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56 results about "UML state machine" patented technology

The state diagram in the Unified Modeling Language is essentially a Harel statechart with standardized notation, which can describe many systems, from computer programs to business processes. In UML 2 the name has been changed to State Machine Diagram. The following are the basic notational elements that can be used to make up a diagram: Filled circle, pointing to the initial state Hollow circle containing a smaller filled circle, indicating the final state Rounded rectangle, denoting a state. Top of the rectangle contains a name of the state. Can contain a horizontal line in the middle, below which the activities that are done in that state are indicated Arrow, denoting transition. The name of the event causing this transition labels the arrow body. A guard expression may be added before a "/" and enclosed in square-brackets, denoting that this expression must be true for the transition to take place. If an action is performed during this transition, it is added to the label following a "/". Thick horizontal line with either x>1 lines entering and 1 line leaving or 1 line entering and x>1 lines leaving. These denote join/fork, respectively.

Test case generation method and device based on artificial intelligence, electronic equipment, readable storage medium and computer program product

The invention provides a test case generation method and device based on artificial intelligence, electronic equipment, a readable storage medium and a computer program product, and relates to the field of intelligent generation, in particular to the field of artificial intelligence and testing. According to the implementation scheme, test demand data related to functions of a to-be-tested product are obtained, the functions of the to-be-tested product comprise a plurality of function modules, and each function module comprises at least one function point; based on the test demand data, a large language model is utilized to obtain a first state diagram and a second state diagram, the first state diagram comprises a plurality of first state nodes, the first state nodes correspond to one corresponding function module in the function modules, and the second state diagram comprises a plurality of second state nodes; and based on the first state diagram and the second state diagram, obtaining a first test case set corresponding to the test demand data.
Owner:BEIJING BAIDU NETCOM SCI & TECH CO LTD

Automatic vulnerability analysis method based on protocol specification state machine

The invention provides an automatic vulnerability analysis method based on a protocol specification state machine, and relates to the technical field of the Internet, and the method comprises the steps: carrying out the mapping of an input symbol sequence according to a mapping relation to generate first mapping data, inputting the first mapping data into a target system for processing, and obtaining a first output symbol sequence, determining a first finite-state machine model, mapping the input symbol sequence according to the protocol specification to generate second mapping data, and determining a second finite-state machine model directory; and generating a first state diagram and a second state diagram, comparing the first state diagram with the second state diagram to determine a target path, and analyzing the target path to determine the vulnerability. The target system and the protocol specification are analyzed to generate the state diagrams, and the state diagrams are compared, so that detection and comparison of the system vulnerabilities are realized, the probability of system security problems caused by the system vulnerabilities is reduced, and the system vulnerability detection efficiency and the system security are improved.
Owner:TSINGHUA UNIVERSITY +1

Method, computer program product, and apparatus for automatically creating a skill interface

Automatically create an information model for the user with state diagrams for individual skills and general machine behavior or error cases. This greatly reduces the engineering effort for implementing the skill interface later on and in many cases enables an economically feasible implementation right from the start.
Owner:SIEMENS AG

Large model security test method and device, and computer program product

The invention discloses a large model security test method and device and a computer program product, and the method comprises the steps: firstly, screening out a target starting node with the highest semantic similarity with a target malicious query text from a pre-constructed state diagram database, and then when the value of the highest similarity is higher than a preset threshold value, starting the target malicious query text; a path multiplexing mode is adopted, a complete test path corresponding to the target starting node is directly multiplexed to test the target large model, and when the value of the highest similarity is not higher than a preset threshold value, a path exploration mode is adopted to search the target large model; and a new test path is generated by using a test strategy library, a guide large model, an attack large model and the like for testing (and is stored for subsequent direct multiplexing), so that effective accumulation and intelligent multiplexing of historical experience are realized, and repeated exploration is avoided. Compared with existing testing methods such as a static template, the testing efficiency is continuously improved along with experience accumulation, a complete closed loop of self-evolution is formed, and an ideal testing effect is achieved.
Owner:ANHUI XINGDUN INTELLIGENT TECHNOLOGY CO LTD +1

A graphical user interface for building a cloud platform for hydraulic mathematical models of electronic devices.

1. Name of the product in this design: Graphical User Interface for Building a Cloud Platform for Hydraulic Mathematical Models in Electronic Devices. 2. Purpose of this design: This design is used to display and run application programs. 3. The key design features of this product are its graphical user interface content. 4. The image or photograph that best illustrates the design's key features: the front view. 5. As is customary, other views are omitted. 6. Purpose of the graphical user interface: for online modeling, configuration, and display of hydraulic mathematical models. 7. Human-computer interaction method of graphical user interface: Click the "Enter Standardized Modeling Interface" button in the main view to enter the interface change state diagram.
Owner:PEARL RIVER HYDRAULIC RES INST OF PEARL RIVER WATER RESOURCES COMMISSION

Modeling simulation analysis graphical user interface for electronic devices

ActiveCN309942926SEngineeringState diagram
1. Name of the product in this design: Graphical User Interface for Modeling, Simulation and Analysis of Electronic Equipment. 2. Purpose of this design: An electronic device. 3. The key design feature of this product is its graphical user interface. 4. The image or photograph that best illustrates the design's key features: the front view. 5. Purpose of the graphical user interface: It is used for the digital management of the entire process of modeling, simulation and analysis. Various parameters can be edited in the input boxes of the interface. The X in the design interface represents text and / or numbers and / or letters and / or symbols. 6. Human-Computer Interaction Method of Graphical User Interface: The main view is the main interface of the newly created "Project2", in which the "Flow" tab is selected by default; clicking the "Optimize" tab in the main view displays the change state diagram 1; editing the corresponding parameters in the input box on the right side of the change state diagram 1 displays the change state diagram 2; clicking the "Testkey" tab of the design change state diagram 2 displays the change state diagram 3; clicking the "Import" button of the change state diagram 3 displays the change state diagram 4; clicking the "Choose" button of the change state diagram 4 displays the change state diagram 5; clicking the "Run" button of the change state diagram 5 displays the change state diagram 6, in which a hover text tooltip informs the user of the object to be run; clicking the "Run" button of the change state diagram 6 displays the change state diagrams 7 and 8 in sequence; clicking "Create Prediction" in the left area of ​​the change state diagram 8 displays the change state diagram 9, in which the Create Prediction pop-up window is shown; clicking the Create button in the change state diagram 9... The "OK" button in the Prediction pop-up window displays the change status diagram 10, in which the "Flow" tab is selected by default; clicking the "Edit" button to the right of "Project2 / Prediction_P1 / Flow" above the table in the change status diagram 10 displays the change status diagram 11; clicking the "Prediction_P1" node in the change status diagram 11 and selecting "Optimize" displays the change status diagram 12; clicking the "Run" button in the change status diagram 12 displays the change status diagram 13.
Owner:QUANXIN INTELLIGENT MFG TECH CO LTD

Hand-drawn 3D modeled functional graphical user interface body for electronic devices

1. Name of the product of this design: Body of a graphical user interface with hand-drawn 3D modeling functionality for electronic devices. 2. Purpose of this design product: used to run programs. 3. The key design point of this design product lies in the graphical user interface. 4. The picture or photo that best illustrates the key points of the design: main view. 5. The electronic equipment is of conventional design and other figures are omitted. 6. Graphical User Interface Purpose: The overall purpose of the product is: an electronic device used to run programs; the local purpose of the product is: a 3D hand-drawn modeling interface. 7. The area of the graphical user interface in the product: the main view is the initial interface. Click "I've finished drawing and submitted" in the main view to enter the interface change state diagram 1; click "Confirm to generate high-definition modeling" in the interface change state diagram 1 to enter the interface change state diagram 2; wait for the timer of interface change state diagram 2 to end and automatically enter interface change state diagram 3. 8. Other circumstances that require explanation Other explanations: The portion covered by the red translucent film of this design is the portion that does not require protection; "X, XXX" are replaceable text and / or numbers and / or letters and / or symbols.
Owner:HANGZHOU MAGIC CORE TECHNOLOGY CO LTD

Graphical User Interface of the Surveying and Mapping Project List for Electronic Devices

1. Name of the Design Product: Graphical User Interface of Surveying and Mapping Project List for Electronic Devices. 2. Use of the Design Product: An electronic device. 3. Design Key Points of the Design Product: Lies in the graphical user interface on the screen. 4. Picture or Photo that Best Illustrates the Design Key Points: Interface Variation State Diagram 2. 5. The carrier is of conventional design, and the rear view, left view, right view, top view and bottom view are omitted. 6. Use of the Graphical User Interface: For operating the approval process and displaying process diagrams of each process. 7. Other Situations Requiring Explanation - Reference Diagram Explanation: Click "Pending Business" in the main view to enter Interface Variation State Diagram 1 (hereinafter referred to as Diagram); click "List Mode" in Diagram 1 to enter Diagram 2; click "Business Information Approval" in Diagram 2 to enter Diagram 3; click "Save" after entering information in Diagram 3 to enter Diagram 4; click "OK" in Diagram 4 to enter Diagram 5; click "OK" in Diagram 5 to enter Diagram 6; click "Save" after entering information in Diagram 6 to enter Diagram 7; click "OK" in Diagram 7 to enter Diagram 8; click "OK" in Diagram 8 to enter Diagram 9; click "Handling Process" in Diagram 9 to enter Diagram 10; click "List Mode" in Diagram 10 to enter Diagram 11. Among them, the digital information shown in each interface and the places referred to by X / Y / M / D are variable and do not belong to the design elements; the partial content shown by the gray color block in the main view is variable and does not belong to the design elements.
Owner:FUJIAN INST OF GEOLOGICAL SURVEYING & MAPPING (FUJIAN INST OF GEOLOGICAL SCI)

Digital human mesh creation method that guarantees sequence frame continuity

ActiveCN121147364BAnimation3D modellingFrame sequenceDigital human modeling
This invention relates to the field of digital human modeling technology and discloses a method for creating digital human meshes that ensures the continuity of sequence frames. The method includes: sequence frame mesh monitoring, which acquires digital human sequence frame mesh data in real time; sorting and filtering detected mesh continuity anomalies and updating the filtering results to the sequence frame continuity state diagram in real time; continuity integration evaluation, which calculates and analyzes the impact of anomalies on the corresponding frame sequence based on the real-time updates of the state diagram, thereby implementing first dynamic management for mesh creation of subsequent frame sequences; and anomaly type expansion evaluation, which analyzes the impact of various anomalies on mesh creation based on the updated data of different anomaly types in the state diagram, thereby implementing second dynamic management for the overall digital human mesh creation process. This method can accurately handle mesh continuity anomalies, ensure the continuity of sequence frame meshes, and optimize the dynamic performance of the digital human.
Owner:ZHEJIANG VERSATILE MEDIA

A graph chart of a graphical user interface for viewing program acceleration information of an electronic device

1. Name of the product of this design: A graph of a graphical user interface for viewing program acceleration information of an electronic device. 2. Purpose of this design product: for use in an electronic device. 3. The key design point of this design product lies in the graphical user interface. 4. The picture or photo that best illustrates the key points of the design: Design 1 changing state diagram 1. 5. Designate Design 1 as the base design. 6. Uses of graphical user interfaces: Overall use is used to select and accelerate computer programs; local use is used to display curve chart data. 7. Description of the changing states of the graphical user interface: The main view of Design 1 is in an empty state. Click "Start Program" in the main view of Design 1 to enter the changing state diagram 1 of Design 1, which shows the no-event state; in the changing state diagram 1 of Design 1, hover the mouse over the curve to enter the changing state diagram 2 of Design 1; the main view of Design 2 is in an empty state. Click "Start Program" in the main view of Design 2 to enter the changing state diagram 1 of Design 2, which shows the event state; in the changing state diagram 1 of Design 2, hover the mouse over the curve to enter the changing state diagram 2 of Design 2; the main view of Design 3 is in an empty state. Click "Start Program" in the main view of Design 3 to enter the changing state diagram 1 of Design 3, which shows the event state; in the changing state diagram 1 of Design 2, click the box to the right of "Position" to enter the changing state diagram 2 of Design 3. 8. Other circumstances that require explanation: The red covered area does not belong to the design content for which protection is requested; the coated content is the content image; X represents text content.
Owner:NETEASE (HANGZHOU) NETWORK CO LTD

Graphical user interface for label-based classification and display of building components for electronic equipment

1. Name of the product of this design: Graphical user interface for displaying building components of electronic equipment based on label classification. 2. Purpose of this design product: used to run programs and display information. 3. The key design point of this design product lies in the interface content of the graphical user interface on the screen. 4. The picture or photo that best illustrates the key points of the design: main view. 5. Purpose of the graphical user interface: To display the properties of building components based on label classification. 6. Human-computer interaction mode of the graphical user interface: the main view is the initial state diagram of the building component attribute list; the initial state diagram displays attributes of all categories; select any attribute in the main view interface and right-click to add a color label to the selected attribute entry; for example, select the "material" attribute in the main view and then right-click to enter the interface change state diagram 1, where a color label entry is added; in the interface change state diagram 1, a color label can be added to the selected attribute, for example, in the interface change state diagram 1, after selecting the "red" label for the selected "material" attribute, enter the interface change state diagram 2; the interface change state diagram 2 shows the effect of the attribute entry with the added color label. Interface change state diagram 2 reference diagram is a schematic diagram of the effect after adding a "red" label to the "material" attribute, adding a "red" label to the "concrete grade" attribute, adding a "blue" label to the "section perimeter" attribute, and adding a "blue" label to the "section area" attribute. Select the tool button on the upper right side of the interface change state diagram 2 to enter the interface change state diagram 3, where you can filter the color labels; the interface change state diagram 3 reference diagram is a schematic diagram of the interface entered by selecting the tool button on the upper right side of the interface based on the interface change state diagram 2 reference diagram. After entering the interface change state diagram 3, all color labels in the color label filter box that appears above are initially selected by default. If you cancel the color labels you do not want to display in the color label filter box, only the attribute entries of the remaining color labels will be displayed; if you cancel other colors except the "red" label in the color label filter box that appears above the interface change state diagram 3, you will enter the interface change state diagram 4, and only the attribute entry "Material" labeled "red" will be displayed. Interface Change Status Diagram 4 Reference Diagram is based on Interface Change Status Diagram 3 Reference Diagram. It is the interface entered after canceling all colors except the "Red" and "Blue" labels in the color label filter box that appears above Interface Change Status Diagram 3 Reference Diagram. At this time, only the attribute entries labeled "Red" and "Blue" are displayed.
Owner:LUBANSOFT

A protocol specification state machine-based vulnerability automatic analysis method

The application provides a vulnerability automatic analysis method based on a protocol specification state machine, and relates to the technical field of Internet, wherein the method comprises the following steps: mapping an input symbol sequence according to a mapping relationship to generate first mapping data, inputting the first mapping data into a target system for processing to obtain a first output symbol sequence, and determining a first finite state machine model; mapping the input symbol sequence according to a protocol specification to generate second mapping data, and determining a second finite state machine model directory; generating a first state diagram and a second state diagram, comparing the first state diagram with the second state diagram to determine a target path, and analyzing the target path to determine a vulnerability. The target system and the protocol specification are analyzed to generate state diagrams, and the state diagrams are compared, so that the detection and comparison of system vulnerabilities are realized, the probability of system security problems caused by system vulnerabilities is reduced, and the efficiency of system vulnerability detection and the security of the system are improved.
Owner:TSINGHUA UNIVERSITY +1

Graphical User Interface for Viewing the Details of the Standard System of an Electronic Device

1. Name of the Design Product: Graphical User Interface for Viewing Details of Standard System of Electronic Devices. 2. Use of the Design Product: For an electronic device. 3. Design Key Points of the Design Product: Lies in the graphical user interface. 4. Picture or Photo that Best Illustrates the Design Key Points: Front View. 5. Use of the Graphical User Interface: For viewing details of the standard system. 6. Description of the Changing States of the Graphical User Interface: Click on "View System" on the right side in the front view to enter the changing state diagram 1; click on "System Block Diagram" in the changing state diagram 1 to enter the changing state diagram 2; click on "Compilation Instructions" in the changing state diagram 2 to enter the changing state diagram 3; click on "Standard Statistics" in the changing state diagram 3 to enter the changing state diagram 4; click on "Chart Statistics" in the changing state diagram 4 to enter the changing state diagram 5. 7. Other Situations Requiring Explanation: Other Explanation: X is the text content; the coated content is the content screen.
Owner:RUNSHEN STANDARDIZATION TECH SERVICE (SHANGHAI) CO LTD

A data collaboration method and device based on a unified state diagram

The present disclosure relates to the technical field of enterprise collaborative office management, in particular to a data collaboration method and device based on a unified state diagram, which generates a task skeleton corresponding to a document directory structure by analyzing structured directory information of a to-be-processed document, and constructs a unified state diagram containing a content anchor point identifier, a task state identifier, a permission state identifier and a knowledge context field based on the task skeleton, so that the directory position, the task processing state, the permission control state and the related knowledge context in the document can be associated and expressed in the same state node, thereby making the collaborative processing process no longer simply rely on manual synchronization or loose coupling interface association between a document system, a task system or a knowledge base system, and improving the consistency, linkage and traceability between multiple types of collaborative states.
Owner:CHINA SHENHUA ENERGY CO LTD

Aviation Control System SysML State Diagram Model Verification Method and Its Verification System

The present invention provides a method for validating a SysML state diagram model of an aviation control system, which includes: determining the context environment in which the aviation control system operates, identifying the set of states existing in the context environment of the aviation control system, constructing an aviation control system state diagram, constructing an internal behavior model of sequential states, constructing a conversion relationship model between sequential states, constructing an aviation control system behavior model, exporting a state machine file described in xml language, importing it into a computer program tested in CSharp language, and performing verification of the state machine. The state machine model verification method designed based on the SCXML standard in the present invention avoids the conversion from a UML state machine to a complex intermediate language, reduces the implementation difficulty of model verification, improves the model verification efficiency, can avoid repeatedly modifying the model, reduces the test cycle, and ensures that the SysML state diagram complies with relevant standards.
Owner:CHINA AERO POLYTECH ESTAB

Human body continuous action recognition method based on state diagram logic conversion

The invention discloses a human body continuous action recognition method based on state diagram logic conversion. The method comprises the following steps: acquiring continuous actions of a human body by using a radar to obtain a radar three-dimensional data matrix, and generating a state logic conversion diagram; preprocessing the radar three-dimensional data matrix, and performing continuous action segmentation on the preprocessed time Doppler information; acquiring five-dimensional point cloud information of distance, Doppler, height, energy and time; according to a PointNet deep learning network and action state logic conversion, a forward classification method and a backward classification method are combined, and a main classifier is used for classifying independent actions; and the label range of the action is narrowed through the forward or backward sub-classifier, and continuous action classification is further carried out. According to the method, firstly, precise segmentation of continuous actions is realized based on the difference of the continuous actions of the human body in feature, and then, based on the continuity of the continuous actions in state conversion logic, the logic of state conversion between front / back adjacent actions is utilized to assist in judging a current action label, so that the accuracy of the continuous actions is improved. Therefore, efficient and accurate human body continuous action recognition is achieved, the calculation method is effective and feasible, the performance is reliable, and the precision is higher.
Owner:NANJING UNIV OF SCI & TECH

Computer with a graphical user interface for an offline key distribution system

1. Name of the Design Product: Computer with a Graphical User Interface for an Offline Key Distribution System. 2. Use of the Design Product: For running programs. 3. Design Key Points of the Design Product: Lies in the content of the graphical user interface on the screen of the product. 4. Picture or Photo that Best Illustrates the Design Key Points: Interface Variation State Diagram 3. 5. The computer has a conventional design, and the rear view, left view, right view, top view, and bottom view are omitted. 6. Human-Machine Interaction Method of the Graphical User Interface: Open the software, enter the login interface of Interface Variation State Diagram 1, enter the password in the login interface of Interface Variation State Diagram 1, click the "Login" button, and the interface jumps to Interface Variation State Diagram 2; click the "Key Distribution" button on the right side of the page in Interface Variation State Diagram 2, and the interface jumps to Interface Variation State Diagram 3; click the "Distributor" button at the top of the page in Interface Variation State Diagram 3, and the interface jumps to Interface Variation State Diagram 4; click the "Distribution Record" button at the top of the page in Interface Variation State Diagram 4, and the interface jumps to Interface Variation State Diagram 5.
Owner:MATRICTIME DIGITAL TECH CO LTD

Business Process Decision Modeling Designer Graphical User Interface of an Electronic Device

1. Name of the Design Product: Graphical User Interface of the Business Process Decision Modeling Designer for Electronic Devices. 2. Use of the Design Product: Used to build a structured management model for the user's business process. 3. Design Key Points of the Design Product: Lies in the interface displayed by this product. 4. Picture or Photo that Best Illustrates the Design Key Points of this Design: The front view of Design 1. 5. Views to be Omitted: The hardware product is a conventional design, and the other views are parts that are not commonly seen during use, so they are omitted. 6. Basic Design: Design 8. 7. Interface Use: Used for the creation, modification, and grouping adjustment of different models of the user's business process. 8. Description of the changing states of the graphical user interface: The changing state diagram 1 of Design 1 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 1; The changing state diagram 2 of Design 1 is the interface displayed after clicking on the "Publish" menu in the changing state diagram 1 of Design 1; The changing state diagram 1 of Design 2 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 2; The changing state diagram 2 of Design 2 is the interface displayed after clicking on the "Historical Versions" menu in the changing state diagram 1 of Design 2; The changing state diagram 1 of Design 3 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 3; The changing state diagram 2 of Design 3 is the interface displayed after clicking on the "Delete Draft" menu in the changing state diagram 1 of Design 3; The changing state diagram 1 of Design 4 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 4; The changing state diagram 2 of Design 4 is the interface displayed after clicking on the "Insert Phase" menu in the changing state diagram 1 of Design 4; The changing state diagram 1 of Design 5 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 5; The changing state diagram 2 of Design 5 is the interface displayed after clicking on the "Import Model" menu in the changing state diagram 1 of Design 5; The changing state diagram 1 of Design 6 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 6; The changing state diagram 2 of Design 6 is the interface displayed after clicking on the module menu of the "Conceptual Design" phase in the changing state diagram 1 of Design 6; The changing state diagram 1 of Design 7 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 7; The changing state diagram 2 of Design 7 is the interface displayed after clicking on the decision module menu of "Whether the conceptual design is completed" in the changing state diagram 1 of Design 7; The changing state diagram 1 of Design 8 is the interface displayed after clicking on the model data of "D0254 Model" in the main view of Design 8; The changing state diagram 2 of Design 8 is the interface displayed after entering through the menu of "A total of 3 processes, 2 processes are ready to exit" in the "1. Conceptual Design" module in the changing state diagram 1 of Design 8; The changing state diagram 3 of Design 8 is the interface displayed after clicking on the "Insert Process" menu in the changing state diagram 2 of Design 8; The changing state diagram 4 of Design 8 is the interface displayed after clicking on the "Requirement Review" menu in the changing state diagram 3 of Design 8; The changing state diagram 5 of Design 8 is the interface displayed after clicking on the "Input / Output" menu in the changing state diagram 4 of Design 8; The changing state diagram 6 of Design 8 is the interface displayed after clicking on the "Knowledge Package" menu in the changing state diagram 5 of Design 8.
Owner:ZHIYAN GONGSOFT (HANGZHOU) TECH CO LTD +1

Key power transmission section rapid identification method considering geographic partition optimization and graph theory search theory

The invention provides a key power transmission section rapid identification method considering geographic partition optimization and a graph theory search theory, and relates to the field of key power transmission section identification of a power system, and the method comprises the steps: firstly, carrying out the optimization of an existing power grid geographic partition according to a geographic partition optimization rule, and carrying out the optimization of a power grid geographic partition according to the optimized power grid geographic partition; and constructing a state diagram of the power grid partitions. And then, based on the obtained power grid partition state diagram, obtaining an adjoint matrix of the state diagram by utilizing a graph theory, obtaining all power transmission sections of the power grid according to the adjoint matrix, calculating improved power flow betweenness index values of all the power transmission sections, and screening out the power transmission section with the maximum improved power flow betweenness index value as the key power transmission section of the power grid. According to the method, the power transmission section of the power grid is rapidly obtained by using the graph theory, the reasonable key power transmission section is screened out according to the improved power flow betweenness index, and a scientific and reliable basis can be provided for rapid identification of the key power transmission section of the power grid.
Owner:CENT CHINA BRANCH OF STATE GRID CORP OF CHINA

Controller for band mode adjustment control graphical user interface

1. The name of the design product: controller with mode adjustment control graphical user interface. 2. The use of the design product: for displaying and running programs. 3. The design points of the design product: in the graphical user interface content and interactive way. 4. The picture or photo that best indicates the design points: design 1 change state diagram 1. 5. Design 1 is designated as the basic design. 6. The use of the graphical user interface: for controlling and adjusting running programs. 7. The human-computer interaction way of the graphical user interface: design 1 main view is standby interface, after starting, enter design 1 change state diagram 1; click the mode (5th from the bottom) icon in design 1 change state diagram 1 to enter design 1 change state diagram 2; design 2 main view is standby interface, after starting, enter design 2 change state diagram 1; click the mode (5th from the bottom) icon in design 2 change state diagram 1 to enter design 2 change state diagram 2; design 3 main view is standby interface, after starting, enter design 3 change state diagram 1; click the mode (5th from the bottom) icon in design 3 change state diagram 1 to enter design 3 change state diagram 2; design 4 main view is standby interface, after starting, enter design 4 change state diagram 1; click the mode (5th from the bottom) icon in design 4 change state diagram 1 to enter design 4 change state diagram 2.
Owner:QINGDAO HAIER AIR CONDITIONING ELECTRONICS CO LTD +2

Smart power distribution graphical user interface for electronic devices

1. The name of the design product: smart power distribution graphical user interface of electronic equipment. 2. The use of the design product: for an electronic device. 3. The design points of the design product: in the graphical user interface content. 4. The picture or photo that best indicates the design points: front view. 5. The use of the graphical user interface: for smart power distribution. 6. The change state of the graphical user interface: in the main view, click on the label on the building model to display the pop-up information of the building, as shown in the change state diagram 1; in the change state diagram 1, double-click on other building models to retract the information pop-up window and enlarge the double-clicked building to enter the change state diagram 2; in the change state diagram 2, click on the marker point in the building model to switch to the change state diagram 3; in the change state diagram 3, continue to click on the marker point in the building model to switch to the change state diagram 4; in the change state diagram 4, double-click on the background area in the interface to display the full view of the modeling, as shown in the change state diagram 5; in the change state diagram 5, drag the modeling in the interface to rotate the modeling visual to switch to the change state diagram 6; in the change state diagram 6, double-click on the teaching building model to switch to the change state diagram 7; in the change state diagram 7, click on the marker point in the building model to switch to the change state diagram 8.
Owner:SHANGHAI SMART LIANGXIN POWER DISTRIBUTION CO LTD +2

Treadmill state recognition method and system based on multi-modal data

The application discloses a kind of based on the state identification method and system of treadmill of multi-modal data, and the application relates to the technical field of multi-modal data, the dynamic response signal of each data combination is combined with corresponding stereoscopic model, and the dynamic state diagram of treadmill is constructed, to determine multiple state characteristics, and the state change sequence of treadmill is determined in combination with attention mechanism and the working constraint relationship of treadmill, improve the accuracy of the state change sequence of treadmill.According to the identification of state causal chain, a plurality of key nodes are determined;Multiple key nodes are loaded into a sliding window device, and multiple sub-state contents are sequentially output along the time domain, and the corresponding state drift content is determined in combination with the current working data of the treadmill during the iteration process, and the current state of the treadmill is further determined in combination with the state change sequence of the treadmill, improving the identification accuracy of the current state of the treadmill.
Owner:XIAMEN QIAOYANG ELECTRONIC TECH CO LTD

Conversational AI task execution method and system based on state diagram

The invention provides a conversational AI task execution method and system based on a state diagram, and the method comprises the steps: S3, extracting node conversion logic from a part of the state diagram, judging a priority path guided by a task in combination with the intention of a user, and determining the segment content guided by the next task; s6, extracting a key task instruction from the generated guide information, judging whether the user deviates from an expected path or not in combination with a real-time feedback processing result, and regenerating the corrected partial state diagram if the user deviates from the expected path; s8, extracting user response data from the final task guide content, judging the understanding degree of the guide content by the user in combination with semantic analysis, and generating updated user interaction adaptation parameters; and S9, regenerating the next round of partial state diagram through the updated user interaction adaptation parameters, and outputting the dynamically adjusted task guide information. The task completion rate and the interaction experience of the user are remarkably improved, and the method is particularly suitable for complex multi-stage task scenes.
Owner:GUANGDONG SANDING INTELLIGENT INFORMATION TECH CO LTD

A computer with a graphical user interface for the labeling machine software operating system.

1. Name of the product in this design: Computer with a graphical user interface for labeling machine software operating system. 2. Purpose of this design: This design is used for monitoring and providing early warnings when running programs and performing application operations on the Windows system. 3. The key design features of this product are the content and layout of the graphical user interface. 4. The image or photograph that best illustrates the design's key features: the front view. 5. If the design details are not involved, the rear view, bottom view, top view, left view, and right view are omitted. 6. Purpose of the graphical user interface: This design is for user management and operation of the terminal labeling machine. 7. Human-computer interaction method of graphical user interface: The main view is the initial page; the interface change state diagram 1 is the interface displayed after clicking the "Load File" graphic button in the middle of the main view interface; the interface change state diagram 2 is the interface displayed after clicking the "Settings" graphic button in the upper middle of the interface in the interface change state diagram 1, so that the labeling machine can perform automated operation.
Owner:GUANGDONG DEHONG HEAVY IND CO LTD

Large model assisted reading graphical user interface for electronic devices

ActiveCN309909192SEngineeringElectronic book
1. The name of the design product: large model assisted reading graphical user interface of electronic equipment. 2. The use of the design product: vivo blue heart large model capacity combined with knowledge base to assist users in reading electronic books. Users can interact with the large model in real time. 3. The design points of the design product: in the change state diagram 3. 4. The picture or photo that best indicates the design points: change state diagram 3. 5. The use of the graphical user interface: text area sliding word selection in the main view, click "AI reading companion" function to call out the change state diagram, the selected word in the main view will be input as a prompt word into the large model dialog box, and then the user can dialogue with the large model about the context content of the book. Books can be selected as a unified pre-knowledge base for reading and answering questions. 6. The human-computer interaction mode of the graphical user interface: long press and click AI reading companion in the main view to open change state diagram 1; click the input text below change state diagram 1 to call out change state diagram 2; click the back key in change state diagram 2 to open change state diagram 3; click the back key in change state diagram 3 to open change state diagram 4.
Owner:李书婕 +1

Intelligent operation and maintenance method and system for 5G base station

The invention relates to the technical field of base station operation and maintenance, in particular to an intelligent operation and maintenance method and system for a 5G base station, and the method comprises the steps: collecting an input data group through a collection link of an operator, carrying out the combined modeling based on the input data group to generate a multi-base-station state diagram structure, and introducing a diagram neural network structure. Outputting an abnormal score vector and a root cause probability vector of each base station; performing root cause screening to generate a target set, judging an action type for the target set, generating an amplitude parameter and a confidence coefficient, constructing a structured control suggestion, performing lightweight digital twinborn simulation on each entry under the current working condition, determining the feasibility and security of the structured control suggestions and generating a security score set of all candidate entries and suggestion subsets passing the determination; remote control batch arrangement, atomic instruction issuing, equipment side receipt confirmation and generation of an irchangeable execution log are completed, suggestions capable of being issued are converted into executed actions on an engineering side, and an execution confirmation set is generated.
Owner:GUANGDONG SMALL & MEDIUM DIGITAL TECHNOLOGY CO LTD

A test requirement formalization modeling and test case generation method based on combination constraint state diagram

PendingCN122346435ATest inputModelSim
The application discloses a test requirement formalization modeling and test case generation method based on a combination constraint state diagram, relates to the field of engineering system test technology, and aims at the problem that existing test case generation methods are dependent on manual reading of requirements and writing of test cases, unified constraint expression is lacked in test input selection and boundary combination, and thus case generation efficiency is low. In the model layer, a unified binding of Lambda (e) = (g, I, A) is established for each transition edge, formal semantic artifacts such as IR and ABL are formed in combination with variable / port dictionaries and assertion information, and test cases are directly generated or conflict positioning information is output based on a solving result, so that the test requirement expression consistency, invalid case pruning, fault test accuracy and test case generation efficiency are obviously improved.
Owner:HARBIN ENG UNIV +1

Computer with graphical user interface for tunnel advance small pipe geological analysis system

1. Name of the product in this design: Computer with graphical user interface for geological analysis system with tunnel advance small pipe. 2. Purpose of this design: To run programs and display interface content. 3. The key design features of this product are the graphical user interface content on the screen. 4. The image or photograph that best illustrates the design points: Change state diagram 1. 5. The computer is designed in a conventional way, so other views are omitted. 6. Purpose of the graphical user interface: Used for information display and status interaction between real-time geological parameters of various locations in tunnel pre-conduit pipes. 7. Human-computer interaction method of graphical user interface: The main view is the login interface. The changing state diagram 1 is the "multimodal sensor array" interface after clicking "login" in the main view. The changing state diagram 2 is the interface after clicking "drill pipe dynamic feedback system" in the changing state diagram 1. The changing state diagram 3 is the interface after clicking "dynamic early warning and parameter optimization" in the changing state diagram 2.
Owner:HUNAN PROVINCIAL COMM PLANNING SURVEY & DESIGN INST CO LTD