Battery temperature control method, device and equipment and computer storage medium
By obtaining the target charging pile information and power battery operating parameters, determining the temperature estimate and charging temperature threshold, selecting the target heating mode and controlling the power battery heating, the problem of reducing the charging and discharge power of power batteries in a low-temperature environment of new energy vehicles is solved, and the working efficiency of power batteries and user experience of car use is improved.
Patent Information
- Application Number
- CN202311436120.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-30
- Publication Date
- 2025-05-02
AI Technical Summary
In the low temperature environment of new energy vehicles, the charging and discharging power of power batteries decreases, resulting in a decrease in vehicle power and slowing down the charging speed, which cannot ensure that the power batteries are at a suitable charging and discharging temperature.
By obtaining the vehicle's target charging pile information and the operating parameters of the power battery, the temperature estimate value and charging temperature threshold of the power battery when it reaches the charging pile are determined, the target heating mode is determined based on this information, and the vehicle is controlled to heat the power battery.
It effectively improves the charging and discharging power of the power battery in low temperature environments, optimizes the vehicle's thermal management function, and improves the user's car use experience in winter.
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Figure CN119911166A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of new energy vehicle technology, and in particular to a battery temperature control method, device, equipment and computer storage medium. Background Art
[0002] At present, the electrification of automobiles has become an inevitable trend in the current industry. With the rapid development of new energy vehicles, industrial upgrading and policy support, pure electric vehicles have gained more and more favor from consumers. Compared with traditional fuel vehicles, electric vehicles have the advantages of fast torque response, stable power output, low noise, and significantly better control and driving performance than traditional vehicles.
[0003] The power batteries of existing electric vehicles are greatly affected by battery temperature. The internal resistance of the power batteries will increase in low temperature environments, resulting in a decrease in battery discharge power and a significant decrease in vehicle power. The charging power of the power batteries will also decrease at low temperatures, resulting in a significant decrease in the charging speed of the electric vehicles.
[0004] Therefore, when the charging and discharging power of new energy vehicles is reduced due to the low temperature of the power battery, how to control the temperature of the power battery of the new energy vehicle to maintain it at a suitable temperature to increase the power of the vehicle is a problem that needs to be solved at present. Summary of the invention
[0005] The present application provides a battery temperature control method, device, equipment and computer storage medium to solve the defect that new energy vehicles cannot ensure that the power battery is at a suitable charging and discharging temperature in a low temperature environment, so that the charging and discharging power of the power battery is lower than the charging and discharging power in a normal temperature environment, thereby causing the vehicle's power to decrease.
[0006] In a first aspect, the present application provides a battery temperature control method, comprising:
[0007] Obtaining target charging pile information of the vehicle and operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: heating power and current operating temperature of the power battery;
[0008] Determine, according to the current operating temperature, the heating power and the distance information, an estimated temperature value of the power battery when the vehicle arrives at a target charging pile;
[0009] Determining a charging temperature threshold of the power battery according to the maximum charging power;
[0010] A target heating mode of the vehicle is determined according to the temperature estimation value and the charging temperature threshold, and the vehicle is controlled to heat the power battery according to the target heating mode.
[0011] Optionally, determining, according to the current operating temperature, the heating power, and the distance information, an estimated temperature value of the power battery when the vehicle arrives at a target charging pile includes:
[0012] Determine, based on the distance information, a preset time for the vehicle to reach the target charging pile;
[0013] Determining, based on the preset time and the heating power, the amount of heat generated by the battery when the vehicle reaches the target charging pile;
[0014] An estimated temperature of the power battery when the vehicle arrives at a target charging pile is determined according to the current operating temperature and the heat generated by the battery.
[0015] Optionally, determining a target heating mode of the vehicle according to the temperature estimation value and the charging temperature threshold value includes:
[0016] Determining whether the temperature estimate is less than the charging temperature threshold;
[0017] When the estimated temperature is less than the charging temperature threshold, sending a first operation request to the vehicle and controlling the vehicle to start a battery thermal management function, wherein the first operation request is used to instruct to increase the temperature of the power battery;
[0018] Obtaining a target heating power corresponding to the battery thermal management function;
[0019] A target heating mode for operating the battery thermal management function is determined according to the target heating power.
[0020] Optionally, the acquiring a target heating power corresponding to the battery thermal management function includes:
[0021] Obtaining a heating module of the power battery, wherein the heating module comprises: a first heating module, a second heating module and a third heating module;
[0022] Determining a first heating power corresponding to the first heating module according to the first heating module;
[0023] Determining a second heating power corresponding to the second heating module according to the second heating module;
[0024] According to the third heating module, determining a third heating power corresponding to the third heating module;
[0025] A target heating power corresponding to the battery thermal management function is determined according to the first heating power, the second heating power, the third heating power and the preset duration.
[0026] Optionally, determining a target heating power corresponding to the battery thermal management function according to the first heating power, the second heating power, the third heating power and the preset duration includes:
[0027] Determining a temperature difference required for the power battery according to the temperature estimate and the charging temperature threshold;
[0028] Determining a target amount of heat required by the power battery according to the temperature difference and the preset time;
[0029] Determine, according to the first heating power and the preset time, a first amount of heat generated by the first heating module within the preset time, and judge whether the first amount of heat reaches the target amount of heat;
[0030] If the first heat reaches the target heat, determining the first heat as the target heat;
[0031] If the first heat does not reach the target heat, determining the second heat generated by the first heating module and the second heating module within the preset time period according to the first heating power, the second heating power and the preset time period, and judging whether the second heat reaches the target heat;
[0032] If the second heat reaches the target heat, determining the second heat as the target heat;
[0033] If the second heat does not reach the target heat, the third heat generated by the first heating module, the second heating module and the third heating module within the preset time is determined according to the first heating power, the second heating power, the third heating power and the preset time, and the third heat is determined to be the target heat.
[0034] A target heating power corresponding to the battery thermal management function is determined according to the target heat.
[0035] Optionally, after controlling the vehicle to heat the power battery according to the target heating mode, the method further includes:
[0036] Acquiring a current driving route of the vehicle and an initial driving route of the vehicle to reach the target charging station;
[0037] Determining whether the current driving route is consistent with the initial driving route;
[0038] If the current driving route is consistent with the initial driving route, controlling the battery thermal management function of the vehicle to operate according to the target heating mode;
[0039] If the current driving route is inconsistent with the initial driving route, determining the current distance information of the vehicle according to the current driving route;
[0040] Determine whether the current distance information is greater than a preset distance threshold;
[0041] If the current distance information is greater than a preset distance threshold, a second operation request is sent to the vehicle, and the vehicle is controlled to turn off a battery thermal management function, wherein the second operation request is used to instruct to stop heating the power battery.
[0042] Optionally, after controlling the vehicle to heat the power battery according to the target heating mode, the method further includes:
[0043] Re-obtaining the current operating temperature of the power battery;
[0044] Determining whether the current operating temperature is less than the sum of the charging temperature threshold and a preset temperature value;
[0045] When the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, a second operating request is sent to the vehicle, and the vehicle is controlled to turn off a battery thermal management function.
[0046] In a second aspect, the present application provides a battery temperature control device, comprising:
[0047] The acquisition module is used to obtain the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle. The target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station. The operating parameters include: the heating power and the current operating temperature of the power battery.
[0048] A determination module is used to determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature, the heating power and the distance information.
[0049] The determination module is further configured to determine a charging temperature threshold of the power battery according to the maximum charging power.
[0050] The determination module is further configured to determine a target heating mode of the vehicle according to the temperature estimation value and the charging temperature threshold.
[0051] A control module is used to control the vehicle to heat the power battery according to the target heating mode.
[0052] Optionally, the determination module is further used to determine a preset time for the vehicle to reach the target charging pile based on the distance information.
[0053] The determination module is further used to determine the heat generated by the battery when the vehicle reaches the target charging pile according to the preset time and the heating power.
[0054] The determination module is further used to determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature and the heat generated by the battery.
[0055] Optionally, the battery temperature control device further includes: a judgment module.
[0056] The judging module is used to judge whether the estimated temperature value is less than the charging temperature threshold.
[0057] The battery temperature control device also includes: a sending module.
[0058] The sending module is used to send a first operation request to the vehicle when the temperature estimate is less than the charging temperature threshold, wherein the first operation request is used to instruct to increase the temperature of the power battery.
[0059] The control module is specifically used to control the vehicle to enable a battery thermal management function.
[0060] The acquisition module is further used to acquire the target heating power corresponding to the battery thermal management function.
[0061] The determination module is further used to determine a target heating mode for the battery thermal management function to operate according to the target heating power.
[0062] Optionally, the acquisition module is further used to acquire a heating module of the power battery, and the heating module includes: a first heating module, a second heating module and a third heating module.
[0063] The determining module is further used to determine a first heating power corresponding to the first heating module according to the first heating module.
[0064] The determining module is further used to determine a second heating power corresponding to the second heating module according to the second heating module.
[0065] The determining module is further used to determine a third heating power corresponding to the third heating module according to the third heating module.
[0066] The determination module is further used to determine the target heating power corresponding to the battery thermal management function according to the first heating power, the second heating power, the third heating power and the preset duration.
[0067] Optionally, the determination module is further used to determine the temperature difference required by the power battery according to the temperature estimation value and the charging temperature threshold.
[0068] The determination module is further configured to determine a target amount of heat required by the power battery according to the temperature difference and the preset time.
[0069] The determination module is further used to determine a first amount of heat generated by the first heating module within the preset time period according to the first heating power and the preset time period.
[0070] The judging module is further configured to judge whether the first heat reaches the target heat.
[0071] If the first heat reaches the target heat, the determination module is further configured to determine that the first heat is the target heat.
[0072] If the first heat does not reach the target heat, the determination module is further used to determine the second heat generated by the first heating module and the second heating module within the preset time period according to the first heating power, the second heating power and the preset time period.
[0073] The judging module is further configured to judge whether the second heat reaches the target heat.
[0074] If the second heat reaches the target heat, the determination module is further configured to determine that the second heat is the target heat.
[0075] If the second heat does not reach the target heat, the determination module is also used to determine the third heat generated by the first heating module, the second heating module and the third heating module within the preset time period based on the first heating power, the second heating power, the third heating power and the preset time period, and determine that the third heat is the target heat.
[0076] The determination module is further used to determine a target heating power corresponding to the battery thermal management function according to the target heat.
[0077] Optionally, the acquisition module is further used to acquire the current driving route of the vehicle and the initial driving route of the vehicle to reach the target charging station.
[0078] The judgment module is further used to judge whether the current driving route is consistent with the initial driving route.
[0079] If the current driving route is consistent with the initial driving route, the control module is further used to control the battery thermal management function of the vehicle to operate according to the target heating mode.
[0080] If the current driving route is inconsistent with the initial driving route, the determination module is further used to determine the current distance information of the vehicle according to the current driving route.
[0081] The judging module is further configured to judge whether the current distance information is greater than a preset distance threshold.
[0082] If the current distance information is greater than a preset distance threshold, the sending module is further used to send a second operation request to the vehicle, where the second operation request is used to instruct to stop heating the power battery.
[0083] The control module is also used to control the vehicle to shut down a battery thermal management function.
[0084] Optionally, the acquisition module is further used to re-acquire the current operating temperature of the power battery.
[0085] The judgment module is further used to judge whether the current operating temperature is less than the sum of the charging temperature threshold and a preset temperature value.
[0086] The sending module is further used to send a second operation request to the vehicle when the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, and the second operation request is used to instruct to stop heating the power battery.
[0087] In a third aspect, the present application provides a battery temperature control device, comprising:
[0088] Memory;
[0089] processor;
[0090] Wherein, the memory stores computer-executable instructions;
[0091] The processor executes the computer-executable instructions stored in the memory to implement the battery temperature control method as described in the first aspect and various possible implementations of the first aspect.
[0092] In a fourth aspect, the present application provides a computer storage medium having computer execution instructions stored thereon, wherein the computer execution instructions are executed by a processor to implement the battery temperature control method as described in the first aspect and various possible implementations of the first aspect.
[0093] The battery temperature control method provided by the present application obtains the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: the heating power and current operating temperature of the power battery; according to the current operating temperature and heating power of the power battery and the distance information between the vehicle and the target charging station, the temperature estimation value of the power battery when the vehicle arrives at the target charging pile is determined; according to the maximum charging power of the target charging station, the charging temperature threshold of the power battery is determined; according to the temperature estimation value and the charging temperature threshold, the target heating mode of the vehicle is determined, and the vehicle is controlled to heat the power battery according to the target heating mode. This method can more accurately determine whether the power battery is heated in a low temperature environment, reduce the danger of the power battery, optimize the thermal management function of the vehicle in a low temperature environment, not only improve the working efficiency of the power battery during charging and discharging, but also improve the user's car experience in winter. BRIEF DESCRIPTION OF THE DRAWINGS
[0094] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0095] Figure 1 Schematic diagram of the battery temperature control method provided in this application Figure 1 ;
[0096] Figure 2 Schematic diagram of the battery temperature control method provided in this application Figure 2 ;
[0097] Figure 3 Schematic diagram of the battery temperature control method provided in this application Figure 3 ;
[0098] Figure 4 A schematic diagram of the structure of the battery temperature control device provided in this application;
[0099] Figure 5 This is a schematic diagram of the structure of the battery temperature control device provided in this application.
[0100] The above drawings have shown clear embodiments of the present application, which will be described in more detail later. These drawings and text descriptions are not intended to limit the scope of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0101] In order to make the purpose, technical solutions and advantages of this application clearer, the technical solutions in this application will be clearly and completely described below in conjunction with the drawings in this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0102] The terms "first", "second", "third", "fourth", etc. (if any) in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present invention described herein can be implemented in sequences other than those illustrated or described herein, for example.
[0103] In the embodiments of the present application, the words "exemplary" or "for example" are used to indicate examples, illustrations or descriptions. Any embodiment or design described as "exemplary" or "for example" in the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a specific way.
[0104] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use and processing of relevant data must comply with the relevant laws, regulations and standards of the relevant countries and regions, and provide corresponding operation entrances for users to choose to authorize or refuse.
[0105] At present, the electrification of automobiles has become an inevitable trend in the current industry. With the rapid development of new energy vehicles, industrial upgrading and policy support, pure electric vehicles have gained more and more favor from consumers. Compared with traditional fuel vehicles, electric vehicles have the advantages of fast torque response, stable power output, low noise, and significantly better control and driving performance than traditional vehicles. At the same time, new energy vehicles have no pollutant emissions and will not cause air pollution; however, the power battery of electric vehicles is greatly affected by battery temperature.
[0106] In the prior art, if a new energy vehicle is traveling in a low-temperature environment, the charging and discharging power of the power battery will be lower than that at normal temperature, and the lower the temperature of the power battery, the smaller the charging power of the battery, and the lower the charging speed of the battery; in a low-temperature environment, high-power charging of the power battery is prone to lithium deposition, resulting in increased battery safety risks; at the same time, the internal resistance of the power battery increases at low temperatures, and the battery discharge power decreases. As the battery discharge power becomes smaller, the vehicle's power becomes worse, resulting in users having a very poor car experience in winter.
[0107] Therefore, how to control the thermal management of the power battery of new energy vehicles in winter so that users can quickly raise the temperature of the power battery to an appropriate range when driving in a low temperature environment to increase the vehicle's power is the problem that needs to be solved at present.
[0108] In view of the above problems, the present application provides a battery temperature control method.
[0109] First, the implementation scenarios involved in this application are described.
[0110] New energy technology is the pillar of high technology, including nuclear energy technology, solar energy technology, coal-fired, magnetohydrodynamic power generation technology, geothermal energy technology, ocean energy technology, etc. Among them, nuclear energy technology and solar energy technology are the main symbols of new energy technology. The development and utilization of nuclear energy and solar energy have broken the traditional energy concept dominated by oil and coal, and created a new era of energy. With the continuous improvement of global environmental awareness, new energy vehicles, as an environmentally friendly, low-carbon and energy-saving mode of transportation, have gained more and more favor from consumers.
[0111] In the prior art, most new energy vehicles use power batteries to power the vehicle, but the power batteries of new energy vehicles are greatly affected by the battery temperature. In a low temperature environment, the charging power will be reduced for charging and discharging, resulting in a significant reduction in the charging speed and vehicle power. Therefore, according to the actual driving conditions of the vehicle, the temperature of the power battery needs to be adjusted. The vehicle involved in this application can be, for example, a new energy vehicle equipped with a battery thermal management function.
[0112] For example, when a new energy vehicle is driving in a low-temperature environment, the operating temperature of the battery cannot meet the maximum charge and discharge power of the battery, thereby reducing the power of the new energy vehicle. At this time, it is necessary to heat the battery according to the operating temperature to achieve the purpose of improving the battery working efficiency.
[0113] The battery temperature control method provided by the present application, before the vehicle arrives at the charging pile, by obtaining the current temperature of the power battery of the current vehicle, the most suitable charging temperature of the current power battery, and the heat pump heating rate, motor heating rate and PTC heating rate corresponding to the vehicle heating module, intelligently controls the start time of heat pump heating, PTC heating and motor heating, so that the battery temperature of the power battery can be heated to a suitable temperature before the vehicle arrives at the charging station, and the start time and length of the heat pump, PTC and motor heating can be reasonably controlled. This method can more accurately determine whether the power battery is heated in a low temperature environment, reduce the danger of the power battery, optimize the thermal management function of the vehicle in a low temperature environment, not only improve the working efficiency of the power battery during charging and discharging, but also improve the user's winter car experience.
[0114] The technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems are described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.
[0115] Figure 1 Schematic diagram of the process of the battery temperature control method provided in the embodiment of the present application Figure 1 The execution subject of this embodiment may be, for example, a battery management system (BATTERY MANAGEMENT SYSTEM, hereinafter referred to as "BMS"), such as Figure 1 As shown, the battery temperature control method provided in this embodiment includes:
[0116] S101: Obtain target charging pile information of a vehicle and operating parameters of a power battery of the vehicle.
[0117] Among them, the target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: the heating power of the power battery and the current operating temperature.
[0118] It can be understood that the operating parameters can be data information about the power battery that can be detected during the operation of the current vehicle, and the data information is data that changes continuously with the increase of vehicle driving time; the vehicle itself is equipped with a corresponding detection system, which can perform real-time detection of the operating parameters of the power battery. Therefore, the BMS can obtain the operating parameters of the power battery of the current vehicle in real time.
[0119] According to the current destination of the vehicle, that is, the target charging pile, different driving routes can be provided for the user. According to the driving route currently determined by the user, the distance information between the current vehicle and the target charging station can be obtained; the distance information can be obtained through the positioning system configured in the current vehicle, and the positioning system can reflect the distance information between the current vehicle and the target charging pile in real time; the maximum charging power is the maximum charging power that can be provided for the vehicle's power battery in the target charging station currently determined by the user, and the maximum charging power matches the charging power of the current power battery, thereby providing the user with a fast charging experience and improving the user's usage experience.
[0120] Through the detection system set up by the vehicle itself, the BMS obtains the operating parameters of the power battery currently configured in the vehicle in real time, and obtains the corresponding distance parameters through the positioning system configured in the current vehicle and the target charging pile selected by the user.
[0121] For example, the heating power of the power battery may be 1kw, it may be detected that the current operating temperature of the power battery is 5°C, the current distance information between the vehicle and the target charging pile is 40km, and the maximum charging power of the target charging pile is 120kw.
[0122] S102: Determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature, the heating power, and the distance information.
[0123] Among them, the temperature estimate is used to indicate the battery temperature of the power battery when the vehicle arrives at the target charging pile.
[0124] It can be understood that during the driving process of the vehicle, the power battery can provide power for the vehicle to enable it to drive normally; when the power battery provides electricity for the vehicle to drive, the power battery continues to discharge, and the discharge current will cause the temperature of the power battery to rise. At this time, the power that causes the power battery's own temperature to rise during discharge is regarded as the heat power of the power battery.
[0125] After determining the current heating power of the power battery, the distance information between the current vehicle and the target charging station is determined according to the current vehicle's destination, that is, the target charging station. Based on the current operating temperature of the power battery, after the current vehicle travels a corresponding distance at the heating power of the power battery, the operating temperature of the power battery is estimated to obtain an estimated temperature of the power battery when the vehicle arrives at the target charging station.
[0126] For example, the heat generation power of the power battery can be 1kw, and the current operating temperature of the power battery can be detected to be 5°C. The current distance information between the vehicle and the target charging pile is 40km. After estimating the operating temperature of the power battery, the estimated temperature value T1°C is obtained.
[0127] S103: Determine a charging temperature threshold of the power battery according to the maximum charging power.
[0128] Among them, the charging temperature threshold is used to indicate the operating temperature corresponding to when the power battery of the current vehicle can reach the maximum charging power during the charging process.
[0129] According to the target charging pile in the target charging station currently selected by the user, the maximum charging power provided by the target charging pile to the user can be determined. According to the maximum charging power, the current charging temperature threshold of the power battery is determined, so that during the charging process of the vehicle, the charging efficiency of the power battery is improved, reducing the time the user spends charging the vehicle each time.
[0130] It is understandable that when the power battery is charged at high power in a low temperature environment, it is easy for the power battery to deposit lithium, thereby increasing the danger of the battery; in addition, the internal resistance of the power battery increases in a low temperature environment, resulting in a decrease in the charging and discharging power of the power battery. Therefore, in order to reduce the safety hazards that exist when the vehicle is charged at the maximum charging power in a low temperature environment, and to ensure the charging efficiency of the vehicle, the operating temperature of the power battery needs to be adjusted to ensure that when the vehicle arrives at the target charging pile, the operating temperature of the power battery is consistent with the operating temperature corresponding to the highest charging efficiency of the current vehicle.
[0131] For example, the currently determined maximum charging power of the target charging pile is 120kw, and the charging temperature threshold of the power battery of the current vehicle may be 25°C.
[0132] S104: Determine a target heating mode of the vehicle according to the temperature estimation value and the charging temperature threshold, and control the vehicle to heat the power battery according to the target heating mode.
[0133] Among them, the target heating mode is used to instruct the power battery to be heated according to multiple heating modules configured inside the vehicle.
[0134] According to the currently acquired temperature estimate, the operating temperature of the power battery when the vehicle arrives at the target charging pile can be determined, and the temperature estimate is compared with the charging temperature threshold; according to the comparison result, it can be determined whether the current vehicle needs to start the heating module to heat the power battery; after determining that the power battery needs to be heated, according to the difference between the temperature estimate and the charging temperature threshold, multiple heating modules are matched, and a suitable heating mode is selected from them, so that when the vehicle arrives at the target charging pile, the operating temperature of the power battery is consistent with the charging temperature threshold, and the corresponding heating mode is determined as the target heating mode of the current vehicle, and the vehicle is controlled to heat the power battery according to the target heating mode.
[0135] For example, if multiple heating modules are currently arranged inside the vehicle, when the charging temperature threshold of the power battery of the current vehicle is 25°C, the currently acquired temperature estimate is T1°C, and T1°C < 25°C, when the vehicle is heated by different heating modules respectively (the heating modules may be single or multiple), the corresponding temperature values are analyzed and processed, and the currently adopted heating mode may be: heating by the first heating module, heating by the first heating module and the second heating module together, heating by the first heating module, the second heating module and the third heating module together. At this time, multiple temperature estimate values are obtained, corresponding to the first temperature estimate value, the second temperature estimate value and the third temperature estimate value respectively. Among them, if the first temperature estimate value is equal to 25°C, the second temperature estimate value is greater than 25°C, and the third temperature estimate value is greater than 25°C, then the mode of heating the power battery only by using the first heating module is determined as the target heating mode, and the vehicle is controlled to heat the power battery by the first heating module.
[0136] The battery temperature control method provided in this embodiment obtains the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: the heating power and current operating temperature of the power battery; according to the current operating temperature and heating power of the power battery and the distance information between the vehicle and the target charging station, the estimated temperature value of the power battery when the vehicle arrives at the target charging pile is determined; according to the maximum charging power of the target charging station, the charging temperature threshold of the power battery is determined; according to the estimated temperature value and the charging temperature threshold, the target heating mode of the vehicle is determined, and the vehicle is controlled to heat the power battery according to the target heating mode. This method can more accurately determine whether the power battery is heated in a low temperature environment, which not only improves the working efficiency of the power battery during charging and discharging, but also improves the user's car experience in winter.
[0137] Figure 2 Schematic diagram of the process of the battery temperature control method provided in the embodiment of the present application Figure 2 .like Figure 2 As shown, in this embodiment Figure 1 Based on the embodiment, the battery temperature control method is described in detail. The battery temperature control method shown in this embodiment includes:
[0138] S201: Obtain target charging pile information of a vehicle and operating parameters of a power battery of the vehicle.
[0139] Step S201 is similar to the above step S101 and will not be described again.
[0140] S202: Determine a preset time for the vehicle to reach a target charging station according to the distance information.
[0141] The preset duration is used to indicate the length of time required for the vehicle to travel from the current location to the target charging station.
[0142] It is understandable that the speed of the vehicle during driving will affect the speed at which the power battery consumes power. Therefore, in the process of obtaining the operating parameters of the power battery, the current driving speed of the vehicle can also be obtained.
[0143] Based on the distance information between the current vehicle and the target charging pile and the current vehicle's driving speed, the two are calculated and processed to determine the length of time it takes for the vehicle to reach the target charging pile, that is, to obtain the preset time it takes for the vehicle to reach the target charging pile.
[0144] For example, the distance between the current vehicle and the target charging pile is 40 km, and the current vehicle's driving speed is 50 km / h. After calculation, it can be obtained that the preset time for the current vehicle to reach the target charging pile is 0.8 h.
[0145] S203: Determine the amount of heat generated by the battery when the vehicle reaches the target charging pile according to the preset time and heating power.
[0146] Among them, the heat generation power is used to indicate the power of the power battery itself causing heat to be generated by the generated current while the power battery is continuously discharging to provide power for the vehicle. The heat generated by the battery is used to indicate the heat value generated by the heat generation power when the power battery is discharging.
[0147] Based on the preset time for the current vehicle to reach the target charging pile and the heat power generated by the vehicle during the driving process to reach the target charging pile, the two are calculated and processed to determine the heat generated by the battery when the vehicle reaches the target charging pile.
[0148] For example, the current power battery heat generation power is 1kw, and the preset time for the current vehicle to reach the target charging pile is 0.8h. Then the heat generated by the battery when the vehicle reaches the target charging pile is 0.8kwh.
[0149] S204: Determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature and the heat generated by the battery.
[0150] Based on the current operating temperature and the heat generated by the battery, the heat generated by the battery is calculated and processed to obtain the temperature change value of the vehicle when it reaches the target charging pile, and the sum of the temperature change value and the current temperature is used as the estimated temperature of the current power battery.
[0151] For example, the current operating temperature is 5°C, and the battery generates 0.8 kwh of heat when the vehicle reaches the target charging pile. After calculation, the temperature change value corresponding to the 0.8 kwh of heat generated by the battery is ΔT°C. (ΔT+5)°C=T1°C is used as the estimated temperature when the vehicle reaches the target charging pile, that is, the obtained estimated temperature is T1°C.
[0152] S205: Determine a charging temperature threshold of the power battery according to the maximum charging power.
[0153] Step S205 is similar to the above step S103 and will not be described again.
[0154] S206: Determine whether the temperature estimate is less than the charging temperature threshold.
[0155] S207: When the estimated temperature is less than the charging temperature threshold, sending a first operation request to the vehicle, and controlling the vehicle to start a battery thermal management function.
[0156] The first operation request is used to instruct to increase the temperature of the power battery.
[0157] The purpose of judging whether the estimated temperature value is less than the charging temperature threshold in this step is to determine whether it is necessary to turn on the heating module to heat the power battery.
[0158] It can be understood that the current operating environment of the power battery is a low temperature environment. If the battery thermal management function of the power battery is not turned on, the operating temperature of the power battery will only exist when the temperature estimate is equal to or less than the charging temperature threshold. Since the judgment condition for heating the power battery is that the temperature estimate is less than the charging temperature threshold, and the purpose of heating the power battery is to ensure that the temperature estimate is consistent with the charging temperature threshold, therefore, when the thermal management function of the power battery is not turned on, there is no situation where the temperature estimate is greater than the charging temperature threshold.
[0159] If the temperature estimate is less than the charging temperature threshold, it means that when the vehicle arrives at the target charging pile, the operating temperature of the power battery has not reached the most suitable temperature, and the current charging power of the power battery cannot be guaranteed to be consistent with the maximum charging power of the target charging pile, which may easily cause safety hazards during the vehicle charging process. At this time, a first operation request is sent to the vehicle. In order to meet the request to increase the operating temperature of the power battery, the vehicle is controlled to turn on the battery thermal management function, thereby increasing the operating temperature of the power battery.
[0160] If the estimated temperature is not less than the charging temperature threshold, that is, the estimated temperature is equal to the charging temperature threshold, it means that when the vehicle reaches the target charging pile, the heat generated by the heating power alone can make the operating temperature of the power battery reach the charging temperature threshold. At this time, there is no need to turn on the vehicle's battery thermal management function, and the vehicle can continue driving while maintaining its current operating parameters.
[0161] For example, the temperature estimate is T1℃, and the charging temperature threshold is 25℃. If T1℃<25℃, it means that when the vehicle reaches the target charging pile, there is still a temperature gap between T1℃ and 25℃, and the operating temperature of the power battery cannot reach the most suitable temperature, which means that the current charging power of the power battery cannot be guaranteed to be consistent with the maximum charging power of the target charging pile, which may easily cause safety hazards during the vehicle charging process. At this time, the first operation request of "turning on the battery thermal management function" is sent to the vehicle, and the vehicle is controlled to turn on the battery thermal management function, thereby increasing the operating temperature of the power battery; if T1℃=25℃, it means that when the vehicle reaches the target charging pile, the heat generated by the heat pump heating power can meet the increase in the current operating temperature of the power battery, and the battery thermal management function of the vehicle does not need to be turned on.
[0162] S208: Obtaining a target heating power corresponding to the battery thermal management function.
[0163] The target heating power is used to instruct the heating module currently selected by the vehicle to heat the power battery so that the estimated temperature of the power battery reaches the charging temperature threshold.
[0164] After the battery thermal management function is turned on, the function can analyze and process the temperature difference between the current temperature estimate and the charging temperature threshold and the preset time for the vehicle to reach the target charging pile, and determine the heating power that makes the temperature estimate when the vehicle arrives at the target charging pile consistent with the charging temperature threshold, that is, the heat value generated by running at this heating power for a preset time, which can compensate for the currently determined temperature difference, and determine this heating power as the target heating power.
[0165] Optionally, the target heating power corresponding to the battery thermal management function is obtained, including:
[0166] Obtain a heating module for the power battery, the heating module comprising: a first heating module, a second heating module and a third heating module; determine a first heating power corresponding to the first heating module according to the first heating module; determine a second heating power corresponding to the second heating module according to the second heating module; determine a third heating power corresponding to the third heating module according to the third heating module; determine a target heating power corresponding to the battery thermal management function according to the first heating power, the second heating power, the third heating power and a preset duration.
[0167] Among them, the first heating power is greater than the second heating power, and the second heating power is greater than the third heating power.
[0168] It can be understood that the heating power used by the heating module is variable, but the variable range of heating power corresponding to different heating modules is different; according to the actual operating conditions of the vehicle, different heating modules and corresponding heating powers are selected to achieve the purpose of heating the power battery, and the heating target is to make the temperature estimate consistent with the charging temperature threshold.
[0169] The current vehicle is equipped with a first heating module, a second heating module and a third heating module, and different heating modules have different heating powers. Since the heating powers of different heating modules are different, when heating the power battery, a heating module with a larger heating power is preferably used for heating, that is, the first heating module can be used for heating first; if the currently selected heating module cannot meet the heating demand of the power battery, the first heating module and the second heating module are turned on at the same time for heating, or the first heating module, the second heating module and the third heating module are turned on at the same time for heating, and the corresponding heating methods may include: heating with the first heating module, heating with the first heating module and the second heating module together, and heating with the first heating module, the second heating module and the third heating module together; according to the temperature difference between the temperature estimation value and the charging temperature threshold, the heat value that can be generated when the vehicle heats the power battery in different heating methods is determined from multiple heating modules; the multiple heat values obtained are analyzed and processed to determine the heating module used by the vehicle when the temperature estimation value reaches the same as the charging temperature threshold when the vehicle reaches the target charging pile, and the heating power corresponding to the heating module is the target heating power.
[0170] For example, when the current charging temperature threshold of the power battery is 25°C, the currently acquired temperature estimate is T1°C, and T1°C < 25°C, the vehicle is heated by the first heating module, the first heating module and the second heating module are heated together, and the first heating module, the second heating module and the third heating module are heated together, and the calorific values corresponding to the three heating methods are analyzed and processed to obtain multiple calorific values, and then the multiple calorific values are analyzed and calculated to determine the change value of the operating temperature of the power battery within 0.8h when the vehicle heats the power battery with the corresponding heating module, and the change values of the multiple operating temperatures are ΔT1°C, ΔT2°C, and ΔT3°C, respectively. The corresponding temperature estimation value can be determined; among them, (ΔT1+5)=25℃, which indicates that the vehicle only needs to turn on the first heating module to heat the power battery. At this time, the heating power corresponding to the first heating module is used as the target heating power for heating the power battery at that time; (ΔT2+5)>25℃ and (ΔT3+5)>25℃, both indicate that the vehicle heats the power battery with the first heating module and the second heating module together and with the first heating module, the second heating module and the third heating module together, and when the power battery is heated, the temperature estimation values all exceed the charging temperature threshold, that is, the operating temperature of the power battery does not meet the most suitable charging temperature, thereby affecting the charging efficiency of the power battery.
[0171] Optionally, when determining the target heating power required to increase the operating temperature of the power battery, different heating methods can be provided to the user according to the user's usage habits; when it is determined that the heat value generated by heating treatment using only the second heating module or the third heating module or the second heating module and the third heating module can meet the current temperature difference, the user can choose to use only the second heating module for heating treatment, or only the third heating module for treatment.
[0172] S209: Determine a target heating mode for operating the battery thermal management function according to the target heating power.
[0173] S210: Controlling the vehicle to heat the power battery according to the target heating mode.
[0174] It can be understood that there is a correlation between the target heating power and the target heating mode; when the vehicle heats the power battery with different heating powers, the operating temperature of the power battery will also change differently. Since multiple heating modules are configured inside the vehicle, and each heating module can adjust its own heating power, the range of different heating powers corresponding to each heating module is different; in order to meet the different heating needs of the vehicle during driving, different heating modes are set in the battery thermal management function. Different heating modes correspond to the use of different heating modules, and also correspond to different heating powers. According to different vehicle usage conditions, different heating modules and heating powers can be selected to heat the power battery, and then different heating modes can be determined according to different heating powers and heating modules; wherein, the heating modules corresponding to different heating modes can be single or multiple.
[0175] According to the currently determined target heating power, it is matched with the heating mode set in the battery thermal management function, and the matching heating mode is used as the target heating mode for heating the power battery at that time, and the vehicle is controlled to heat the power battery according to the target heating mode.
[0176] For example, according to the currently determined target heating power being the heating power corresponding to the first heating module, the corresponding heating mode set in the battery thermal management function can be obtained as: "turn on the first heating module", then the vehicle is controlled to turn on the first heating module to heat the power battery.
[0177] S211: Re-obtaining the current operating temperature of the power battery.
[0178] S212: Determine whether the current operating temperature is less than the sum of the charging temperature threshold and a preset temperature value.
[0179] S213: When the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, sending a second operating request to the vehicle, and controlling the vehicle to turn off a battery thermal management function.
[0180] Among them, the second operation request is used to instruct to stop heating the power battery; the preset temperature value is the temperature margin for heating the power battery to prevent the power battery temperature from dropping rapidly again after stopping the heating of the power battery, resulting in frequent starting of heating. The preset temperature value can be 2°C, for example.
[0181] The purpose of judging whether the current operating temperature is less than the sum of the charging temperature threshold and the preset temperature value in this step is to determine whether the heating treatment of the power battery at that time reaches the preset appropriate temperature.
[0182] If the current operating temperature is lower than the sum of the charging temperature threshold and the preset temperature value, it indicates that the heating treatment of the power battery has not achieved the expected effect and the current vehicle has not yet reached the target charging pile. At this time, the current vehicle operating state can be kept unchanged.
[0183] If the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, it indicates that the heating treatment of the power battery has achieved the expected effect, that is, the operating temperature of the power battery has reached the charging temperature threshold, and the current vehicle has arrived at the target charging pile. At this time, a second operation request is sent to the vehicle, and the vehicle is controlled to turn off the battery thermal management function.
[0184] For example, the charging temperature threshold is 25°C, and the current operating temperature may be T2°C. If T2°C < 27°C, it indicates that the heating treatment of the power battery did not make the operating temperature of the power battery reach the most suitable temperature, and the current vehicle has not yet reached the target charging pile. At this time, the power battery needs to be heated to keep the current vehicle operating state unchanged; if T2°C ≥ 27°C, it indicates that the heating treatment of the power battery has achieved the expected effect, that is, the operating temperature of the power battery has reached the charging temperature threshold (there is also the possibility of being greater than the charging threshold, which is caused by the battery heating treatment time being too long), and the current vehicle has reached the target charging pile. At this time, a request to "turn off the battery thermal management function" is sent to the vehicle, and the vehicle is controlled to turn off the battery thermal management function.
[0185] Optionally, after controlling the vehicle to heat the power battery according to the target heating mode, the method further includes:
[0186] Obtain the current driving route of the vehicle and the initial driving route of the vehicle to reach the target charging station; determine whether the current driving route is consistent with the initial driving route; if the current driving route is consistent with the initial driving route, control the battery thermal management function of the vehicle to operate according to the target heating mode; if the current driving route is inconsistent with the initial driving route, determine the current distance information of the vehicle based on the current driving route; determine whether the current distance information is greater than a preset distance threshold; if the current distance information is greater than the preset distance threshold, send a second operation request to the vehicle, and control the vehicle to turn off the battery thermal management function.
[0187] The preset distance threshold may be, for example, 1 km.
[0188] By obtaining the vehicle's current driving route and the vehicle's initial driving route to the target charging station; determining whether the current driving route is consistent with the initial driving route; when the current driving route does not deviate from the initial driving route, controlling the vehicle's battery thermal management function to operate in accordance with the target heating mode; when the current driving route deviates from the initial driving route, determining whether the current distance information is greater than a preset distance threshold; if the current distance information is greater than the preset distance threshold, it indicates that the current vehicle has deviated from the initial driving route to a large extent, and continuing to heat the power battery cannot guarantee whether the vehicle can reach the target charging station normally. At this time, a second operation request is sent to the vehicle, and the vehicle is controlled to turn off the battery thermal management function.
[0189] The battery temperature control method provided in this embodiment obtains the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: the heat generation power and the current operating temperature of the power battery; according to the distance information between the vehicle and the target charging station, the preset time for the vehicle to reach the target charging pile is determined, and according to the preset time and the heat generation power, the heat generated by the battery when the vehicle reaches the target charging pile is determined; according to the current operating temperature and the heat generated by the battery, the estimated temperature of the power battery when the vehicle reaches the target charging pile is determined; according to the maximum charging power of the target charging station, the power battery temperature is determined. The charging temperature threshold of the power battery is determined; the estimated temperature value is determined to be less than the charging temperature threshold; when the estimated temperature value is less than the charging temperature threshold, a first operation request is sent to the vehicle, and the vehicle is controlled to turn on the battery thermal management function; the target heating power corresponding to the battery thermal management function is obtained, and the target heating mode of the battery thermal management function corresponding to the target heating power is determined, and the vehicle is controlled to heat the power battery according to the target heating mode; the operating temperature of the power battery is obtained again, and the operating temperature is determined to be less than the sum of the charging temperature threshold and the preset temperature value; when the operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, a second operation request is sent to the vehicle, and the vehicle is controlled to turn off the battery thermal management function. This method can more accurately determine whether the power battery is heated in a low temperature environment, reduce the danger of the power battery, optimize the thermal management function of the vehicle in a low temperature environment, not only improve the working efficiency of the power battery during charging and discharging, but also improve the user's car experience in winter.
[0190] Figure 3 Schematic diagram of the process of the battery temperature control method provided in the embodiment of the present application Figure 3 .like Figure 3 As shown, in this embodiment Figure 2 Based on the embodiment, a method for determining a target heating mode for the battery thermal management function is described in detail. The battery temperature control method shown in this embodiment includes:
[0191] S301: Determine a temperature difference required by the power battery according to the temperature estimation value and the charging temperature threshold.
[0192] S302: Determine a target heat amount required by the power battery according to the temperature difference and a preset time.
[0193] Based on the temperature estimate and the charging temperature threshold, the two are calculated and processed to obtain the temperature difference required for the power battery when the vehicle arrives at the target charging pile; based on the temperature difference and the preset driving time of the vehicle, they are calculated and processed to obtain the corresponding heat value, and the heat value is determined as the target heat required for the power battery.
[0194] For example, the temperature estimate may be T1°C, and the charging temperature threshold may be 25°C. By calculating and processing the two, 25°C-T1°C=ΔT°C, the temperature difference between the two may be ΔT°C, and the operating temperature of the power battery may be increased by ΔT°C within 0.8h. After analysis and processing, the heat value corresponding to the increase of ΔT°C may be obtained as an increase of (ΔQ)J, and (ΔQ)J may be used as the target heat.
[0195] S303: Determine the first heat generated by the first heating module within the preset time according to the first heating power and the preset time, and judge whether the first heat reaches the target heat; if so, execute step S304; if not, execute step S305.
[0196] The first heating power may be, for example, a heat pump heating power.
[0197] The purpose of judging whether the first heat reaches the target heat in this step is to determine whether the first heating module can generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within a preset time period.
[0198] It can be understood that in order to reduce the energy consumption of the vehicle, when determining the target heating power and heating module, the heat value generated by the heating treatment of the vehicle's power battery with the corresponding heating power within a preset time period is calculated, so as to determine the heat value corresponding to each heating power and heating module, and then match the heat value corresponding to different heating modules with the heat value corresponding to the target heating power to determine the most suitable heating power; and the heating power can be the heating power corresponding to a single heating module, or it can be the combined heating power corresponding to multiple heating modules.
[0199] If the first heat reaches the target heat, it indicates that the first heating module can generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within the preset time. At this time, the first heat generated by the first heating module operating at the first heating power within the preset time is determined to be the target heat.
[0200] If the first heat does not reach the target heat, it means that the first heating module cannot generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within the preset time. At this time, it is necessary to determine the second heat generated by the first heating module and the second heating module when they perform heating treatment together within the preset time based on the first heating power, the second heating power and the preset time.
[0201] For example, after determining that the target heat is (ΔQ)J, the heat values corresponding to the different heating modules configured inside the vehicle are calculated; the heat pump heating module is estimated, and the heating power corresponding to the heat pump heating module is the heat pump heating power, and the first heat obtained is (ΔQ1)J; if (ΔQ)J is equal to (ΔQ1)J, it means that the heat value generated by the heat pump heating module for heating treatment can meet the heat value corresponding to the temperature difference of the temperature rise of the power battery. At this time, the heat value (ΔQ1)J generated by the heat pump heating power within 0.8h is used as the target heat; if (ΔQ)J is greater than (ΔQ1)J, it means that the heat value generated by the heat pump heating module for heating treatment cannot meet the heat value corresponding to the temperature difference of the temperature rise of the power battery. At this time, it is necessary to determine the second heat generated by the heat pump heating module and the PTC heating module within 0.8h based on the heat pump heating power, the PTC heating power and the preset time of 0.8h.
[0202] S304: If the first heat reaches the target heat, determine that the first heat is the target heat.
[0203] S305: If the first heat does not reach the target heat, determining the second heat generated by the first heating module and the second heating module within the preset time period according to the first heating power, the second heating power and the preset time period.
[0204] S306: Determine whether the second heat reaches the target heat.
[0205] The second heating power may be, for example, a PTC heating power.
[0206] The purpose of judging whether the second heat reaches the target heat in this step is to determine whether the first heating module and the second heating module can generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within a preset time period.
[0207] It can be understood that the heating modules currently configured in the vehicle include: a first heating module, a second heating module and a third heating module, and the heating powers corresponding to different heating modules are, from large to small, the first heating power, the second heating power and the third heating power. When it is determined that the heat value generated by the first heating module for heating the power battery cannot reach the target heat, it is necessary to control the vehicle to use multiple heating modules to heat the power battery at the same time.
[0208] This embodiment does not impose any special restrictions on the heating modules configured inside the vehicle. This embodiment is only illustrated by taking the heating modules as including a first heating module, a second heating module and a third heating module.
[0209] If the second heat reaches the target heat, it indicates that the first heating module and the second heating module can generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within the preset time. At this time, the second heat generated by the first heating module and the second heating module operating together with the first heating power and the second heating power within the preset time is determined to be the target heat.
[0210] If the second heat does not reach the target heat, it indicates that the first heating module and the second heating module cannot generate a heat value corresponding to the temperature difference that increases the temperature of the power battery within the preset time. At this time, it is necessary to determine, based on the first heating power, the second heating power, the third heating power and the preset time, whether the heat value generated by the vehicle heating the power battery with the first heating module, the second heating module and the third heating module at the same time within the preset time can reach the target heat, and determine the heat value as the third heat generated. At this time, the third heat can be used as the target heat.
[0211] For example, after determining that the target heat is (ΔQ)J, the heat values corresponding to the different heating modules configured inside the vehicle are calculated; the heat pump heating module and the PTC heating module are estimated, and the heating power corresponding to the heat pump heating module is the heat pump heating power, and the heating power corresponding to the PTC heating module is the PTC heating power, and the second heat obtained is (ΔQ2)J; if (ΔQ)J is equal to (ΔQ2)J, it means that the heat value generated by the heat pump heating module and the PTC heating module being used together for heating treatment can meet the heat value corresponding to the temperature difference of the temperature rise of the power battery. At this time, the heat pump heating power and The heat value (ΔQ2)J generated by the PTC heating power within 0.8h is taken as the target heat; if (ΔQ)J is greater than (ΔQ2)J, it indicates that the heat value generated by the joint heating treatment of the heat pump heating module and the PTC heating module cannot meet the heat value corresponding to the temperature difference of the temperature rise of the power battery. At this time, the heat pump heating module, the PTC heating module and the motor heating module need to be turned on at the same time to heat the power battery together, and the heat value (ΔQ3)J generated by the vehicle's simultaneous heating treatment of the power battery with the heat pump heating module, the PTC heating module and the motor heating module is taken as the target heat.
[0212] S307: If the second heat does not reach the target heat, determine the third heat generated by the first heating module, the second heating module and the third heating module within the preset time according to the first heating power, the second heating power, the third heating power and the preset time.
[0213] S308: Determine that the third heat amount is the target heat amount.
[0214] S309: Determine a target heating power corresponding to the battery thermal management function according to the target heat.
[0215] According to the currently determined target heat, a heating module corresponding to the target heat can be obtained, and the target heating power corresponding to the battery thermal management function can be determined accordingly.
[0216] For example, the heating module corresponding to the target heat (ΔQ)J is a heat pump heating module. According to the target heat (ΔQ)J, it can be determined that the heating power used by the heat pump heating module can meet the current heating demand of the power battery, and the heating power is used as the target heating power.
[0217] S310: Determine a target heating mode for operating the battery thermal management function according to the target heating power.
[0218] According to the currently determined target heating power, it is matched with the heating mode set in the battery thermal management function, and the matching heating mode is used as the target heating mode for heating the power battery at that time.
[0219] The battery temperature control method provided in this embodiment obtains the heating power corresponding to different heating modules inside the vehicle, determines the temperature difference required by the power battery according to the temperature estimation value and the charging temperature threshold; determines the target heat required by the power battery in combination with the preset time for the vehicle to arrive at the target charging station; estimates the vehicle running at different heating powers according to the different heating powers obtained for different modules, and obtains the corresponding heat value; compares the heat value corresponding to the different heating powers obtained with the target heat, determines the heat value required by the vehicle, and determines and updates the heat value as the target heat, and then determines the target heating power corresponding to the battery thermal management function according to the target heat, and determines the target heating mode corresponding to the target heating power for the battery thermal management function to operate. This method optimizes the thermal management function of the vehicle in a low temperature environment, reduces the energy consumption of the thermal management function during the operation of the vehicle, and not only improves the working efficiency of the power battery during charging and discharging, but also improves the user's car experience in winter.
[0220] Figure 4 This is a schematic diagram of the structure of the battery temperature control device provided in this application. Figure 4 As shown, the present application provides a battery temperature control device, the battery temperature control device 300 includes:
[0221] The acquisition module 301 is used to obtain the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle. The target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station. The operating parameters include: the heating power and the current operating temperature of the power battery.
[0222] The determination module 302 is used to determine the estimated temperature of the power battery when the vehicle arrives at the target charging pile according to the current operating temperature, the heating power and the distance information.
[0223] The determination module 302 is further configured to determine a charging temperature threshold of the power battery according to the maximum charging power.
[0224] The determination module 302 is further configured to determine a target heating mode of the vehicle according to the temperature estimation value and the charging temperature threshold.
[0225] The control module 303 is used to control the vehicle to heat the power battery according to the target heating mode.
[0226] Optionally, the determination module 302 is further used to determine a preset time for the vehicle to reach the target charging pile according to the distance information.
[0227] The determination module 302 is further configured to determine the amount of heat generated by the battery when the vehicle reaches the target charging pile according to the preset time and the heating power.
[0228] The determination module 302 is further configured to determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature and the heat generated by the battery.
[0229] Optionally, the battery temperature control device further includes: a judgment module 304 .
[0230] The determination module 304 is configured to determine whether the estimated temperature value is less than the charging temperature threshold.
[0231] The battery temperature control device further includes: a sending module 305 .
[0232] The sending module 305 is used to send a first operation request to the vehicle when the temperature estimate is less than the charging temperature threshold, wherein the first operation request is used to instruct to increase the temperature of the power battery.
[0233] The control module 303 is specifically used to control the vehicle to enable a battery thermal management function.
[0234] The acquisition module 301 is further used to acquire the target heating power corresponding to the battery thermal management function.
[0235] The determination module 302 is further configured to determine a target heating mode for the battery thermal management function to operate according to the target heating power.
[0236] Optionally, the acquisition module 301 is further used to acquire a heating module of the power battery, and the heating module includes: a first heating module and a second heating module.
[0237] The determining module 302 is further configured to determine a first heating power corresponding to the first heating module according to the first heating module.
[0238] The determining module 302 is further configured to determine a second heating power corresponding to the second heating module according to the second heating module.
[0239] The determination module 302 is further configured to determine a third heating power corresponding to the third heating module according to the third heating module.
[0240] The determination module 302 is further configured to determine a target heating power corresponding to the battery thermal management function according to the first heating power, the second heating power, the third heating power and the preset duration.
[0241] Optionally, the determination module 302 is further configured to determine a temperature difference required by the power battery according to the temperature estimation value and the charging temperature threshold.
[0242] The determination module 302 is further configured to determine a target amount of heat required by the power battery according to the temperature difference and the preset time.
[0243] The determination module 302 is further configured to determine a first amount of heat generated by the first heating module within the preset time period according to the first heating power and the preset time period.
[0244] The determining module 304 is further configured to determine whether the first heat reaches the target heat.
[0245] If the first heat reaches the target heat, the determination module 302 is further configured to determine that the first heat is the target heat.
[0246] If the first heat does not reach the target heat, the determination module 302 is further used to determine the second heat generated by the first heating module and the second heating module within the preset time period according to the first heating power, the second heating power and the preset time period.
[0247] The judging module 304 is further configured to judge whether the second heat reaches the target heat.
[0248] If the second heat reaches the target heat, the determination module 302 is further configured to determine that the second heat is the target heat.
[0249] If the second heat does not reach the target heat, the determination module 302 is also used to determine the third heat generated by the first heating module, the second heating module and the third heating module within the preset time period based on the first heating power, the second heating power, the third heating power and the preset time period, and determine that the third heat is the target heat.
[0250] The determination module 302 is further configured to determine a target heating power corresponding to the battery thermal management function according to the target heat.
[0251] Optionally, the acquisition module 301 is further used to acquire the current driving route of the vehicle and the initial driving route of the vehicle to reach the target charging station.
[0252] The judgment module 304 is further used to judge whether the current driving route is consistent with the initial driving route.
[0253] If the current driving route is consistent with the initial driving route, the control module 303 is further used to control the battery thermal management function of the vehicle to operate according to the target heating mode.
[0254] If the current driving route is inconsistent with the initial driving route, the determination module 302 is further configured to determine the current distance information of the vehicle according to the current driving route.
[0255] The determination module 304 is further configured to determine whether the current distance information is greater than a preset distance threshold.
[0256] If the current distance information is greater than a preset distance threshold, the sending module 305 is further configured to send a second operation request to the vehicle, where the second operation request is configured to instruct to stop heating the power battery.
[0257] The control module 303 is also used to control the vehicle to turn off the battery thermal management function.
[0258] Optionally, the acquisition module 301 is further used to re-acquire the current operating temperature of the power battery.
[0259] The determination module 304 is further configured to determine whether the current operating temperature is less than the sum of the charging temperature threshold and a preset temperature value.
[0260] The sending module 305 is further configured to send a second operation request to the vehicle when the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, wherein the second operation request is configured to instruct to stop heating the power battery.
[0261] Figure 5 This is a schematic diagram of the structure of the battery temperature control device provided in this application. Figure 5 As shown, the present application provides a battery temperature control device, and the battery temperature control device 400 includes: a receiver 401 , a transmitter 402 , a processor 403 and a memory 404 .
[0262] Receiver 401, for receiving instructions and data;
[0263] A transmitter 402, used for sending instructions and data;
[0264] Memory 404, for storing computer-executable instructions;
[0265] The processor 403 is used to execute the computer-executable instructions stored in the memory 404 to implement the various steps performed by the battery temperature control method in the above embodiment. For details, please refer to the relevant description in the above embodiment of the battery temperature control method.
[0266] Optionally, the memory 404 may be independent or integrated with the processor 403 .
[0267] When the memory 404 is independently provided, the electronic device further includes a bus for connecting the memory 404 and the processor 403 .
[0268] The present application also provides a computer-readable storage medium, in which computer-executable instructions are stored. When a processor executes the computer-executable instructions, the battery temperature control method executed by the above-mentioned battery temperature control device is implemented.
[0269] It will be appreciated by those skilled in the art that all or some of the steps, systems, and functional modules / units in the methods disclosed above may be implemented as software, firmware, hardware, and appropriate combinations thereof. In hardware implementations, the division between the functional modules / units mentioned in the above description does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may be performed by several physical components in cooperation. Some or all physical components may be implemented as software executed by a processor, such as a central processing unit, a digital signal processor, or a microprocessor, or implemented as hardware, or implemented as an integrated circuit, such as an application-specific integrated circuit. Such software may be distributed on a computer-readable medium, which may include a computer storage medium (or non-transitory medium) and a communication medium (or temporary medium). As known to those skilled in the art, the term computer storage medium includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, digital versatile disks (DVD) or other optical disk storage, magnetic cassettes, magnetic tapes, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store the desired information and can be accessed by a computer. In addition, it is well known to those of ordinary skill in the art that communication media typically contain computer-readable instructions, data structures, program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media.
[0270] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the invention disclosed herein. The present application is intended to cover any modification, use or adaptation of the present application, which follows the general principles of the present application and includes common knowledge or customary techniques in the art that are not disclosed in the present application. The specification and examples are intended to be exemplary only, and the true scope and spirit of the present application are indicated by the following claims.
[0271] It should be understood that the present application is not limited to the precise structures that have been described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.
Claims
1. A battery temperature control method, characterized in that: The method comprises: Obtaining target charging pile information of the vehicle and operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: heating power and current operating temperature of the power battery; Determine, according to the current operating temperature, the heating power and the distance information, an estimated temperature value of the power battery when the vehicle arrives at a target charging pile; Determining a charging temperature threshold of the power battery according to the maximum charging power; A target heating mode of the vehicle is determined according to the temperature estimation value and the charging temperature threshold, and the vehicle is controlled to heat the power battery according to the target heating mode.
2. The method according to claim 1, characterized in that The determining, according to the current operating temperature, the heating power and the distance information, an estimated temperature value of the power battery when the vehicle arrives at a target charging pile includes: Determine, based on the distance information, a preset time for the vehicle to reach the target charging pile; Determining, based on the preset time and the heating power, the amount of heat generated by the battery when the vehicle reaches the target charging pile; An estimated temperature of the power battery when the vehicle arrives at a target charging pile is determined according to the current operating temperature and the heat generated by the battery.
3. The method according to claim 2, characterized in that The determining, according to the temperature estimation value and the charging temperature threshold, a target heating mode of the vehicle includes: Determining whether the temperature estimate is less than the charging temperature threshold; When the estimated temperature is less than the charging temperature threshold, sending a first operation request to the vehicle and controlling the vehicle to start a battery thermal management function, wherein the first operation request is used to instruct to increase the temperature of the power battery; Obtaining a target heating power corresponding to the battery thermal management function; A target heating mode for operating the battery thermal management function is determined according to the target heating power.
4. The method according to claim 3, characterized in that The obtaining of the target heating power corresponding to the battery thermal management function includes: Obtaining a heating module of the power battery, wherein the heating module comprises: a first heating module, a second heating module and a third heating module; Determining a first heating power corresponding to the first heating module according to the first heating module; Determining a second heating power corresponding to the second heating module according to the second heating module; According to the third heating module, determining a third heating power corresponding to the third heating module; A target heating power corresponding to the battery thermal management function is determined according to the first heating power, the second heating power, the third heating power and the preset duration.
5. The method according to claim 4, characterized in that The determining, according to the first heating power, the second heating power, the third heating power and the preset duration, a target heating power corresponding to the battery thermal management function includes: Determining a temperature difference required for the power battery according to the temperature estimate and the charging temperature threshold; Determining a target amount of heat required by the power battery according to the temperature difference and the preset time; Determine, according to the first heating power and the preset time, a first amount of heat generated by the first heating module within the preset time, and judge whether the first amount of heat reaches the target amount of heat; If the first heat reaches the target heat, determining the first heat as the target heat; If the first heat does not reach the target heat, determining the second heat generated by the first heating module and the second heating module within the preset time period according to the first heating power, the second heating power and the preset time period, and judging whether the second heat reaches the target heat; If the second heat reaches the target heat, determining the second heat as the target heat; If the second heat does not reach the target heat, determining the third heat generated by the first heating module, the second heating module and the third heating module within the preset time period according to the first heating power, the second heating power, the third heating power and the preset time period, and determining the third heat as the target heat; A target heating power corresponding to the battery thermal management function is determined according to the target heat.
6. The method according to claim 5, characterized in that After controlling the vehicle to heat the power battery according to the target heating mode, the method further includes: Acquiring a current driving route of the vehicle and an initial driving route of the vehicle to reach the target charging station; Determining whether the current driving route is consistent with the initial driving route; If the current driving route is consistent with the initial driving route, controlling the battery thermal management function of the vehicle to operate according to the target heating mode; If the current driving route is inconsistent with the initial driving route, determining the current distance information of the vehicle according to the current driving route; Determine whether the current distance information is greater than a preset distance threshold; If the current distance information is greater than a preset distance threshold, a second operation request is sent to the vehicle, and the vehicle is controlled to turn off a battery thermal management function, wherein the second operation request is used to instruct to stop heating the power battery.
7. The method according to claim 6, characterized in that After controlling the vehicle to heat the power battery according to the target heating mode, the method further includes: Re-obtaining the current operating temperature of the power battery; Determining whether the current operating temperature is less than the sum of the charging temperature threshold and a preset temperature value; When the current operating temperature is not less than the sum of the charging temperature threshold and the preset temperature value, a second operating request is sent to the vehicle, and the vehicle is controlled to turn off a battery thermal management function.
8. A battery temperature control device, characterized in that: The device comprises: An acquisition module, used to acquire the target charging pile information of the vehicle and the operating parameters of the power battery of the vehicle, wherein the target charging pile information includes: the distance information between the vehicle and the target charging station and the maximum charging power of the target charging station, and the operating parameters include: the heating power and the current operating temperature of the power battery; A determination module, configured to determine an estimated temperature of the power battery when the vehicle arrives at a target charging pile according to the current operating temperature, the heating power and the distance information; The determination module is further configured to determine a charging temperature threshold of the power battery according to the maximum charging power; The determination module is further configured to determine a target heating mode of the vehicle according to the temperature estimation value and the charging temperature threshold; A control module is used to control the vehicle to heat the power battery according to the target heating mode.
9. A battery temperature control device, characterized in that: include: Memory; processor; Wherein, the memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the battery temperature control method according to any one of claims 1 to 7.
10. A computer storage medium, characterized in that: The computer storage medium stores computer executable instructions, and when the computer executable instructions are executed by a processor, they are used to implement the battery temperature control method according to any one of claims 1 to 7.
Citation Information
Cited By
Thermal management system and method for electric commercial vehicle
CN120363791A
A thermal management system and method for electric commercial vehicles
CN120363791B