Distributed energy
Sovereign solar micro-grids at the edge: nodes that optimize energy extraction autonomously, without depending on a central grid or continuous connectivity.
What it is
The project explores the Torsión thesis in the energy domain through a computational model of a sovereign edge node with adaptive maximum-power tracking (MPPT). Its thermal, state, and coordination rules are checked through formulas and local tests; measurement on a panel and hardware belongs to the next experimental milestone.
The deployment goal: micro-grids that dignify the energy autonomy of communities and remote operations, with accessible hardware and local control of processing.
Current stage: computational architecture implemented and locally tested; the edge-hardware pilot has not yet been run.
Public objective: demonstrate that a micro-grid can optimize and coordinate energy locally with accessible hardware and sovereign control.
Next verifiable milestone: run the documented pilot protocol on a panel and edge node with measurable acceptance criteria.
Lab updates
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Computational model
July 2026 · week 1
The thermal model changed by ~16% relative to the previous formula
The local technical review re-derived the thermal rule for maximum-power tracking. In the numerical scenario at 35 °C, the output differs by ~16% from the previous formula; local tests verify software behavior, not a panel or edge-hardware measurement.
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Governance checkpoint
August 2026 · week 2
Integration semantics remain open
Baseline Week 06 defers the formal definition of delivered power after MPPT and of the fleet root state. The architecture remains under local testing; these open items do not erase existing tests, but they prevent presenting the energy integration as closed.
Every update distinguishes tested software, computational models, documentary checks, active research, and projections. Human adjudication bounds scope; a local test is not presented as a physical measurement. The internal mechanism is never published.