Russia Develops Advanced Tethered Drone System
Russia has patented a carrier drone capable of deploying up to six tethered reconnaissance copters, allowing for simultaneous surveillance and control. The design, developed by the Novosibirsk Higher Military Command School, uses physical cable connections to power and command the smaller drones. This system enables a single aircraft to act as a mobile hub for multiple spy copters, increasing range and reducing power requirements.
Key points
- Russia's Novosibirsk Higher Military Command School has patented a carrier drone design that can deploy up to six tethered reconnaissance copters.
- The system uses physical cable connections to power and control the smaller drones, removing the need for onboard batteries or independent radio links.
- The carrier drone acts as a mobile hub, enabling simultaneous surveillance and control of multiple copters.
- The design increases range and reduces power requirements, with range becoming a direct function of cable length rather than battery life or signal strength.
Russia's military has been pushing the boundaries of drone technology, and the latest development is a carrier drone capable of deploying up to six tethered reconnaissance copters. The design, patented by the Novosibirsk Higher Military Command School, uses physical cable connections to power and control the smaller drones.
This system enables a single aircraft to act as a mobile hub for multiple spy copters, increasing range and reducing power requirements. The carrier drone hovers above the area of interest, with the tethered copters fanning out from a single launch point. Each remote unit carries its own flight controller, gyroscopes, camera, and video transmitter, functioning almost as an independent aircraft.
The use of physical cable connections removes the need for onboard batteries or independent radio links, allowing for more efficient and longer-lasting surveillance missions. The design also increases the range of the drones, with range becoming a direct function of cable length rather than battery life or signal strength.
The implications of this technology are significant, with potential applications in military, law enforcement, and search and rescue operations. As drone technology continues to evolve, we can expect to see more innovative designs and capabilities emerge.
Sources
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