International Journal of Metaverse & Virtual Transformation (IJMVT)

ISO Abbreviation:

Int. J. Meta. Vir. Tra.

Start Publication: Winter 2025

Acceptance Rate: 53%

Submission to Initial Assessment: 5 days 

Submission to Final Decision: 90 days

No. of Volumes: 2

No. of Issues: 4

No. of Articles: 21

No. of Indexing Databases: 0

No. of Reviewers: 12

No. of Contributors: 39

Contributing Countries: 4

Article View: 2,902

PDF Download: 4,348

View Per Article: 138.19

PDF Download Per Article: 207.05

The International Journal of Metaverse & Virtual Transformation (IJMVT) (ISSN: 3115-7351 ) is an academic, peer-reviewed, open-access journal published quarterly that is being published by Ayande Amoozan-e-ATA (AAA). The journal aims to provide an international forum for researchers and practitioners to publish original and insightful articles. This journal covers subject areas related to the metaverse, virtual reality (VR), augmented reality (AR), and various aspects of digital transformation.

 

Journal Information:

Intellectual Property Rights (IPRs): All intellectual property rights of the articles belong to the author.
This publication is subject to the rules of the Ethics Committee for Publication (COPE) and follows the executive regulations of the Law on Prevention and Combating Fraud in Scientific Works.
Type of publishable articles: Scientific research articles
Release Sequence: Quarterly
Average article review time: 8-10 weeks
Plagiarism: iThenticate & Similarity Check System (IranDoc) are used to prevent plagiarism.
Access to articles: Free
If the article has a sponsor or a provider of research credibility, the author must include this information.
Country of Publication: Iran
Publisher: Ayande Amoozan-e-ATA Company
Specialty: Educational Technology and related areas.
Release Start: Winter 2025
Article review and acceptance fee: Free
Type of review: Double-blinded peer review (2 reviewers)
Publish Fee: 35.000.000 Rials
Initial review period: Three months
Format: Electronic
Electronic ISSN: 3115-7351

Digital Transformation

Identification and Evaluation of an Advanced Tourism Ecosystem Management Model in the Cultural Heritage and Tourism Organization of Khuzestan Province

Pages 1-19

Mehran Mohammadi Azad, Ali Kangarani Farahani, Seyed Rasoul Aghadavood

Abstract This research aims to identify and evaluate an advanced tourism ecosystem management model in the Cultural Heritage and Tourism Organization of Khuzestan Province. The study is an applied-developmental one. Based on targeted sampling, 15 managers from the Cultural Heritage and Tourism Organization of Khuzestan Province were interviewed, and in the quantitative section, all heads, managers, and employees working in the organizational sections, whose number is unlimited and according to the Kohne formula is 211, were considered. The qualitative data analysis was performed using the ATLAS.ti software, and for validation, structural equation modeling methods were used in the SMARTPLS software. In the qualitative stage, the identification of 6 main themes, 26 central themes, and 160 initial codes showed that advanced tourism ecosystem management is a multidimensional, network-based phenomenon that depends on the interaction of various organizational and environmental layers. Overall, the results indicate that achieving an advanced tourism ecosystem in Khuzestan Province is not a one-time project but a gradual process requiring institutional commitment, investment in digital infrastructure, human capital empowerment, and synergy between public and private sectors. The proposed model can provide a basis for intelligent policymaking, efficient resource allocation, and enhancing the province's competitiveness at the national and international levels, paving the way for sustainable development and enhancing the status of Khuzestan tourism.

Digital Transformation

Development of a Mission-Oriented Performance Management Model in the Digital Transformation Context: A Hybrid Approach Based on Literature Synthesis and Fuzzy Delphi

Pages 20-33

Roya Mosayebnejad, Karamollah Daneshfard, Nazanin Pilevari

Abstract This research employs a mixed exploratory design, focusing on two complementary methods: literature synthesis and fuzzy Delphi. In the first phase, the seven-stage Sandelowski and Baruss (2007) model was utilized to extract an initial pattern of mission-oriented performance management. A systematic literature review identified 371 studies, narrowing down to 34 for final analysis after applying inclusion and exclusion criteria. Qualitative analysis of these sources yielded 237 conceptual codes, eventually organized into 17 components and 51 indicators as the initial conceptual framework of the study.
In the second phase, to refine the model and achieve expert consensus, the fuzzy Delphi method was employed. The expert panel consisted of 15 university and professional specialists in performance management and the oil industry, selected through targeted sampling. The Delphi questionnaire was administered in three rounds. Expert linguistic assessments were converted into triangular fuzzy numbers, aggregated, and defuzzified. Indicators with scores below the predefined threshold were eliminated or modified. The Kendall coefficient of concordance was calculated to measure the agreement among experts. After three rounds, a stable consensus was reached on the model's dimensions, components, and indicators, solidifying the final mission-oriented performance management model.

Metaverse Technologies

Identifying and Evaluating Native Patterns for Creating a Transformational Organizational Culture Based on Modern Public Services in the Context of Intelligent Governance (Case: National Iranian Oil Company)

Pages 34-48

Bahman Laki, Ali Kangarani Farahani, Seyed Rasoul Aghadavood

Abstract This research aims to identify and evaluate a native model for creating an organizational transformation culture based on new public services in smart governance and emerging technologies. This study is applied-developmental in nature. Based on purposive sampling, 15 managers of the National Iranian Oil Company were interviewed. In the quantitative section, all heads, managers, and staff working in the corporate sectors were considered; their number was unlimited, and based on Cochran’s formula, a sample size of 384 was determined. The qualitative method of Grounded Theory data analysis was used using ATLAS.ti software, and Structural Equation Modeling (SEM) in SmartPLS software was employed for validation. The results of model fit using structural equations, supported the coherence and empirical validity of the proposed model. It showed that the implementation of these strategies directly and indirectly leads to improved organizational efficiency, enhanced service quality, strengthened public trust, reduced operational costs, and the formation of competitive advantages in the public sector. Accordingly, the transformation culture in the National Iranian Oil Company is not merely a transient attitudinal change but a strategic mechanism for aligning economic missions with the values of new public services and the requirements of smart governance. This mechanism, if supported by continuous managerial and institutional backing, can pave the way for the transition of this organization into an agile, accountable, data-driven, and citizen-centric institution at both national and regional levels, laying the essential cultural foundation for the successful adoption of advanced technologies such as the Metaverse, Artificial Intelligence, and Digital Twins.

Digital Transformation

Modeling the Impact of Corporate Social Responsibility on Environmental Sustainability through Digital Technologies and Smart Energy Management in Iranian Oil and Petrochemical Companies

Pages 49-63

Iman Mostafavi, Samaneh Abedi, Ali Emami Meibodi, Teymour Mohammadi

Abstract This study aims to model the impact of corporate social responsibility (CSR) on environmental sustainability through the adoption of digital technologies and smart energy management in Iranian oil and petrochemical companies. In the complex and competitive environment of the energy industry, CSR is no longer viewed merely as an ethical or legal obligation; rather, it has become a strategic approach for developing digital infrastructure, improving production processes, and enhancing energy efficiency. The statistical population includes 30 Iranian oil and petrochemical companies during the period 2016–2024. To analyze the relationships among variables and examine heterogeneous effects across different levels of energy performance, a panel quantile regression model was employed. The findings show that CSR significantly contributes to reducing energy intensity and improving environmental sustainability through the development of digital technologies, smart monitoring systems, big data analytics, the industrial Internet of Things (IIoT), and intelligent energy management systems. Companies with higher investment in digital infrastructure and smart energy management demonstrate better performance in reducing pollutant emissions, optimizing resource consumption, and improving operational efficiency. The results also indicate that the effect of CSR is stronger in larger firms and organizations with higher levels of digital maturity. Furthermore, analysis of higher energy consumption quantiles (Q75 and Q95) reveals that the role of digital technologies and smart energy management becomes more pronounced in strengthening the environmental impacts of CSR. Overall, CSR is most effective in promoting environmental sustainability when combined with digital transformation strategies and integrated energy management systems in the oil and petrochemical industry.

Digital Transformation

Analysis of Multi-Objective Decision-Making Indicators for Evaluating Smart Supply Chain Risks in the Electricity Industry Using the Attride-Stirling Method

Pages 64-78

Vahid Rashidi, Ahmadreza Kasraei, Mohammadreza Kabaranzadeh Ghadim

Abstract This study analyzes multi-objective decision-making indicators for evaluating non-dominated solutions to smart supply chain risks in the electricity industry using the Attride-Stirling thematic analysis method. The research is applied in purpose and adopts a descriptive-analytical, qualitative survey design. The expert panel consisted of 18 electricity industry professionals and academic specialists with expertise in smart supply chains and decision-making, whose insights were employed to identify, refine, and validate the emerging themes.
Data were collected through an extensive review of the relevant literature and semi-structured expert interviews. Thematic analysis was conducted following Braun and Clarke’s six-phase framework, including data familiarization, initial coding, theme generation, theme review, theme definition and naming, and report preparation. The analysis yielded 45 initial codes organized around the overarching theme of developing a multi-objective framework for evaluating non-dominated solutions to smart electricity supply chain risks. Three second-level organizing themes were identified: risk and reliability criteria, economic and cost criteria, and operational and resilience criteria. To ensure methodological rigor, Holsti’s coefficient, Scott’s pi, Cohen’s kappa, and Krippendorff’s alpha were employed to evaluate credibility and reliability, yielding values of 0.811, 0.835, 0.850, and 0.909, respectively, indicating substantial inter-coder agreement. The proposed framework provides a conceptually coherent and reliable basis for supporting multi-objective decision-making, selecting Pareto-efficient solutions, strengthening intelligent risk management, and enhancing digitally enabled supply chain resilience in the electricity industry.

Digital Transformation

Application of Attride-Stirling's Content Analysis in Analyzing the Indicators of the Smart Logistics Model Based on the Energy Internet System

Pages 79-93

Mohammad Ghanbarigorji, Ahmad Reza Kasraee, Hassan Mehrmanesh

Abstract The present study aimed to design a smart logistics model based on the energy internet system using Attride-Stirling’s thematic network analysis. This applied research is descriptive-analytical in nature. To identify and explain effective indicators, a qualitative approach was adopted through semi-structured interviews with 18 university professors and industry experts selected via non-random, purposive, and criterion-based sampling until theoretical saturation was achieved. Data analysis was conducted using ATLAS.ti software, strictly following Attride-Stirling’s comprehensive six-step model for thematic extraction. Initially, 120 raw codes were extracted, which were refined and merged into 32 basic themes, 10 first-level constructive themes, and 3 second-level constructive themes. Ultimately, an overarching global theme, “Smart Logistics Model Based on the Energy Internet System,” was established. Findings categorized indicators into three main areas: institutional, managerial, and social contexts; human and knowledge capacities; and technical/operational capacities. Sub-components included legal regulations, cultural factors, strategic financing, individual traits, knowledge resources, and technological infrastructure. To ensure qualitative rigor, four indices were calculated: Holsti’s coefficient (0.887), Scott’s Pi (0.755), Cohen’s Kappa (0.725), and Krippendorff’s Alpha (0.817), confirming superior validity, reliability, and consistency. Results demonstrate that achieving energy-internet-based smart logistics requires the synchronized development of technological infrastructure, knowledge capacities, and robust institutional platforms. This model serves as a comprehensive strategic framework for policy-making, planning, and the operational development of intelligent logistics systems within the evolving landscape of new energies. Such systemic integration will significantly enhance operational sustainability and logistical efficiency across various national industrial sectors and infrastructure projects.

Augmented Reality (AR)

Identifying Effective Factors of Anonymity on the Credibility and Trustworthiness of Electronic Word of Mouth in the Metaverse

Volume 1, Issue 1, Winter 2025, Pages 46-56

Azadeh Darvish

Abstract The Metaverse, an immersive digital realm, has revolutionized the dynamics of communication and information exchange. In this context, electronic word-of-mouth (eWOM) has emerged as a vital tool for information dissemination and opinion formation. However, the influence of anonymity on eWOM credibility and trustworthiness remains a complex and evolving facet of the Metaverse. This review paper explores the multifaceted factors that underpin the impact of anonymity on eWOM which studying each can help researchers to develop this field. Through the systematic review, databases were searched and out of 145 articles, 65 were selected for review. Community Norms and Culture, Platform Design and Policies, Trust-Building Mechanisms, Transparency and Accountability, Information Quality and Consistency, Moderation and Ethical Practices, Challenges and Future Directions influence anonymity and eWOM credibility. Information Adoption Model, Social Identity Theory, Elaboration Likelihood Model, Source Credibility Theory, Network Theory, Cue Utilization Theory, and Social Exchange Theory are among the studied theories in this field. Credibility Challenges, Trust Formation, User Perceptions, Ethical Considerations, and User Education influence anonymity on the credibility and trustworthiness of eWOM in the Metaverse

Artificial Intelligence in the Metaverse

An Overview of the Cybernetic Applications of Different Sciences in the Metaverse

Volume 1, Issue 1, Winter 2025, Pages 57-70

Milad Roshany, Reza Dehkhodaei, Fatemeh Hamidi, Fatemeh Zandian

Abstract Since the progress of science towards specialization, a kind of distance between awareness and knowledge has been created. But there are some views that believe that since all sciences are born of a single science, then the world of science should become a single land. An example of such a view is evident in cybernetics. Cybernetics emerged from the 20th century and has entered most sciences with the aim of investigating the nature of control and communication in humans, machines, and animals, as well as by paying attention to concepts such as communication, control, feedback, stability, regulation, information, etc. Metaverse is also an emerging phenomenon in which we witness the interaction between man and machine and actually the interaction between physical and virtual space. The study of sources shows the wide application of cybernetics in various sciences, and considering the importance and practical role of cybernetics in order to solve problems, control and regulate systems and create stability and stability in various sciences, in the present research, a review of the available studies in a library method in the field of cybernetics applications until its applications as a unit in various sciences such as industry, physics, chemistry, computer science, management, information storage and retrieval systems, cyber security, psychiatry (psychocybernetics), physiology, biology (biocybernetics), control Bioelectricity and medicine should be investigated in the metaverse space. By using cybernetic principles in various sciences, Metaverse can be used for its evolution to adapt to the life of humanity.

Digital Transformation

Digital Transformation in Libraries: Identifying the Main Components in a Knowledge Extraction System Based on Single Sign On

Volume 1, Issue 1, Winter 2025, Pages 19-28

Mila Malekolkalami, Mohammad Hassanzadeh

Abstract This study aims to identify the main components in a Knowledge Extraction System based on Single Sign-On in libraries. This research is with a mixed approach and it is an exploration based on the Sandelusky and Bargo (2006) model.  The studies from 2000 to 2022 were analyzed in ATLAS Ti software. In the quantitative phase, the statistical population is 12 experts in knowledge management and libraries who were selected by purposeful sampling. MICMAC software was used for the ISM method. 40 codes were categorized into 4 main themes of knowledge extraction based on SSO features including Infrastructural measures of knowledge extraction, Knowledge organization, Integration of knowledge, and Monitoring and updating knowledge. Access using unit code with the rank of 1 and frequency of 12 is one of the most important components in a knowledge extraction system based on SSO in libraries. According to the ISM, the knowledge extraction system based on SSO in libraries has four levels. Since SSO is one of the hot trends and high topics in the field of libraries, there can be a knowledge extraction system based on SSO features to help share and develop knowledge.

Digital Transformation

Metaverse in Conjunction with Telemedicine: A Review of Trends

Volume 1, Issue 1, Winter 2025, Pages 29-45

Reza Dehkhodaei, Mohammad Hassanzadeh, Fatemeh Hamidi

Abstract The current research aims to investigate the process of publishing resources related to metaverse in connection with telemedicine. The current research is of applied type and uses the Scientometric method. A descriptive review of the available resources with related keywords such as logistics, knowledge logistics, medical knowledge logistics, telemedicine and knowledge logistics in telemedicine was done in Google, Google Scholar, and SID databases to determine the relationship between the two concepts. The findings of this research showed that the sources of this area have a history of about two years. Ammar A, Fournier, Stephane, Muller, Olivier, and Skalidis, Ioannis are among the most used authors. India, Italy, the United Arab Emirates, UNAV, and the United States were among the busy countries. Also, most organizational affiliations were related to the University of Crete, Center Hospitalier Universitaire Vaudois, Imam Abdulrahman Bin Faisal University, Symbiosis International Deemed University, Symbiosis Institute of Digital and Telecom Management and CATHOLIC UNIVERSITY OF THE SACRED HEART. The analysis of the occurrence of keywords also showed that telemedicine, metaverses, virtual reality, augmented reality, artificial intelligence, and telerehabilitation were among the most frequent keywords. Reviewing the subject literature in this research showed that these two concepts are closely related. As far as it can be claimed that the metaverse is a general concept that can cover various aspects of human life and transform human interactions. This research can be the basis for conducting more studies regarding the connection between the medical field and the metaverse through telemedicine. 

Metaverse Technologies

Metaverse: The New Technological Development

Volume 1, Issue 1, Winter 2025

K P Singh

Abstract Metaverse, as an old concept, is at the forefront of technological developments today. In recent time, the Metaverse, gaining more attention in tech business due to its core features such as a sense of immersion; real-time interactivity and user agency and will serves the purpose of platforms and devices that work seamlessly with each other; the possibility for thousands of people to interact simultaneously and use cases well beyond gaming.

Metaverse Technologies

Proposed Model for Training Building Information Modeling (BIM) in Metaverse Technology Using a Mixed Method

Volume 1, Issue 2, Spring 2025, Pages 1-20

Sedigheh Mohammadesmaeil, Mehrnazosadat Ghaheri

Abstract The Fourth Industrial Revolution and the advancement of technology necessitate all industries integrate their operations with cutting-edge technology to grow and stay ahead of global changes. Considering AEC (architecture, engineering, and construction) industry, this research focuses on integrating building information modeling (BIM) training using Metaverse, the world's leading technology, because education is crucial for the growth of individuals in all fields.
A mix-method approach was employed, which entails qualitative meta-synthesis and quantitative methods, such as questionnaires and structural equation modeling (SEM) using SmartPLS. Through various databases, 181 relevant studies were identified, and 30 were selected for further analysis. The selected studies were thoroughly analyzed qualitatively using the MAXQDA 2020 software. The process involved initial coding, axial coding and pattern coding to identify overall patterns and trends within the data. The extracted codes, comprising nine categories and 82 indicators, were validated by a panel of experts using the Fuzzy Delphi method in two rounds of feedback and discussion among the experts to reach consensus on the validity and appropriateness of the codes. Following these results, a comprehensive questionnaire was conducted to assess the factors that influenced BIM training in metaverse. A carefully designed questionnaire was distributed to 300 participants. The quantitative data was analyzed with the aid of descriptive statistics and structural equation modeling (SEM). Both qualitative and quantitative phases resulted in the division of findings into nine categories: technology data and information, education technology infrastructure, team capacity, socio-cultural factors, behavioral factors, applied technologies, functional results, practical features, and environmental configuration.

Artificial Intelligence in the Metaverse

Identification and Prioritization of Metaverse Infrastructure with a Fuzzy Approach

Volume 1, Issue 1, Winter 2025, Pages 1-9

Mahsa Rafiei

Abstract The aim of the research was to identify and prioritize metaverse infrastructures with a fuzzy approach. This analysis has been done in a quantitative and applied manner. The identified criteria were screened using the fuzzy Delphi analysis method, and the internal and external relationship of the screened components was investigated using the fuzzy Dimetal technique. The surveyed community were experts in the field of information technology and artificial intelligence. 14 people were selected using purposive sampling. Using MATLAB software, Fuzzy DeMetal analysis and EXCEL software for fuzzy Delphi analysis were performed. The identified criteria were determined based on the library method in the previous section. 8 criteria were identified. In this research, 8 main criteria were identified based on the fuzzy multi-criteria decision-making method of Delphi and DEMATEL. These 8 criteria are: virtual reality and augmented reality technology, complex networks and communications, powerful processing, servers and cloud infrastructure, metaverse development platforms and software, security and information protection, interactive technologies and artificial intelligence technologies. Based on the Delphi technique, all items were confirmed. In the Fuzzy Dimetal technique, it was found that interactive technologies have the highest priority. Artificial intelligence technologies ranked second. Interactive technologies based on existing technologies have a special place in Metaverse. Augmented reality provides an opportunity to merge the real world with virtual elements.

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