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In Part I, the impact of an integro-differential operator on parity
logic engines (PLEs) as a tool for scientific modeling from scratch
is presented. Part II outlines the fuzzy structural modeling
approach for building new linear and nonlinear dynamical causal
forecasting systems in terms of fuzzy cognitive maps (FCMs). Part
III introduces the new type of autogenetic algorithms (AGAs) to the
field of evolutionary computing. Altogether, these PLEs, FCMs, and
AGAs may serve as conceptual and computational power tools.
In Part I, the impact of an integro-differential operator on parity
logic engines (PLEs) as a tool for scientific modeling from scratch
is presented. Part II outlines the fuzzy structural modeling
approach for building new linear and nonlinear dynamical causal
forecasting systems in terms of fuzzy cognitive maps (FCMs). Part
III introduces the new type of autogenetic algorithms (AGAs) to the
field of evolutionary computing. Altogether, these PLEs, FCMs, and
AGAs may serve as conceptual and computational power tools.
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