A service data transmission method and device, electronic equipment and storage medium

By adjusting the priority and strategy of business data transmission on the intelligent connected vehicle industry chain platform, and prioritizing the processing of real-time data matching search content, the problem of low efficiency of search function caused by network latency after cloud-network convergence was solved, and real-time feedback of search results was achieved.

CN116346738BActive Publication Date: 2026-03-17BEIJING SAIMO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-23
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In the intelligent connected vehicle industry chain platform, the introduction of cloud-network convergence technology has led to network latency issues caused by the complexity of the platform structure, which has affected the execution efficiency of some functions, especially the search function that relies on real-time network performance.

Method used

By adjusting the transmission priority and transmission strategy of business data, real-time business data that matches the search content is processed first, and the priority is adjusted when the transmission link performance is poor, so as to reduce network latency and ensure the execution efficiency of the search function.

Benefits of technology

It improves the execution efficiency of the search function on the platform that relies on real-time network performance, ensures the real-time and timely nature of search results, and solves the network latency problem caused by the complexity of the platform structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present application provide a kind of service data transmission method, device, electronic equipment and storage medium, applied to the automobile platform based on cloud network fusion;The platform is connected with enterprise communication, the method comprises: obtaining the multiple service data uploaded by the enterprise;In response to the search function of the platform being triggered, the transmission priority level of the service data from the enterprise to the platform is adjusted according to search content;For each service data, the transmission strategy corresponding to the transmission priority level of the service data is executed;Search result related to the search content is fed back to the search party.By adjusting the transmission strategy of service data from enterprise to platform to reduce the network delay of platform, the execution efficiency of search function in platform depending on network real-time is improved, and the technical problem of network delay caused by the complexity of platform structure is solved.
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Description

Technical Field

[0001] This application relates to the field of communication technology, and more specifically, to a service data transmission method, apparatus, electronic device, and storage medium. Background Technology

[0002] With the rapid development of cloud computing and the full-scale launch of 5G construction, "cloud-network convergence" technology is being increasingly widely applied. "Cloud-network convergence" technology refers to introducing network technology into cloud computing and cloud computing technology into communication networks. One application scenario for cloud-network convergence technology is in the intelligent connected vehicle industry chain platform. Introducing network technology into the cloud computing of the intelligent connected vehicle industry chain platform creates cloud-network convergence, making the platform and network no longer independent. The cloud and network highly collaborate and support each other, achieving data interoperability between the network and the cloud, thereby forming a high-performance, low-latency intelligent connected vehicle industry chain platform.

[0003] However, the intelligent connected vehicle industry chain platform, after introducing cloud-network convergence technology, has some functions with low execution efficiency, which is a technical problem that urgently needs to be solved. Summary of the Invention

[0004] The purpose of this application is to provide a business data transmission method, apparatus, electronic device, and storage medium to achieve the technical effect of improving platform efficiency.

[0005] The first aspect of this application provides a business data transmission method applied to a cloud-network converged automotive platform; the platform is communicatively connected to an enterprise, and the method includes:

[0006] Obtain various types of business data uploaded by the enterprise;

[0007] In response to the platform's search function being triggered, the transmission priority of the business data from the enterprise to the platform is adjusted according to the search content;

[0008] For each type of service data, execute the transmission strategy corresponding to the transmission priority level of the service data;

[0009] The system provides the search engine with search results related to the search terms.

[0010] In the above implementation process, while the platform acquires various business data uploaded by enterprises, if the platform's search function is triggered, the transmission strategy of business data from the enterprise to the platform is adjusted to reduce the platform's network latency. This improves the execution efficiency of the search function, which relies on real-time network performance, and solves the technical problem of network latency caused by the complexity of the platform's structure.

[0011] Furthermore, adjusting the transmission priority of the business data from the enterprise to the platform based on the search content includes:

[0012] Monitor the performance of the transmission link from the enterprise to the platform for various types of business data;

[0013] In response to the transmission link performance meeting preset conditions, the transmission priority level of the service data is adjusted according to the search content.

[0014] In the above implementation process, the platform's search function is triggered when the performance of the business data transmission link meets preset conditions, which serves as the trigger for adjusting the priority level of business data transmission. By monitoring the transmission link performance, the priority level of business data transmission is adjusted only when necessary, ensuring the efficiency of the search function while minimizing disruption to the data upload process from the enterprise to the platform.

[0015] Furthermore, the preset conditions include one or more of the following:

[0016] The transmission link is unavailable;

[0017] The packet loss rate of the transmission link is greater than the preset packet loss threshold;

[0018] The transmission link delay exceeds the preset delay threshold.

[0019] In the above implementation process, when the transmission link performance meets any one or more of the aforementioned preset conditions, it indicates that the transmission process of business data from the enterprise to the platform is obstructed. Therefore, the transmission priority of the business data is adjusted to ensure the efficiency of the search function. Simultaneously, the obstruction of the transmission process from the enterprise to the platform serves as one of the triggering conditions for adjusting the transmission priority, ensuring that while maintaining the efficiency of the search function, the uploading process of business data from the enterprise to the platform is minimized.

[0020] Furthermore, the various types of business data include various types of real-time business data; adjusting the transmission priority of the business data from the enterprise to the platform based on the search content includes:

[0021] If the search content matches the target real-time service data, the transmission priority of the target real-time service data and / or other real-time service data is adjusted so that the transmission priority of the target real-time service data is higher than that of the other real-time service data.

[0022] In the above implementation process, because the transmission priority of the target real-time business data is higher than that of other real-time business data, the target real-time business data will be uploaded from the enterprise to the platform first. The platform will also acquire the target real-time business data first. Since the search content matches the target real-time business data, the platform can use the acquired target real-time business data as the search result and feed it back to the searcher, thus ensuring the real-time nature of the search results.

[0023] Furthermore, the various types of business data also include occasional business data; the step of adjusting the transmission priority of the business data from the enterprise to the platform based on the search content further includes:

[0024] If the search content matches the target occasional business data, the transmission priority of the real-time business data is reduced.

[0025] In the above implementation process, after reducing the transmission priority of real-time business data, the platform can use more computing resources to prioritize the execution of the search function, ensuring the timeliness of search result feedback.

[0026] Furthermore, the transmission priority level includes a first level and a second level, wherein the first level is higher than the second level;

[0027] The transmission strategies corresponding to the first level include: using the target transmission link to transmit business data from the enterprise to the platform; and / or increasing the transmission bandwidth of business data from the enterprise to the platform;

[0028] The transmission strategies corresponding to the second level include: reducing the transmission bandwidth of business data from the enterprise to the platform; and / or suspending the transmission of business data from the enterprise to the platform.

[0029] In the above implementation process, by setting two levels of transmission priority, different business data are transmitted differently according to the transmission strategies corresponding to different priority levels. Therefore, more computing resources of the platform can be used to execute the search function, ensuring the real-time and timely feedback of search results.

[0030] Furthermore, the search results include:

[0031] Target business data that matches the search content; or

[0032] The target business data that matches the search content, and the associated business data of the target business data.

[0033] In the above implementation process, the target business data is fed back to the searcher as the search result, avoiding delays in search results due to the platform needing to search for other business data, thus ensuring that the searcher can obtain the required information in a timely manner. Feeding back the target business data and related business data as search results allows the searcher to gain a more comprehensive understanding of the company's relevant data.

[0034] A second aspect of this application provides a business data transmission apparatus applied to a cloud-network converged automotive platform; the platform is communicatively connected to an enterprise, and the apparatus includes:

[0035] The acquisition module is used to acquire various types of business data uploaded by the enterprise.

[0036] An adjustment module is used to adjust the transmission priority of the business data from the enterprise to the platform according to the search content in response to the triggering of the search function of the platform.

[0037] The transmission module is used to execute the transmission strategy corresponding to the transmission priority level of each type of service data.

[0038] The feedback module is used to provide the searcher with search results related to the search content.

[0039] A third aspect of this application provides an electronic device, the electronic device comprising:

[0040] processor;

[0041] Memory used to store processor-executable instructions;

[0042] Wherein, when the processor invokes the executable instructions, it implements the operation of any of the methods described in the first aspect.

[0043] A fourth aspect of this application provides a computer-readable storage medium having computer instructions stored thereon, which, when executed by a processor, implement the steps of any of the methods described in the first aspect. Attached Figure Description

[0044] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments of this application will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0045] Figure 1 A flowchart illustrating a business data transmission method provided in an embodiment of this application;

[0046] Figure 2 A flowchart illustrating another business data transmission method provided in an embodiment of this application;

[0047] Figure 3 A flowchart illustrating another business data transmission method provided in an embodiment of this application;

[0048] Figure 4 A structural block diagram of a business data transmission device provided in an embodiment of this application;

[0049] Figure 5 This is a hardware structure diagram of an electronic device provided in an embodiment of this application. Detailed Implementation

[0050] The technical solutions in the embodiments of this application will now be described with reference to the accompanying drawings.

[0051] It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. Furthermore, in the description of this application, terms such as "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0052] With the rapid development of cloud computing and the full-scale launch of 5G construction, "cloud-network convergence" technology is being increasingly widely applied. "Cloud-network convergence" technology refers to introducing network technology into cloud computing and cloud computing technology into communication networks. One application scenario for cloud-network convergence technology is in the intelligent connected vehicle industry chain platform. Introducing network technology into the cloud computing of the intelligent connected vehicle industry chain platform creates cloud-network convergence, making the platform and network no longer independent. The cloud and network highly collaborate and support each other, achieving data interoperability between the network and the cloud, thereby forming a high-performance, low-latency intelligent connected vehicle industry chain platform.

[0053] However, the complex platform structure of the intelligent connected vehicle industry chain, based on cloud-network convergence, necessitates the virtualization of network and computing resources while running traditional operating systems, leading to potential network latency issues. Traditional troubleshooting methods are not only time-consuming and inefficient but also lack automatic optimization capabilities. Therefore, network latency caused by platform complexity contradicts the platform's inherent low-latency requirements. Furthermore, network latency impacts the execution efficiency of some platform functions, such as search functions that rely on real-time network performance. Therefore, resolving network latency caused by platform complexity is a pressing technical challenge.

[0054] Therefore, this application provides a business data transmission method applied to a cloud-network converged automotive platform (hereinafter referred to as the platform). This automotive platform is, for example, the aforementioned intelligent connected vehicle industry chain platform. The platform communicates with one or more enterprises. These enterprises connected to the platform can be related companies in the automotive industry chain, such as, but not limited to, suppliers, manufacturers, distributors, and service providers. Of course, the number of each type of enterprise can be one or more.

[0055] See Figure 1 The business data transmission method provided in this application includes, for example: Figure 1 The steps shown are as follows:

[0056] Step 110: Obtain various business data uploaded by the enterprise;

[0057] Step 120: In response to the platform's search function being triggered, adjust the transmission priority of the business data from the enterprise to the platform according to the search content;

[0058] Step 130: For each type of service data, execute the transmission strategy corresponding to the transmission priority level of the service data;

[0059] Step 140: Provide the search results related to the search content to the searcher.

[0060] The platform communicates with one or more enterprises and can acquire various types of business data uploaded by these enterprises. The upload frequency of these different types of business data can be set according to actual needs. The upload frequencies for different types of business data can be the same or different.

[0061] The platform offers a search function. This function can be triggered while the platform receives business data uploaded by businesses. When the search function is triggered, the platform adjusts the transmission priority of business data from the business to the platform based on the search terms entered by the user.

[0062] Optionally, the transmission priority of all types of business data can be adjusted.

[0063] Optionally, the transmission priority of some types of service data can be adjusted, while the transmission priority of other types of service data remains unchanged.

[0064] The transmission priority of business data is related to the transmission strategy. The transmission strategy refers to how business data is transmitted from the enterprise to the platform. After determining the transmission priority of each type of business data, a corresponding transmission strategy can be executed for each type of business data.

[0065] The platform executes the transmission strategy corresponding to each type of business data, so as to receive the business data uploaded by enterprises and provide search results related to the search content to the search party.

[0066] As can be seen, the business data transmission method provided in this application, while the platform acquires various business data uploaded by the enterprise, adjusts the transmission strategy of business data from the enterprise to the platform to reduce the platform's network latency if the platform's search function is triggered. This improves the execution efficiency of the search function on the platform, which relies on real-time network performance, and solves the technical problem of network latency caused by the complexity of the platform structure.

[0067] Regarding the triggering conditions for adjusting the priority level of business data transmission, in some embodiments, the triggering condition can be the platform's search function being triggered. That is, once the search party triggers the platform's search function, the platform adjusts the transmission priority level of business data.

[0068] In other embodiments, the triggering conditions may include the platform's search function being triggered, and the performance of the data transmission link from the enterprise to the platform meeting preset conditions. Therefore, it can be understood that if the platform's search function is triggered, but the performance of the data transmission link from the enterprise to the platform does not meet preset conditions, the adjustment of the data transmission priority will not be triggered.

[0069] Thus, step 120 above may include, for example: Figure 2 The steps shown are as follows:

[0070] Step 210: Monitor the performance of the transmission link for various types of business data from the enterprise to the platform;

[0071] Step 220: In response to the transmission link performance meeting the preset conditions, adjust the transmission priority level of the service data according to the search content.

[0072] Optionally, when the platform's search function is triggered, step 210 is executed to begin monitoring the transmission link performance of various business data from the enterprise to the platform. Once the transmission link performance is found to meet preset conditions, the transmission priority level of the business data is adjusted.

[0073] Optionally, steps 210 and 110 can be executed simultaneously, that is, while acquiring various business data uploaded by the enterprise, the performance of the transmission link is monitored. When the platform's search function is triggered and the monitored transmission link performance meets preset conditions, the transmission priority of the business data is adjusted.

[0074] Different companies upload their business data to the platform through different transmission links. Multiple types of business data from the same company are also uploaded to the platform through different transmission links. For example, the number of transmission links may be the same as the number of business types, meaning each type of business data is uploaded to the platform through its corresponding transmission link.

[0075] Optionally, business data includes real-time business data and occasional business data. Real-time business data refers to business data within the enterprise that is updated frequently. Business data is uploaded to the platform simultaneously with updates, therefore, the upload frequency of real-time business data from the enterprise to the platform is also high. Occasional business data, on the other hand, refers to business data within the enterprise that is updated only occasionally; correspondingly, the upload frequency of occasional business data from the enterprise to the platform is lower. Therefore, the upload frequency of real-time business data from the enterprise to the platform is greater than that of occasional business data. Step 210, which involves monitoring the transmission link performance of various types of business data from the enterprise to the platform, refers to monitoring the transmission link performance of real-time business data from the enterprise to the platform.

[0076] There are various metrics used to evaluate the performance of a transmission link. These include, but are not limited to, link availability, packet loss rate, and latency.

[0077] In some embodiments, the preset conditions that the transmission link performance must meet may include one or more of the following: the transmission link is unavailable, the packet loss rate of the transmission link is greater than a preset packet loss rate threshold, and the latency of the transmission link exceeds a preset latency threshold. The packet loss rate threshold and the latency threshold can be set by technical personnel according to actual needs.

[0078] When the transmission link performance meets any one or more of the aforementioned preset conditions, it indicates that an anomaly has occurred in the transmission link, and the transmission of business data from the enterprise to the platform is obstructed. This prompts an adjustment to the transmission priority of business data to ensure the efficiency of the search function. Simultaneously, the obstruction of business data transmission from the enterprise to the platform serves as one of the triggering conditions for adjusting the transmission priority, ensuring that while maintaining the efficiency of the search function, the uploading process of business data from the enterprise to the platform is minimized.

[0079] In some embodiments, the various business data may include various real-time business data.

[0080] As an example, various types of real-time business data may include, but are not limited to, manufacturing capacity data and delivery capacity data of enterprises (such as suppliers).

[0081] For example, manufacturing capacity data may include, but is not limited to, production capacity data, inventory data, and production equipment operation status data.

[0082] For example, delivery capacity data may include, but is not limited to, upstream delivery timeliness data and downstream delivery timeliness data.

[0083] In cases where multiple types of business data include multiple types of real-time business data, step 120 above may be: in response to the platform's search function being triggered, adjusting the transmission priority of real-time business data from the enterprise to the platform based on the search content.

[0084] Step 220 above can be: in response to the fact that the performance of the transmission link from the enterprise to the platform for real-time business data meets the preset conditions, the transmission priority of the real-time business data is adjusted according to the search content.

[0085] For example, adjusting the transmission priority of real-time business data from the enterprise to the platform based on search content may include, for instance, Figure 3 Step 310 shown: If the search content matches the target real-time service data, adjust the transmission priority of the target real-time service data and / or other real-time service data so that the transmission priority of the target real-time service data is higher than the transmission priority of other real-time service data.

[0086] The target real-time business data refers to the real-time business data that matches the search content from among various types of real-time business data. Other real-time business data refers to all real-time business data other than the target real-time business data.

[0087] The search content matches the target real-time business data; that is, the search content is one type of real-time business data. For example, the keywords in the search content include keywords from the target real-time business data.

[0088] Optionally, when a searcher needs to search for a company's real-time business data on the platform, the transmission priority level can be adjusted.

[0089] Optionally, when a searcher needs to search for a company's real-time business data on the platform, and the transmission link performance from the company to the platform meets preset conditions, the transmission priority level can be adjusted.

[0090] Adjusting the transmission priority of real-time business data from the enterprise to the platform can, for example, involve adjusting the transmission priority of target real-time business data. This could involve increasing the transmission priority of target real-time business data while keeping the transmission priority of other real-time business data unchanged, thus ensuring that the transmission priority of target real-time business data is higher than that of other real-time business data.

[0091] For example, this could include adjusting the transmission priority of other real-time service data. For instance, lowering the transmission priority of other real-time service data while keeping the transmission priority of the target service data unchanged, so that the transmission priority of the target real-time service data is higher than that of other real-time service data.

[0092] Another example could be adjusting the transmission priority of the target real-time service data compared to other real-time service data. For instance, increasing the transmission priority of the target real-time service data while decreasing the transmission priority of other real-time service data would result in the target real-time service data having a higher transmission priority than the other real-time service data.

[0093] After adjusting the transmission priority, the target real-time business data will be uploaded to the platform from the enterprise first, as its transmission priority is higher than that of other real-time business data. The platform will also prioritize acquiring the target real-time business data. Since the search content matches the target real-time business data, the platform can use the prioritized target real-time business data as the search result to provide feedback to the searcher, thus ensuring the real-time nature of the search results.

[0094] For example, various real-time business data include supplier manufacturing capacity data and delivery capacity data. Thus, the platform will acquire real-time manufacturing capacity data and delivery capacity data uploaded by suppliers. Simultaneously, the platform can continuously monitor the performance of the transmission links corresponding to the manufacturing capacity data and delivery capacity data, respectively.

[0095] If a searcher is searching for a supplier's delivery capabilities on the platform, the target real-time business data will be the delivery capability data.

[0096] Optionally, when the platform's search function is triggered, the priority of delivery capacity data transmission from the enterprise to the platform is increased, and / or the priority of manufacturing capacity data transmission is decreased.

[0097] Optionally, when the platform's search function is triggered and the transmission link performance of the delivery capacity data from the enterprise to the platform meets preset conditions, the transmission priority of the delivery capacity data from the enterprise to the platform is increased, and / or the transmission priority of the manufacturing capacity data is decreased.

[0098] In this way, since the delivery capacity data searched by the searcher is transmitted to the platform first, the platform can promptly feed back the delivery capacity data to the searcher, thus ensuring the real-time nature of the search results.

[0099] In some embodiments, the multiple service data includes not only multiple real-time service data, but also occasional service data. Occasional service data can be one or more types.

[0100] As an example, occasional business data may include, but is not limited to, enterprise capability data, product capability data, etc.

[0101] For example, enterprise capability data may include, but is not limited to, enterprise credit status data, legal dispute data, and blacklist data. Among them, blacklist data may refer to whether an enterprise is included in the platform's blacklist.

[0102] For example, product capability data may include, but is not limited to, product quality yield data, product market share data, and so on.

[0103] Optionally, the platform can continuously monitor occasional business data. For example, it can monitor whether a company's occasional business data has been updated. If so, it can promptly retrieve the updated occasional business data from the company.

[0104] In cases where multiple types of business data include both real-time and occasional business data, step 120 above may be: in response to the platform's search function being triggered, adjusting the transmission priority of real-time business data from the enterprise to the platform based on the search content.

[0105] Step 220 above can be: in response to the fact that the performance of the transmission link from the enterprise to the platform for real-time business data meets the preset conditions, the transmission priority of the real-time business data is adjusted according to the search content.

[0106] It is evident that, regardless of whether the multiple service data includes only multiple real-time service data or both real-time and occasional service data, the object for adjusting the transmission priority level is always real-time service data.

[0107] In this embodiment, adjusting the transmission priority of real-time business data from the enterprise to the platform based on the search content may include, for example: Figure 3 Step 320 shown: If the search content matches the target occasional business data, reduce the transmission priority of the real-time business data.

[0108] Of course, when multiple types of business data are involved, including both real-time and occasional business data, the target real-time business data can also be matched with the search content. For specific transmission level adjustments, please refer to step 310; this application will not repeat them here.

[0109] Target incidental business data refers to incidental business data that matches the search content. If incidental business data includes multiple types, then the search content is one of those multiple types of incidental business data. For example, the keywords in the search content include keywords from the target incidental business data.

[0110] Optionally, when a searcher needs to search for an enterprise's occasional business data on the platform, the priority of transmitting real-time business data can be reduced.

[0111] Optionally, when a searcher needs to search for an enterprise's occasional business data on the platform, and the performance of the transmission link from the enterprise to the platform for real-time business data meets preset conditions, the transmission priority of the real-time business data is reduced.

[0112] By reducing the priority of real-time business data transmission, the platform can allocate more computing resources to prioritize the execution of search functions, ensuring the timeliness of search result feedback. For example, the platform can search for target occasional business data from pre-stored occasional business data and return it to the searcher as a search result.

[0113] For example, various real-time business data include supplier manufacturing capacity data, delivery capacity data, enterprise capacity data, and product capacity data. Thus, the platform will acquire real-time manufacturing and delivery capacity data uploaded by suppliers. Simultaneously, the platform can continuously monitor the transmission link performance corresponding to the manufacturing and delivery capacity data. In addition, the platform also stores and continuously monitors enterprise and product capacity data.

[0114] If the searcher searches for the supplier's enterprise capability data on the platform, then the target occasional business data is the enterprise capability data.

[0115] Optionally, when the platform's search function is triggered, the transmission priority of manufacturing capacity data and / or delivery capacity data is reduced.

[0116] Optionally, when the platform's search function is triggered, and the transmission link performance of manufacturing capability data and / or delivery capability data from the enterprise to the platform meets preset conditions, the transmission priority of manufacturing capability data and / or delivery capability data is reduced.

[0117] Thus, by reducing the transmission priority, the platform can allocate more computing resources to prioritize the search function, thereby ensuring the timeliness of search result feedback.

[0118] Regarding transmission priority levels and transmission strategies, in some embodiments, transmission priority levels may include a first level and a second level, wherein the first level is higher than the second level.

[0119] The transmission strategies corresponding to the first level include: using the target transmission link to transmit business data from the enterprise to the platform; and / or increasing the transmission bandwidth of business data from the enterprise to the platform.

[0120] The target transmission link can be a working transmission link, a transmission link with a packet loss rate less than a packet loss threshold, or a transmission link with a latency less than a latency threshold. For example, the target transmission link can be the optimal transmission link among those that satisfy all the above conditions. How to select the optimal transmission link from among those that satisfy all the above conditions can be found in relevant technologies, and will not be elaborated upon here.

[0121] For example, in step 310, if the adjusted transmission priority level of the target real-time service data is the first level, then the transmission strategy corresponding to the target real-time service data is executed, including: using the target transmission link to transmit the target real-time service data from the enterprise to the platform; and / or increasing the transmission bandwidth of the target real-time service data from the enterprise to the platform.

[0122] The transmission strategies corresponding to the second level include: reducing the transmission bandwidth of business data from the enterprise to the platform; and / or suspending the transmission of business data from the enterprise to the platform.

[0123] For example, in step 310, if the adjusted transmission priority level of other real-time service data is the second level, the transmission strategy corresponding to the other real-time service data is executed, including: reducing the transmission bandwidth of other real-time service data from the enterprise to the platform; and / or suspending the transmission of other real-time service data from the enterprise to the platform.

[0124] For example, in step 320, if the transmission priority level of the real-time service data after reduction is the second level, the transmission strategy corresponding to the real-time service data is executed, including: reducing the transmission bandwidth of the real-time service data from the enterprise to the platform; and / or suspending the transmission of the real-time service data from the enterprise to the platform.

[0125] For example, in the first example listed above, various real-time business data include supplier manufacturing capacity data and delivery capacity data. When a searcher searches for delivery capacity data on the platform, or when the performance of the transmission link from the enterprise to the platform meets preset conditions, the transmission priority of manufacturing capacity data and / or delivery capacity data is adjusted. After adjustment, delivery capacity data corresponds to the first priority, and the target transmission link can be used to transmit delivery capacity data from the enterprise to the platform, and / or the transmission bandwidth of delivery capacity data from the enterprise to the platform can be increased. At the same time, manufacturing capacity data corresponds to the second priority, and the transmission bandwidth of manufacturing capacity data from the enterprise to the platform can be reduced; and / or the transmission of manufacturing capacity data from the enterprise to the platform can be suspended.

[0126] For example, in the second example listed above, various real-time business data include supplier manufacturing capacity data, delivery capacity data, enterprise capacity data, and product capacity data. When a searcher searches for enterprise capacity data on the platform, or when the performance of the transmission link between the enterprise and the platform for manufacturing capacity data and / or delivery capacity data meets preset conditions, the transmission priority of the manufacturing capacity data and / or delivery capacity data is reduced. After reduction, the manufacturing capacity data and / or delivery capacity data correspond to the second level, which can reduce the transmission bandwidth of manufacturing capacity data and / or delivery capacity data from the enterprise to the platform; and / or suspend the transmission of manufacturing capacity data and / or delivery capacity data from the enterprise to the platform.

[0127] As can be seen, in this embodiment, by setting two levels of transmission priority, different service data are transmitted differently according to the transmission strategies corresponding to different priority levels. Therefore, more computing resources of the platform can be used to execute the search function, ensuring the real-time and timely feedback of search results.

[0128] Regarding search results, in some embodiments, search results may include target business data that matches the search content.

[0129] For example, if the multiple business data includes multiple real-time business data, then the target business data matching the search content includes the aforementioned target real-time business data. Therefore, the target real-time business data can be fed back to the searcher as the search result.

[0130] For example, if the multiple business data includes multiple real-time business data and occasional business data, then the target business data matching the search content includes the aforementioned target real-time business data or target occasional business data. Therefore, the target real-time business data or target occasional business data can be returned to the searcher as search results.

[0131] In this embodiment, the target business data is fed back to the searcher as the search result, which avoids the platform needing to search for other business data, thus ensuring that the searcher can obtain the required information in a timely manner.

[0132] In other embodiments, the search results may include target business data that matches the search content, as well as related business data of the target business data.

[0133] Related business data can refer to business data other than the target business data. Although the searcher is searching for the company's target business data, related business data can also be fed back to the searcher to provide a more comprehensive understanding of the company's relevant data.

[0134] For example, if the target business data is target real-time business data, then the associated business data can be the enterprise's occasional business data and / or other real-time business data.

[0135] For example, if the target business data is occasional business data, then the associated business data can be the enterprise's real-time business data.

[0136] In this embodiment, the target business data and related business data are fed back to the searcher as search results, so that the searcher can have a more comprehensive understanding of the company's relevant data.

[0137] Based on the business data transmission method provided in any of the above embodiments, this application also provides a business data transmission device applied to a cloud-network converged automotive platform; the platform is communicatively connected to an enterprise. Figure 4 As shown, a business data transmission device 400 includes:

[0138] The acquisition module 410 is used to acquire various types of business data uploaded by the enterprise;

[0139] The adjustment module 420 is used to adjust the transmission priority of the business data from the enterprise to the platform according to the search content in response to the triggering of the search function of the platform.

[0140] Transmission module 430 is used to execute a transmission strategy corresponding to the transmission priority level of each type of service data.

[0141] Feedback module 440 is used to provide the searcher with search results related to the search content.

[0142] In some embodiments, the adjustment module 420 is specifically used for:

[0143] Monitor the performance of the transmission link from the enterprise to the platform for various types of business data;

[0144] In response to the transmission link performance meeting preset conditions, the transmission priority level of the service data is adjusted according to the search content.

[0145] In some embodiments, the preset conditions include one or more of the following:

[0146] The transmission link is unavailable;

[0147] The packet loss rate of the transmission link is greater than the preset packet loss threshold;

[0148] The transmission link delay exceeds the preset delay threshold.

[0149] In some embodiments, the various types of service data include various types of real-time service data; the adjustment module 420 is specifically used for:

[0150] If the search content matches the target real-time service data, the transmission priority of the target real-time service data and / or other real-time service data is adjusted so that the transmission priority of the target real-time service data is higher than that of the other real-time service data.

[0151] In some embodiments, the various types of business data also include occasional business data; the adjustment module 420 is specifically used for:

[0152] If the search content matches the target occasional business data, the transmission priority of the real-time business data is reduced.

[0153] In some embodiments, the transmission priority level includes a first level and a second level, wherein the first level is higher than the second level;

[0154] The transmission strategies corresponding to the first level include: using the target transmission link to transmit business data from the enterprise to the platform; and / or increasing the transmission bandwidth of business data from the enterprise to the platform;

[0155] The transmission strategies corresponding to the second level include: reducing the transmission bandwidth of business data from the enterprise to the platform; and / or suspending the transmission of business data from the enterprise to the platform.

[0156] In some embodiments, the search results include:

[0157] Target business data that matches the search content; or

[0158] The target business data that matches the search content, and the associated business data of the target business data.

[0159] The specific implementation process of the functions and roles of each module in the above device can be found in the implementation process of the corresponding steps in the above method, and will not be repeated here.

[0160] Based on the business data transmission method described in any of the above embodiments, this application also provides, as follows: Figure 5 The diagram shows the structure of an electronic device. Figure 5 At the hardware level, the electronic device includes a processor, an internal bus, a network interface, memory, and non-volatile storage, and may also include other hardware required for the services. The processor reads the corresponding computer program from the non-volatile storage into memory and then runs it to implement a service data transmission method as described in any of the above embodiments.

[0161] This application also provides a computer storage medium storing a computer program, which, when executed by a processor, can be used to perform a business data transmission method described in any of the above embodiments.

[0162] In the several embodiments provided in this application, it should be understood that the disclosed apparatus and methods can also be implemented in other ways. The apparatus embodiments described above are merely illustrative. For example, the flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of apparatus, methods, and computer program products according to various embodiments of this application. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order than those marked in the drawings. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in a block diagram and / or flowchart, and combinations of blocks in block diagrams and / or flowcharts, can be implemented using a dedicated hardware-based system that performs the specified function or action, or using a combination of dedicated hardware and computer instructions.

[0163] In addition, the functional modules in the various embodiments of this application can be integrated together to form an independent part, or each module can exist independently, or two or more modules can be integrated to form an independent part.

[0164] If the aforementioned functions are implemented as software functional modules and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or a portion of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this application. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0165] The above description is merely an embodiment of this application and is not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0166] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

[0167] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

Claims

1. A method of transmitting service data, characterized by, The application is applied to a cloud network fusion-based automobile platform; the platform is connected with an enterprise, and the method comprises the following steps: obtaining various business data uploaded by the enterprise; the various business data comprises real-time business data and occasional business data; the uploading frequency of the real-time business data from the enterprise to the platform is higher than that of the occasional business data; in response to the search function of the platform being triggered, adjusting the transmission priority level of the business data from the enterprise to the platform according to the search content, comprising: if the search content matches target real-time business data, adjusting the transmission priority level of the target real-time business data and / or other real-time business data, so that the transmission priority level of the target real-time business data is higher than that of the other real-time business data; if the search content matches target occasional business data, reducing the transmission priority level of the real-time business data, so that the computing resources of the platform are used to search out the target occasional business data from the pre-stored occasional business data as the search result; for each kind of business data, a transmission strategy corresponding to the transmission priority level of the business data is executed; feeding back the search result related to the search content to the search party.

2. The method of claim 1, wherein, The adjustment of the transmission priority level of the business data from the enterprise to the platform according to the search content comprises: monitoring the transmission link performance of the various business data from the enterprise to the platform; in response to the transmission link performance meeting a preset condition, adjusting the transmission priority level of the business data according to the search content.

3. The method of claim 2, wherein, The preset condition comprises one or more of the following: the transmission link is unavailable; the packet loss rate of the transmission link is greater than a preset packet loss threshold; the delay of the transmission link exceeds a preset delay threshold.

4. The method of claim 1, wherein, The transmission priority level comprises a first level and a second level, wherein the first level is higher than the second level; the transmission strategy corresponding to the first level comprises: transmitting the business data from the enterprise to the platform by using a target transmission link; and / or increasing the transmission bandwidth of the business data from the enterprise to the platform; the transmission strategy corresponding to the second level comprises: reducing the transmission bandwidth of the business data from the enterprise to the platform; and / or suspending the transmission of the business data from the enterprise to the platform.

5. The method of claim 1, wherein, The search result comprises: target business data matching the search content; or target business data matching the search content and associated business data of the target business data.

6. A service data transmission apparatus characterized by comprising: The application is applied to a cloud network fusion-based automobile platform; the platform is connected with an enterprise, and the device comprises the following steps: an obtaining module for obtaining various business data uploaded by the enterprise; the various business data comprises real-time business data and occasional business data; the uploading frequency of the real-time business data from the enterprise to the platform is higher than that of the occasional business data; an adjusting module for adjusting the transmission priority level of the business data from the enterprise to the platform according to the search content in response to the search function of the platform being triggered, comprising: if the search content matches target real-time business data, adjusting the transmission priority level of the target real-time business data and / or other real-time business data, so that the transmission priority level of the target real-time business data is higher than that of the other real-time business data; if the search content matches target occasional business data, reducing the transmission priority level of the real-time business data, so that the computing resources of the platform are used to search out the target occasional business data from the pre-stored occasional business data as the search result; The adjusting module is configured to adjust the transmission priority of the service data from the enterprise to the platform according to search content in response to a search function of the platform being triggered, including: if the search content matches target real-time service data, adjusting the transmission priority of the target real-time service data and / or other real-time service data, so that the transmission priority of the target real-time service data is higher than the transmission priority of the other real-time service data; if the search content matches target occasional service data, reducing the transmission priority of the real-time service data, so that the computing resources of the platform are used to search target occasional service data from pre-stored occasional service data as a search result. The transmission module is configured to execute a transmission strategy corresponding to the transmission priority of each service data. The feedback module is configured to feed back search results related to the search content to a search party.

7. An electronic device, comprising: The electronic device comprises: a processor; a memory for storing processor-executable instructions; wherein the processor, when invoking the executable instructions, implements the operations of any one of claims 1-5.

8. A computer-readable storage medium, characterized in that, A computer program product comprising a computer readable medium having stored thereon computer instructions that, when executed by a processor, implement the steps of any one of claims 1-5.

Citation Information

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