Lume‑Omni: Deterministic Autonomous Infrastructure Governance for Consumer and Edge Ecosystems

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Auteur principal: Andrews, Ronald Jason
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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_version_ 1866901718316351488
author Andrews, Ronald Jason
author_facet Andrews, Ronald Jason
contents <p>The Deterministic Autonomous Infrastructure Governance System (DAIGS) architecture was originally designed to govern massive, safety‑critical industrial environments—from nuclear fusion reactors to uncrewed aerospace platforms. However, the rapid proliferation of consumer‑facing Large Language Models (LLMs) and local agentic ecosystems introduces a structurally different class of adversarial threats: prompt injection, toxic content generation, unauthorized data exfiltration, and hallucination‑driven corruption of Personally Identifiable Information (PII). I present <strong>Lume‑Omni</strong>, a consumer and edge‑focused adaptation of the DAIGS architecture that proves deterministic governance invariants can be mathematically and efficiently enforced within browser sandboxes, WebAssembly (WASM) modules, and constrained mobile endpoints. By framing the consumer application state—including DOM boundaries, prompt envelopes, and data‑access layers—as a bounded control surface governed by Lume’s deterministic engine, I establish mathematically provable immunity against prompt‑driven exploitation. The architecture introduces six consumer‑specific state layers, eleven deterministic invariants, edge‑executed Ed25519 runtime certificates, PII exfiltration envelopes, and faceted personality synchronization that safely bridges micro‑consumer instances to the broader macroeconomic Trust Layer graph. Lume‑Omni bridges the mathematical rigor of industrial cyber‑physical safety with the high‑throughput, low‑latency requirements of everyday web interaction, proving that deterministic governance is not merely an industrial luxury but a mathematical necessity for the consumer internet.</p>
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spellingShingle Lume‑Omni: Deterministic Autonomous Infrastructure Governance for Consumer and Edge Ecosystems
Andrews, Ronald Jason
Consumer AI
Prompt Injection
Edge Computing
Trust Layer
DAIGS
WebAssembly
Deterministic Verification
PII Protection
Synthetic Organisms
Browser Safety
Adversarial AI
<p>The Deterministic Autonomous Infrastructure Governance System (DAIGS) architecture was originally designed to govern massive, safety‑critical industrial environments—from nuclear fusion reactors to uncrewed aerospace platforms. However, the rapid proliferation of consumer‑facing Large Language Models (LLMs) and local agentic ecosystems introduces a structurally different class of adversarial threats: prompt injection, toxic content generation, unauthorized data exfiltration, and hallucination‑driven corruption of Personally Identifiable Information (PII). I present <strong>Lume‑Omni</strong>, a consumer and edge‑focused adaptation of the DAIGS architecture that proves deterministic governance invariants can be mathematically and efficiently enforced within browser sandboxes, WebAssembly (WASM) modules, and constrained mobile endpoints. By framing the consumer application state—including DOM boundaries, prompt envelopes, and data‑access layers—as a bounded control surface governed by Lume’s deterministic engine, I establish mathematically provable immunity against prompt‑driven exploitation. The architecture introduces six consumer‑specific state layers, eleven deterministic invariants, edge‑executed Ed25519 runtime certificates, PII exfiltration envelopes, and faceted personality synchronization that safely bridges micro‑consumer instances to the broader macroeconomic Trust Layer graph. Lume‑Omni bridges the mathematical rigor of industrial cyber‑physical safety with the high‑throughput, low‑latency requirements of everyday web interaction, proving that deterministic governance is not merely an industrial luxury but a mathematical necessity for the consumer internet.</p>
title Lume‑Omni: Deterministic Autonomous Infrastructure Governance for Consumer and Edge Ecosystems
topic Consumer AI
Prompt Injection
Edge Computing
Trust Layer
DAIGS
WebAssembly
Deterministic Verification
PII Protection
Synthetic Organisms
Browser Safety
Adversarial AI
url https://doi.org/10.5281/zenodo.19557371