Virtual GDP Engine: The Loop-Conveyor Problem in Sustainable Economics, and a Method for Formalizing Carnot-Like Dynamism and Win-Win & Sharing
- 1 The University of Electro-Communications, Tokyo, Japan
- 2 Kanagawa University, Yokohama, Japan
Abstract
This paper considers a hypothetical Carnot-like loop dynamism (powered by “money energy”) in nature versus artificial bodies, and considers income growth and distribution theory (economic entities) within a sustainable loop conveyor system in the world, along with its dynamism and efficiency. This loop theory schema is a dissection of the elliptic theory of pair-map microcosms, and can be expected to be the same for the self-moving mechanism of artificial bodies, such as virtual (digital) self-driving cars on the pair map (2D/3D). This discussion first begins with the examination of a linear “Taylor system” for a virtual GDP body, and loop theory. Matsui’s equation for flow time (flow number) can be used to present an example of formulation of two-level optimization, based on a closed-loop conveyor divided into “unloading” and “loading” sides. Lastly, the harmonic gain-sharing problem that faces economic bodies using a numerical and harmonic example of Win-win & sharing is also analyzed by a heuristic base.
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