Wireless Mesh Network Distribution Modules for Remote Connectivity
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Solution Overview
Problem
Traditional communication systems face challenges in remote environments due to limited connectivity options, signal degradation over long distances, and network management complexity in multi-station settings.
Innovation Solution
A wireless mesh communication system is developed, featuring adaptable configurations with central base stations and interconnected distribution modules, enabling robust, scalable, and user-friendly communication by ensuring efficient data flow and signal distribution across geographically dispersed stations.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional wired connections are used in remote environments, then connection stability is improved, but deployment complexity and logistical requirements worsen
Solution Approach 1:
The patent replaces traditional wired mechanical connections with wireless communication systems. The base station and distribution modules use wireless signals to establish communication networks, eliminating the need for physical cable deployment in remote environments while maintaining connection stability through protocol-level reliability mechanisms.
Solution Approach 2:
The patent introduces distribution modules as intermediary devices that relay wireless signals between base stations and end devices. These modules extend the wireless network's reach and improve connection stability by creating multiple communication paths, effectively mediating the connection between remote devices and the central base station.
2Ease of operation
If wireless communication is used to simplify deployment, then ease of deployment is improved, but signal degradation over long distances worsens
Solution Approach 1:
The patent divides the wireless communication network into segmented zones using distribution modules. Each module serves a specific geographic area, breaking down long-distance signal transmission into shorter segments. This segmentation maintains signal strength by limiting each transmission hop to a manageable distance while preserving the ease of wireless deployment.
Solution Approach 2:
Distribution modules act as intermediary signal amplification and relay points. They receive weak signals from distant base stations, regenerate and amplify them, then retransmit to end devices. This intermediary function combats signal degradation while maintaining the wireless deployment advantage.
3Area of stationary object
If multiple distribution modules are added to extend coverage, then network coverage is improved, but network management complexity worsens
Solution Approach 1:
The patent implements feedback mechanisms where distribution modules continuously report their operational status, signal quality, and device connections to the base station. The base station uses this feedback to automatically adjust network parameters, allocate resources, and manage the expanding network, reducing manual management complexity even as coverage expands.
Solution Approach 2:
The network system performs self-configuration and self-management functions. When new distribution modules are added, they automatically discover the network, register with the base station, and integrate into the existing topology without manual configuration. This self-service capability reduces management complexity as the network scales.
Data Source
AI summary
This Continuation-in-Part (CIP) application builds upon a rapidly deployable communication system designed for remote and logistically challenging environments. It introduces advancements in establishing robust communication within a multi-station network, addressing limitations like limited connectivity options and network management complexity. The CIP explores solutions to ensure uninterrupted communication and simplifies deployment processes, ultimately resulting in a more resilient, adaptable, and user-friendly communication system ideal for harsh and demanding remote settings.

