INTCON Tethered Multi-Rotor UAV System
A next-generation aerial platform designed for emergency response scenarios, integrating portable power systems, modular payloads, and persistent hovering capabilities to address disaster relief lighting and communication relay missions. Key features and applications are detailed below:


I. Core Features
- Portable Deployment
- Compact foldable design with lightweight alloy casing (2-25kg total weight), enabling single-operator setup within 5 minutes.
- Compatible with mainstream UAV models (e.g., DJI M30/M350 series) via quick-release interfaces.
- Multi-Source Power Supply
- Supports grid power (380V/220V), generators, and vehicle-mounted systems for 24/7 operation.
- Utilizes 400V optical-electric composite cable (fiber + conductor) to reduce line loss, achieving >12h continuous flight.
- Modular Payload Compatibility
- Unified mounting interface for rapid payload switching:
✓ 10,000㎡ LED lighting array (adjustable beam modes);
✓ 4G/5G base stations, ad-hoc networks, and satellite relays (14km coverage radius);
✓ Dual-spectrum cameras and gas sensors for environmental monitoring.
II. Operational Scenarios
- Disaster Relief & Illumination
- Provides 360° aerial lighting (1,000W module) for night rescue operations, with 24h endurance in earthquake/flood zones.
- Emergency Communication Relay
- Establishes 150km² temporary networks via fiber-optic tethering, enabling:
✓ Real-time data links between command centers and field units;
✓ Multi-hop relay for disrupted areas (latency <10ms).
- Hazard Detection
- Deploys radiation/gas sensors to monitor chemical leaks or nuclear contamination.
III. Technical Advantages
IV. Military-Civilian Synergy
- Inherits design principles from U.S. military UAV communication protocols
- Validated in maritime SAR and wildfire prevention operations
This system demonstrates how tethered UAVs overcome traditional battery limitations, combining civilian emergency response with tactical-grade reliability. For technical documentation or customization options, refer to cited military-civil integration studies.