Projects with this topic
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SpecFreedom is a technology independence specification designed to make proprietary, legacy, and incompatible systems interoperable through universal specifications. It enables systems to be analyzed, translated, adapted, replaced, and reimplemented using open, cost effective technologies while reducing vendor lock in and preserving compatibility, provenance, and human control. https://roxanneardary.com/specfreedom/
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GuardianNX is a modular, AGPL-3.0+ open source home security operating system designed to eliminate vendor lock-in through fully replaceable hardware and software components. It integrates edge AI surveillance, encrypted sensor networks, and autonomous response systems into a unified, privacy-first platform that operates locally by default and remains fully functional without cloud dependency. https://roxanneardary.com/guardiannx/
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OpenDiagnose is an open-source, AGPL-3.0+ modular diagnostic system that turns real-world visual input into structured, actionable repair guidance. Using wearable or edge-connected vision hardware, interchangeable AI models, and domain-specific knowledge packs, it identifies faults across mechanical, electrical, agricultural, and infrastructure systems. Designed as a commons-driven platform, it separates hardware, software, and diagnostic logic into replaceable modules so the system can evolve without vendor lock-in or closed components. https://roxanneardary.com/opendiagnose/
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OpenReplica is an open-source website replication tool that lets users instantly clone, clean, and export any website into a fully portable project they own and control. Built to eliminate subscription lock-in and proprietary restrictions, it transforms live websites into editable, self-hostable codebases in seconds. With a focus on simplicity, speed, and true digital ownership, OpenReplica gives users the ability to build once and never be trapped again. https://roxanneardary.com/openreplica/
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Syntara is a Vendor Independence Operating System (VIOS) that analyzes enterprise infrastructure to identify vendor lock-in, hidden dependencies, and structural risks across systems and workflows. It models how organizations actually function, simulates migration pathways, and generates safe, reversible strategies for moving toward greater autonomy, self-hosting, and long-term infrastructure independence. https://roxanneardary.com/syntara/
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No Lock-In Compliance Standard (NLCS v1.0) is an open architecture and governance framework designed to eliminate vendor lock-in across AI systems and software infrastructure. It defines a fully modular, interchangeable system model where AI, data, execution, and policy layers can be independently swapped without breaking system functionality, while maintaining AGPL 3.0+ compliance and machine-verifiable portability standards. https://roxanneardary.com/no-lock-in-compliance-standard/
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FlightDynamics is an open, AI-native specification for launch planning, mission engineering, orbital dynamics, and space operations. It defines a modular, implementation-agnostic standard for modeling and optimizing every stage of a space mission lifecycle, from early mission design through launch execution, orbital operations, and end-of-life planning. Designed for local-first deployment with optional integration into distributed systems, FlightDynamics enables interoperable, explainable, and extensible mission planning systems without vendor lock-in. https://roxanneardary.com/flightdynamics/
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OpenCluster is a modular, federated, open-source infrastructure platform built for sovereign AI, distributed compute, municipal resilience, and community-owned infrastructure. Designed around AGPL-3.0+ licensed software and open hardware principles, OpenCluster enables scalable, repairable, and upgradeable systems that prioritize federation, security, resilience, and long-term sustainability without centralized vendor lock-in. https://roxanneardary.com/opencluster/
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