IoV Digital Commodity Routing Table for Repeated Development Reduction
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Solution Overview
Problem
The high repeated development rate of digital commodities in Internet of Vehicles (IoV) technology leads to increased development costs and inefficiencies, as software development is often performed from scratch for each new digital commodity.
Innovation Solution
Establishing device models for vehicle-mounted devices based on available functions and communication modes, determining association relationships, and generating method routing tables to associate digital commodities with required services, thereby reducing repeated development and improving development efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If software development is performed from scratch for each new digital commodity according to function definitions, then digital commodities can be created with complete functionality, but the repeated development rate increases and development cost increases
Solution Approach 1:
The patent applies preliminary action by pre-establishing device models for various vehicle-mounted devices with their functions and communication modes defined in advance. When creating a new digital commodity, developers can directly select from these pre-defined models and associate them through the routing table mechanism, rather than creating device models from scratch each time. This preliminary preparation significantly reduces the repeated development work.
Solution Approach 2:
The patent implements copying by allowing the reuse of existing device models and method routing tables across multiple digital commodities. Once a device model is created and validated, it can be copied and reused in different contexts. The method routing table mechanism enables copying of service association patterns, allowing developers to replicate successful digital commodity structures without redeveloping the entire system.
2Ease of manufacture
If software development is performed from scratch for each new digital commodity, then digital commodities can be created with complete functionality, but development cost increases
Solution Approach 1:
The patent applies universality by creating device models that can serve multiple functions across different digital commodities. A single device model can be associated with various services and used in multiple digital commodity contexts through the method routing table mechanism. This multi-functionality reduces the need to create separate software components for each digital commodity, thereby reducing development costs.
Solution Approach 2:
The patent implements merging by combining common device models and service associations into a shared framework. The method routing table mechanism allows multiple digital commodities to share the same underlying device models and communication patterns, merging redundant development efforts into a single reusable structure that benefits all digital commodities.
3Productivity
If device models and method routing tables are established and associated, then repeated development is reduced and development efficiency is improved, but the initial system complexity increases
Solution Approach 1:
The patent applies segmentation by dividing the system into distinct, manageable components: device models (with functions and communication modes), service definitions, and method routing tables. This segmentation allows each component to be developed, validated, and maintained independently, reducing the perceived complexity despite the overall system's increased capability. The modular structure makes the system more manageable than a monolithic approach.
Solution Approach 2:
The patent introduces method routing tables as an intermediary layer between device models and digital commodity implementations. This intermediary mechanism simplifies the association process by providing a standardized interface for linking devices to services, reducing the complexity of direct point-to-point mappings. The routing table acts as a mediator that manages the relationships between components without requiring complex integration logic in each digital commodity.
Data Source
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AI summary
Involved are an Internet of vehicles-based digital commodity processing method and apparatus, a device, and a medium. The method includes: establishing a device model corresponding to each vehicle-mounted device based on an available function and communication mode of each vehicle-mounted device on a target vehicle, the vehicle-mounted devices including a gateway device, a gateway sub device, and a direct connection device; determining an association relationship between the device models based on an association relationship between the gateway device, the gateway sub device, and the direct connection device; generating a method routing table corresponding to available service on the target vehicle based on the association relationship between the device models; and associating, based on a function requirement corresponding to a digital commodity to be created, a method routing table corresponding to available service corresponding to the function requirement, to obtain a target digital commodity. Therefore, repeated development of digital commodities can be reduced, and Internet of vehicles-based development efficiency of digital commodities can be improved.