Review article summarizes Harmony Navigation framework for enhancing system viability through AI-driven combinations.
Harmony is one of the fundamental conditions for the viability of systems across natural, biological, social, organizational, and technological domains. While contemporary artificial intelligence demonstrates remarkable capabilities in optimization, prediction, and pattern recognition, existing approaches primarily focus on maximizing predefined objective functions rather than identifying combinations that preserve and enhance the long-term viability of complex systems.This review article summarizes the theoretical foundations developed throughout Block D of the Vitology Scientific Series and integrates them into the unified framework of Harmony Navigation. Within Vitology, Harmony Navigation is understood as a systematic process of identifying, evaluating, and developing harmonious combinations that increase system viability by improving coordination, balance, regeneration, adaptation, and sustainable development.The paper introduces the concept of the Space of Harmony as a multidimensional domain in which harmonious system states and trajectories can be identified and compared. It further examines how artificial intelligence can support Harmony Navigation by assisting in the search for viable combinations, early detection of imbalance, simulation of developmental scenarios, and decision support across multiple fields.The proposed framework extends conventional optimization by introducing harmony and viability as complementary evaluation criteria. Rather than seeking isolated optimal solutions, Harmony Navigation emphasizes the continuous development of combinations that strengthen the integrity, resilience, regenerative capacity, and long-term sustainability of systems.The article concludes that Harmony Navigation represents a new interdisciplinary research framework within Vitology that provides theoretical foundations for future research in artificial intelligence, systems science, organizational management, healthcare, education, ecological sustainability, and other domains where maintaining and increasing system viability is a primary objective. Keywords Vitology, Harmony Navigation, viability, harmonious combinations, Space of Harmony, artificial intelligence, systems theory, balance, regeneration, adaptation, sustainable development.
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Serhii Hostiunin (2026) studied this question.
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