Spacetime Editing Theory is a unified theoretical framework aimed at transforming spacetime from a "passive stage" into an "editable medium." As the general introduction to this series of papers, this paper systematically summarizes the core premises, fundamental concepts, key breakthroughs, and technological visions of the theory. Starting from the Instantaneous Teleportation Cosmos (ITC) framework, we propose that spacetime is an emergent projection of the basal structure, and that the spatial position, scale, and even the existence form of objects can be modulated through basal resonance. By introducing Basal Resonance Tunability (P5), we reveal the dynamical degrees of freedom of the basal structure; through eigenfrequency spectrum analysis, we construct the "toolbox" of spacetime editing—ρ-modes modulate spatial scale, τ-modes modulate temporal flow, collective modes induce overall displacement, and internal modes alter physical states. Routing Address Theory establishes the "frequency fingerprint" as an addressing mechanism, Scale Editing achieves on-demand regulation of object size, and the reinterpretation of energy conservation resolves the apparent contradiction between teleportation and mass-energy equivalence. Historical anomalous phenomena (the Hutchison Effect and microwave modulation transfer experiments) are reinterpreted as "accidental demonstrations" of spacetime editing, and the rigorous demonstration that space points possess frequencies provides a natural addressing foundation for the Stargate. The Storage Ring and the Stargate, as two typical applications, demonstrate a broad spectrum of possibilities from personal portable storage to interstellar teleportation. This paper outlines a complete roadmap from theoretical derivation, experimental verification, to technological implementation, and explores its profound philosophical implications—the establishment of the basal structure opens a new ontological dimension for physics.
Lei Ding (Sat,) studied this question.