Mesh Router Role Assignment for Network Utilization
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Existing mesh network systems face challenges in enhancing utilization rate and processing efficiency without adding new equipment.
Innovation Solution
A mesh network system where a first router detects the network architecture, designates roles for second routers as transmitting or receiving devices, and assigns work based on these roles, allowing routers to process events and monitor activities.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If the mesh network system uses traditional router allocation methods, then the system structure remains simple, but the utilization rate and processing efficiency are low
Solution Approach 1:
The patent implements dynamic resource allocation where routers can switch between transmitting and receiving roles based on real-time network conditions and task requirements. The parent-node router dynamically assigns tasks and monitors resource usage, allowing the network to adapt its structure and functionality rather than following a fixed allocation pattern. This dynamic approach resolves the contradiction by enabling high processing efficiency through flexible resource utilization while maintaining manageable system complexity through automated role assignment.
Solution Approach 2:
The patent enables routers to perform multiple functions by allowing them to act as both transmitting and receiving devices depending on the task. The same router infrastructure is used for both data transmission and computational tasks, eliminating the need for specialized equipment. This multi-functionality resolves the contradiction by maximizing the utility of existing routers to improve processing efficiency without adding system complexity.
2Productivity
If additional equipment is added to improve utilization rate, then processing efficiency increases, but system cost and complexity increase
Solution Approach 1:
The patent implements a self-service mechanism where the mesh network system automatically detects available processor and memory resources in each router and dynamically allocates tasks without external intervention. The parent-node router monitors resource availability and assigns computational tasks to appropriate routers based on their current capacity. This self-service approach resolves the contradiction by achieving high utilization rates through intelligent resource management rather than adding more equipment.
Solution Approach 2:
The patent changes the operational parameters of existing routers by allowing them to transition between different functional states (transmitting, receiving, computing). By dynamically adjusting the operational mode and task assignment of each router based on real-time resource availability, the system maximizes utilization of existing equipment without requiring additional hardware.
3Adaptability or versatility
If routers are assigned fixed roles, then system management is simple, but resource utilization rate decreases
Solution Approach 1:
The patent implements dynamic role assignment where routers are not fixed in transmitting or receiving roles but can switch between them based on task requirements and resource availability. The parent-node router continuously monitors the network state and reassigns roles and tasks dynamically. This resolves the contradiction by providing high resource flexibility through adaptive role switching while keeping management complexity manageable through automated detection and assignment algorithms.
Data Source
AI summary
A mesh network system and a mesh network resource allocation method are provided. The mesh network system includes a first router having a processor. The processor is used to detect a network architecture, according to the network architecture, designate a role of a second router as a transmitting device or a receiving device, and assign a work to the second router base on the role. After receiving the work assignment, the second router processes an event of the work and continuously monitors an activity related to the work.


