Conduit rack platform is an important facility for offshore oil development. This paper is based on the environmental load theory and ANSYS theory, firstly, the size of the wind and wave, the role of the orientation, ...
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software effort estimation is a vital component of project management, encompassing the prediction of time, cost, and resources necessary for software development. Accurate effort estimation plays a pivotal role in ef...
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An emerging research field in softwareengineering, software defect prediction, is playing a significant role in analyzing software quality and balancing software development costs. This study proposes a software defe...
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This study examines the role of artificial intelligence (AI) in supply chain management (SCM) through a comprehensive bibliometric analysis of literature sourced from the Scopus database, renowned for its extensive an...
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Agile methods are state of the art in software development. Companies worldwide apply agile to counter the dynamics of the markets. We know, that various factors like culture influence the successful application of ag...
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ISBN:
(纸本)9783031727801;9783031727818
Agile methods are state of the art in software development. Companies worldwide apply agile to counter the dynamics of the markets. We know, that various factors like culture influence the successful application of agile methods in practice and that sucess varies from company to company. To counter these problems, we combine two causal models presented in literature: The Agile practices Impact Model and the Model of Cultural Impact. In this paper, we want to better understand the two facets of factors in agile: Those influencing their application and those impacting the results when applying them. This papers core contribution is the Agile Influence and Impact Model, describing the factors influencing agile elements and the impact on specific characteristics in a systematic manner.
The reform of the Approval Process of Construction Projects (APCP) is part of the broader reform of the administrative approval system in the construction sector. This reform is a crucial step in transforming governme...
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In order to improve the testing efficiency and accuracy of the external interface and human-machine interaction page of the integrated display control system in the ground integrated test of helicopter avionics system...
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This paper reviews the state of the art in blockchain-based access control research. In the digital era, data security and access management are increasingly important. Traditional access control (e.g. RBAC, ABAC, Cap...
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ISBN:
(纸本)9783031807121;9783031807138
This paper reviews the state of the art in blockchain-based access control research. In the digital era, data security and access management are increasingly important. Traditional access control (e.g. RBAC, ABAC, CapBAC) faces various challenges in IoT, such as the risk of centralization and the threat of data leakage. To address these issues blockchain technology (with its properties such as distributed and tamper-proof) provides innovative solutions. This paper first introduces the three main-stream access control in IoT, then discusses the basic concepts of blockchain (including consensus mechanism, smart contract and cryptography), and analyzes the blockchain in access control applications (including authentication, privilege management and audit trail). It then discusses the advantages and challenges of block-chain access control and future research directions. Finally, the potential of block-chain in access control is summarized, emphasizing its importance for data security and privacy protection. Through this overview paper, readers can better understand the application of blockchain technology in access control and provide valuable insights for future research and practice.
Digital twins have emerged as highly valuable tools for model-based planning, simulation and optimization over the last couple of years, thereby demonstrating considerable potential for application within the construc...
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Digital twins have emerged as highly valuable tools for model-based planning, simulation and optimization over the last couple of years, thereby demonstrating considerable potential for application within the construction industry. The introduction of building information modeling (BIM) has effectively established a standardized approach to representing building models. However, in practice, many of these models currently exhibit limitations as to their quality, specifically concerning the level of detail they encompass. In addition, BIM models too often are locked inside a specific vendor's tool which readily implies a lack of platform independence, or interoperability, which, however, is essential for facilitating single and regressive, i.e., after a design change, model-based building performance simulations. Model-based engineering has effectively addressed comparable challenges within the domain of softwareengineering over the past decades by facilitating the integration and interoperability of models from various origins, by capitalizing on model-based tool integration. Prompted by these advantages, this study introduces a model-based tool environment that addresses the aforesaid challenges concerning BIM model quality and interoperability. Taking advantage of our proposed model-based tool environment, we implement an agile, continuous planning process for regressive, model-based building performance simulations, thereby enhancing building energy efficiency planning.
Countless software programs are created daily, leading to a parallel increase in software bugs. Each institution typically maintains a dedicated quality assurance team tasked with ensuring the integrity of their devel...
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