Aug 2026· SAE technical paper series· Vol 1· 0 citations· 10 references
Abstract
To enhance China’s disaster and accident emergency response capabilities and strengthen the digital battlefield system for emergency rescue, an integrated multi-payload unmanned aerial surveillance and communication support system has been developed for extreme weather conditions and ‘triple-disconnection’ disaster scenarios. This paper sets out to address the limitations of traditional emergency drones, including poor environmental adaptability, weak payload capacity, and operational inconvenience. The system’s resistance to wind and rain has been significantly enhanced through the optimization of its airframe design. The innovative design incorporates dual-station symmetric conjugate antennas with planar blind-spot coverage systems, integrating public and self-organizing network base stations to achieve three-dimensional signal coverage and heterogeneous network integration. This enhances ground cellular network resilience. Multi-functional reconnaissance payloads are integrated and compatible with day/night and smoke/rain scenarios, thus overcoming the limitations of single-source visual information perception. The system employs zero-length deployment and parachute recovery methods, thereby facilitating rapid deployment and terrain-independent take-off and landing capabilities. The simulation results obtained demonstrate excellent aerodynamic performance, thus permitting safe operation in wind conditions up to Force 8. The antenna system under discussion is innovative in nature and has been developed to achieve 360° three-dimensional signal coverage. The primary function of this system is to ensure sustained communication link integrity. The field trials further corroborate the aircraft’s stable low-altitude cruising capability in Force 8 winds, thereby averting congestion in constrained rescue airspace. The dual-base station design, incorporating symmetric conjugate antennas and blind-spot compensation antennas, has been demonstrated to reliably restore public ground network signals within a 6.7-kilometre radius. The development of this unmanned aerial patrol system addresses a significant gap in low-altitude rescue capabilities for intelligent unmanned equipment in harsh environments. It underpins the integrated emergency command and operations system for intelligence, command, and execution, as well as the integrated emergency communication support system spanning the air, land, and sea domains. This advancement has been demonstrated to enhance disaster response efficiency and auxiliary decision-making effectiveness under extreme conditions.
Fire and water disasters impose critical constraints on search-and-rescue (SAR) operations through rapidly evolving hazards, degraded visibility, and narrow intervention windows. Conventional SAR operations that rely on human operators and single-UAV approaches have limited scalability under such conditions. To address...
A STAR-RIS-assisted UAV emergency rescue network is developed and the method jointly controls UAV deployment, RIS phase shifts, and communication-sensing power allocation under time-varying obstruction, demonstrating robust integrated communication and sensing performance while maintaining competitive energy efficiency...
With the complexity of chemical warfare threats and the diversification of battlefield environments, traditional toxic agent detection methods are facing bottlenecks such as response delays, coverage blind spots, and personnel safety risks. This research focuses on the application of unmanned aerial vehicle (UAV) carri...
Ting Liang, Hao Wen, Yelin Qi et al.· SAE technical paper series· 0 citations
. Traditional communication infrastructures are highly susceptible to disruption during disasters, leading to severe communication breakdowns in emergency response operations. Low-Power Wide-Area Networks (LPWANs), particularly LoRaWAN, therefore emerged as a promising alternative due to their long-range connectivity,...
Wen-Bo Zhang· Proceedings of the 3rd Inter...· 0 citations
Natural disasters require swift, coordinated responses to minimise human casualties and infrastructure damage. This paper presents a novel AI-assisted drone system designed to enhance disaster relief efforts through advanced human detection and a distributed emergency Wi-Fi network. This drone system, equipped with sta...
Menakadevi Nanjundan, Y. A. Ajay Kumar, V. R. Seshagiri Rao et al.· International Journal of Inf...· 0 citations
Abstract. In recent years, the increasing frequency of natural disasters in remote and rugged areas has underscored the importance of unmanned aerial vehicles (UAVs) for rapid emergency response. This paper presents a novel approach for optimizing the placement of UAV docking stations in mountainous terrain for emergen...
Yi-Lang Lin, Zhi-Yong Wang, Yong-Jie Lin et al.· The International Archives o...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.