Principles of Re-mapping the Solar System Space—Multi-Frequency Window Analysis Based on the Projection Layer Framework of World Quantum Theory
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Current spatial cognition of the solar system is established based on measurement data from a single observation point (Earth), manifesting as a two-dimensional distribution on the ecliptic plane. This cognitive structure is logically equivalent to: relying on a single measurement reference, making it impossible to separate projection layer deviations from spatial position information. Based on the projection layer framework of World Quantum Theory (WQT), this paper demonstrates the following propositions: 1. Any measurement is self-referential—the reading includes the parameters of the measuring system itself. 2. The electronic ruler parameters of Earth and Mars differ (Earth x⊕=2π, Mars xmars≠2π); therefore, they constitute two independent measurement systems. 3. The readings of two independent measurement systems for the same target, once normalized to the Planck benchmark, can be jointly analyzed to resolve the three-dimensional spatial distribution. 4. This analytical result exhibits systematic deviation from single-eye (single-system) readings—the magnitude of this deviation is precisely the projection distortion currently misidentified as the "planar structure of the ecliptic." This paper provides a complete normalization method and intersection criteria, and designs an experimental verification scheme. Keywords: World Quantum Theory; Projection Layer; Multi-Frequency Window; Cross-Planetary Measurement; Spatial Reconstruction; Planck Benchmark



