Multi-mode Fault Diagnosis Datasets with TE process (MMFDD-TEP) can be used for the purpose of comparison studies or validation of algorithms
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Updated
Apr 10, 2024 - C
Multi-mode Fault Diagnosis Datasets with TE process (MMFDD-TEP) can be used for the purpose of comparison studies or validation of algorithms
Temporal Equivalence Principle: Suppressed Density Scaling in Globular Cluster Pulsars — Globular cluster pulsar spin-down anomaly: 197 cluster vs 346 field pulsars show 0.40 dex residual (8.3σ). Suppressed density scaling (Γ=0.39±0.08 vs Newtonian Γ=0.72, 4.1σ) tests the TEP observable response coefficient κ_MSP.
Global Time Echoes: Empirical Synthesis — Empirical synthesis of 25.3 years GNSS timing data (165.2M pairs) revealing distance-structured correlations (λT=4,201±1,967 km) with TEP signatures: EW/NS anisotropy, orbital coupling, CMB alignment, and nutation couplings.
Temporal Equivalence Principle: Native hi_class Conformal Implementation, Linear Perturbation Closure, and CMB Acoustic Peak Preservation — hi_class cosmological constraints on TEP: CMB, supernova, and Jordan-frame consistency tests with native conformal Boltzmann solver implementation.
The Cepheid Bias: Resolving the Hubble Tension — Environment-dependent Cepheid clock bias under TEP. Generative clock-aware model across 37 SH0ES hosts yields H0 = 66.65 ± 1.58 km/s/Mpc, consistent with Planck at 0.45σ. M31 and OGLE-IV differential tests confirm the predicted sign.
Klein–Gordon and Dirac limits of dynamical proper-time phase transport: spin holonomy and antimatter as geometric orientations.
Temporal Equivalence Principle: Temporal Shear in the Earth Flyby Anomaly — Analysis of Earth gravity-assist flyby anomalies as a signature of temporal shear in the conformal metric, with reproducible orbital data pipeline.
Temporal Equivalence Principle: Temporal Shear Recovery in Gaia DR3 Wide Binaries — Gaia DR3 wide binaries (341,315 systems) show Temporal Shear recovery at R_s=2,646±182 AU (Δχ²=14,845 vs Newtonian), with environmental ordering confirmed (p<10⁻⁴).
The open specification for the Technical Evidence Package (TEP) format, the Authorship Evidence Constitution, and the LucidGrid Tool Registry.
Global Time Echoes: MGEX Multi-GNSS Clock Replication, 2025–2026 — Multi-GNSS clock correlation analysis (GPS, GLONASS, Galileo, BeiDou) confirming TEP signatures across constellations using MGEX data.
Temporal Equivalence Principle: Black Holes and the Temporal Horizon — Develops the strong-field consequence of TEP: a black hole is a temporal well—a regular spatial region where proper time differs radically from the exterior, without central singularity or absolute event horizon. Features 50-step reproducible pipeline and direct EHT constraints.
Temporal Equivalence Principle: A Covariant Alternative to Cosmic Expansion — CMB, BAO, and supernova constraints on TEP using CLASS, AlterBBN, and Cobaya MCMC, demonstrating conformal temporal reconstruction as a covariant alternative to cosmic expansion.
Efficient hybrid heuristic for the stochastic transmission expansion planning (STEP) problem. From "An Efficient Hybrid Heuristic for the Transmission Expansion Planning under Uncertainty. Submitted to the XXIV Power Systems Computation Conference (PSCC2026)."
Temporal Equivalence Principle: Lunar Laser Ranging and the Nordtvedt Effect — Lunar laser ranging constraints on the Nordtvedt effect and temporal shear in the Earth-Moon system, with 50+ year dataset analysis.
Scripts for generating benchmark systems for the stochastic transmission expansion planning (STEP) problem. From "An Efficient Hybrid Heuristic for the Transmission Expansion Planning under Uncertainty. Submitted to the XXIV Power Systems Computation Conference (PSCC2026)."
Temporal Equivalence Principle: A Blind-Prediction Residual Test in Multiply-Imaged Supernovae — Gravitational lensing and time-delay cosmography tests of TEP using COSMOGRAIL, SH0ES, and H0LiCOW data, with blind-prediction residual analysis of multiply-imaged supernovae.
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