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CASE STUDY

End-to-End Quality Validation for a Solar Monitoring Platform

Ensuring data accuracy and platform reliability for a solar energy monitoring system during its PHP-to-Angular transition across Southeast Asia.
ENERGY
Beci About
ABOUT THE CLIENT

Validating Digital Energy Solutions Across Southeast Asia

Higher Education About

A leading Energy-as-a-Service (EaaS) provider in Asia needed a robust quality assurance process to validate their solar energy monitoring platform as it transitioned from a PHP backend to a dynamic Angular frontend. Operating across eight Southeast Asian countries, the platform delivers critical energy insights to industrial clients. Our QA team verified data consistency, functional flows, and cross-platform compatibility to ensure a flawless deployment.

HIGHLIGHTS
08

Locations Covered

90%

Script stability achieved

  • Higlight Arrow Right1 week of intensive post-remediation monitoring for stability
  • Higlight Arrow RightEnsured accurate solar energy data visualization and reporting
  • Higlight Arrow RightValidated seamless backend-to-frontend data transition

Tools we Used

PROBLEM STATEMENT

Ensuring Data Integrity During a Platform Transition

Medormatics Problem
The solar monitoring platform was undergoing a significant upgrade, shifting its frontend architecture from PHP to Angular. The goal was to maintain accurate energy production and consumption tracking across thousands of solar installations while ensuring data integrity, smooth functionality, and system resilience.
Beci Problem
Beci Solution
OUR SOLUTION

A Strategic QA Approach to Safeguard Platform Performance

Automation Stock Solution
  • Union IconAdopted Agile methodology, Scrum, for flexible project management
  • Union IconBuilt structured test suites in Zephyr, integrated with JIRA for traceability
  • Union IconExecuted comprehensive testing: Smoke, Sanity, Regression, Integration
  • Union IconConducted detailed validation of solar modules, inverters, MPPT, irradiance, and net energy metrics
  • Union IconImplemented cross-platform compatibility checks for all plant locations

What we did?

Functional and Integration Testing
Structured Test Management
Addressing Critical Failures
Enhancing Client Collaboration

Functional and Integration Testing

To begin with, we verified the complete data flow and functionality across modules such as MPPT, solar modules, inverters, and net energy reporting. Each plant’s data integrity was scrutinized, ensuring accurate measurement and visualization of solar production metrics across the dashboard. This rigorous functional coverage minimized the risk of operational disruptions post-deployment.

Structured Test Management

Next, tasks were systematically assigned using JIRA, and test cases were meticulously built in Zephyr. This structured approach ensured complete test coverage and end-to-end traceability, enabling us to manage regression and integration cycles efficiently under Agile workflows. By maintaining transparent tracking, we accelerated test cycles and improved team accountability.

Addressing Critical Failures

Meanwhile, during testing, data population failures surfaced despite optimal plant performance. Our team rapidly diagnosed minor backend coding errors that disrupted data retrieval, applied targeted fixes, and subsequently monitored system performance intensively for a full week post-remediation. Proactive issue resolution ensured stable data flow and restored platform confidence.

Enhancing Client Collaboration

Finally, through continuous collaboration on Microsoft Teams and WhatsApp, we maintained open communication with the development team. This real-time feedback loop allowed for faster decision-making and expedited the resolution of critical issues, ensuring all project milestones were met on schedule. Strong collaboration helped align QA outcomes with the client’s strategic digital transformation goals.

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