Dynamic interaction system and method based on dynamic agent model driving
A dynamic agent and model-driven technology, applied in the direction of model-driven code, creation/generation of source code, execution paradigm, etc., can solve problems such as complex internal processing logic implementation language, complex processing logic of redundant code, and increased difficulty in system maintenance , to achieve the effect of reducing burden and maintaining complexity, simplifying complexity, and avoiding agents
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0030] Such as figure 1 As shown, the model-driven dynamic interaction system based on dynamic proxy described in this example includes: an event receiving unit, a component logic control unit, a component management unit, a component dynamic proxy generation unit, a component instance container unit, and a component metadata unit .
[0031] (1) The event receiving unit captures the trigger request of the component, and obtains the component code index and component interface method according to the component trigger request.
[0032] (2) Component metadata unit, which stores metadata information of multiple components, component instance name and component code index. The metadata information includes: call logic relationship between components, component interface methods and component interface parameters.
[0033] Among them, the component code index uses the unique code value of the component as the index value, and the component instance name as the index value. The un...
Embodiment 2
[0045] In practical applications, in the management system of primary equipment and secondary equipment in the power system, there are many types of equipment under each operation and maintenance unit, which may be hundreds or thousands, and the number of equipment is hundreds of thousands or even millions. level. For such a management system with many types and a large number of devices, the existing implementation method for the interaction between devices is very complicated and cumbersome. The behavior of a device has the same basic functions for other devices. For example, the devices in the power system will have a behavior of adding and decommissioning. If such a device management system with basically the same behavior characteristics but with many types generates a corresponding component and component method for each device and provides external services, the system will become very complicated and redundant. According to the method proposed in this paper, it can be...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


