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Private Blockchain-Netzwerke können von Unternehmen für die Integritätssicherung von Produktionsdaten verwendet werden. Die Hochschule Mittweide entwickelt im Rahmen des Forschungsprojektes safe-UR-chain ein derartiges Blockchain-Netzwerk. Teil dieser Entwicklung ist die Auswahl und Optimierung eines Konsensverfahrens für das Netzwerk. Für diese Aufgabe fehlt es momentan an einem System, das den Vergleich von Konsensverfahren anhand ihrer Leistungsmetriken ermöglicht. Diese Arbeit befasst sich mit der Entwicklung eines derartigen Systems sowie der Implementierung dreier Konsensverfahren, die anhand ihrer vom System erfassten Leistungsmetriken verglichen werden.
Over the last two decades, the rapid advances in digitization methods put us on the fourth industrial era’s cusp. It is an era of connectivity and interactivity between various industrial processes that need a new, trusted environment to exchange and share information and data without relying on third parties. Blockchain technologies can provide such a trusted environment. This paper focuses on utilizing the blockchain with its characteristics to build machine-to-machine (M2M) communication and digital twin solutions. We propose a conceptual design for a system that uses smart contracts to construct digital twins for machines and products and executes manufacturing processes inside the blockchain. Our solution also employs the decentralized identifiers standard (DIDs) to provide self-sovereign digital identities for machines and products. To validate the approach and demonstrate its applicability, the paper presents an actual implementation of the proposed design to a simulated case study done with the help of Fischertechnik factory model.
Abstract: Blockchain Technology has become an innovative, mature tool for digital transformation, disrupting more and more application areas in their business processes, values, or even economic models. This paper leverages more than 30 academic publications on prototypes and their Blockchain-based use cases to transact certificates in the context of public education. The conceptual design and guiding ideas are reflected in the practical application development for the Federal Ministry of Education and Research ECHT! project within the showcase region WIR! in Mittweida and are used for the research design. During this approach we applied agile methods and the current certificate process to propose a comprehensive disclosure of a new software prototype including a three-layered architecture with multi-stakeholder components. The artefact instantiation contributes to the practical knowledge base within Information System Research and specifically in digital certificate processes starting from creation, searching, and proofing up to revoking by consideration of an existing IT landscape as well as organizational hierarchy.
With the advancement in cryptography and emerging internet technology, electronic voting is gaining popularity since it ensures ballot secrecy, voter security, and integrity. Many commercial startups and e-Voting systems have been proposed, but due to lack of trust, privacy, transparency, and hacking issues, many solutions have been suspended. Blockchain, along with cryptographic primitives, has emerged as a promising solution due to its transparent, immutable, and decentralized nature. In this paper, we summarized the properties that existing solutions should satisfy and explained some cryptographic primitives like ZKP, Ring signatures along with their security limitations. We gave a comprehensive review of some blockchain-based e-Voting systems and discussed their strengths and weaknesses based on the given properties with table of comparison.
While blockchain technology is still in an early stage of its development, it is already of surging economic importance.
In the literature, blockchain is referred to as either being a disruptive, institutional, foundational, or general purpose technology. There is still no consensus about the economic theory that should apply for analyzing its economic effects. This article draws on use cases from the coffee supply chain to explore, which theories could potentially apply to an emerging blockchain economy.
Dezentrale Kreditplattformen ermöglichen Nutzern die Aufnahme sowie die Bereitstellung von Liquidität in Form von Krypto-Token gegen Verzinsung. Dieser Teil des dynamisch wachsenden Bereichs dezentraler Anwendungen erweist sich zwar als sehr innovativ, birgt jedoch auch Risiken. Dazu zählen insbesondere Kreditrisiken, Liquiditätsrisiken, Marktrisiken und operationelle Risiken. Um diesen Risiken entgegenzuwirken existieren vereinzelt Absicherungsmechanismen. Diese Mechanismen haben durchaus Potenzial die genannten Risiken zu verringern, wenngleich dadurch keine vollumfängliche Risikobewältigung erfolgen kann. Somit verbleiben immer Restrisiken, die letztlich vor allem von den Nutzern zu tragen sind.
The wind energy sector is undergoing digitalization processes that span multi-tier supply chains of turbine components and wind farm maintenance, amongst others. In an industrial use case that includes Siemens Gamesa Renewable Energy, Vestas and APQP4Wind, the processes of producing, fastening, and servicing bolts in turbines are mapped to a digital model. The model follows the lifetime of turbine bolts from the manufacturing phase, to fastening in turbines and maintenance, until their replacement and recycling. The development of the digital model is iteratively addressed in a design science research approach, as the authors actively contribute to the project. Distributed ledgers (DLs) support the notary documentation of the bolts and turbines, from their registration phase to the assembly-, technical service verification- and recycling phases. The immutable and decentralized nature of DLs secures the data against tampering and prevents any changes taken unilaterally by engaging the service stakeholders and component providers in a blockchain consortium.
Global challenges like climate change, food security, and infectious diseases such as the COVID-19 pandemic are nearly impossible to tackle when established experts and upstart innovators work in silos. If research organizations, governments, universities, NGOs, and the private sector could collaborate on these challenges more easily, lasting solutions would certainly come more quickly. Aligned with the United Nations’ Sustainable Development Goals, SAIRA connects key players in different arenas: scientists and engineers at research and technology organizations (RTOs) looking to collaborate on sustainable development projects, companies seeking R&D support to tackle their most challenging problems, and startups with innovative ideas and a desire to scale. The platform is a blockchain-secured open innovation platform, anchored on Max Plank Digital Library's blockchain network bloxberg, that assures the authenticity and integrity of all user-generated content and collaboration processes.
Mapping identities, digital assets, and people’s profiles on the internet is getting much traction in the blockchain cosmos lately. The new technology is currently forming architectures that will further pave new ways to reach fundamental mechanisms to interact in a decentralized, user-centered manner. These schemes are often declared as the next generation of the web. Within the article will be shown, how the internet has evolved in managing identities, what problems arose, and how new data architectures help build applications on top of privacy rights. Both technological and ethical perspectives are viewed to answer which guidelines should be considered to fulfill the upcoming branch of decentralized services and what we can learn from historical schemes regarding their privacy, accounting, and user data.
Rollen und Aufgaben Interdisziplinärer Projektteams zur Blockchain-Integration im Unternehmensumfeld
(2021)
Bei der Einführung von Blockchain-Lösungen im Unternehmensumfeld sind zahlreiche Unternehmensfunktionen und Mitarbeiter unterschiedlicher Disziplinen involviert, deren Zusammenarbeit zum einen notwendig sind, zum anderen jedoch auch zahlreiche Herausforderungen hervorrufen. Relevante Rollen und Disziplinen werden in diesem Paper identifiziert und beschrieben, um Handlungsempfehlungen für die interdisziplinäre Zusammenarbeit und somit zur erfolgreichen Integration von Blockchain-Lösungen in Unternehmen und insbesondere unternehmensübergreifenden Geschäftsbeziehungen zu entwickeln. Auf Basis existierender Blockchain-Projekte werden die Rollen „Management und Finanzen“, „Supply Chain Management“ und „IT und IT-Sicherheit“ fokussiert und entlang eines Vorgehensmodells zur Integration mit konkreten Rollenbeschreibungen und Aufgaben beschrieben.