when the threshold of voltage, current, temperature, bulging, and liquid leakage is exceeded.

[0160] Current alarm: the list displays the battery alarm information that is currently occurring and has not been resolved, including: fault battery number, alarm category, and trigger time, as shown in Figure 5

[0161] Alarm setting: the alarm threshold of each parameter (voltage, internal resistance, current, temperature, capacity, etc.) of the battery can be customized and modified, the trigger value and automatic release threshold can be set, and after the setting is completed, click complete to save, as shown in Figure 6

[0162] ​​​​​The operation task is mainly to test the internal resistance of the battery, the resistance of the connecting strip, and the standby time remotely. In the task control operation, select the test battery pack, set the task start time, set the interval days (if periodic automatic testing is required, set the interval days), and press "Confirm" to save the internal resistance test plan task after completion.

[0163] Internal resistance test: If the internal resistance of a group of batteries needs to be tested immediately, press the test in the full test box. If the internal resistance of a single battery needs to be tested, enter the number of the single battery to be tested in the single test, and press "Test", as shown in Figure 7 .

[0164] Connecting strip test: Select the battery pack to be tested, set the task execution time and interval days, and press "Confirm" to save the task and automatically test after completion. If immediate testing is required, press "Manual test" directly, as shown in Figure 8 .

[0165] Standby time test: Manual test of standby time test requires setting the discharge time and cutoff voltage. Press "Manual test" to execute the test immediately. Refer to the internal resistance test and connecting strip test procedures for setting the plan task test. Set the discharge time and the cutoff voltage of the battery pack, as shown in Figure 9 .

[0166] The "Battery Parameters" in "Parameter Settings" are shown in Figure 10 . After the device is installed, the battery parameters must be set first. After setting the number of batteries and the capacity of single batteries in the battery pack, click "Confirm" to make the parameters effective.

[0167] Battery pack: Select the battery pack, and select the first group according to the port selection of the ring communication line access. Access the second group to correspondingly select the second group.

[0168] Specification: Select the battery voltage according to the site, such as 2V, 12V, etc.

[0169] Number of batteries: Enter the number of batteries installed on site.

[0170] Capacity: Enter the capacity of single batteries on site.

[0171] Note: The input battery parameters must be consistent with the parameters of the on-site battery pack, otherwise it may cause false alarm of various warnings.

[0172] After setting the battery parameters, click "Module Address", as shown in Figure 11As shown, select the corresponding battery pack, click "automatic coding", the interface will display the coding process (coding sequence from the next single module connected to the module group, that is, the first single module of the negative terminal of the battery pack starts coding), and the host will respond with two "drop" sounds after successful coding, and the interface will pop up a coding success pop-up window; coding failure will respond with a "drop" sound, and the interface will pop up a coding failure pop-up window.

[0173] Note: If the coding fails, check if the battery parameters are set correctly. If the battery parameters are correct, check the communication connection line between the corresponding single module and the two single modules.

[0174] Set the single module address through the intelligent management host. When setting the module address, connect only one single module to the communication line each time, and the module must be in the powered-on state.

[0175] Enter the "module address" interface, the single module factory address is "0", if you want to change the factory single address to "1", enter "0" in "current number" and "1" in "new number", press confirm to modify successfully. The modification method for other numbers is the same.

[0176] After enabling the float management function, the intelligent capacity host intelligently analyzes the voltage, current and float time of the battery pack, and automatically enters or stops float charging when reaching the set value, preventing long-term float charging of the battery, such as Figure 12 As shown.

[0177] After enabling the battery equalization function, the host can analyze the battery voltage to determine the overcharged battery, and discharge the overcharged battery online to adjust the battery voltage and achieve the goal of battery equalization, such as Figure 13 As shown.

[0178] Set the network parameters of the host, modify the parameters in the "Parameter Settings-Network Connection" interface, input the IP and gateway provided by the customer, and select the "client" option at the same time. Input the parameters correctly and click "OK" to modify successfully, such as Figure 14 As shown.

[0179] In the above embodiment, during the monitoring of the storage battery, by responding to the clicking operation of the storage battery group option on the interface of the intelligent monitoring and management host, and the clicking operation of the battery information option on the interface, the storage battery group information of the target storage battery group and the storage battery model of each storage battery in the target storage battery group can be quickly obtained, and then the above information can be directly displayed on the interface, which is beneficial to improve the monitoring efficiency of the storage battery. Moreover, the whole process does not need manual intervention, avoiding the defect that the manual monitoring method easily consumes a lot of time and manpower, leading to low monitoring efficiency of the storage battery, thereby improving the monitoring efficiency of the storage battery.

[0180] It should be understood that although the steps in the flowcharts involved in the above embodiments are shown in sequence according to the arrows, the steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, the execution of the steps is not strictly limited in sequence, and the steps can be executed in other orders. Moreover, at least some of the steps in the flowcharts involved in the above embodiments can include multiple steps or multiple stages, which are not necessarily executed at the same time but can be executed at different times, and the execution of the steps or stages is not necessarily sequential but can be executed alternately or alternately with at least some of the other steps or steps or stages in other steps.

[0181] Based on the same inventive concept, the embodiments of the present application also provide an intelligent monitoring and management host-based storage battery intelligent monitoring and management device for implementing the above-mentioned intelligent monitoring and management host-based storage battery intelligent monitoring and management method. The problem-solving implementation scheme provided by the device is similar to the implementation scheme described in the above method, so the specific limitations in one or more intelligent monitoring and management host-based storage battery intelligent monitoring and management device embodiments provided below can be referred to the limitations of the intelligent monitoring and management host-based storage battery intelligent monitoring and management method described above, which will not be repeated here.

[0182] In one exemplary embodiment, as shown in Figure 16 An intelligent monitoring and management host-based storage battery intelligent monitoring and management device is provided, comprising: an information acquisition module 1601, a model construction module 1602, and an information display module 1603, wherein:

[0183] The information acquisition module 1601 is configured to, in response to a click operation on a storage battery group option on an interface of the intelligent monitoring and management host, acquire storage battery group information of a target storage battery group corresponding to the storage battery group option collected by a group module connected to the intelligent monitoring and management host, and acquire single battery information of each storage battery in the target storage battery group collected by a single module connected to the intelligent monitoring and management host. The storage battery group information at least includes group voltage, group current, and battery capacity. The single battery information at least includes storage battery voltage, storage battery temperature, storage battery internal resistance, storage battery bulging information, and storage battery leakage information.

[0184] The model construction module 1602 is configured to, in response to a click operation on a battery information option on the interface, construct a storage battery model of each storage battery in the target storage battery group according to the single battery information of each storage battery in the target storage battery group.

[0185] The information display module 1603 is configured to display, on the interface, the battery pack information of the target battery pack and the battery models of the batteries in the target battery pack, and display the corresponding single battery information on each battery model.

[0186] In an example embodiment, the model construction module 1602 is further configured to, in response to a click operation on the battery information option on the interface, display a sub-battery information option in the battery information option on the interface, the sub-battery information option including at least a battery pack option, a voltage option, an alarm option, an internal resistance option, and a health status option; in response to a click operation on the sub-battery information option, construct the battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack; and the information display module 1603 is further configured to determine the arrangement order of the battery models according to the clicked sub-battery information option, display the battery pack information of the target battery pack in a first area on the interface, and display the battery models of the batteries in the target battery pack in a second area on the interface according to the arrangement order.

[0187] In an example embodiment, the battery intelligent monitoring and management device based on the intelligent monitoring and management host further comprises an alarm display module configured to, in response to a click operation on the alarm information option on the interface, determine the current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of the batteries in the target battery pack, the current alarm information including at least the fault battery number, the alarm content, and the triggering time of the target battery pack, and display the current alarm information on the interface.

[0188] In an example embodiment, the battery intelligent monitoring and management device based on the intelligent monitoring and management host further comprises a threshold value determination module configured to, in response to a threshold value setting instruction for the target battery pack, determine the corresponding alarm threshold value of the target battery pack, the alarm threshold value including at least the corresponding voltage alarm threshold value, the internal resistance alarm threshold value, the current alarm threshold value, the temperature alarm threshold value, and the capacity alarm threshold value of the target battery pack, and the alarm display module is further configured to determine the current alarm information of the target battery pack according to the battery pack information, the single battery information, and the alarm threshold value.

[0189] In an example embodiment, the battery intelligent monitoring and management device based on the intelligent monitoring and management host further comprises a target test module configured to, in response to a click operation on the operation task option on the interface, display the candidate test option corresponding to the operation task option on the interface, the candidate test option including at least the internal resistance test option, the connection bar test option, and the standby time test option, and in response to a click operation on the candidate test option, acquire the test information corresponding to the clicked candidate test option, and perform a test on the target battery pack according to the test information.

[0190] In an exemplary embodiment, the battery intelligent monitoring management device based on the intelligent monitoring management host further comprises an information configuration module, configured to obtain first configuration information of a battery pack to be configured and second configuration information of an intelligent monitoring management host to be configured; the first configuration information at least comprises battery parameters, coding parameters, floating charge parameters and battery equalization parameters of the battery pack to be configured; the second configuration information at least comprises network connection information of the intelligent monitoring management host to be configured; the battery pack to be configured is configured according to the first configuration information to obtain a battery pack connected with the intelligent monitoring management host, and the intelligent monitoring management host to be configured is configured according to the second configuration information to obtain the intelligent monitoring management host; the battery pack connected with the intelligent monitoring management host comprises a target battery pack.

[0191] The above-mentioned various modules in the battery intelligent monitoring management device based on the intelligent monitoring management host can be realized by software, hardware and combinations thereof in whole or in part. The above-mentioned various modules can be embedded in or independent of a processor in a computer device in hardware form, or can be stored in a memory in a computer device in software form, so as to be called and executed by a processor to perform the operations corresponding to the above-mentioned various modules.

[0192] In an exemplary embodiment, a computer device is provided, which can be a server, and an internal structure diagram thereof can be as shown in Figure 17 The computer device comprises a processor, a memory, an input / output interface (I / O) and a communication interface. The processor, the memory and the input / output interface are connected through a system bus, and the communication interface is connected to the system bus through the input / output interface. The processor of the computer device is configured to provide computing and control capabilities. The memory of the computer device comprises a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operating system and the computer program in the non-volatile storage medium to run. The database of the computer device is configured to store battery pack information, single battery information and the like. The input / output interface of the computer device is configured to exchange information between the processor and external devices. The communication interface of the computer device is configured to communicate with external terminals through network connection. The computer program is executed by the processor to implement a battery intelligent monitoring management method based on an intelligent monitoring management host.

[0193] Those skilled in the art can understand that Figure 17 The structure shown in the above-mentioned embodiments is only a block diagram of part of the structure related to the scheme of the present application, and does not constitute a limitation on the computer device to which the scheme of the present application is applied. The specific computer device can comprise more or fewer components than those shown in the figure, or combine certain components, or have a different arrangement of components.

[0194] In an example embodiment, a computer device is also provided, including a memory and a processor, the memory storing a computer program, and the processor implementing the steps in the above method embodiments when executing the computer program.

[0195] In an example embodiment, a computer readable storage medium is provided, storing a computer program, and the computer program implementing the steps in the above method embodiments when executed by a processor.

[0196] In an example embodiment, a computer program product is provided, including a computer program, and the computer program implementing the steps in the above method embodiments when executed by a processor.

[0197] A person of ordinary skill in the art can understand that all or part of the processes in the above method embodiments can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium, and when executed, can include the processes of the above method embodiments. Any reference to a memory, database or other medium used in the embodiments provided in the present application can include at least one of a non-volatile and volatile memory. The non-volatile memory can include a read-only memory (ROM), a magnetic tape, a floppy disk, a flash memory, an optical storage, a high-density embedded non-volatile memory, a resistive memory (ReRAM), a magnetoresistive random access memory (MRAM), a ferroelectric memory (FRAM), a phase change memory (PCM), a graphene memory, etc. The volatile memory can include a random access memory (RAM) or an external cache memory, etc. As an illustration but not limitation, the RAM can be in various forms, such as a static random access memory (SRAM) or a dynamic random access memory (DRAM), etc. The database involved in the embodiments provided in the present application can include at least one of a relational database and a non-relational database. The non-relational database can include a distributed database based on a block chain, etc., without being limited thereto. The processor involved in the embodiments provided in the present application can be a general processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic device, a data processing logic device based on quantum computing, etc., without being limited thereto.

[0198] The technical features of the above embodiments can be combined in any manner. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described, however, as long as the combinations of the technical features do not contradict each other, they should be considered to be within the scope of the present disclosure.

[0199] The above embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be pointed out that, for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A battery intelligent monitoring management method based on intelligent monitoring management host, characterized in that, The method comprises: In response to a click operation on a battery pack option on an interface of an intelligent monitoring management host, obtaining battery pack information of a target battery pack corresponding to the battery pack option collected by a group module connected to the intelligent monitoring management host, and obtaining single battery information of each battery in the target battery pack collected by a single module connected to the intelligent monitoring management host; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information; In response to a click operation on a battery information option on the interface, displaying a sub-battery information option in the battery information option on the interface; the sub-battery information option at least includes a battery pack option, a voltage option, an alarm option, an internal resistance option and a health status option; In response to a click operation on the sub-battery information option, constructing a battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack; According to the clicked sub-battery information option, determining the arrangement order of the battery model, displaying the battery pack information of the target battery pack on a first area on the interface, and displaying the battery model of each battery in the target battery pack on a second area on the interface according to the arrangement order; each battery model displays corresponding single battery information.

2. The method of claim 1, wherein, After determining the arrangement order of the battery model according to the clicked sub-battery information option, displaying the battery pack information of the target battery pack on the first area on the interface, and displaying the battery model of each battery in the target battery pack on the second area on the interface, further comprising: In response to a click operation on an alarm information option on the interface, determining the current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack; the current alarm information at least includes the fault battery number, alarm content and trigger time of the target battery pack; Displaying the current alarm information on the interface.

3. The method of claim 2, wherein, Before determining the current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, further comprising: In response to a threshold setting instruction for the target battery pack, determining the corresponding alarm threshold of the target battery pack; the alarm threshold at least includes the corresponding voltage alarm threshold, internal resistance alarm threshold, current alarm threshold, temperature alarm threshold and capacity alarm threshold of the target battery pack; The current alarm information of the target battery pack is determined according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, comprising: According to the battery pack information, the single battery information and the alarm threshold, the current alarm information of the target battery pack is determined.

4. The method of claim 2, wherein, After the current alarm information of the target battery pack is determined according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack, the method further comprises: In response to a click operation on an operation task option on the interface, a candidate test option corresponding to the operation task option is displayed on the interface; the candidate test option at least includes an internal resistance test option, a connecting strip test option and a standby time test option; In response to a click operation on the candidate test option, test information corresponding to the clicked candidate test option is obtained; According to the test information, the target battery pack is tested.

5. The method according to any one of claims 1 to 4, characterized in that, Before the battery pack information of a target battery pack corresponding to a battery pack option on an interface of a smart monitoring and management host is obtained by a group module connected to the smart monitoring and management host in response to a click operation on the battery pack option on the interface of the smart monitoring and management host, and single battery information of each battery in the target battery pack is obtained by a single module connected to the smart monitoring and management host, the method further comprises: Obtaining first configuration information of a battery pack to be configured and second configuration information of a smart monitoring and management host to be configured; the first configuration information at least includes battery parameters, coding parameters, floating parameters and battery equalization parameters of the battery pack to be configured; the second configuration information at least includes network connection information of the smart monitoring and management host to be configured; According to the first configuration information, the battery pack to be configured is configured to obtain a battery pack connected to the smart monitoring and management host, and according to the second configuration information, the smart monitoring and management host to be configured is configured to obtain the smart monitoring and management host; the battery pack connected to the smart monitoring and management host includes the target battery pack.

6. A battery intelligent monitoring management device based on intelligent monitoring management host, characterized in that, The device comprises: An information acquisition module is configured to obtain battery pack information of a target battery pack corresponding to a battery pack option on an interface of a smart monitoring and management host by a group module connected to the smart monitoring and management host in response to a click operation on the battery pack option on the interface of the smart monitoring and management host, and obtain single battery information of each battery in the target battery pack by a single module connected to the smart monitoring and management host; the battery pack information at least includes group voltage, group current and battery capacity; the single battery information at least includes battery voltage, battery temperature, battery internal resistance, battery bulging information and battery leakage information; The model constructing module is configured to, in response to a click operation on the battery information option on the interface, display a sub-battery information option in the battery information option on the interface; the sub-battery information option at least includes a battery pack option, a voltage option, an alarm option, an internal resistance option and a health status option; in response to a click operation on the sub-battery information option, construct a battery model of each battery in the target battery pack according to the single battery information of each battery in the target battery pack. The information displaying module is configured to, according to the clicked sub-battery information option, determine an arrangement order of the battery model, display battery pack information of the target battery pack in a first area on the interface, and display the battery model of each battery in the target battery pack in a second area on the interface according to the arrangement order; each battery model displays corresponding single battery information.

7. The apparatus of claim 6, wherein, The device further comprises an alarm displaying module configured to, in response to a click operation on the alarm information option on the interface, determine current alarm information of the target battery pack according to the battery pack information of the target battery pack and the single battery information of each battery in the target battery pack; The current alarm information at least includes a fault battery number, alarm content and trigger time of the target battery pack; and the current alarm information is displayed on the interface. 8.A computer device, comprising a memory and a processor, wherein the memory stores a computer program, and the computer device is configured to perform the method according to any one of claims 1-7. The processor implements the steps of the method of any one of claims 1 to 5 when executing the computer program.

9. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program, when executed by the processor, implements the steps of the method of any one of claims 1 to 5.

10. A computer program product comprising a computer program, characterized in that, The computer program, when executed by the processor, implements the steps of the method of any one of claims 1 to 5.

Citation Information

Patent Citations

  • Storage battery intelligent monitoring system

    CN117335518A

  • Online monitoring system for intelligent maintenance of storage battery

    CN117471333A