n recent years, global climate change has led to frequent extreme weather events. Especially in summer, natural disasters such as floods and typhoons are increasing, posing a huge threat to human lives and property.
Traditional emergency rescue methods often struggle to provide effective support in the face of complex and variable underwater environments, failing to deliver timely assistance. Particularly in underwater search and rescue, the particularity and complexity of the underwater environment make it difficult to guarantee the efficiency and safety of manual rescue. Therefore, improving the technical level of emergency rescue and introducing advanced underwater intelligent equipment have become an urgent demand of the industry.
Chasing Innovation’s self-developed and self-produced Submersible Shark P-series underwater drones, with their portability, ease of use and reliability, have demonstrated great application value in emergency rescue. Their powerful underwater detection, positioning and real-time monitoring capabilities can significantly improve the efficiency and safety of rescue operations. Especially in severe weather and complex water environments, underwater drones can brave hardships and dangers to quickly and accurately search for and locate targets, providing valuable information support for subsequent rescue efforts. In addition, the Submersible Shark P-series underwater drones are easy to operate and highly portable, allowing rapid deployment to disaster sites and seizing precious time for emergency rescue.
"Emergency Mission 2024 · Joint Rescue Exercise"
In the "Emergency Mission · 2024" joint rescue exercise for super typhoon prevention and catastrophic flood disasters, Chasing Innovation provided the industrial-grade Submersible Shark P200 PRO underwater drone, Chasing’s screen-equipped waterproof remote controller and Chasing’s shore-based power supply system. With high performance, ease of operation and portability, Chasing Innovation’s equipment successfully completed various exercise tasks in complex and changing environments. The Submersible Shark P200 PRO boasts strong underwater detection and positioning capabilities, enabling precise target search even in turbid waters. The screen-equipped waterproof remote controller allows rescuers to view underwater conditions in real time during operation, ensuring accurate and error-free control. The shore-based power supply system provides strong power support, ensuring the equipment’s continuous operation capability during long-term rescue missions. The outstanding performance of these devices has been fully affirmed and highly praised by leaders of the State Council and all sectors of society.
A Rescue Tool in the Huangyan Hiker Drowning Incident
In the Huangyan hiker drowning incident, the Submersible Shark P100 underwater drone once again demonstrated its excellent rescue capabilities. The rescue team faced complex natural environments and dangerous terrain, making manual rescue extremely difficult. During the search for the drowned hiker, the underwater drone quickly reached the dangerous area and rapidly determined the location of the drowned hiker through its high-definition camera, providing valuable information for subsequent manual rescue. This not only improved rescue efficiency but also greatly reduced risks to rescuers.
A Trusted Assistant of the Blue Sky Rescue Team
As a well-known civilian rescue organization in China, the Blue Sky Rescue Team has been committed to enhancing its rescue capabilities. In recent years, it has actively introduced underwater intelligent drones for team training and rescue missions. The outstanding performance of Chasing Innovation’s underwater drones in rescue tasks has cleared obstacles for search and rescue, gained time for saving lives and provided guarantees for reducing hidden dangers. Through professional training, Blue Sky Rescue team members can proficiently operate underwater drones, enabling more efficient search and rescue operations in practical missions.
A Pioneer in the Smart Water Rescue Platform Solution
As a pioneer in the field of underwater intelligent rescue, Chasing Innovation has not only launched a single type of product—the underwater drone—but also established the "Chasing Innovation Underwater Intelligent Rescue Team" relying on the China Diving & Salvage Contractors Association, and built the "Smart Water Rescue Platform Solution". This solution integrates an integrated management platform, a communication command system, a water rescue subsystem and an underwater target search system, with advantages of rapid deployment, real-time visual search and diverse rescue technologies. The application of the platform conforms to the current trend of intelligent transformation and development, meets the development requirements of new productive forces for underwater emergency rescue, and effectively improves the ability to respond to sudden underwater accidents.
The smart water rescue platform can be rapidly deployed after an accident. Through the coordinated operation of underwater drones and other intelligent equipment, it minimizes losses caused by accidents or disasters and safeguards people’s lives. The platform’s integrated management capabilities and efficient command and dispatch system provide solid technical support for emergency rescue.
The wide application of Chasing Innovation’s underwater drones in emergency rescue demonstrates Chasing Innovation’s leading position in the field of underwater intelligent equipment. This is not only an inevitable trend in the development of emergency rescue technology but also a key measure to improve rescue efficiency and ensure the safety of rescuers.
In the future, with the continuous advancement of Chasing Innovation’s underwater technology and the expansion of application scenarios, we believe that underwater drones will play an important role in more fields, protecting human lives and property. At the same time, we look forward to working hand in hand with more partners to jointly promote the development of the underwater intelligent rescue field.

