Wireless Simulator Orchestration for Automated Node Configuration
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Solution Overview
Problem
Existing application deployment systems are time-consuming and error-prone due to manual script-based updates, lacking feedback mechanisms and being application agnostic, making it difficult to deploy and configure simulator applications efficiently.
Innovation Solution
A system and method for orchestrating simulator applications using a wireless network, which includes a user interface for deployment and configuration, a simulator controller for automatic control, and a communication channel for service procedures, reducing deployment time and error rates through automated processes.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If manual script-based deployment is used, then deployment flexibility is maintained, but deployment time increases and error rate increases
Solution Approach 1:
The system enables self-service deployment through automated orchestration that performs service discovery, configuration generation, and deployment execution without manual intervention. The orchestration engine automatically discovers services, generates configuration files, and coordinates deployment across multiple nodes, eliminating the need for manual script execution while reducing both deployment time and error rates.
Solution Approach 2:
The system implements feedback mechanisms through automated validation and monitoring during deployment. The orchestration engine receives feedback from service discovery responses, configuration validation results, and deployment status reports to dynamically adjust the deployment process, detect errors early, and ensure reliable deployment outcomes.
2Loss of time
If automated orchestration is implemented, then deployment time is reduced, but system complexity increases
Solution Approach 1:
The orchestration engine serves multiple functions within a single system component: it performs service discovery, generates configuration files, coordinates deployment across nodes, and monitors deployment status. This multi-functionality reduces the need for separate manual processes and tools, thereby reducing overall system complexity despite the automation capabilities.
Solution Approach 2:
The system introduces an orchestration engine as an intermediary layer between developers and the deployment infrastructure. This mediator automates complex coordination tasks while presenting a simplified interface to users, effectively managing system complexity internally while maintaining ease of use externally.
3Manufacturing precision
If service discovery is automated, then configuration accuracy is improved, but communication overhead increases
Solution Approach 1:
The system performs service discovery and configuration generation as preliminary actions before actual deployment execution. By automatically discovering services and generating accurate configuration files in advance, the system ensures configuration accuracy while consolidating communication activities into efficient batches, reducing overall communication overhead during the deployment process.
Data Source
AI summary
Embodiments disclosed herein provides a system for orchestrating simulator application in a wireless network. The system is configured to display a simulator orchestration interface on a user device to orchestrating simulator application. The user interface includes simulator applications. Simulator applications are deployed on the node and a proto-file is retrieved. The proto-file includes service configuration parameters associated with the node using simulator specific communication channel. The deployed simulator application is configured based on the service configuration parameters mentioned in the retrieved proto-file from the node. The configured simulator application is automatically controlled for the service procedures using the specific communication channel.


