A deep space communication and global one object one code identification method and system based on proportional coding

CN122801959APending Publication Date: 2026-09-22ZHUHAI GONGZHENG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202610524635.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-20
Publication Date
2026-09-22

AI Technical Summary

Technical Problem

本发明克服现有编码体系依赖人工规则、空间时间基准不通用、深空环境抗干扰能力弱、无

Benefits of technology

[0012]1. 首次实现全宇宙通用一物一码,编码由物体自身结构天然生成,无需外部坐标、时间、编

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Abstract

The application discloses a kind of proportion coding-based deep space communication and global one object one code identification method and system, belong to deep space communication and target identification technical field.The application generates the universal one object one proportion code of the whole universe by extracting the three-layer original proportion of target space structure, life cycle, energy distribution, which is uniquely determined by the object itself;Deep space anti-jamming communication is realized by taking proportion relationship as information carrier, without earth coordinates, human time and external numbering library, target identification, identity authentication and information transmission can be completed.The application has the advantages of natural uniqueness, strong anti-interference, self-synchronization, universal in the universe, etc., and is suitable for deep space exploration, spacecraft networking, interstellar communication and global target identification scenarios.
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Description

Technical Field

[0001] This invention relates to the fields of deep space communication, target recognition, and information encoding technology, specifically to a method based on natural proportions and the yellow color. The golden ratio harmony principle enables a universally applicable proportional coding system, unique item identification, and deep space anti-jamming communication. Transmission methods and systems. Background Technology

[0002] Existing communication coding and identification systems are mostly based on manually defined numbers, characters, and binary protocols, relying on a unified Earth coordinate system. Human time references and fixed communication protocols are only suitable for near-Earth, limited-range scenarios, and have significant limitations in the extreme environments of deep space. Limitations: Traditional encoding is susceptible to interference and cannot be parsed if synchronization is lost; target identifiers rely on external identifiers and are not inherently unique. The time and space references are all human-defined, making it impossible to achieve universal target identification and information transmission across celestial bodies and the entire universe.

[0003] Currently, there is no technical solution that uses the proportions of an object's own structure, life cycle, or energy distribution as a natural coding basis. It is impossible to achieve a unique, universally applicable identifier that is independent of Earth coordinates and human calendars, and possesses high robustness. Empty communication. Summary of the Invention

[0004] Purpose of the invention This invention overcomes the shortcomings of existing coding systems, such as reliance on manual rules, lack of universal space-time references, weak anti-interference capability in deep space environments, and lack of... To address the shortcomings of methods that rely on naturally unique identifiers, this paper proposes a method for deep space communication and global one-item-one-code identification based on proportional coding. The system uses the object's own three-dimensional proportions as its natural encoding, achieving universal applicability across the entire universe, requiring no external benchmarks, exhibiting high anti-interference capabilities, and being self-sustaining. Synchronized target identification and information transmission. Technical solution

[0005] A method for deep space communication and global one-item-one-code identification based on proportional coding includes the following steps: 1. Acquisition of natural characteristic signals Non-contact scanning of any target (spacecraft, celestial body, equipment, signal carrier) to collect its spatial structure and morphology. Energy distribution characteristics and dynamic rhythm signals form the original feature dataset.

[0006] 2. Extraction of the three-layer origin ratio The target features are transformed into three sets of relative proportions, forming natural coding primitives: (1) Spatial structure proportions: the relative proportions of the whole and parts of the target, the main structure and the secondary structure, and the size and shape; (2) Life cycle proportion: The proportion of the target's progress from generation to stability and decline; (3) Energy distribution ratio: the relative ratio of energy concentration area and dissipation area, intensity distribution and rhythm fluctuation.

[0007] 3. Generation of a unique code for each item across the entire domain. Using the golden ratio of 0.618 as the encoding harmony anchor point, the above three-layer proportions are combined into a continuous proportional code. This code is uniquely determined by the target's own structure, independent of planetary coordinates, human time, and external numbering, achieving a universal scope. A unique natural identifier within the area.

[0008] 4. Proportional coding modulation and deep space transmission Communication information is loaded into a proportional coding sequence, using proportional relationships rather than absolute values ​​as the information carrier for deep space communication modulation. The transmitting end only needs to identify the proportional relationship to restore the information, achieving strong anti-interference, self-synchronization, and low-distortion transmission.

[0009] 5. Target recognition and decoding verification The receiver identifies the target by checking the proportional continuity and harmony, and determines the signal integrity and target status without prior confirmation. Establishing a numbering database enables full-domain target recognition and communication decoding.

[0010] A deep-space communication and global one-item-one-code identification system based on proportional coding, comprising: - Target feature acquisition module; - Three-layer source ratio extraction module; - Module for generating one-to-one proportional codes for all items across the entire domain; - Proportional coding modulation and transmission module; - Deep space receiving, decoding and verification module.

[0011] The system does not rely on Earth coordinates, universal time, or artificial numbering databases; it uses natural proportional laws as its sole basis to independently complete tasks across the entire universe. Universal Identifier and Communication. Beneficial effects

[0012] 1. For the first time, a universally applicable unique code for each object has been achieved. The code is naturally generated by the object's own structure, requiring no external coordinates, time, or other information. The system truly achieves universal compatibility across celestial bodies.

[0013] 2. Using proportional relationships as the information carrier, it does not rely on absolute values ​​and has extremely strong anti-interference capabilities, even with signal attenuation, noise interference, and partial... It can still be decoded correctly even if it is lost.

[0014] 3. The code is inherently unique, cannot be repeated, and cannot be forged, making it suitable for deep space target identification, spacecraft authentication, and deep space networking. Secure communication.

[0015] 4. No need for a synchronized clock or a preset protocol; it can self-synchronize and self-verify, greatly improving communication reliability in extreme deep-space environments.

[0016] 5. Adhering to the fundamental natural law that everything is proportional, it can be extended to any material and any target, possessing long-term versatility and technological sophistication. Forward-looking.

Claims

1. A method for deep space communication and global one-item-one-code identification based on proportional coding, characterized in that, Including the following steps: (1) Collect target spatial structure, energy distribution, and dynamic rhythmic characteristic signals; (2) Extract the three-layer fundamental proportion data of target space structure proportion, life cycle proportion, and energy distribution proportion; (3) Using the golden ratio 0.618 as the harmony anchor point, generate a universal one-to-one proportional code that is uniquely determined by the target itself; (4) Using proportional coding as an information carrier for deep space communication modulation, transmission and reception; (5) Target recognition, identity authentication and information decoding are achieved through proportional continuity and harmony verification.

2. The method according to claim 1, characterized in that, The unique proportional code for each object does not depend on planetary coordinates, human time, or external identification; it is determined solely by the object's own structural proportions and possesses uniqueness throughout the entire universe.

3. The method according to claim 1, characterized in that, Communication information is carried by proportional relationships rather than absolute values, and has the characteristics of strong anti-interference, self-synchronization and low distortion.

4. The method according to claim 1, characterized in that, The target status, signal integrity, and communication reliability are judged by the continuity of proportion, harmony, and deviation.

5. A deep-space communication and global one-item-one-code identification system based on proportional coding, characterized in that, It includes a target feature acquisition module, a three-layer ratio extraction module, a one-item-one-ratio code generation module, a ratio encoding communication module, and a receiving, decoding, and verification module.

6. The system according to claim 5, characterized in that, The system requires no external coordinates, time references, or numbering databases, and independently achieves target identification and deep space communication across the entire universe based on natural proportional laws.