KENOS — Kohenoor Operating System Official Description and Public Disclosure KENOS, the Kohenoor Operating System, is the unified digital operating environment of the Kohenoor ecosystem. It brings together artificial intelligence, Education 3.0, blockchain infrastructure, hybrid finance, business applications, development tools, governance controls and operational supervision within one coordinated ecosystem. <Explainer film added> The transition from KENHYFI Hub to the broader KENOS architecture reflects the continued expansion of the Kohenoor ecosystem. KENHYFI was originally developed as a hybrid-finance and ecosystem hub. However, the name and positioning of KENHYFI did not fully represent the wider capabilities that had developed around it, particularly: KAI — Kohenoor Artificial Intelligence, the ecosystem’s multilayered intelligence powerhouse and orchestration system. ProEdge, the Education 3.0, professional learning and workforce-development hub. Blockchain, development, commerce, security, governance and institutional-support applications extending beyond hybrid finance. For this reason, KENOS was established as the umbrella operating environment for the complete ecosystem. KENHYFI remains an important integrated hub within KENOS, but it no longer represents the entire ecosystem by itself. The relationship is therefore defined as follows: KENOS is the complete Kohenoor Operating System and umbrella ecosystem. KAI is the principal intelligence and orchestration powerhouse of KENOS. ProEdge is the principal Education 3.0 and professional-learning hub. KENHYFI is the integrated hybrid-finance and ecosystem-services hub within KENOS. Other applications and modules provide specialized capabilities in blockchain, commerce, development, security, finance and operational management. KENOS is built on three foundational pillars: Education 3.0 Artificial Intelligence Blockchain These pillars support the complete digital-economic journey: Learn → Plan → Build → Execute → Analyze → Supervise → Improve → Scale Artificial Intelligence Pillar KAI, Kohenoor Artificial Intelligence, serves as the principal intelligence powerhouse of KENOS. KAI is designed as a multilayered hybrid-intelligence and workflow-orchestration system rather than a conventional chatbot. It supports knowledge retrieval, document analysis, specialist-role activation, business intelligence, financial analysis, educational guidance, application planning, risk assessment, reporting, workflow coordination and Human-in-the-Loop escalation. Within KENOS, KAI connects users, knowledge, applications, workflows and authorized human decision-makers. Education 3.0 Pillar ProEdge serves as the principal learning and professional-development hub within KENOS. It supports practical education, workforce transformation, professional training, institutional capacity building and industry-linked learning in areas including: Artificial intelligence Blockchain and Web3 Business intelligence Cybersecurity Hybrid finance Digital transformation Communication and professional skills Software and application development Entrepreneurship and business execution ProEdge ensures that KENOS is not limited to providing technology. It also develops the human capability required to understand, manage and apply that technology effectively. Blockchain Pillar The blockchain pillar provides smart contracts, programmable assets, digital ownership, transparent records, settlement mechanisms, token utilities and verifiable ecosystem operations. Blockchain functions are designed to operate alongside KAI-supported intelligence, business rules, governance controls and authorized human supervision. Purpose of KENOS KENOS is designed to support individuals, professionals, businesses, educational institutions, developers, government entities and other organizations participating in the AI-powered digital economy. It connects learning with intelligence, intelligence with execution and execution with monitoring and supervision. KENOS may support: Education and professional development Artificial intelligence and business intelligence Financial and hybrid-finance services Blockchain and smart-contract development Digital commerce and procurement Application and software development Security and operational resilience Governance and institutional intelligence Reporting, monitoring and supervision Development Status At the time of this publication: KENOS is in the Early Beta phase. KENHYFI Hub is in the Alpha+ phase. Individual applications and modules may have different levels of development, testing and availability. The official public web host and disclosure gateway for KENOS is: https://www.kohenoor.net Within the KENOS architecture: KAI serves as the principal intelligence and orchestration layer. KENHYFI Hub operates as an integrated hybrid-finance and ecosystem services hub. Education 3.0 platforms support learning, reskilling and professional development. Blockchain applications provide smart-contract, digital-asset, settlement and verification capabilities. Business and development modules support planning, commerce, procurement, software development, financial intelligence, security, reporting and operational management. KENOS is intended to serve individuals, professionals, businesses, educational institutions, developers, government organizations and other entities participating in the AI-powered digital economy. The architecture is modular and may support public web access, controlled organizational deployments, private-cloud environments, local installations, sovereign infrastructure and integration with existing enterprise systems. Governance remains a core element of KENOS. High-stakes activities are intended to remain subject to authorized human review, role-based permissions, validation controls, risk classification, activity logging and Human-in-the-Loop approval. At the time of this publication, KENOS is in the Early Beta phase, while KENHYFI Hub is in the Alpha+ phase. Applications and modules within the ecosystem may therefore have different levels of development, testing, availability and production readiness. The official public web host and disclosure gateway for KENOS is: https://www.kohenoor.net This publication provides the official conceptual definition, ecosystem positioning, service scope, architectural relationships, development status, governance principles and public-disclosure framework of KENOS. Keywords: KENOS; Kohenoor Operating System; Kohenoor Technologies; KAI; Kohenoor Artificial Intelligence; KENHYFI; Education 3.0; artificial intelligence; blockchain; hybrid finance; digital economy; business intelligence; digital transformation; smart contracts; Human-in-the-Loop; ecosystem architecture; AI governance; Web3; enterprise AI; institutional intelligence Kohenoor Technologies remains committed to transparency, security, responsible disclosure, and continuous improvement of the KEN ecosystem. #kenhyfi #kai #hyfi #kohenoortechnologies #futureofeducation #futureoffinance #futureofai #kohenoorken #cryptocurrencies #kohenoorken #AI #actionai #agenticai #AGI #ArtificialGeneralIntelligenceAGI #AIAssistant #education3 #defi #hybridfinance #hyfi #cedefi #blockchain #innovation #settlements #auditreadycertificates #DASC #cybersecurity #web3 #businessintelligence #proedge #industrygradetrainings #quantumcomputing
the article examines the economic efficiency of using domestic artificial Internet technologies in the educational field, which is an urgent problem of state educational policy and management of educational institutions, since the digital transformation of education requires significant investments, the validity of which must be confirmed by economic calculations that take into account both direct effects (cost reduction for the creation and maintenance of physical laboratories, automation interactions between participants in the educational process, reduction of paper document flow), as well as indirect effects (increasing the availability of high-quality education for remote regions, the formation of in-demand competencies in the field of working with distributed digital systems, improving the employability of graduates). Based on the synthesis of the provisions of the economics of education, the theory of network interactions and the analysis of practices for introducing artificial Internet technologies into the educational process, the author examines the main areas of application of domestic solutions in education, including virtual laboratories and simulation environments, platforms for distributed learning based on distributed ledger technologies, systems for conducting online exams with proctoring, as well as tools for automation of interaction between participants in the educational process.
The article examines the evolution of theoretical and methodological approaches to evaluating the efficiency of innovative projects in relation to changes in the characteristics of innovations themselves. The relevance of the work is driven by the need to overcome the «innovation blindness» of traditional investment analysis methods under conditions of high uncertainty. Based on a retrospective analysis, a cause-and-effect relationship between the increasing complexity of the nature of innovations, changes in the economic environment, and the development of assessment tools is revealed. The author’s periodization of the genesis of approaches is proposed, synchronizing periods, development drivers, characteristics of innovations, dominant methods, and key concepts. Special attention is paid to promising directions for the development of methodology, including quantum computing, neuroeconomic modeling, and decentralized autonomous organizations, which is confirmed by relevant research in 2025–2026. The conclusion about the transition from static accounting models to dynamic, adaptive systems integrating real options theory, risk management, and digital technologies is substantiated.
The article examines the issues of improving the effectiveness of public administration in the field of higher education in a philosophical and ideological aspect. Education is characterized as the basis of the social, political, economic, spiritual and cultural development of the nation. The importance of modernizing management mechanisms at the state level in the field of higher education is proven. The conditions for ensuring the proper level of development of the educational market are investigated. The importance of decentralization in the field of higher education and expanding the autonomous capabilities of higher education institutions in Ukraine is substantiated. The challenges facing the national system of higher education as of today are characterized. Higher education is considered as a sphere for the activities of public administration bodies. The importance of applying the methodology of social and organizational design in reforming public administration of higher education is substantiated. It is proved that the essence of social and organizational design lies in the scientifically based determination of opportunities for the implementation of targeted organizational changes in social systems and institutions, which is used to solve specific management tasks. The fact is substantiated that with the introduction of the principles of humanism, democracy, autonomy of higher educational institutions, as well as public-private partnership and public-public management into the legislation, the main scientific research in Ukraine will be focused on the development and implementation of effective mechanisms for implementing legislative changes in the management system of higher education. The essence of public management in the field of higher education is determined, as well as the most important principles according to which it is carried out at the current stage of development of social relations, in particular in our state. The functions of public management in the field of higher education are presented.
Researchers are delving into blockchain technology (BT) due to its attributes like reliability, decentralization, data veracity, and security. However, its application in education remains underexplored, with gaps in understanding its potential to address sector-specific challenges. Certificates are crucial in education, serving as essential records for professional careers, making their integrity and longevity vital. Yet, many educational institutions and certification authorities still rely on paper-based certificates, which are inefficient, prone to loss, and susceptible to fraud. These outdated methods highlight the urgent need for digitization. The proposed blockchain platform for education, built on the Ethereum blockchain, uses smart contracts to automate and enhance the certification process. This approach creates a transparent, efficient, and reliable framework for managing, sharing, and verifying credentials. By integrating BT, the education sector can improve the accuracy, security, and accessibility of certifications, paving the way for a modernized and trustworthy system.
The recognition and transfer of credits is becoming essential for students, as an increasing number of them are studying at different institutions, often at the same time online, in both traditional and unconventional settings. Micro-credentials can aid in this process by providing easily accessible and transparent evidence of skills or knowledge, certified by an authority, based on small units of learning. The development of blockchain technology holds promise of becoming a useful enabler for supporting the storage and dissemination of micro-credentials on a global scale. Because of its immutability, blockchain can be used to attest to students' accomplishments securely and privately. Artificial intelligence (AI) can facilitate the maintenance and dissemination of micro-credentials, while ensuring that access is readily available for students under their control. So, AI can play a role in supporting blockchain-enabled micro-credentials. For educators, a basic understanding of the development of all three technologies is becoming essential.
The article discusses the characteristics of a digital educational environment in the context of professional distance training of elementary school teachers. It highlights the reasons for the relevance of digital transformation in education and outlines the architectural changes in professional distance teacher training in line with the development of digital technologies. The article analyses relevant research and structures the positions of legal regulation in these categories. It provides a definitional analysis of the concepts of «educational environment», «digital educational environment», and «professional distance training for elementary school teachers». The article identifies the systemic features of the educational environment and draws parallels to the conditions of a digital educational environment. It presents the nature of interaction between the learner and the educational environment. The article distinguishes the characteristics of an environmental approach as a methodological basis for shaping the «digital educational environment». It defines the educational resource of digital technologies, including telecommunications, Web technologies, cloud technologies, big data technologies, social networks, massive open online courses, artificial intelligence technologies, digital footprint technology, blockchain (distributed ledger technologies), chatbots, and immersive learning technologies (virtual and augmented reality), as well as robotic systems. It presents the structure of the digital educational environment in the context of professional distance training for elementary school teachers, including information-content, organizational-activity, spatial-subject, social-communicative, psychological-didactic, cognitive-motivational; creating a space on digital resources or platforms for locating educational information; establishing communication channels using digital tools; and educational-methodical support (distance/electronic courses, digital libraries, digital online translators) created with the help of digital resources. Keywords: digital educational environment, professional training of elementary school teachers, distance learning, pedagogical system, digital transformation.
The main objective of this article is to analyze trends in funding educational institutions (EI) and to assess the effectiveness of the distribution of government expenditures on primary education at the macro-and micro levels. Design/Methodology/Approach: Based on the analysis and synthesis of information from countries' analytical reports, statistical databases and scientific literature, the basic entities involved in the formation, management and distribution of education expenditures in different countries at different levels have been considered, as well as an analysis of the interaction between them has been conducted. Main mechanisms of distribution of expenditures for the educational process in different countries have been observed. Findings: The different approaches used in the distribution of expenditures have been highlighted and the most effective methods of conducting the policy of financing the system of education among European countries have been identified. The basic factors have been outlined that need to be taken into account when formulating funding formulas that can be adjusted to support the goals of policies aimed at improving the efficiency, equity and quality of education. Possible options for financial and economic support have been considered. Practical Implications: A model of a decentralized management system for financial and economic support of the educational process based on foreign experience has been proposed to ensure the implementation of effective mechanisms for financing education. Originality/Value: The study emphasizes that the formation of an effective decentralized system of financing EIs should be implemented in parallel with an effective internal system of financial resources management.
A c t u a l i t y . The role of “patient experience” in assessing quality of medical services is growing as a global trend to value-based healthcare. Currently, only 11% of the Russian population positively assess the quality of medical services. Federal law No. 256-FZ requires all public healthcare providers to conduct an independent assessment of the provision of services, but 44% of organizations do not have such assessment, that can be caused by methodological and organizational reasons. P u r p o s e o f t h e s t u d y to evaluate the prospects for digital improvement of measuring patient satisfaction using distributed ledger technology. To analyze the literature on the topic of independent assessment of the quality of services provided by medical organizations; to analyze modern approaches to assessing patient satisfaction with healthcare providers; to assess the opportunities of improving the processes and results of satisfaction assessment using distributed ledger technology. M a t e r i a l s a n d m e t h o d s . To achieve the purpose, the authors analyzed numerous relevant Russian and foreign sources of literature. Literature review was carried out across scientific libraries as eLIBRARY, PubMed by key words. The search in open sources in Google and Yandex was used. R e s u l t s . The complexity of “patient experience” measurement, biased assessment, ambiguity of the results obtained and the difficulty of correct interpretation require more transparent methods of measuring the value of healthcare. A decentralized platform based on distributed ledge technology may become one of the possible solutions to the problem of objective assessment of patients ‘ satisfaction with the quality of medical services. Such approach allows to form an objective dynamic multi-factor rating of processes and all other components of healthcare services. Conclusion. The existing mechanisms for independent assessment of the quality of medical services need to be improved. Confidence in the results of the patient satisfaction measurement is one of core requirement. To make managerial decision evidence-based, it is important to evaluate the processes and patient experience along with results of healthcare services. Distributed ledger technology implemented as a dynamic multi-factor rating platform can be a logical solution for improving the quality of services and could become a part of a comprehensive IT ecosystem based on value-based approach.
The author reviews the peculiarities of digitalized learning process organisation in the hardware and software environment of learning management systems in the context of vocational education and training. The author notes the complexity of the transition to the Industry 4.0 and mentions the risks connected with the named process in the vocational education and training. In such conditions it is important to develop effective models of public and private partnership, to decentralize administration and financing and, above all, to assure the vocational education and training quality.At the same time the learning process taking place in such an environment becomes digitalized, which, on the one hand, gives it additional advantages (easy access to training data regardless of time and place, individualisation of students’ learning paths, broad multimedia resources, etc.) and, on the other hand, requires solving complex tasks in distance courses designing. The author focuses on the methodology of distance courses designing, so it is very important for vocational education and training institution to ensure the realisation of the following five main components: regulatory, financial, technical, personnel, teaching and methodological support. It is emphasised that distance course designing becomes the most important aspect of implementing the modern digitalized learning process. The structure of creative group in distance courses designing is grounded, which comprises: a specialist in the relevant vocational sphere, specialist in distance learning, technical specialist (system administrator or distance courses programmer) and digital content designer.
An increased scientific interest in studying different models of education management systems is conditioned by the fact that the quality of education depends significantly on the management style. Thus, the process of creation of efficient systems of management and financing of the education presents a priority in educational policies of contemporary societies. The paper analyses different approaches to the education management systems in some European countries, on the comparative basis, with the aim of achieving as much of a total insight into contemporary courses of such processes as possible. The results of analysis show that the traditional division into centralized and decentralized systems of management is relativized, with a tendency to achieve an optimal relationship among different subjects in the process of management on the central, regional and local level of authority.