
Contributed to the ASU-ASCEND/Spring-2025 repository by developing two features centered on real-time flight data visualization and embedded data access. Built a dynamic visualization tool using CesiumJS and JavaScript, enabling users to view atmospheric layers as interactive, semi-transparent cylinders with adjustable opacity and a real-time altitude graph. Enhanced the user interface for clarity and usability, including graph repositioning and visibility toggles. Implemented a DOWNLOAD command for flash storage, supporting file selection, progress tracking, and serial feedback to streamline data retrieval. Demonstrated strengths in UI/UX design, data visualization, and embedded systems, delivering maintainable, incrementally improved code with clear documentation.
March 2025 — ASU-ASCEND/Spring-2025: Delivered two high-impact features focused on real-time flight data visualization and robust data access. Flight Data Visualization with Atmospheric Layers and Altitude Graph provides dynamic visualization of flight data with atmospheric layer cylinders, interactive opacity controls, a real-time altitude graph, and UI refinements to improve readability and prevent layout overlap. DOWNLOAD Command for Flash Storage System implements data retrieval from flash memory with file selection, progress tracking, transfer statistics, and basic logging/serial feedback. The work enhances situational awareness, accelerates data analysis, and strengthens data access workflows. Demonstrated capabilities include 3D visualization, real-time data binding, UI/UX optimization, and embedded data transfer with logging.
March 2025 — ASU-ASCEND/Spring-2025: Delivered two high-impact features focused on real-time flight data visualization and robust data access. Flight Data Visualization with Atmospheric Layers and Altitude Graph provides dynamic visualization of flight data with atmospheric layer cylinders, interactive opacity controls, a real-time altitude graph, and UI refinements to improve readability and prevent layout overlap. DOWNLOAD Command for Flash Storage System implements data retrieval from flash memory with file selection, progress tracking, transfer statistics, and basic logging/serial feedback. The work enhances situational awareness, accelerates data analysis, and strengthens data access workflows. Demonstrated capabilities include 3D visualization, real-time data binding, UI/UX optimization, and embedded data transfer with logging.

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