Technical Publications Library

Research, Architectures, Specifications, and Technical Work

The Sustainable Future Tech Technical Publications Library brings together public research across runtime governance, secure AI, autonomous systems, hybrid quantum computing, interpretability, energy systems, sustainability, and technology policy. It is designed as a human-readable path into the work: what each publication addresses, who it is for, how it relates to an SFT program, and where the formal publication record can be found.

Technical
Research
Runtime Governance
Secure AI
Quantum & Hybrid AI
Energy & Sustainability
Interpretability
Standards & Policy
About the Library

Find the Work by Problem, Not Just by Citation

Technical publication catalogs can quickly become lists of titles and identifiers that are useful for citation but difficult to navigate. This library is organized around the research questions and programs behind the publications.

Individual records identify the publication format, subject, intended audience, status, and a direct route to the public artifact where one is available.

Formal DOI records, version history, superseded editions, licenses, and citation metadata belong in the separate DOI & Research Archive.

Research

Papers and reports that investigate technical, architectural, governance, security, or systems questions.

Architecture

Reference architectures and engineering models that organize responsibilities, components, flows, interfaces, and constraints.

Specifications

Versioned requirements and formal technical artifacts intended to support implementation, evaluation, or conformance.

Public Contributions

Technical responses, policy contributions, and other public work connecting SFT research with broader standards and governance discussions.

Runtime Governance Engineering

Runtime Governance, Execution Semantics & AGCP

This publication family establishes the technical foundations of Runtime Governance Engineering, including Runtime Governance Architecture, deterministic execution-layer governance, formal safety invariants, governance state, execution-bound authorization, AGCP, and implementation-oriented requirements.

2026

Runtime Execution Governance for AI Systems: A Cross-Platform Synthesis and Architectural Framework

A cross-platform architectural treatment of execution governance for AI systems, positioning runtime governance as a distinct engineering concern between governance intent and consequential system action.

Technical Report Published Architects
Author: John M. Willis
Publisher: Sustainable Future Tech, Inc.
DOI: 10.5281/zenodo.19341177
2026

Runtime Governance Architecture: Consistent Governance Execution for Enterprise Systems and Autonomous Agents

Defines the general architectural model for preserving governance semantics as systems move from proposed action through authorization, mediation, execution, and evidence.

Architecture Published Enterprise & AI Architects
Author: John M. Willis
Publisher: Sustainable Future Tech, Inc.
DOI: 10.5281/zenodo.19286845
2026

AGCP: A Deterministic Execution-Layer Governance Control Plane for Autonomous and Programmatic Systems

Introduces AGCP as an execution-layer governance control plane for mediating consequential actions under explicit, machine-evaluable governance constraints.

Technical Report Published AI & Platform Engineers
Author: John M. Willis
Publisher: Sustainable Future Tech, Inc.
DOI: 10.5281/zenodo.19323672
March 2026

Formal Execution Semantics and Safety Invariants for Governance Control Planes in Autonomous Systems

Formalizes execution semantics and governance invariants intended to remain true across consequential autonomous execution.

Technical Report Published Researchers & Architects
Author: John M. Willis
Date: March 25, 2026
DOI: 10.5281/zenodo.19241732
May 2026

AGCP Operating Model and Semantic Architecture

Develops AGCP proposal schemas, governance context, canonical state, and commit-bound execution semantics for autonomous systems.

Technical Report v0.9 Public Review Draft Implementers
Author: John M. Willis
Date: May 21, 2026
DOI: 10.5281/zenodo.20330062
2026

AI Runtime Governance: Vocabulary–Walkthrough Style

A terminology-oriented walkthrough designed to make the language and operating concepts of runtime governance more accessible across technical and governance audiences.

Reference Guide Version 1.3 Cross-Functional
Author: John M. Willis
Version: 1.3
DOI: 10.5281/zenodo.19545394
2026

The Historical Lineage of Runtime Governance Terminology

A reference guide tracing terminology relevant to AI governance control planes and execution-governance architectures.

Reference Guide Version 1.0 Researchers
Author: John M. Willis
Version: 1.0
DOI: 10.5281/zenodo.20448734
2026

Operationalizing Secure-by-Design AI Through Deterministic Runtime Governance

Connects secure-by-design principles with deterministic runtime-governance mechanisms for AI-enabled and autonomous systems.

Technical Report Version 1.0 Security & AI Architects
Author: John M. Willis
Publisher: Sustainable Future Tech, Inc.
DOI: 10.5281/zenodo.20749457
2026

Artificial Intelligence Governance Control Plane (AGCP) Specification

The versioned AGCP technical specification defining the requirements and technical model used to describe execution-layer runtime-governance capability.

Technical Specification Version 1.0.0 Implementers & Assessors
Author: John M. Willis
Publisher: Sustainable Future Tech, Inc.
DOI: 10.5281/zenodo.20297616
Secure Enterprise AI Estates

Secure AI & Multi-Agent Governance

Research in this area examines how enterprise AI environments can coordinate governance, cybersecurity, evidence, provenance, human oversight, and specialized autonomous agents without treating each AI system as an isolated tool.

February 2026

The PBSAI Governance Ecosystem: A Multi-Agent AI Reference Architecture for Securing Enterprise AI Estates

A multi-agent reference architecture for coordinated, governance-aligned security across enterprise AI estates, emphasizing provenance, explicit agent responsibilities, evidence exchange, human oversight, and policy-bound operation.

Research Paper arXiv Security & AI Architects
Author: John M. Willis
Record: arXiv:2602.11301
Subject: Secure enterprise AI estates
Quantum & Hybrid Computing

Hybrid Quantum AI & Quantum Runtime Governance

These publications examine how quantum resources, probabilistic execution, hybrid classical–quantum workflows, system architecture, governance, and cybersecurity interact as quantum computing moves from isolated algorithms into larger operational systems.

June 2026

Toward Quantum Runtime Governance: Execution Invariants and Governance Requirements for Quantum and Hybrid Quantum Systems

Extends runtime-governance reasoning into probabilistic quantum execution through governance invariants, probabilistic admissibility, resource governance, provenance, calibration, compilation, and hybrid-system control requirements.

Technical Report Published Quantum & Governance Architects
Date: June 4, 2026
Author: John M. Willis
DOI: 10.5281/zenodo.20549123
June 2026

Formal Execution Semantics and Governance Invariants for Hybrid Classical–Quantum Autonomous Systems

Examines formal execution and governance invariants for autonomous systems whose operational workflows span classical and quantum computational components.

Technical Report Published Researchers & Engineers
Date: June 7, 2026
Author: John M. Willis
DOI: 10.5281/zenodo.20584422
2025

Strategic R&D Planning for Quantum and Hybrid AI: Navigating Industry Projections and Conservative Pathways (2025–2030)

A planning-oriented technical work addressing realistic capability progression, timing, and research strategy for quantum and hybrid AI.

Strategic Research Version 1.0 R&D Leaders
Author: John M. Willis
Publisher: Sustainable Future Tech Publishing
DOI: 10.5281/zenodo.17780795
2025

Solving Cyber Hard Problems with Transparent Hybrid Quantum AI for Anomaly Detection

Explores hybrid quantum AI and transparency-oriented approaches to complex anomaly-detection and cybersecurity problems.

Technical Research Published Cybersecurity & Quantum AI
Author: John M. Willis
Subject: Hybrid quantum AI anomaly detection
DOI: 10.5281/zenodo.15579989
Explainability & Interpretability

Lifecycle Interpretability & Model Transparency

This research examines interpretability not only as a post-hoc explanation problem but as a lifecycle and systems architecture problem involving instrumentation, provenance, persistent evidence, and role-appropriate interpretation.

2026

QILIS: A Quantum-Inspired Lifecycle Interpretability System for Neural Networks

Presents a lifecycle-oriented interpretability architecture for neural networks using quantum-inspired methods, persistent interpretive state, and audit-oriented outputs.

Technical Research Published AI & XAI Practitioners
Author: John M. Willis
Publisher: QILIS, Inc.
DOI: 10.5281/zenodo.19431235
2024

QIXAI: A Quantum-Inspired Framework for Enhancing Classical and Quantum Model Transparency and Understanding

A quantum-inspired explainability framework exploring approaches to transparency and understanding across classical and quantum models.

Research Paper arXiv AI Researchers
Author: John M. Willis
Record: arXiv:2410.16537
Subject: Explainable AI
Energy & Sustainable Systems

Resilient Energy & Sustainability Implementation

Publications in this area connect engineering, infrastructure, energy, sustainability, governance, and implementation at the system level.

2025

A Solar-Thermal Architecture for Grid-Independent Heating, Cooling, and Power Using Thermal Storage and Dual Stirling Engines

Introduces the integrated technical architecture underlying SFT’s resilient thermal-energy work, combining solar-thermal input, thermal storage, heating, cooling, power conversion, and control.

Technical Paper Published Energy & Systems Engineers
Author: John M. Willis
Publisher: Zero Net Energy Systems Inc.
DOI: 10.5281/zenodo.15283703
2025

Implementing Sustainable Living at Scale

A systems-level sustainability reference connecting technical architecture, institutions, public policy, infrastructure, governance, finance, and implementation across multiple sectors.

Reference Publication Public Research Version Sustainability Practitioners
Author: John M. Willis
DOI: 10.5281/zenodo.10809952
Book edition: Forthcoming September 2026
Standards, Government & Policy

Technical Contributions to Public Governance Discussions

These works apply SFT’s technical research and architecture perspective to public questions involving AI governance, software and AI-agent identity, authorization, security, and national research strategy.

2026

Execution-Layer Governance for AI Agents: A Deterministic Control Plane Architecture for Secure AI Automation

A technical contribution applying execution-layer governance architecture to secure AI automation and agentic systems.

Public Technical Contribution Published Government & Standards
Author: John M. Willis
Context: National Institute of Standards and Technology
DOI: 10.5281/zenodo.18901904
2026

Response to NIST NCCoE Concept Paper: Accelerating the Adoption of Software and AI Agent Identity and Authorization

A technical response addressing identity, authorization, and governance requirements for software and AI agents.

Public Comment Published Government & Security
Author: John M. Willis
Context: NIST NCCoE
DOI: 10.5281/zenodo.19431047
2025

Response to the 2025 National AI R&D Strategic Plan RFI

A public contribution addressing interpretability, governance, risk, and related considerations in the foundations of U.S. AI research and development strategy.

Policy Response Version 1.0 Research & Policy
Author: John M. Willis
Year: 2025
DOI: 10.5281/zenodo.15398521
Publication Status & Format

Not Every Research Artifact Serves the Same Purpose

SFT publishes several kinds of technical work. The format and status of an artifact matter when deciding how it should be interpreted, cited, implemented, or used as evidence.

Technical Report

A substantial research or engineering treatment of an architecture, method, technical problem, formal model, or implementation concern.

Specification

A versioned normative or requirements-oriented artifact intended to support implementation, evaluation, interoperability, or conformance.

Public Review / Preprint

Work made publicly available while review, revision, publication preparation, or further validation continues.

Research or Policy Contribution

Technical work contributed to a broader research, standards, government, educational, or policy discussion rather than issued as a product specification.

Publication Records

Need the Formal Citation or Version History?

This Technical Publications Library is designed for discovery. It explains what the publications are about and groups them by subject and research program.

The DOI & Research Archive serves a different purpose: formal publication records, DOI identifiers, version information, licenses, citation data, superseded editions, and relationships among released artifacts.

Research to Practice

Technical Work Is Most Useful When Others Can Examine It

Sustainable Future Tech publishes technical work to make architectures, assumptions, requirements, methods, and research claims available for examination, citation, discussion, implementation, validation, and further research. Where a publication becomes the foundation for a larger book, specification, research program, or strategic platform, the supporting technical record remains an important part of the intellectual history of that work.

Publication information: This page is a human-readable catalog of selected Sustainable Future Tech research and related public technical work. Publication formats and statuses differ, and inclusion here does not imply that every artifact has undergone the same type of peer review, standards review, external validation, or publication process. Readers should use the individual publication record and the DOI & Research Archive for the applicable version, citation, license, status, and persistent identifier. Research publications may also evolve into later specifications, books, architectures, or revised editions.