Relational Closure and Mode-First Power Transmission: A Conductor-Minimality Framework from SWER, Tesla Resonance, and Goubau Lines

This preprint establishes Relational Closure and Mode-First Power Transmission as a conductor-minimality framework for electromagnetic energy transfer. It argues that two-wire transmission is one feasible operating point inside a broader closure-resource space, not an axiomatic requirement of Maxwell's equations. The paper formalizes a Closure Resource Vector R = (N_c, V_medium, V_env, Q_tune, N_converter) and a non-collapsible Relational Closure Metric Vector C_rel = (C_B, C_M, C_R, C_T). SWER, Tesla single-terminal resonance, Goubau lines, and hollow waveguides are treated as extremal projections of the same resource space. This record is a conceptual and theoretical preprint. No original experimental dataset is reported. Five falsification pathways and three comparative protocols define future reproducibility work. It is Paper 1 of the SBE/DSR Structural Computing, Electromagnetics & Infrastructure programme and cites Dynamic Structural Realism v1.0 (Zenodo Record 22086468).

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23140224
Primary Topic
Wireless Power Transfer Systems
Type
preprint
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preprint

Relational Closure and Mode-First Power Transmission: A Conductor-Minimality Framework from SWER, Tesla Resonance, and Goubau Lines

Titan G.
Zenodo (CERN European Organization for Nuclear Research)
Wireless Power Transfer Systems
preprint

Relational Closure and Mode-First Power Transmission: A Conductor-Minimality Framework from SWER, Tesla Resonance, and Goubau Lines

Titan G.
preprint en

Abstract

This preprint establishes Relational Closure and Mode-First Power Transmission as a conductor-minimality framework for electromagnetic energy transfer. It argues that two-wire transmission is one feasible operating point inside a broader closure-resource space, not an axiomatic requirement of Maxwell's equations. The paper formalizes a Closure Resource Vector R = (N_c, V_medium, V_env, Q_tune, N_converter) and a non-collapsible Relational Closure Metric Vector C_rel = (C_B, C_M, C_R, C_T). SWER, Tesla single-terminal resonance, Goubau lines, and hollow waveguides are treated as extremal projections of the same resource space. This record is a conceptual and theoretical preprint. No original experimental dataset is reported. Five falsification pathways and three comparative protocols define future reproducibility work. It is Paper 1 of the SBE/DSR Structural Computing, Electromagnetics & Infrastructure programme and cites Dynamic Structural Realism v1.0 (Zenodo Record 22086468).

Zenodo (CERN European Organization for Nuclear Research)
Industry, innovation and infrastructure
Wireless Power Transfer Systems
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