

Urban environments worldwide are rapidly expanding, leaving fewer green spaces in their wake. Governments and city councils are now prioritizing large-scale reforestation and park redevelopment to restore balance. However, the process of planting trees across dense city layouts and suburban areas remains labor-intensive and costly.
To address this, a robotics development team designed a semi-autonomous tree planter capable of both remote teleoperation and automated planting. The goal was to simplify and accelerate urban tree-planting while reducing human labor and safety risks.
Traditional planting machines are bulky and require multiple operators. In contrast, this smaller, edge-AI-powered tree planter brings agility and precision into compact spaces. By integrating real-time sensors, cameras, and robotic arms, it enables precise planting motions—even in uneven terrain.
Yet, during early prototypes, the team faced multiple technical barriers. High field temperatures caused CPU throttling, leading to sluggish performance. Wireless modules overheated and lost signal. Frequent vibrations caused loose cable connections. And the system lacked sufficient I/O for all the sensors and LiDARs needed for reliable AI navigation.
That’s when they turned to Neousys, a leader in rugged edge computing, to provide a stable, high-performance computing platform that could endure the toughest outdoor environments.
Deploying a semi-autonomous machine outdoors is far from simple. The customer’s initial trials revealed three critical challenges that limited performance and reliability:
These issues made continuous operation unreliable—posing a barrier to scaling automation across large greening projects.
The team selected Neousys’ rugged edge AI platform, designed specifically for outdoor, high-performance, and vibration-prone environments.
Once integrated, the new edge platform transformed the system’s performance and stability in real field tests.
After deploying the Neousys edge AI system, the customer achieved:
The upgraded system delivered stability, responsiveness, and safety—reducing the need for human operators and speeding up the planting process across large urban areas.
By integrating Neousys edge AI computing into their semi-autonomous tree planter, the customer achieved stable, real-time AI operation under harsh outdoor conditions. The rugged design, secure cabling, and wide-temperature performance ensured continuous uptime and reliability.
This collaboration showcases how Neousys empower innovators in robotics, automation, and smart-city development—turning environmental goals into practical, scalable solutions.
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