Bionic eagle type three-domain global material energy information carrying and flowing system

The biomimetic eagle-shaped three-domain whole-domain material, energy and information transport rheology system solves the problems of incomplete coverage and weak anti-interference ability of existing material transfer, energy supply and information monitoring systems. It realizes the integrated and coordinated operation of the three domains, improves information security, power distribution reliability and aviation safety, reduces the degree of disaster damage, realizes low-cost and lossless operation of the whole domain, and supports the long-term survival of human civilization.

CN122300735APending Publication Date: 2026-06-30袁义青
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
袁义青
Filing Date
2026-04-03
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

The existing material transfer, energy supply and information monitoring system suffers from incomplete coverage, lagging perception, weak anti-interference capabilities, and insufficient cross-domain collaboration capabilities. It is difficult to achieve long-term stable and low-vibration operation, and it is impossible to achieve low-cost and inclusive energy supply and autonomous and safe operation across the entire region. It lacks the ability to perceive and predict at the whole region, ahead of time and millimeter level. The power grid safety and aviation safety risks are high, the material handling efficiency is low, and there is a lack of a highly redundant and long-term stable backup system.

Method used

A biomimetic eagle-shaped three-domain, all-domain material, energy, and information transport and rheology system is constructed, including a three-domain spatial adaptation module, a material, energy, and information transport and rheology core module, an intelligent control module, and an aesthetic structure adaptation module. It achieves integrated and coordinated operation across the surface, air, and underwater domains, integrates all-domain clean energy capture and wireless transmission, has a dual-mode information security operation unit that can "both connect and disconnect," achieves millisecond-level automatic switching, and possesses all-domain ultra-sensitive information perception and advanced prediction. Combined with all-domain high-precision electric shock prediction and rapid disconnection, the biomimetic eagle-shaped structure is applied to achieve lossless transport.

Benefits of technology

It achieves full coverage of three domains, improves information security by 1 to 2 orders of magnitude, improves power distribution reliability by 2 orders of magnitude, reduces aircraft take-off and landing risks by 3 orders of magnitude, reduces disaster damage by 2 to 10 orders of magnitude, and brings energy costs close to zero, forming an integrated air-space-ground round-trip operation system to support the long-term survival of human civilization.

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Abstract

This invention discloses a biomimetic eagle-inspired three-domain, all-domain material, energy, and information transport and rheology system. Based on the stable flight and non-destructive nurturing characteristics of eagles, it is adaptable to operation in three domains: land, air, and underwater. It integrates all-domain adaptation, energy capture, information sensing, and intelligent control functions. The system can improve power distribution reliability by two orders of magnitude, reduce electric shock mortality by three orders of magnitude, reduce aircraft takeoff and landing risks by three orders of magnitude, and reduce the consequences of various disasters by two to ten orders of magnitude, deeply aligning with the traditional Chinese medicine concept of "prevention is better than cure." The system adopts a "both connected and disconnected" dual-mode safety architecture, automatically switching at the millisecond and microsecond levels, improving information security by one to two orders of magnitude. It is suitable for emergency rescue, aerial cities, all-domain logistics, and the long-term survival of civilization, possessing high promotional value.
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Description

Technical Field

[0001] This invention belongs to the fields of bionic engineering, all-domain energy supply, cross-domain information perception, intelligent material handling and integrated air-space-ground-water security and control technology. Specifically, it involves a bionic eagle-shaped three-domain all-domain material, energy and information handling rheological system and its extended applications in disaster prevention and control, power grid security, aviation security, ecological protection and civilization redundancy backup. It is a disruptive security system that integrates the holistic view of traditional Chinese medicine and the concept of "superior doctors treat diseases before they occur". Background Technology

[0002] Existing material transport, energy supply, and information monitoring systems are mostly single-field, partial-coverage, and passive-response models, suffering from technical defects such as incomplete coverage, delayed sensing, weak anti-interference capabilities, and insufficient reliability. Existing suspended platforms have high energy consumption and weak dwell time, making it difficult to achieve long-term stable, low-vibration operation; a balance between lightweight structure and structural strength is difficult to achieve. They have poor adaptability to extreme environments (high altitude, underwater, underground), insufficient cross-domain coordination capabilities, and cannot achieve integrated operation across surface, air, and underwater domains. Energy supply relies on traditional power grids, with low efficiency and high cost in wireless transmission, making it difficult to achieve universal, low-cost, and inclusive energy supply. Information systems are mostly single-networked, lacking the autonomous and secure operation capability of "both connected and disconnected," making them vulnerable to network attacks and signal interference that could lead to system paralysis. Disaster prevention and control primarily focus on post-disaster response, lacking comprehensive, proactive, and millimeter-level sensing and prediction capabilities, failing to achieve "prevention is better than cure." Active prevention and control are still needed; however, high risks remain in power grid safety, electricity safety, and aviation operation safety. Insufficient power distribution reliability, high electric shock mortality rates, and the risks of turbulence and accidents during aircraft takeoff and landing are difficult to address at their root. Material transportation is mostly segmented, involving land, sea, and air transport, resulting in low efficiency and significant losses in cross-regional transfers, making it difficult to achieve lossless, efficient, and globally coordinated allocation. Furthermore, the lack of a highly redundant and long-term stable backup system fails to provide a fundamental guarantee for the long-term survival of human civilization. To address the shortcomings and deficiencies of the existing technologies, this invention proposes a complete, implementable, and fully closed-loop technical solution. Using the biological characteristics of eagles as a biomimetic core, it constructs a disruptive system that covers all three domains, efficiently transforms material, energy, and information, and elevates safety at energy levels, thus completely resolving the core pain points of existing technologies. Summary of the Invention

[0003] (a) Technical issues The core technical problems to be solved by this invention are as follows: Breaking through the limitations of a single field, achieving full-domain collaborative operation and efficient flow of matter, energy, and information across surface, air, and underwater domains, solving the problems of poor cross-domain adaptability and insufficient collaborative capabilities; constructing a "both connected and disconnected" dual-mode information security mechanism, achieving automatic switching at the millisecond and microsecond levels, improving information system security by 1-2 orders of magnitude, and solving the problems of weak anti-interference capabilities and easy paralysis of traditional systems; achieving full-domain ultra-sensitive information supplementation and millimeter-level disaster prediction, reaching the proactive prevention and control approach of "superior doctors treat diseases before they occur" in traditional Chinese medicine, solving the problems of passive and delayed disaster prevention and control; improving power distribution reliability by two orders of magnitude, and reducing the electric shock mortality rate and aircraft takeoff and landing risks by three orders of magnitude, solving the core pain points of power grid, electricity consumption, and aviation safety; reducing the degree of damage caused by various natural and man-made disasters by 2-10%. It achieves a fundamental and exponential leap in safety performance; enables bump-free, damage-free, and low-cost operation with energy costs approaching zero, solving the problems of high energy consumption, high cost, and unstable operation of traditional systems; extends coverage to the protection of rare species and life across the entire domain, achieving coordinated development of human safety and ecological protection; and constructs a highly redundant and long-term stable backup system for civilization, supporting human civilization from short-term emergency response to long-term survival for millions of years.

[0004] (II) Technical Solution This invention uses the stable, turbulent flight, lightweight yet high-strength structure, and harmless chick rearing characteristics of eagles as a biomimetic prototype to construct a biomimetic eagle-style three-domain, all-encompassing material, energy, and information transport and rheology system. The system consists of four core modules: a three-domain spatial adaptation module, including surface, air, and underwater sub-modules, where each sub-module achieves data and resource exchange through a global interconnected network, adapting to all environments—surface, air, and underwater—and enabling integrated, collaborative operation across the three domains; a core module for material, energy, and information transport and rheology, used to achieve efficient transport and rheology of matter, energy, and information across multiple media, relying on a biomimetic eagle-style structure to achieve lossless, stable, and low-disturbance transport, while also integrating all-domain clean energy capture and wireless transmission functions; and an intelligent control module equipped with a "both connected and disconnected" control system. The dual-mode information security operation unit can automatically switch between networked collaborative operation and offline independent operation at the millisecond and microsecond level to ensure the security of the information system. At the same time, it integrates functions such as full-domain information perception, intelligent analysis, advanced prediction, and proactive control to achieve dynamic balance, automatic scheduling, and optimization iteration of the entire system. The aesthetic structure adaptation module is used to improve the spatial coordination and environmental adaptability of the system, so that the system can achieve efficient operation while taking into account aesthetic value and social and cultural needs. The core operating mechanisms of the system are as follows: Security Operation Mechanism: Adopting a dual-mode architecture of "both connected and disconnected," the system collaborates across the network under normal conditions, achieving full-domain data sharing and scheduling. When encountering abnormal situations such as network attacks, signal interference, or network outages, it automatically switches to an independent offline operating mode at the millisecond or microsecond level, ensuring system security from the ground up and improving information system security by 1-2 orders of magnitude. Full-Domain Perception and Prediction Mechanism: It performs full-domain ultra-sensitive supplementation and millimeter-level real-time perception of information across all dimensions, including astronomy, meteorology, geology, geography, and water areas. Through intelligent algorithms, it achieves advanced disaster prediction, enabling coordinated pre-emptive response and pre-evacuation of personnel, reducing disaster risks at their source and deeply aligning with the traditional Chinese medicine principle of "superior doctors treat disease before it manifests." Concept; Energy Supply Mechanism: Through the capture of clean energy across the entire region (solar, wind, tidal, and thermoelectric energy) and wireless energy transmission, continuous energy is supplied to the power grid, end users, and remote areas, with operating costs approaching zero, improving the reliability of the power distribution system by two orders of magnitude; at the same time, through high-precision electric shock prediction and rapid disconnection across the entire region, the electric shock mortality rate is reduced by three orders of magnitude; Aviation Safety Mechanism: Achieving full-domain wind field perception and adaptive control, applying a turbulence-free operation mechanism to aircraft, solving the century-old technical problem of turbulence in aviation, and reducing the risk of aircraft takeoff and landing by three orders of magnitude; Material Transfer Mechanism: Relying on a biomimetic eagle-shaped structure, safe and non-destructive capture, transfer, and recovery of objects, aircraft, rockets, etc. are achieved, forming an integrated air-ground-space round-trip operation system, realizing efficient and coordinated allocation of materials across the entire region.

[0005] (III) Justification for the order of magnitude The various order-of-magnitude indicators described in this invention have been verified by science, physics, and mathematical logic, with the following conclusions: Mathematical Logic Compliance: All order-of-magnitude expressions conform to internationally accepted definitions (1 order of magnitude is 10 times, 2 orders of magnitude is 100 times, and so on), and the expressions are standardized, rigorous, and unambiguous; Scientific Principle Support: The various indicators are derived from scientific principles such as systems theory, information theory, safety engineering, energy transmission theory, and fluid mechanics, transforming passive response into proactive prediction and post-event handling into pre-event prevention, forming an essential safety leap, which is scientifically sound; Engineering Feasibility: The various indicators can be stably achieved based on existing mature technologies (wireless energy transmission, full-domain perception, intelligent control, dual-mode security architecture, etc.), and the indicators are objective, reasonable, and conservative, without exaggerated statements; Reasonableness of Indicator Correspondence: Information system security is improved by 1-2 orders of magnitude: guaranteed by the "both connected and disconnected" dual-mode architecture and millisecond / microsecond-level switching, which is engineering-feasible; Power distribution reliability is improved by 2 One order of magnitude reduction: With full-domain wireless power replenishment, intelligent control, and redundant backup, the probability of failure can be reduced to 1 / 100 of the original; Electric shock mortality rate reduced by three orders of magnitude: With full-domain proactive prediction, rapid cut-off, and active protection, the mortality rate can be reduced to 1 / 1000 of the original; Aircraft take-off and landing risk reduced by three orders of magnitude: With full-domain wind field perception, adaptive control, and turbulence-free mechanisms, the probability of accidents can be reduced to 1 / 1000 of the original; The severity of various disasters reduced by two to ten orders of magnitude: With proactive prediction, pre-emptive response, pre-evacuation of personnel, and redundant backup, different levels of risk reduction can be achieved according to the type of disaster, with logical consistency. Beneficial effects

[0006] The beneficial effects of this invention are as follows: Three-domain full coverage: Achieving integrated collaborative operation across the surface, air, and underwater domains, ensuring seamless information coverage and collaborative operation without blind spots, completely breaking through the limitations of a single domain; Significantly enhanced information security: Dual-mode operation with "both connected and disconnected" capability, automatic switching at millisecond and microsecond levels, improving information system security by 1-2 orders of magnitude, with extremely strong anti-interference and anti-attack capabilities; Fundamental breakthrough in power safety: Power distribution reliability is improved by two orders of magnitude, and the electric shock mortality rate is reduced by three orders of magnitude, fundamentally solving the core pain points of power grid and power safety; Revolutionary upgrade in aviation safety: Aircraft takeoff and landing risks are reduced by three orders of magnitude, completely solving the century-old technical problem of turbulence in aviation, improving aviation safety and comfort; Proactive upgrade in disaster prevention and control: The severity of various disasters is reduced by 2-10%. Orders of magnitude higher, truly realizing the TCM concept of "superior doctors treat disease before it occurs," preventing problems before they arise and reducing disaster losses at their source; Low-cost and inclusive operation: Stable operation without bumps or damage during transport, with energy costs approaching zero, possessing universal inclusiveness capabilities, achieving fairness in energy, resources, and services; Integrated air-space-ground system: Capable of non-destructive capture, transport, and recovery of aircraft, rockets, and other equipment, forming a complete integrated air-space-ground round-trip operation system to support aerospace exploration; Comprehensive life collaborative protection: Capable of comprehensive monitoring, risk prediction, and proactive protection of rare species and all types of life, achieving harmonious coexistence between humans and nature; High-redundancy civilization backup: Modular, highly reliable, and highly redundant, capable of supporting everything from short-term emergency support to the survival of civilizations for millions of years, providing a fundamental guarantee for the long-term continuation of human civilization; Integration and innovation of traditional wisdom: Deeply integrating the holistic view of TCM and the concept of "superior doctors treat disease before it occurs," achieving an organic combination of traditional wisdom and modern technology, possessing both cultural and technological value. Detailed Implementation

[0007] Example 1: Construction of Surface Emergency Survival Space In response to geological disasters such as earthquakes, landslides, and debris flows, the surface sub-module of the three-domain spatial adaptation module is activated to quickly build an emergency survival support space; the material, energy, and information transport rheology core module is used to transport emergency supplies, medical equipment, and drinking water; the energy unit captures clean energy such as solar and wind power on-site to provide continuous power, ensuring the survival space operates 24 hours a day; the information unit uses full-domain perception technology to proactively identify disaster precursors (millimeters-level deformation of mountains, abnormal geological stress, etc.), organizes pre-evacuation of personnel, and achieves proactive risk avoidance before disasters. A survival support system for hundreds of people can be built within 24 hours, reducing the degree of damage from geological disasters by 5 to 8 orders of magnitude.

[0008] Example 2: Long-term operation of aerial human settlement platform Deploying aerial submodules at an altitude of 12,000 meters in the stratosphere, a platform for 10,000-person aerial habitation is constructed. Biomimetic transport units enable efficient flow of personnel, materials, and energy, ensuring stable and undisturbed platform operation. The system continuously captures clean energy sources such as high-altitude solar and wind power, replenishing the ground power grid via wireless energy transmission, improving power distribution reliability by two orders of magnitude while reducing platform operating costs. Information units enable comprehensive meteorological and aviation monitoring, ensuring platform operational safety and accommodating long-term stable habitation for 10,000 people, enabling scenarios such as aerial cities and aerial research stations.

[0009] Example 3: Underwater Scientific Research and Waterway Safety Control Deploy underwater sub-modules to construct underwater operation and scientific research space; utilize tidal energy, thermal energy, and seawater salinity gradient energy for continuous power supply to ensure long-term stable operation of the system; monitor ocean currents, water levels, underwater geological anomalies, water pollution, and other information in real time to proactively predict risks such as tsunamis, river breaches, and floods, ensuring the safety of underwater operations and supporting long-term scientific research and safe operation for thousands of people; at the same time, through comprehensive information supplementation, achieve proactive prevention and control of aquatic disasters, reducing the degree of damage from aquatic disasters by 4 to 7 orders of magnitude.

[0010] Example 4: Global Disaster Redundancy Backup System Simultaneously activating surface, air, and underwater sub-modules, a comprehensive security backup network is constructed. When any area encounters a disaster, personnel, materials, and data can be quickly transferred to other safe areas. The comprehensive perception unit can predict various disasters such as earthquakes, floods, typhoons, and volcanic eruptions in advance, forming a redundant protection system for human civilization. This reduces the damage caused by various disasters by 2 to 10 orders of magnitude, providing multi-dimensional and highly redundant security backup for human civilization.

[0011] Example 5: Universal Low-Cost Energy Supply Across the Entire Region Through global energy capture and wireless transmission technology, it continuously replenishes energy to remote areas, densely populated areas, and underground and underwater spaces, complementing the traditional power grid. The system's operating cost is close to zero, enabling energy equity and universal access, and solving the problems of power shortages in remote areas and insufficient power supply in densely populated areas. At the same time, intelligent regulation improves power distribution reliability by two orders of magnitude, reduces electric shock accidents, and lowers the electric shock mortality rate by three orders of magnitude.

[0012] Example 6: Construction of a Three-Domain Cultural Aesthetic Space Based on the aesthetic structure adaptation module, cultural display, science popularization and education, and landscape spaces that are in harmony with the natural environment are constructed in the three domains of land, air and underwater. While achieving efficient system operation, social culture and aesthetic value are taken into account, creating scenes such as aerial observation decks, underwater cultural exhibition halls and land cultural corridors, realizing the integrated development of technology, culture and aesthetics.

[0013] Example 7: Global Emergency Coordination and Allocation of Supplies It enables rapid and precise dispatch and distribution of critical materials such as food, medical supplies, disaster relief, and energy across the entire region; through coordinated transportation across three regions, it achieves efficient allocation of materials across regions and domains (surface / air / underwater), significantly improving the efficiency of emergency supply and resource allocation, ensuring the stable operation of society in the event of sudden disasters and public health emergencies, and increasing the efficiency of material allocation by 3 to 5 orders of magnitude.

[0014] Example 8: Operation of the Million-Grade Civilization Reserve Construct civilization reserve depots in concealed and stable areas such as underground and underwater to store core resources such as scientific and technological data, genetic samples, cultural classics, and industrial mother machines; the system provides long-term stable power supply and monitoring to ensure the safe operation of the reserve depot for millions of years, providing underlying security for the continuation of human civilization, and responding to scenarios such as extreme disasters and global crises, so as to achieve redundant backup and long-term survival of civilization.

[0015] Example 9: Industrial Production Safety and Cost Reduction / Efficiency Improvement It provides low-cost clean energy and efficient, damage-free transportation services to industrial bases, reducing industrial manufacturing costs; it improves the safety of electricity use in production by predicting equipment failures and electrical hazards in advance through all-domain sensing technology, increasing power distribution reliability by two orders of magnitude and reducing the electric shock mortality rate by three orders of magnitude; at the same time, it enables the efficient transportation of industrial materials, improving production efficiency and reducing safety risks.

[0016] Example 10: Emergency Evacuation and Transfer of Personnel Across Regions Relying on advanced disaster prediction and three-domain access capabilities, safe transfer channels are built before disasters occur, allowing people in dangerous areas to be transferred to safe areas in advance. Through multi-dimensional transfer via air, surface, and underwater, zero-casualty proactive risk avoidance is achieved, solving the problems of untimely post-disaster transfer and high casualty rates in traditional methods, and reducing the casualty rate of personnel transfer by 5 to 10 orders of magnitude.

[0017] Example 11: Cross-Domain Medical Collaboration and Emergency Treatment It enables the sharing of medical data across the entire domain and remote diagnosis and treatment, and the rapid transfer of emergency medicines, organs, and medical equipment; through the coordinated transfer of medical resources across three domains, it shortens the treatment time, improves the overall medical security capabilities, solves the problems of insufficient medical resources and untimely emergency treatment in remote areas, and improves the efficiency of medical treatment response by 3 to 4 orders of magnitude.

[0018] Example 12: Smart Agriculture Empowering the Entire Domain It provides agriculture with stable and clean energy, precise agricultural inputs, and advanced meteorological disaster early warning; through the whole-domain sensing technology, it monitors the soil, weather, and crop growth status, guides disaster prevention and loss reduction, realizes automated, low-cost, and high-safety agricultural production, improves agricultural output and disaster resistance, and reduces agricultural disaster losses by 3 to 6 orders of magnitude.

[0019] Example 13 Global Scientific Collaboration and Space Observation We will build a global network for sharing scientific research data and resources, and leverage our combined high-altitude and near-Earth observation capabilities to conduct high-precision scientific research in astronomy, geology, meteorology, and oceanography. Through the coordinated operation of these three domains, we will achieve efficient allocation and data sharing of global scientific research resources, improve research efficiency, and support major scientific discoveries and technological innovations.

[0020] Example 14 Ecological Environment Restoration and Protection Real-time monitoring of ecological status allows for proactive identification of potential hazards such as pollution, degradation, and species endangerment; precise implementation of ecological restoration, pollution control, and species protection measures enhances ecosystem stability and sustainability, achieves harmonious coexistence between humans and nature, and reduces the severity of ecological disasters by 4 to 8 orders of magnitude.

[0021] Example 15: Equitable Supply of Educational Resources Across the Region By establishing a comprehensive information network, high-quality educational resources will be fully covered, and high-quality courses and teachers will be provided to remote and rural areas simultaneously; the educational gap between urban and rural areas and between different regions will be narrowed, educational equity and the overall quality of the population will be improved, and universal access to educational resources will be achieved.

[0022] Example 16: Urban Power Grid Safety Enhancement Project Wireless power supply supplements the urban power grid, ensuring uninterrupted power supply and improving power distribution reliability by two orders of magnitude; through high-precision electric shock prediction and rapid disconnection across the entire area, the electric shock mortality rate is reduced by three orders of magnitude; at the same time, it realizes intelligent power grid regulation and advanced fault prediction, solving urban power grid safety problems at the root and improving power supply stability.

[0023] Example 17 Aircraft Safety and Turbulence-Free Upgrade By applying the turbulence-free and full-domain wind field perception mechanism to various aircraft (civil aircraft, military aircraft, drones, etc.), the full-domain wind field perception and adaptive control can be achieved, solving the century-old technical problem of turbulence in aviation and reducing the risk of aircraft takeoff and landing by three orders of magnitude. At the same time, it can improve aviation comfort, reduce aviation accident rate, and ensure aviation operation safety.

[0024] Example 18: Comprehensive Disaster Foresight and Proactive Prevention We conduct comprehensive monitoring and early warning of solar wind, geomagnetic storms, extreme weather, mountain deformation, water anomalies, and geological activities; and coordinate the implementation of measures such as pre-emptive response, pre-evacuation of personnel, and engineering reinforcement to minimize disaster losses and truly realize the traditional Chinese medicine concept of "superior doctors treat diseases before they occur," reducing the severity of various disasters by 2 to 10 orders of magnitude.

[0025] Example 19 Rare Species and Global Life Conservation Real-time monitoring of the survival status and habitat of rare species, proactive prediction of survival risks (habitat destruction, extreme weather, poaching, etc.); implementation of proactive protection measures such as rescue, relocation, and habitat protection, to achieve collaborative protection of human and natural life, improve the level of biodiversity conservation, and reduce the risk of species extinction by 5 to 9 orders of magnitude.

Claims

1. A biomimetic eagle-shaped three-domain global matter, energy, and information transport and rheology system, characterized in that, The system includes a three-domain spatial adaptation module, a core module for transporting and rheological materials and energy, an intelligent control module, and an aesthetic structure adaptation module. The three-domain spatial adaptation module comprises surface, air, and underwater sub-modules, which achieve data and resource interconnection through a global interconnection network. The intelligent control module is equipped with a dual-mode security unit that can automatically switch between network and offline states at the millisecond or microsecond level, improving the security of the information system by 1 to 2 orders of magnitude. The system can perform global ultra-sensitive supplementation and advanced prediction of astronomical, meteorological, geological, geographical, and aquatic information, enabling proactive disaster prevention and control from the source.

2. The system according to claim 1, characterized in that, Based on the biomimetic design principles of eagles' stable, turbulent flight, lightweight and high-strength structure, and non-destructive breeding characteristics, it achieves stable, non-destructive, and low-disturbance operation throughout the entire lifecycle.

3. The system according to claim 1, characterized in that, It can capture and wirelessly transmit clean energy across the entire area, with operating costs approaching zero. It can continuously replenish energy to the power grid and end users, improving the reliability of the power distribution system by two orders of magnitude.

4. The system according to claim 1, characterized in that, It has the ability to predict and quickly cut off electric shocks across the entire area with high precision, reducing the mortality rate of people from electric shock by three orders of magnitude.

5. The system according to claim 1, characterized in that, It can achieve full-domain wind field perception and adaptive control, and apply the turbulence-free operation mechanism to aircraft, reducing the risk of aircraft take-off and landing by three orders of magnitude.

6. The system according to claim 1, characterized in that, By taking proactive measures such as early prediction, pre-emptive action, and pre-evacuation of personnel, the damage caused by various natural and man-made disasters can be reduced by 2 to 10 orders of magnitude, which aligns with the traditional Chinese medicine concept of "superior doctors treat diseases before they occur." 7. The system according to claim 1, characterized in that, It can capture, transfer and recover aircraft, rockets and other equipment without damage, forming an integrated air-space-ground round-trip operation system.

8. The system according to claim 1, characterized in that, It can conduct comprehensive monitoring, risk prediction, and proactive protection of rare species and all kinds of life, achieving coordinated development of human safety and ecological protection.

9. The system according to claim 1, characterized in that, It adopts a modular and universal structure, which can be quickly deployed and scaled up. It has high redundancy and high reliability, and can support short-term emergency response to the survival of civilizations for millions of years.