IoT Deployment Configuration Templates for Automated Device Onboarding
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Solution Overview
Problem
The complexity and time-consuming nature of configuring multiple Internet of Things (IoT) devices, especially as the number increases, lead to costly and impractical onboarding processes in IoT systems.
Innovation Solution
A method and system that capture and utilize deployment configuration templates to dynamically configure IoT devices and their interfaces, allowing processors to automatically configure and deploy software based on these templates, facilitating efficient integration and operation of multiple IoT devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If manual configuration methods are used for each IoT device, then configuration accuracy and device reliability are improved, but configuration time and system complexity increase significantly
Solution Approach 1:
The patent applies preliminary action by pre-defining configuration templates that contain all necessary device parameters, software versions, and interface settings. These templates are prepared in advance and can be automatically applied to multiple devices, eliminating the need for manual configuration while ensuring consistency and reliability across all devices.
Solution Approach 2:
The patent uses copying by creating reusable configuration templates that can be replicated across multiple IoT devices. Instead of manually configuring each device individually, the same proven configuration can be copied and applied to numerous devices, maintaining reliability through consistency while dramatically reducing configuration time.
2Manufacturing precision
If individual device configuration is performed manually, then configuration precision is improved, but productivity and scalability deteriorate
Solution Approach 1:
The patent applies universality by designing configuration templates that can serve multiple devices simultaneously. A single template can be applied to any number of IoT devices with the same or similar functions, allowing the system to maintain configuration precision while achieving high productivity through scalable, multi-functional configuration objects.
Solution Approach 2:
The patent uses parameter changes by allowing configuration templates to define specific parameters that can be automatically adjusted or overridden for individual devices when needed. This enables the system to maintain high precision through template-defined parameters while achieving high productivity through automated bulk configuration, with the flexibility to modify parameters on a per-device basis when required.
3Reliability
If comprehensive device configuration is implemented, then system reliability and functionality are improved, but device complexity and configuration cost increase
Solution Approach 1:
The patent applies segmentation by dividing the comprehensive device configuration into separate, manageable templates. Each template can focus on specific aspects of device configuration (e.g., software settings, interface parameters, operational modes), making the overall configuration process less complex while maintaining complete and reliable device setup through the combination of multiple specialized templates.
Data Source
AI summary
Apparatus and associated methods relate to dynamically configuring an Internet of Things (IoT) device and a processor interfacing the IoT device. The processor captures a specific one or more of a plurality of deployment configuration templates for the IoT. The IoT device is then configured by the processor based, at least in part, on the one or more of the plurality of deployment configuration templates captured. The processor then deploys software for use by the processor to interface with the IoT device configured. The software deployed is determined based on the one or more of the plurality of deployment configuration templates captured.


