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CIeNET Supports Software Development and Verification for eVTOL Aircraft

In recent years, the low-altitude economy has emerged as a crucial sector connecting the global aviation industry with the digital economy. Rapid advancements in technologies such as unmanned aerial vehicles (UAVs), electric vertical take-off and landing aircraft (eVTOL), artificial intelligence, 5G/6G networks, high-precision BeiDou positioning, and cloud computing have expanded the low-altitude economy beyond traditional aviation into diverse fields, including urban air mobility, logistics, emergency response, energy inspection, and agriculture. Globally, regions such as the United States and Europe are actively promoting urban air mobility (UAM), unmanned traffic management (UTM), and the development of digital airspace. Industry competition is increasingly shifting from aircraft manufacturing to software platforms, data services, and operational ecosystems.

China has recognized the low-altitude economy as a vital sector for fostering new, high-quality productive forces and continues to advance airspace reforms, infrastructure development, and application demonstrations. The industry is rapidly evolving toward an integrated ecosystem that combines aircraft, infrastructure, digital airspace, and operational services. As the sector expands, software capabilities—including flight control systems, airspace management, intelligent scheduling, digital twins, AI-driven autonomous flight, and cloud-edge collaboration—have become essential for the safe, large-scale commercial deployment of the low-altitude economy and represent key competitive areas for the future.

Drawing on its extensive expertise in aerospace embedded software development and verification, CIeNET provides airborne software development and verification services to a leading domestic eVTOL manufacturer, supporting the creation of advanced air mobility aircraft. These services encompass critical areas such as flight control computer application software development, software architecture and source code reviews, performance analysis, testing and verification, and system integration verification, helping clients enhance development efficiency and product quality.

Before starting the project, CIeNET proactively planned and allocated skilled engineering resources based on customer needs, demonstrating strong responsiveness and effective resource management. After project initiation, CIeNET onboarded the first engineer within three days and assembled the engineering team within six weeks to enable rapid project delivery. Through agile team deployment and expert technical support, CIeNET ensured the project progressed smoothly and remained on schedule.

For more information about CIeNET, please visit www.cienet.com or contact marketing@cienet.com.

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