Cloaked Network Protocol for Anonymous Communication

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Solution Overview

Problem

Existing communication security technologies over-rely on encryption and point-to-point solutions, which fail to protect identity and geolocation exposure, data-in-transit discoverability, and malicious exploitation in untrusted networking environments.

Innovation Solution

A network protocol and transit system employing zero-trust nodes, onion routing-based bi-directional protocol with modular multi-layered encryption, evasive multi-pathing, and virtual rendezvous for person-to-person communications, utilizing randomized ephemeral virtual circuit generation and distributed data storage to ensure anonymous and secure communication.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Reliability

If encryption and point-to-point solutions are used, then communication security is improved, but identity and geolocation exposure remains vulnerable

Engineering Contradiction:
Improvecommunication securityVSAvoididentity exposure
Core Design Contradiction:
ReliabilityVSObject-affected harmful factors

Solution Approach 1:

The patent introduces intermediary nodes (relays, torrellas, rendezvous points) that mediate between communicating parties. These intermediaries forward traffic while obscuring the relationship between endpoints, preventing direct identity exposure. The intermediary infrastructure enables secure communication without requiring endpoints to be directly visible to each other or to observers.

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The patent adds spatial and topological dimensions to communication routing. Instead of direct point-to-point connections, traffic is routed through multiple dimensions of the network graph using onion routing and virtual circuits. This dimensional transformation makes it impossible to map communication paths back to endpoint identities or geolocations.

Inventive Principle:
Principle #17Another dimension (Dimensionality change)

2Loss of information

If conventional Tor implementation is used, then anonymous communication is achieved, but data-in-transit discoverability and disruption remains possible

Engineering Contradiction:
ImproveanonymityVSAvoiddata discoverability
Core Design Contradiction:
Loss of informationVSObject-affected harmful factors

Solution Approach 1:

The patent implements nested encryption layers in an onion routing fashion, where each relay decrypts only the outermost layer while inner layers remain encrypted. This nested structure ensures that no single relay can discover data contents or routing information beyond what is immediately necessary for traffic forwarding, preventing data-in-transit discoverability while maintaining anonymity.

Inventive Principle:
Principle #7Nested doll (Nesting)

Solution Approach 2:

The patent introduces dynamic circuit generation and ephemeral virtual circuits that are created and terminated frequently. Routes are not static but dynamically adjusted based on network conditions and security requirements. This dynamic behavior prevents pattern recognition and makes disruption more difficult, as there is no fixed infrastructure to target.

Inventive Principle:
Principle #15Dynamics

3Device complexity

If fixed routing paths are used, then network simplicity is maintained, but adaptability to untrusted environments is reduced

Engineering Contradiction:
Improverouting simplicityVSAvoidenvironment adaptability
Core Design Contradiction:
Device complexityVSAdaptability or versatility

Solution Approach 1:

The patent implements dynamic route selection and ephemeral virtual circuits that adapt to network conditions and trust assessments. Instead of fixed routing paths, the system dynamically generates routes through zero-trust nodes based on current network state, enabling adaptability to untrusted environments while maintaining operational simplicity through automated decision-making.

Inventive Principle:
Principle #15Dynamics

Solution Approach 2:

The patent changes routing parameters dynamically based on network conditions, node trust levels, and security requirements. Routing decisions are based on variable parameters such as node reliability scores, circuit freshness, and environmental context, allowing the system to adapt to different network conditions without manual configuration.

Inventive Principle:
Principle #35Parameter changes

4Reliability

If traditional VPN approaches are used, then secure encrypted communication is provided, but network-born attacks and malicious exploitation remains possible

Engineering Contradiction:
Improveencrypted communicationVSAvoidnetwork-born attacks
Core Design Contradiction:
ReliabilityVSObject-generated harmful factors

Solution Approach 1:

The patent introduces intermediary zero-trust nodes that act as security buffers between communicating parties and the network. These intermediaries perform mutual authentication, encrypt-then-sign operations, and traffic isolation, preventing network-born attacks by ensuring that even if intermediaries are compromised, endpoint security remains intact through layered authentication and encryption.

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The patent implements beforehand cushioning through pre-established cryptographic key pairs, authentication certificates, and security contexts that are set up before communication begins. Zero-trust nodes carry pre-configured security parameters and authentication mechanisms that provide a cushion against malicious exploitation, allowing rapid response to attacks without requiring real-time trust decisions.

Inventive Principle:
Principle #11Beforehand cushioning (Prior cushioning)

Data Source

PatentUS20220255903A1Secure network protocol and transit system to protect communications deliverability and attribution
Publication Date: 2022.08.11 QUANTUM NETWORK LLC
  • US20220255903A1 patent drawing
  • US20220255903A1 patent drawing
  • US20220255903A1 patent drawing

AI summary

A network protocol and transit system that together provide data tunneling designed for anonymous and hidden delivery. The approach protects communications deliverability and attribution for users on any device and in any location, irrespective of the underlying operating environment. The solution provides for a fully “cloaked network” comprising zero-trust nodes, an onion routing-based bi-directional protocol with modular multi-layered encryption, evasive multi-pathing that leverages randomized ephemeral virtual circuit generation, and virtual rendezvous for person-to-person communications. The approach may be implemented “as-a-service,” in a hybrid/bridged network, on-premises, or otherwise.