The simulation specifications describe a framework for building interactive, multi-domain simulation environments designed to model real-world systems through controlled virtual representations. These simulations are not limited to entertainment or visualization use cases, but instead function as structured tools for analyzing how decisions, policies, and variable changes influence outcomes over time. They are intended for use across civic systems, economics, engineering, AI modeling, and social systems, enabling users to adjust inputs and observe cascading effects in real time.
The specifications emphasize modularity, interoperability, and real-world alignment, allowing simulations to scale from simple rule-based environments to complex system-of-systems architectures that can incorporate AI and live data. They are designed to be extensible and deployable across private, public, and institutional infrastructures. A key component of the framework is that Specification Branding Licenses can be negotiated with any organization that wishes to deploy the system without attribution, enabling customized branding and commercial deployment while maintaining the underlying specification structure.
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Agility Ascension
https://roxanneardary.com/agility-ascension/
An open-source dog agility training and competition simulation game. Players progress from practice fields to global trials through skill, focus, distance handling, and environmental challenge systems. -
CineRenderAI
https://roxanneardary.com/cinerenderai/
An open-source real-time neural rendering engine powered by AI. It transforms low-cost game renders into cinematic-quality visuals with enhanced lighting, materials, and temporal stability. -
Clause Module Specification
https://roxanneardary.com/clause/
An open-source civic simulation platform for governance modeling. Real-world laws, budgets, and population dynamics interact to show long-term consequences of decisions. -
Cognitive Crisis Simulator
https://roxanneardary.com/cognitive-crisis-simulator/
A voice-driven multi-agent platform exploring high-pressure scenarios. It models how intelligence, communication, and decision-making evolve under crisis conditions. -
DesignFlux
https://roxanneardary.com/designflux/
An AGPL 3.0+ open-source engineering platform with physics-based simulation. It integrates AI-assisted design and manufacturing workflows for thermal, aerospace, and industrial technologies. -
EarthRoot Network
https://roxanneardary.com/earthroot-network/
An open-source AI-assisted infrastructure design system. It generates location-aware modular renewable energy and material solutions shaped by local environmental conditions. -
FlightDynamics Module Specification
https://roxanneardary.com/flightdynamics/
FlightDynamics is an open, AI-native specification for launch planning, mission engineering, orbital dynamics, and space operations. It defines a modular, local-first framework for building interoperable and explainable systems that model, simulate, and optimize every stage of a space mission lifecycle. -
GrowLocal
https://roxanneardary.com/growlocal/
An open-source AI-assisted town simulation platform. It models sustainable community growth using local skills, resources, and cooperative systems. -
HarvestIQ
https://roxanneardary.com/harvestiq/
An AI-powered land optimization and simulation platform. Property owners maximize profitability, sustainability, and land use efficiency through geospatial intelligence and modular AI. -
Infinity Arena
https://roxanneardary.com/infinity-arena/
An open-source modular fighting game for creative combat. Players design customizable fighter pairs and synergistic systems in an infinite evolving arena. -
LibreSpaceflight Module Specification
https://roxanneardary.com/librespaceflight/
An open-source platform for spaceflight simulation and education. Users simulate spacecraft docking, orbital mechanics, mission planning, and autonomous operations. -
RealityPass
https://roxanneardary.com/reality-pass/
An open-source physics-accurate AI-assisted space simulation platform. It enables designing, testing, and experiencing spacecraft systems before real-world construction. -
Separation Engine
https://roxanneardary.com/separationengine/
An open-source AGPL 3.0+ airspace computation platform. Predictive AI and physics-based modeling maintain safe aircraft separation with real-time environmental analysis. -
StructIQ Module Specification
https://roxanneardary.com/structiq/
An AI-assisted structural engineering platform with digital twin capabilities. It optimizes building designs under AGPLv3 licensing. -
The Evidence Constitution
https://roxanneardary.com/the-evidence-constitution/
A modular investigative simulation platform for civic education. It teaches constitutional reasoning through evidence analysis, legal frameworks, and multiplayer decision-making. -
The Uncertain Machine
https://roxanneardary.com/the-uncertain-machine/
An open-source AI-powered scientific simulation platform. Players learn by experimenting with dynamic models of reality rather than memorizing facts. -
Velyndor
https://roxanneardary.com/velyndor/
An open-source AI-driven MMO with dynamic world building. Players explore, craft, fight, and create lasting legacies in an evolving environment.
Buy the Basket: https://roxanneardary.com/simulations/
Open Aresenal Simulation specifications are released under the GNU Affero General Public License v3.0 or later (AGPL-3.0+).
By contributing to any Open Arsenal project, you agree that your contributions will also be released under this license.
Please note the following:
- All contributions must comply with the AGPL-3.0+ terms.
- Under Section 7 of the license, all redistributions, forks, and derivative works must preserve attribution to:
Roxanne Ardary and roxanneardary.com. - Open Arsenal specificiations are free to use with attribution. A Specification Branding License can be negotiated upon request.
- The project's notice.md file tracks attribution requirements and contributor acknowledgments.
Any update that adds new contributors or modifies attribution should also updatenotice.md. - When submitting a pull request, ensure that any new files maintain the attribution headers where applicable.
- Network-deployed versions of this software must also remain fully AGPL-3.0+ compliant, including exposure of source code modifications when applicable under the license.
For full legal details, please refer to the AGPL-3.0+ license and the project's notice.md file.
Open Arsenal Hub
https://github.com/openarsenalspecs