Automatic transmission method and system with tractor information processing function

By prioritizing and determining the tractor information transmission nodes and determining the strategy, the problem of insufficient information transmission of traditional tractors is solved, and the orderliness of data transmission and the intelligence and accuracy of tractor operation are achieved.

CN120475043APending Publication Date: 2025-08-12YANCHENG INST OF IND TECH
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Patent Information

Application Number
CN202510525929.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

Traditional tractors lack information interaction and integration mechanisms in agricultural production, resulting in the inability to effectively transmit operation information, affecting work accuracy and efficiency.

Method used

By acquiring the information transmission node set in the tractor, first and second priority sorting are performed, transmission strategies are determined, and priority transmission of data content is realized.

Benefits of technology

Ensure the orderly nature of data transmission, improve the accuracy and intelligence of tractor information processing, and ensure the accuracy of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an automatic transmission method and system with a tractor information processing function, and the method comprises the steps: obtaining an information transmission node set in a tractor, and collecting the data content corresponding to each information transmission node; reading a real-time operation process of the tractor, and performing first priority ranking on each information transmission node set and performing second priority ranking on data contents in each information transmission node according to the real-time operation process; determining a transmission strategy according to the first priority ranking result and the second priority ranking result; priority transmission is performed on the data content of each information transmission node according to the transmission strategy, so that orderliness of data transmission is facilitated, the tractor is enabled to process information transmission more accurately, and intelligence and accuracy of operation of the tractor are guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of data processing and transmission, and in particular to an automatic transmission method and system with tractor information processing function. Background Art

[0002] At present, with the development of modern agriculture, tractors play a vital role in agricultural production. They are widely used in various links such as plowing, sowing, fertilizing, irrigation and transportation of agricultural products. They are key equipment to improve agricultural production efficiency and reduce farmers' labor intensity.

[0003] However, traditional tractors have many deficiencies in information processing and transmission. In the existing agricultural production system, various types of information generated during tractor operation, such as operating status (engine speed, fuel consumption, driving speed, etc.), lack information exchange and integration mechanisms. At the same time, there is a lack of intelligent decision-making, which makes it impossible to effectively transmit data to the tractor's processing center, resulting in the ineffective improvement of tractor operation accuracy and efficiency.

[0004] Therefore, in order to overcome the above technical problems, the present invention provides an automated transmission method and system with tractor information processing function. Summary of the Invention

[0005] The present invention provides an automated transmission method and system with a tractor information processing function, which is used to obtain a set of information transmission nodes in the tractor and the data content corresponding to each information transmission node, thereby effectively realizing first priority sorting and second priority sorting based on the real-time operation process of the tractor, and then effectively determining the transmission strategy, ensuring the priority of data transmission, thereby facilitating the orderliness of data transmission, making the tractor more accurate in information processing during information transmission, and ensuring the intelligence and accuracy of tractor operation.

[0006] The present invention provides an automated transmission method with a tractor information processing function, comprising:

[0007] Step 1: Obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node;

[0008] Step 2: Read the real-time operation progress of the tractor, and sort each set of information transmission nodes by a first priority and the data content within each information transmission node by a second priority according to the real-time operation progress;

[0009] Step 3: Determine a transmission strategy based on the first priority sorting result and the second priority sorting result;

[0010] Step 4: Prioritize the data content of each information transmission node according to the transmission strategy.

[0011] Preferably, an automated transmission method with a tractor information processing function, in step 1, obtaining a set of information transmission nodes in the tractor and collecting data content corresponding to each information transmission node, includes:

[0012] Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type;

[0013] Create a data collection interval based on the node label to obtain the benchmark data type and benchmark data format in each information transmission node;

[0014] Read the collected data content, determine the target data type and target data format, match the target data type of each data content with the reference data type, and at the same time, match the target data format of each data content with the reference data format;

[0015] The collected data content is divided according to the matching results and stored in the corresponding data collection interval.

[0016] Preferably, an automated transmission method with tractor information processing function, stored in a corresponding data collection interval, comprises:

[0017] Obtaining a matching result between the target data type and target data format of the data content and the reference data type and reference data format in each information transmission node, and obtaining a set of data to be stored corresponding to each data collection interval based on the matching result;

[0018] Perform data traversal and analysis on each data set to be stored, determine the number of data types in each data set to be stored, and adaptively divide the data collection interval into interval segments based on the number of data types to obtain N data storage sub-intervals and one report storage interval;

[0019] Based on the adaptive interval segmentation result, the data set to be stored is stored in the data storage sub-interval according to the data type, and a data storage summary table of each data collection interval is generated based on the storage result;

[0020] Store the data storage overview table in the report storage interval.

[0021] Preferably, an automated transmission method with a tractor information processing function, in step 2, reads the real-time operation progress of the tractor, and performs a first priority sorting on each set of information transmission nodes and a second priority sorting on the data content within each information transmission node according to the real-time operation progress, including:

[0022] Read the real-time operation process of the tractor and analyze the real-time operation process to determine the current operation type of the tractor and the equipment operation status of the tractor under the operation type;

[0023] A management terminal is used to obtain an index definition system for tractor information, and the current operation type and equipment operation status of the tractor are used to generate a first search index and a second search index respectively;

[0024] Performing a first search on the indicator definition system based on the first search indicator to obtain a first importance of each information transmission node of the tractor under the current operation type, and performing a first priority ranking on each information transmission node set based on the first importance;

[0025] Based on the first priority sorting result, the data qualification standard corresponding to each information transmission node in the indicator qualification system is sequentially extracted, and a second search is performed on the data qualification standard based on the second search indicator to obtain the second importance of different data contents under each information transmission node;

[0026] Performing a second priority sorting on the data content within each information transmission node based on the second importance, and associating and mapping the second priority sorting result with each information transmission node in the first priority sorting to obtain a comprehensive priority sorting result;

[0027] Dynamically monitor the real-time operation process of the tractor and generate the tractor state sequence based on the dynamic monitoring results;

[0028] When determining the real-time operation process changes of the tractor based on the state sequence, the change parameters of the operation type and equipment operation status are synchronously determined based on the dynamic monitoring results;

[0029] Mapping the changed parameters in the indicator definition system of the tractor information, and determining the local adjustment parameters of the comprehensive priority ranking results based on the mapping results;

[0030] The comprehensive priority sorting results are dynamically adjusted based on local adjustment parameters.

[0031] Preferably, an automated transmission method with a tractor information processing function, in step 3, determining a transmission strategy based on the first priority sorting result and the second priority sorting result, includes:

[0032] Obtain the configuration parameters of the available transmission link and parse the configuration parameters to obtain the bandwidth and carrier carrying capacity of the available transmission link;

[0033] Prioritize the use of available transmission links based on bandwidth and carrier carrying capacity, and at the same time, traverse the first priority sorting results and the second priority sorting results to determine the data volume of the content to be transmitted;

[0034] Based on the priority sorting results, the transmission time points of different individual data contents in the data content to be transmitted are determined for different available transmission links according to the corresponding bandwidth and carrier carrying capacity. At the same time, the performance crossover points between the different available transmission links are determined based on the configuration parameters of the available transmission links, and the routing switching conditions for the available transmission links are determined based on the performance crossover points.

[0035] The transmission strategies under different available transmission links are obtained based on the routing switching conditions and the transmission time point.

[0036] Preferably, an automated transmission method with tractor information processing function obtains transmission strategies under different available transmission links based on route switching conditions and transmission time points, including:

[0037] Building a virtual transmission scenario in a computer based on configuration parameters of the available transmission link, and constructing virtual transmission data in the virtual transmission scenario according to the first priority sorting result and the second priority sorting result;

[0038] Based on the transmission strategy, the virtual transmission data is simulated and transmitted in the virtual transmission scenario, and the simulated transmission process is monitored in real time to obtain the transmission status data of the virtual transmission data;

[0039] Analyze the transmission status data to determine the transmission smoothness parameters of the virtual transmission data in the available transmission links and the priority transmission order of the virtual transmission data;

[0040] When there are transmission smoothness parameters or the priority transmission order of virtual transmission data does not meet the expected requirements, the optimization parameters of the transmission strategy are determined based on the transmission status data, and the transmission strategy is optimized based on the optimization parameters;

[0041] Otherwise, the transmission policy is deployed and authorized to take effect after the deployment result.

[0042] Preferably, an automated transmission method with tractor information processing function, in step 4, prioritizes the data content of each information transmission node according to the transmission strategy, including:

[0043] Obtain the obtained transmission strategy, and arrange the data content of each information transmission node in the transmission queue based on the transmission strategy;

[0044] Based on the arrangement waiting results, the data content of each information transmission node is transmitted in priority in turn, and the priority transmission process is monitored in real time;

[0045] Determine the transmission timestamps of different data contents based on the real-time monitoring results, and generate transmission record data of different data contents based on the transmission timestamps;

[0046] The transmission record data is recorded to obtain a priority transmission report.

[0047] Preferably, an automated transmission method with tractor information processing function, in step 4, when performing priority transmission, includes:

[0048] Establish a monitoring mechanism for each information transmission node, and monitor the transmission status of each information transmission node in real time when transmitting data content according to the monitoring mechanism;

[0049] When there is an abnormality in the transmission status, the abnormal information transmission node is located based on the monitoring mechanism, and the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node are obtained;

[0050] An alarm report is generated according to the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node, and the alarm report is transmitted to the management terminal.

[0051] The present invention provides an automated transmission system with a tractor information processing function, comprising:

[0052] The data content acquisition module is used to obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node;

[0053] A priority sorting module is used to read the real-time operation process of the tractor and perform a first priority sorting on each set of information transmission nodes and a second priority sorting on the data content within each information transmission node according to the real-time operation process;

[0054] A transmission strategy determination module, configured to determine a transmission strategy based on a first priority sorting result and a second priority sorting result;

[0055] The data transmission module is used to prioritize the data content of each information transmission node according to the transmission strategy.

[0056] Preferably, an automated transmission system with tractor information processing function, a data content acquisition module, comprises:

[0057] Information transmission node analysis unit, used for:

[0058] Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type;

[0059] Create a data collection interval based on the node label to obtain the benchmark data type and benchmark data format in each information transmission node;

[0060] a data matching unit, configured to read the collected data content, determine a target data type and a target data format, match the target data type of each data content with a reference data type, and at the same time, match the target data format of each data content with a reference data format;

[0061] The data storage unit is used to divide the collected data content according to the matching results and store it in the corresponding data collection interval.

[0062] Compared with the prior art, the present invention has the following beneficial effects:

[0063] By obtaining the set of information transmission nodes in the tractor and the data content corresponding to each information transmission node, the first priority sorting and the second priority sorting can be effectively achieved based on the real-time operation process of the tractor, and then the transmission strategy can be effectively determined to ensure the priority of data transmission, which is conducive to the orderliness of data transmission, making the tractor more accurate in processing information transmission and ensuring the intelligence and accuracy of tractor operation.

[0064] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be achieved and obtained through the structures specifically pointed out in this application document.

[0065] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0066] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0067] Figure 1 This is a flow chart of an automated transmission method with tractor information processing function according to an embodiment of the present invention;

[0068] Figure 2 This is a flowchart of step 1 in an automated transmission method with tractor information processing function according to an embodiment of the present invention;

[0069] Figure 3 This is a structural diagram of an automated transmission system with tractor information processing function in an embodiment of the present invention. DETAILED DESCRIPTION

[0070] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0071] Example 1:

[0072] This embodiment provides an automated transmission method with tractor information processing function, such as Figure 1 Shown, including:

[0073] Step 1: Obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node;

[0074] Step 2: Read the real-time operation progress of the tractor, and sort each set of information transmission nodes by a first priority and the data content within each information transmission node by a second priority according to the real-time operation progress;

[0075] Step 3: Determine a transmission strategy based on the first priority sorting result and the second priority sorting result;

[0076] Step 4: Prioritize the data content of each information transmission node according to the transmission strategy.

[0077] In this embodiment, the information transmission node set includes: sensor nodes, control unit nodes and communication nodes, etc., wherein the data content corresponding to each information transmission node includes: sensor nodes include: speed sensor data, temperature sensor data, pressure sensor data, speed sensor data, steering angle sensor data, etc., control unit nodes include: electronic control data, transmission control data, etc., communication nodes include: in-vehicle communication network data, external communication interface data, etc.

[0078] In this embodiment, the real-time operation process refers to the operation type of the tractor (eg, whether the tractor is plowing or traveling, etc.) and the operation status (ie, the operation status of each device in the tractor).

[0079] In this embodiment, the first priority ranking refers to the result of ranking the order in which each information transmission node transmits information.

[0080] In this embodiment, the second priority ranking refers to the result of ranking the order of data contents within each information transmission node.

[0081] In this embodiment, the transmission strategy refers to the transmission condition sequence and rules when transmitting information transmission nodes and data content.

[0082] The working principle and beneficial effects of the above technical solution are: by obtaining the set of information transmission nodes in the tractor and the data content corresponding to each information transmission node, the first priority sorting and the second priority sorting are effectively realized based on the real-time operation process of the tractor, and then the transmission strategy is effectively determined to ensure the priority of data transmission, which is conducive to the orderliness of data transmission, making the tractor more accurate in processing information during information transmission, and ensuring the intelligence and accuracy of tractor operation.

[0083] Example 2:

[0084] Based on Example 1, this embodiment provides an automated transmission method with tractor information processing function, such as Figure 2 As shown, in step 1, the information transmission node set in the tractor is obtained, and the data content corresponding to each information transmission node is collected, including:

[0085] Step 101: Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type;

[0086] Step 102: Create a data collection interval based on the node label, and obtain the benchmark data type and benchmark data format in each information transmission node;

[0087] Step 103: Read the collected data content, determine the target data type and target data format, match the target data type of each data content with the reference data type, and at the same time, match the target data format of each data content with the reference data format;

[0088] Step 104: Divide the collected data content according to the matching results and store them in corresponding data collection intervals.

[0089] In this embodiment, the node type is used to characterize the different functions implemented by each information transmission node, wherein the node label is determined according to the node type and is used to distinguish different information transmission nodes.

[0090] In this embodiment, the data collection interval is a space created based on the node label and used to collect and store data corresponding to the node label.

[0091] In this embodiment, the reference data type and the reference data format are determined based on the attributes of the information transmission node and are set in advance.

[0092] The working principle and beneficial effects of the above technical solution are: by determining the node type of the information transmission node, the node label is effectively added, and then effective data support is provided for creating the data collection interval, so that the collected data content can be divided and stored, which is conducive to ensuring the accuracy and effectiveness of data collection and storage, providing effective protection for data transmission, and is conducive to ensuring the accuracy of the transmitted data content.

[0093] Example 3:

[0094] Based on Example 2, this embodiment provides an automated transmission method with tractor information processing function, which is stored in the corresponding data collection interval, including:

[0095] Obtaining a matching result between the target data type and target data format of the data content and the reference data type and reference data format in each information transmission node, and obtaining a set of data to be stored corresponding to each data collection interval based on the matching result;

[0096] Perform data traversal and analysis on each data set to be stored, determine the number of data types in each data set to be stored, and adaptively divide the data collection interval into interval segments based on the number of data types to obtain N data storage sub-intervals and one report storage interval;

[0097] Based on the adaptive interval segmentation result, the data set to be stored is stored in the data storage sub-interval according to the data type, and a data storage summary table of each data collection interval is generated based on the storage result;

[0098] Store the data storage overview table in the report storage interval.

[0099] In this embodiment, the data set to be stored refers to all data that needs to be stored in each data collection interval determined according to the matching result.

[0100] In this embodiment, the number of data types refers to the number of types of data included in each data set to be stored.

[0101] In this embodiment, the adaptive interval segment division refers to dividing the data collection interval accordingly according to the number of data types obtained, and the number of intervals obtained by the final division is the same as the number of data types.

[0102] In this embodiment, the data storage sub-interval refers to an interval segment used to store specific data content after the data collection interval is adaptively divided into interval segments.

[0103] In this embodiment, the report storage interval is an interval segment for storing data reports.

[0104] The beneficial effects of the above technical solution are: ensuring the effective differentiated storage of the data content in each information transmission node and the reports corresponding to the data content, and providing reliable data support for tractor information processing.

[0105] Example 4:

[0106] Based on Example 1, this embodiment provides an automated transmission method with a tractor information processing function. In step 2, the real-time operation progress of the tractor is read, and each set of information transmission nodes is sorted by a first priority, and the data content within each information transmission node is sorted by a second priority according to the real-time operation progress, including:

[0107] Read the real-time operation process of the tractor and analyze the real-time operation process to determine the current operation type of the tractor and the equipment operation status of the tractor under the operation type;

[0108] A management terminal is used to obtain an index definition system for tractor information, and the current operation type and equipment operation status of the tractor are used to generate a first search index and a second search index respectively;

[0109] Performing a first search on the indicator definition system based on the first search indicator to obtain a first importance of each information transmission node of the tractor under the current operation type, and performing a first priority ranking on each information transmission node set based on the first importance;

[0110] Based on the first priority sorting result, the data qualification standard corresponding to each information transmission node in the indicator qualification system is sequentially extracted, and a second search is performed on the data qualification standard based on the second search indicator to obtain the second importance of different data contents under each information transmission node;

[0111] Performing a second priority sorting on the data content within each information transmission node based on the second importance, and associating and mapping the second priority sorting result with each information transmission node in the first priority sorting to obtain a comprehensive priority sorting result;

[0112] Dynamically monitor the real-time operation process of the tractor and generate the tractor state sequence based on the dynamic monitoring results;

[0113] When determining the real-time operation process changes of the tractor based on the state sequence, the change parameters of the operation type and equipment operation status are synchronously determined based on the dynamic monitoring results;

[0114] Mapping the changed parameters in the indicator definition system of the tractor information, and determining the local adjustment parameters of the comprehensive priority ranking results based on the mapping results;

[0115] The comprehensive priority sorting results are dynamically adjusted based on local adjustment parameters.

[0116] In this embodiment, the index definition system refers to the definition type when processing tractor information.

[0117] In this embodiment, the first search index and the second detection index are respectively generated according to the current operation type and equipment operation status of the tractor, and serve as a reference for retrieving corresponding indexes from the index definition system.

[0118] In this embodiment, the data limitation index refers to the basis or condition for limiting the importance of the data content in each information transmission node.

[0119] In this embodiment, the association mapping refers to mapping the second priority sorting result (the priority sorting result of the data content) in the first priority sorting, that is, associating the data content with the corresponding information transmission node.

[0120] In this embodiment, the comprehensive priority sorting result refers to a result obtained by associating and summarizing the first priority sorting result and the second priority sorting result.

[0121] In this embodiment, the state sequence refers to the result obtained by sorting the real-time states of the tractor according to the monitoring time.

[0122] In this embodiment, the changed parameters refer to the changes in the operation type and equipment operation status of the tractor at different times.

[0123] In this embodiment, the local adjustment parameter refers to the part of the comprehensive priority ranking result that needs to be adjusted according to the change parameters of the operation type and the equipment operation status.

[0124] The beneficial effects of the above technical solution are: it is possible to prioritize each information transmission node and the data content in each information transmission node according to the real-time operation process of the tractor, and to associate the priority sorting results to determine the comprehensive priority sorting results. At the same time, the comprehensive priority sorting results are dynamically updated according to the operation process of the tractor, which is conducive to the orderliness of data transmission and makes the tractor more accurate in processing when transmitting information.

[0125] Example 5:

[0126] Based on Example 1, this embodiment provides an automated transmission method with a tractor information processing function. In step 3, a transmission strategy is determined based on the first priority sorting result and the second priority sorting result, including:

[0127] Obtain the configuration parameters of the available transmission link and parse the configuration parameters to obtain the bandwidth and carrier carrying capacity of the available transmission link;

[0128] Prioritize the use of available transmission links based on bandwidth and carrier carrying capacity, and at the same time, traverse the first priority sorting results and the second priority sorting results to determine the data volume of the content to be transmitted;

[0129] Based on the priority sorting results, the transmission time points of different individual data contents in the data content to be transmitted are determined for different available transmission links according to the corresponding bandwidth and carrier carrying capacity. At the same time, the performance crossover points between the different available transmission links are determined based on the configuration parameters of the available transmission links, and the routing switching conditions for the available transmission links are determined based on the performance crossover points.

[0130] The transmission strategies under different available transmission links are obtained based on the routing switching conditions and the transmission time point.

[0131] In this embodiment, the configuration parameters refer to the configuration of the available transmission links, including the routing and bandwidth of the available transmission links.

[0132] In this embodiment, the carrier carrying capacity refers to the medium that can transmit data content in the available transmission link.

[0133] In this embodiment, the monomer data content refers to unit data in the data content to be transmitted.

[0134] In this embodiment, the performance crossover point refers to the performance change point between different available transmission links. For example, after certain interference factors appear, the performance of available link 1 will weaken. When the weakening occurs, the performance is the same as that of available link 2 when it is working normally. The point where the performance is the same is the performance crossover point.

[0135] In this embodiment, the routing switching condition refers to the condition for switching between different available transmission links when a performance cross point appears, that is, when the performance of the currently used available transmission link is lower than that of the backup available transmission link, the switching condition is met.

[0136] The beneficial effects of the above technical solution are: ensuring the reliability of determining the transmission strategy through the first priority sorting result and the second priority sorting result, ensuring the reliability of the final transmission strategy, and thus ensuring the reliability of tractor information transmission.

[0137] Example 6:

[0138] Based on Example 5, this embodiment provides an automated transmission method with tractor information processing function, which obtains transmission strategies under different available transmission links based on route switching conditions and transmission time points, including:

[0139] Building a virtual transmission scenario in a computer based on configuration parameters of the available transmission link, and constructing virtual transmission data in the virtual transmission scenario according to the first priority sorting result and the second priority sorting result;

[0140] Based on the transmission strategy, the virtual transmission data is simulated and transmitted in the virtual transmission scenario, and the simulated transmission process is monitored in real time to obtain the transmission status data of the virtual transmission data;

[0141] Analyze the transmission status data to determine the transmission smoothness parameters of the virtual transmission data in the available transmission links and the priority transmission order of the virtual transmission data;

[0142] When there are transmission smoothness parameters or the priority transmission order of virtual transmission data does not meet the expected requirements, the optimization parameters of the transmission strategy are determined based on the transmission status data, and the transmission strategy is optimized based on the optimization parameters;

[0143] Otherwise, the transmission policy is deployed and authorized to take effect after the deployment result.

[0144] In this embodiment, the virtual transmission data refers to virtual data constructed in a computer according to the first priority sorting result and the second priority sorting result for detecting the transmission strategy.

[0145] In this embodiment, the transmission status data refers to the transmission status of the virtual transmission data during the simulation transmission process.

[0146] In this embodiment, the transmission smoothness parameter refers to the smooth transmission of virtual transmission data in the available transmission link.

[0147] In this embodiment, the effective authorization refers to authorizing the transmission policy, thereby ensuring that the data content is transmitted in accordance with the transmission policy.

[0148] The beneficial effect of the above technical solution is: it realizes the detection of the availability of the transmission strategy by constructing a virtual transmission scenario and virtual transmission data in the computer, thereby ensuring the accuracy and reliability of the final transmission strategy and the transmission effect of the data content.

[0149] Example 7:

[0150] Based on Example 1, this embodiment provides an automated transmission method with tractor information processing function. In step 4, data content of each information transmission node is prioritized for transmission according to the transmission strategy, including:

[0151] Obtain the obtained transmission strategy, and arrange the data content of each information transmission node in the transmission queue based on the transmission strategy;

[0152] Based on the arrangement waiting results, the data content of each information transmission node is transmitted in priority in turn, and the priority transmission process is monitored in real time;

[0153] Determine the transmission timestamps of different data contents based on the real-time monitoring results, and generate transmission record data of different data contents based on the transmission timestamps;

[0154] The transmission record data is recorded to obtain a priority transmission report.

[0155] In this embodiment, the transmission timestamp refers to the specific time node for transmitting different data contents.

[0156] The beneficial effects of the above technical solution are: ensuring the reliability and stability of data content transmission, and generating a priority transmission report based on the transmission status, thereby facilitating real-time and effective understanding of the data content transmission status.

[0157] Example 8:

[0158] Based on Example 1, this embodiment provides an automated transmission method with a tractor information processing function. In step 4, when performing priority transmission, the method includes:

[0159] Establish a monitoring mechanism for each information transmission node, and monitor the transmission status of each information transmission node in real time when transmitting data content according to the monitoring mechanism;

[0160] When there is an abnormality in the transmission status, the abnormal information transmission node is located based on the monitoring mechanism, and the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node are obtained;

[0161] An alarm report is generated according to the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node, and the alarm report is transmitted to the management terminal.

[0162] In this embodiment, the monitoring mechanism refers to a strategy or method for monitoring the data content transmission status of each information transmission node.

[0163] In this embodiment, the abnormal information transmission node refers to an information transmission node with an abnormal transmission status.

[0164] In this embodiment, the node label refers to a marking symbol that can represent the abnormal information transmission node.

[0165] The beneficial effects of the above technical solution are: real-time and effective monitoring of the transmission of data content, so that when an abnormality occurs, an alarm is issued in time to ensure the reliability of the transmission of data content.

[0166] Example 9:

[0167] This embodiment provides an automated transmission system with tractor information processing function, such as Figure 3 As shown, including:

[0168] The data content acquisition module is used to obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node;

[0169] A priority sorting module is used to read the real-time operation process of the tractor and perform a first priority sorting on each set of information transmission nodes and a second priority sorting on the data content within each information transmission node according to the real-time operation process;

[0170] A transmission strategy determination module, configured to determine a transmission strategy based on a first priority sorting result and a second priority sorting result;

[0171] The data transmission module is used to prioritize the data content of each information transmission node according to the transmission strategy.

[0172] In this embodiment, the information transmission node set includes: sensor nodes, control unit nodes and communication nodes, etc., wherein the data content corresponding to each information transmission node includes: sensor nodes include: speed sensor data, temperature sensor data, pressure sensor data, speed sensor data, steering angle sensor data, etc., control unit nodes include: electronic control data, transmission control data, etc., communication nodes include: in-vehicle communication network data, external communication interface data, etc.

[0173] In this embodiment, the real-time operation process refers to the operation type of the tractor (eg, whether the tractor is plowing or traveling, etc.) and the operation status (ie, the operating status of each device in the tractor).

[0174] In this embodiment, the first priority ranking refers to the result of ranking the order in which each information transmission node transmits information.

[0175] In this embodiment, the second priority ranking refers to the result of ranking the order of data contents within each information transmission node.

[0176] In this embodiment, the transmission strategy refers to the transmission condition sequence and rules when transmitting information transmission nodes and data content.

[0177] The working principle and beneficial effects of the above technical solution are: by obtaining the set of information transmission nodes in the tractor and the data content corresponding to each information transmission node, the first priority sorting and the second priority sorting are effectively realized based on the real-time operation process of the tractor, and then the transmission strategy is effectively determined to ensure the priority of data transmission, which is conducive to the orderliness of data transmission, making the tractor more accurate in processing information during information transmission, and ensuring the intelligence and accuracy of tractor operation.

[0178] Example 10:

[0179] Based on Example 9, this embodiment provides an automated transmission system with tractor information processing function, wherein the data content acquisition module includes:

[0180] Information transmission node analysis unit, used for:

[0181] Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type;

[0182] Create a data collection interval based on the node label to obtain the benchmark data type and benchmark data format in each information transmission node;

[0183] a data matching unit, configured to read the collected data content, determine a target data type and a target data format, match the target data type of each data content with a reference data type, and at the same time, match the target data format of each data content with a reference data format;

[0184] The data storage unit is used to divide the collected data content according to the matching results and store it in the corresponding data collection interval.

[0185] In this embodiment, the node type is used to characterize the different functions implemented by each information transmission node, wherein the node label is determined according to the node type and is used to distinguish different information transmission nodes.

[0186] In this embodiment, the data collection interval is a space created based on the node label and used to collect and store data corresponding to the node label.

[0187] In this embodiment, the reference data type and the reference data format are determined based on the attributes of the information transmission node and are set in advance.

[0188] The working principle and beneficial effects of the above technical solution are: by determining the node type of the information transmission node, the node label is effectively added, and then effective data support is provided for creating the data collection interval, so that the collected data content can be divided and stored, which is conducive to ensuring the accuracy and effectiveness of data collection and storage, providing effective protection for data transmission, and is conducive to ensuring the accuracy of the transmitted data content.

[0189] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.

Claims

1. An automated transmission method with tractor information processing function, characterized in that: include: Step 1: Obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node; Step 2: Read the real-time operation progress of the tractor, and sort each set of information transmission nodes by a first priority and the data content within each information transmission node by a second priority according to the real-time operation progress; Step 3: Determine a transmission strategy based on the first priority sorting result and the second priority sorting result; Step 4: Prioritize the data content of each information transmission node according to the transmission strategy.

2. The automated transmission method with tractor information processing function according to claim 1, characterized in that: In step 1, the information transmission node set in the tractor is obtained, and the data content corresponding to each information transmission node is collected, including: Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type; Create a data collection interval based on the node label to obtain the benchmark data type and benchmark data format in each information transmission node; Read the collected data content, determine the target data type and target data format, match the target data type of each data content with the reference data type, and at the same time, match the target data format of each data content with the reference data format; The collected data content is divided according to the matching results and stored in the corresponding data collection interval.

3. The automated transmission method with tractor information processing function according to claim 2, characterized in that: Stored in the corresponding data collection interval, including: Obtaining a matching result between the target data type and target data format of the data content and the reference data type and reference data format in each information transmission node, and obtaining a set of data to be stored corresponding to each data collection interval based on the matching result; Perform data traversal and analysis on each data set to be stored, determine the number of data types in each data set to be stored, and adaptively divide the data collection interval into interval segments based on the number of data types to obtain N data storage sub-intervals and one report storage interval; Based on the adaptive interval segmentation result, the data set to be stored is stored in the data storage sub-interval according to the data type, and a data storage summary table of each data collection interval is generated based on the storage result; Store the data storage overview table in the report storage interval.

4. The automated transmission method with tractor information processing function according to claim 1, characterized in that: In step 2, the real-time operation process of the tractor is read, and each set of information transmission nodes is sorted by a first priority and the data content within each information transmission node is sorted by a second priority according to the real-time operation process, including: Read the real-time operation process of the tractor and analyze the real-time operation process to determine the current operation type of the tractor and the equipment operation status of the tractor under the operation type; A management terminal is used to obtain an index definition system for tractor information, and the current operation type and equipment operation status of the tractor are used to generate a first search index and a second search index respectively; Performing a first search on the indicator definition system based on the first search indicator to obtain a first importance of each information transmission node of the tractor under the current operation type, and performing a first priority ranking on each information transmission node set based on the first importance; Based on the first priority sorting result, the data qualification standard corresponding to each information transmission node in the indicator qualification system is sequentially extracted, and a second search is performed on the data qualification standard based on the second search indicator to obtain the second importance of different data contents under each information transmission node; Performing a second priority sorting on the data content within each information transmission node based on the second importance, and associating and mapping the second priority sorting result with each information transmission node in the first priority sorting to obtain a comprehensive priority sorting result; Dynamically monitor the real-time operation process of the tractor and generate the tractor state sequence based on the dynamic monitoring results; When determining the real-time operation process changes of the tractor based on the state sequence, the change parameters of the operation type and equipment operation status are synchronously determined based on the dynamic monitoring results; Mapping the changed parameters in the indicator definition system of the tractor information, and determining the local adjustment parameters of the comprehensive priority ranking results based on the mapping results; The comprehensive priority sorting results are dynamically adjusted based on local adjustment parameters.

5. The automated transmission method with tractor information processing function according to claim 1, characterized in that: In step 3, a transmission strategy is determined based on the first priority sorting result and the second priority sorting result, including: Obtain the configuration parameters of the available transmission link and parse the configuration parameters to obtain the bandwidth and carrier carrying capacity of the available transmission link; Prioritize the use of available transmission links based on bandwidth and carrier carrying capacity, and at the same time, traverse the first priority sorting results and the second priority sorting results to determine the data volume of the content to be transmitted; Based on the priority sorting results, the transmission time points of different individual data contents in the data content to be transmitted are determined for different available transmission links according to the corresponding bandwidth and carrier carrying capacity. At the same time, the performance crossover points between the different available transmission links are determined based on the configuration parameters of the available transmission links, and the routing switching conditions for the available transmission links are determined based on the performance crossover points. The transmission strategies under different available transmission links are obtained based on the routing switching conditions and the transmission time point.

6. The automated transmission method with tractor information processing function according to claim 5, characterized in that: Based on the routing switching conditions and transmission time points, the transmission strategies under different available transmission links are obtained, including: Building a virtual transmission scenario in a computer based on configuration parameters of the available transmission link, and constructing virtual transmission data in the virtual transmission scenario according to the first priority sorting result and the second priority sorting result; Based on the transmission strategy, the virtual transmission data is simulated and transmitted in the virtual transmission scenario, and the simulated transmission process is monitored in real time to obtain the transmission status data of the virtual transmission data; Analyze the transmission status data to determine the transmission smoothness parameters of the virtual transmission data in the available transmission links and the priority transmission order of the virtual transmission data; When there are transmission smoothness parameters or the priority transmission order of virtual transmission data does not meet the expected requirements, the optimization parameters of the transmission strategy are determined based on the transmission status data, and the transmission strategy is optimized based on the optimization parameters; Otherwise, the transmission policy is deployed and authorized to take effect after the deployment result.

7. The automated transmission method with tractor information processing function according to claim 1, characterized in that: In step 4, the data content of each information transmission node is prioritized for transmission according to the transmission strategy, including: Obtain the obtained transmission strategy, and arrange the data content of each information transmission node in the transmission queue based on the transmission strategy; Based on the arrangement waiting results, the data content of each information transmission node is transmitted in priority in turn, and the priority transmission process is monitored in real time; Determine the transmission timestamps of different data contents based on the real-time monitoring results, and generate transmission record data of different data contents based on the transmission timestamps; The transmission record data is recorded to obtain a priority transmission report.

8. The automated transmission method with tractor information processing function according to claim 1, characterized in that: In step 4, when performing priority transmission, it includes: Establish a monitoring mechanism for each information transmission node, and monitor the transmission status of each information transmission node in real time when transmitting data content according to the monitoring mechanism; When there is an abnormality in the transmission status, the abnormal information transmission node is located based on the monitoring mechanism, and the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node are obtained; An alarm report is generated according to the node label of the abnormal information transmission node and the abnormal content in the abnormal information transmission node, and the alarm report is transmitted to the management terminal.

9. An automated transmission system with tractor information processing function, characterized in that: include: The data content acquisition module is used to obtain the information transmission node set in the tractor and collect the data content corresponding to each information transmission node; A priority sorting module is used to read the real-time operation process of the tractor and perform a first priority sorting on each set of information transmission nodes and a second priority sorting on the data content within each information transmission node according to the real-time operation process; A transmission strategy determination module, configured to determine a transmission strategy based on a first priority sorting result and a second priority sorting result; The data transmission module is used to prioritize the data content of each information transmission node according to the transmission strategy.

10. The automatic transmission system with tractor information processing function according to claim 9, characterized in that: Data content acquisition module, including: Information transmission node analysis unit, used for: Read each information transmission node set in the tractor, determine the node type of each information transmission node, and add a node label to each information transmission node according to the node type; Create a data collection interval based on the node label to obtain the benchmark data type and benchmark data format in each information transmission node; a data matching unit, configured to read the collected data content, determine a target data type and a target data format, match the target data type of each data content with a reference data type, and at the same time, match the target data format of each data content with a reference data format; The data storage unit is used to divide the collected data content according to the matching results and store it in the corresponding data collection interval.