Folds three previously-separate pieces into one preliminary-example repo for the HAHACS thesis: - thesis/ (submodule) → gitea Thesis.git — the PhD proposal - fret-pipeline/ — FRET requirements to AIGER controller (was ~/Documents/fret_processing/; prior single-commit history abandoned per user decision) - plant-model/ — 10-state PKE + lumped T/H PWR model (was ~/Documents/PKE_Playground/; never version-controlled before) - presentations/2026DICE/ (submodule) → gitea 2026DICE.git - reachability/, hardware/ — empty placeholders for Thrust 3 and HIL - docs/architecture.md — how the discrete and continuous layers compose - claude_memory/ — session notes and scratch knowledge pattern Plant model refactored to thesis naming (x, plant, u, ref); pke_th_rhs now takes u as an explicit arg instead of reading rho_ext from the params struct. First two controllers built to the contract u = ctrl_<mode>(t, x, plant, ref): ctrl_null (baseline) and ctrl_operation (stabilizing, proportional on T_avg). Validated under a 100% -> 80% Q_sg step: ctrl_operation reduces steady-state T_avg drift ~47% vs. the unforced plant. Root CLAUDE.md emphasizes that CLAUDE.md files are living documents and that any knowledge not captured before a session ends is lost forever; claude_memory/ holds the session-level notes that haven't stabilized enough to graduate into a CLAUDE.md. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
72 lines
2.4 KiB
Markdown
72 lines
2.4 KiB
Markdown
# pwr-hybrid-3-demo
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Preliminary example for the HAHACS thesis — a verified hybrid controller for
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a small modular PWR startup. Composes three layers into one demonstrable
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pipeline:
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- **Discrete layer** (`fret-pipeline/`): FRET natural-language requirements
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→ LTL → synthesized AIGER controller → state-machine diagram.
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- **Continuous layer** (`plant-model/`): 10-state point kinetic equation +
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thermal-hydraulics PWR model with bounded steam-generator heat removal as
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the disturbance input.
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- **Research context** (`thesis/`): the HAHACS PhD proposal that motivates
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and formalizes the methodology.
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## Layout
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```
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pwr-hybrid-3-demo/
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CLAUDE.md AI-facing context and architecture map
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docs/
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architecture.md How the discrete and continuous layers compose
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figures/ Shared figures for thesis + talks
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fret-pipeline/ FRET → ltlsynt → AIGER → state machine
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plant-model/ PWR point kinetics + thermal-hydraulics
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reachability/ Continuous-mode verification (TBD)
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hardware/ Ovation HIL artifacts (TBD)
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thesis/ [submodule] PhD proposal
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presentations/
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2026DICE/ [submodule] DICE 2026 abstract
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```
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## Quickstart
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Clone with submodules:
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```bash
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git clone --recurse-submodules <url>
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cd pwr-hybrid-3-demo
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```
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Run the controller synthesis pipeline:
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```bash
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cd fret-pipeline
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python3 scripts/fret_to_synth.py pwr_hybrid_3.json specs/synthesis_config_v3.json
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bash scripts/synthesize.sh specs/synthesis_config_v3.json circuits
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python3 scripts/trace_aiger.py circuits/PWR_HYBRID_3_DRC.aag diagrams
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dot -Tpng diagrams/PWR_HYBRID_3_DRC_states.dot -o diagrams/PWR_HYBRID_3_DRC_states.png
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```
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Run the plant model (MATLAB or GNU Octave in `plant-model/`):
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```matlab
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main
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```
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## Prerequisites
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- Python 3.10+
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- [Spot](https://spot.lre.epita.fr/) for `ltlsynt` (`brew install spot`)
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- [Graphviz](https://graphviz.org/) for `dot` (`brew install graphviz`)
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- MATLAB or GNU Octave for the plant model
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- LaTeX (via `latexmk`) for the thesis submodule
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## Further reading
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- `CLAUDE.md` — orientation for AI agents working in this repo
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- `docs/architecture.md` — how the layers compose
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- `thesis/CLAUDE.md` — the thesis project structure
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- `fret-pipeline/README.md` — FRET naming conventions and pipeline details
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- `plant-model/README.md` — scenario setup and model equations
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