CNH digital currency international top-level root domain name server system and method based on OVXDM overlapping multiplexing of future network / FN and FN / M virtual-real routing
By employing a distributed architecture, OVXDM overlapping multiplexing channels, and FN/M virtual-physical routing technology, a CNH digital currency international top-level root name server was constructed, solving the security and transmission efficiency problems of traditional systems and achieving an independent, controllable, secure, and efficient network service.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-03
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional root domain names and DNS systems have problems such as single point of failure risk, centralized management threatening national financial security, low network transmission efficiency, and service quality that cannot meet the requirements of financial business when supporting CNH digital currency international business.
By employing a distributed architecture, OVXDM overlapping multiplexing channel technology, and FN/M virtual-physical routing technology, combined with FN blockchain trust authentication, we construct an independent, controllable, secure, and efficient CNH digital currency international top-level root name server system to achieve decentralized, deterministic services and efficient transmission.
It achieves independent and controllable network security, improves network transmission efficiency by N times, provides end-to-end deterministic services, has fault self-healing capabilities, and supports deep integration with the CNH digital currency payment ecosystem.
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Abstract
Description
Technical Field
[0001] This invention relates to the fields of distributed network architecture, advanced communication routing technology, and digital currency infrastructure, and in particular to a CNH digital currency international top-level root name server system and method based on distributed future networks, OVXDM overlapping multiplexing channel technology, and FN / M virtual and real routing technology. Background Technology
[0002] With the globalization of digital currencies, the existing internet domain name system faces severe challenges in supporting the international business of CNH digital currency. Traditional root domain names and DNS systems suffer from single points of failure, and centralized root server management threatens national financial security. Underlying network transmission efficiency is low, and communication technologies based on orthogonal principles have limited spectrum utilization. Furthermore, the "best-effort" service model cannot meet the deterministic service quality requirements of financial businesses.
[0003] Distributed future network technology, OVXDM overlapping multiplexing channel technology and FN network technology provide technical support for solving the above problems, but there is currently a lack of a complete solution that systematically integrates and applies these technologies specifically for digital financial infrastructure. Summary of the Invention
[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide an independent, controllable, secure, efficient, reliable, and deterministic CNH digital currency international top-level root name server system and method, which solves the fundamental defects of traditional root name services and DNS systems in terms of network sovereignty, network security, transmission efficiency, and service quality.
[0005] 1. Technical solution.
[0006] This system adopts an integrated architecture design of "distributed architecture + OVXDM transmission + FN / M routing + FN blockchain trust".
[0007] 1.1 Distributed root name server clusters enable decentralized services.
[0008] 1.2 OVXDM overlapping multiplexing channel technology provides high-efficiency transmission capabilities.
[0009] 1.3 The FN / M virtual-physical circuit routing engine ensures deterministic network service quality.
[0010] 1.4. The FN Network Blockchain Trusted Authentication Center ensures the security and controllability of the named network space.
[0011] 2. Advantages of the present invention.
[0012] 2.1 Network and network sovereignty security: A fully autonomous and controllable distributed network architecture, free from external dependencies.
[0013] 2.2 High-efficiency network transmission: OVXDM channel technology improves spectral efficiency by N times.
[0014] 2.3 Reliable network service: FN / M virtual and physical circuit routing provides end-to-end deterministic network assurance.
[0015] 2.4 System resilience: The distributed architecture has the ability to self-heal from failures.
[0016] 2.5 Ecosystem Integration: Deeply integrate the CNH digital currency payment ecosystem. Attached Figure Description
[0017] Figure 1 The following is a schematic diagram of the overall system architecture, with the following descriptions: The system adopts a globally distributed deployment scheme: 1) Root service node: Root domain name nodes are deployed in major financial centers or necessary locations, with each node configured; 2) DNS server: Handles domain name resolution requests; 3) OVXDM transceiver unit: Supports overlapping and multiplexed communication; 4) Routing control module: Executes FN / M routing policies; 5) Blockchain client: Accesses the trusted authentication center; 6) Backbone network: Constructs an OVXDM overlapping and multiplexed core network, with key parameters: spectral efficiency ≥8bps / Hz, transmission latency ≤20ms (between nodes), availability: ≥99.99%; 7) FN blockchain system: Adopts a consortium blockchain architecture, deploying consensus nodes.
[0018] Figure 2 This diagram illustrates the working principle of an OVXDM overlapping multiplexing channel. The details are as follows: 1) Coding scheme: K=4 overlap factor, symbol period T, overlap interval approximately T / 4; 2) Modulation method: QPSK modulation, roll-off factor approximately 0.3; 3) Detection algorithm: MAP-based iterative detection, approximately 8 iterations; 4) Performance metrics: Bit error rate <10⁻ 8 (SNR=10dB), the spectral efficiency is about 3.2 times that of the traditional system, and the power efficiency is improved by about 5.5dB.
Claims
1. A CNH digital currency international top-level root name server system based on OVXDM overlapping multiplexing channel technology and FN / M virtual-physical circuit routing, characterized in that, include: 1.1 The global distributed root name server system cluster consists of multiple logical peer physical nodes deployed globally. They are interconnected through a distributed architecture future network protocol to form an authoritative root resolution service system for the "CNH" international top-level domain in the FN network. 1.2 The OVXDM overlapping multiplexing channel core technology network connects all root name server nodes and uses non-orthogonal overlapping multiplexing technology to achieve zero redundancy and high spectral efficiency data transmission; 1.3 FN / M Virtual-Real Circuit Routing Engine: Based on distributed network topology dynamic calculation, it establishes end-to-end deterministic virtual circuit paths; 1.4 FN Blockchain Trusted Authentication Center manages the ".CNH" domain namespace and records the mapping relationship between domain names and digital asset addresses.
2. The system as described in claim 1, characterized in that, The global distributed root name server system cluster adopts a decentralized architecture, with each node possessing complete resolution service capabilities. Data synchronization and load balancing are achieved through the OVXDM overlapping multiplexed channel core network.
3. The system as described in claim 1, characterized in that, The OVXDM overlapping multiplexing channel core network achieves linear growth in transmission capacity without adding forward error correction redundancy by controlling the overlap of symbols in the time and frequency domains, and uses an iterative detection algorithm to achieve near-zero bit error rate transmission.
4. The system as described in claim 1, characterized in that, The FN / M virtual and physical routing engine includes: 4.1 Strategy Decision Module: Generates routing strategies based on the characteristics of CNH digital currency business; 4.2 Path calculation module: Calculates the optimal path that meets the quality of service requirements based on the real-time network topology; 4.3 Resource reservation module: Reserves bandwidth and computing resources at path nodes; 4.4 Circuit Management Module: Establishes and maintains end-to-end virtual circuit connections.
5. The system as described in claim 1, characterized in that, The FN Blockchain Trusted Authentication Center adopts a consortium blockchain architecture and is jointly maintained by multiple trusted institutions. It uses smart contracts to automate the management of domain name registration, renewal, and transfer.
6. The system as described in claim 1, characterized in that, The OVXDM overlapping multiplexing channel core network and the FN / M virtual and real routing engine achieve integrated transmission and control through a collaborative optimization interface, establishing an enhanced transmission channel for high-security services.
7. A method for a CNH international digital currency root name server system based on any one of claims 1-6, characterized in that, Includes the following steps: 7.1 Domain registration on-chain steps: Complete the binding and registration of the domain name with the CNH digital currency address through a smart contract; 7.2 Distributed resolution steps: User requests are routed to the optimal root service node for authoritative resolution; 7.3 Blockchain authentication steps: The root service node queries the blockchain to obtain verified domain name resource records; 7.4 Virtual and physical route establishment steps: Dynamically establish end-to-end deterministic transmission paths according to business strategies; 7.
5. Safeguard Communication Steps: Critical business data is transmitted deterministically through virtual circuits.
8. The method as described in claim 7, characterized in that, The distributed resolution step employs a multi-path parallel probing mechanism, dynamically selecting service nodes based on OVXDM transmission quality assessment, resulting in extremely low resolution latency.
9. The method as described in claim 7, characterized in that, The virtual-physical circuit routing establishment step supports on-demand resource allocation and establishes virtual circuits with differentiated quality of service assurance based on transaction amount and business type.