The 2nd World Conference on Artificial Consciousness — Artificial Consciousness: The Confluence of Intelligence and Consciousness in the Interdisciplinary Domain

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This paper proposes an Artificial Consciousness (AC) system framework based on the DIKWP model to create trustworthy, explainable AI by defining necessary computer architectures, chips, runtime environments, and a DIKWP language.

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This publication is a conference overview/track discussion about artificial consciousness, focusing on an interdisciplinary confluence between intelligence and consciousness rather than a biomedical research study. The text provided does not describe any human or animal population, experimental or observational methods, or key empirical findings beyond framing the topic. A stated limitation in the provided content is that it lacks substantive scientific results, instead functioning as a conference-related informational page. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Artificial intelligence systems are often accompanied by risks such as uncontrollability and lack of explainability. To mitigate these risks, there is a necessity to develop artificial intelligence systems that are explainable, trustworthy, responsible, and demonstrate consistency in thought and action, which we term Artificial Consciousness (AC) systems. Therefore, grounded in the DIKWP model which integrates fundamental data, information, knowledge, wisdom, and purpose along with the principles of conceptual, cognitive, and semantic spaces, we propose and define the computer architectures, chips, runtime environments, and DIKWP language concepts and their implementations under the DIKWP framework. Furthermore, in the construction of AC systems, we have surmounted the limitations of traditional programming languages, computer architectures, and hardware-software implementations. The hardware-software integrated platform we propose will facilitate more convenient construction, development, and operation of software systems based on the DIKWP theory.
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last seen: 2026-05-20T01:45:00.602351+00:00
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