Near0 – MSAVA: Multi-System Adversarial Verification Architecture for Iterative Development of Technical Work Products
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Near0 Multi-System Adversarial Verification Architecture (TM)
This paper presents a novel methodology for developing and verifying technical work products using an ensemble of heterogeneous automated reasoning systems operating under a formal adversarial behavioral constraint specification. The architecture deploys a plurality of architecturally distinct reasoning systems as independent hostile reviewers, consolidates findings through cross-validation, and iterates corrections through a mutual resolution process requiring approval from at least two independent systems — all while preserving exclusive human domain-expert authority over substantive content decisions. A defining constraint is the strict prohibition on ansatz elements. The system operates as a nested dual-loop: an inner verification loop iterating to critique saturation, and an outer revision loop accommodating foundational expert revisions. Empirically validated during iterative development of a theoretical cosmology manuscript, where the ensemble identified a 10^22 magnitude arithmetic discontinuity (a 4+ dimensionsal tensor calculus equation working with near infinite values in comparison), a factor-of-2 frequency substitution error, and an exact tensor contraction coefficient through cross-system adversarial verification with independent deterministic computational confirmation.
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- Created
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2026-03-22