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Though the basic concept of a ledger that anyone can view and verify has been around for quite some time, today’s blockchains bring much more to the table including a way to incentivize users. The coins given to the miner or validator were the first source of such incentive to make sure they fulfilled their duties. This thesis draws inspiration from other peer efforts and uses this same incentive to achieve certain goals. Primarily one where users are incentivised to discuss their opinions and find scientific or logical backing for their standpoint. While traditional chains form a consensus on a version of financial "truth", the same can be applied to ideological truths too. To achieve this, creating a modified or scaled proof of stake consensus mechanism is explored in this work. This new consensus mechanism is a Reputation Scaled - Proof of Stake. This reputation can be built over time by voting for the winning side consistently or by sticking to one’s beliefs strongly. The thesis hopes to bridge the gap in current consensus algorithms and incentivize critical reasoning.
With many advances in sensor technology and the Internet of Things, Vehicle Ad Hoc Net- work (VANET) is becoming a new generation. VANET’s current technical challenges are deploying decentralized architecture and protecting privacy. Because Blockchain features are decentralized, distributed, mass storage, and non-manipulation features, this paper designs a new decentralized architecture using Blockchain technology called Blockchain-based VANET. Blockchain-based VANET can effectively resolve centralized problems and mutual distrust between VANET units. To achieve this, it is needed to provide scalability on the blockchain to run for VANET. In this system, our focus is on the reliability of incoming messages on the network. Vehicles check the validity of the received messages using the proposed Bayesian formula for trust management system and some information saved in the Blockchain. Then, based on the validation result, the vehicle computes a rate for each message type and message source vehicle. Vehicles upload the computed rates to Roadside Units (RSUs) in order to calculate the net reliability value. Finally, RSUs using a sharding consensus mechanism generate blocks, including the net reliability value as a transaction. In this system, all RSUs collaboratively maintain the latest updated Blockchain. Our experimental results show that the proposed system is effective, scalable and dependable in data gathering, computing, organization, and retrieval of trust values in VANET.
Die Bachelorarbeit „Forensic Chain – Verwaltung digitaler Spuren in Deutschland“ untersucht die Anwendung eines Blockchain-basierten Chain of Custody Systems im deutschen rechtlichen und regulatorischen Kontext. Die digitale Forensik, die sich mit der Sicherung und Analyse digitaler Spuren befasst, gewinnt an Bedeutung, da kriminelle Aktivitäten vermehrt im digitalen Raum stattfinden. Die Blockchain-Technologie bietet transparente und unveränderliche Aufzeichnungen, die sich für die Speicherung von Informationen im Zusammenhang mit digitalen Beweismitteln eignen. Das Hautpziel der Arbeit besteht darin, die Umsetzung eines Chain of Custody Prozesses im Forensic Chain System zu untersuchen und die Eignung dieses Systems im deutschen Raum zu bewerten. Hierfür wird ein Prototyp des Forensic Chain Systems entwickelt, um das erstellte Konzept zu testen. Die Ergebnisse tragen zum Verständnis der Wichtigkeit der digitalen Forensik in Deutschland bei und bieten Einblicke in die Einführung von Blockchain-basierten Chain of Custody-Systemen in diesem Bereich. Sie leisten einen Beitrag zur Weiterentwicklung der digitalen Forensik.
In recent years, both the Internet of Things (IoT) and blockchain technologies have been highly influential and revolutionary. IoT enables companies to embrace Industry 4.0, the Fourth Industrial Revolution, which benefits from communication and connectivity to reduce cost and to increase productivity through sensor-based autonomy. These automated systems can be further refined with smart contracts that are executed within a blockchain, thereby increasing transparency through continuous and indisputable logging. Ideally, the level of security for these IoT devices shall be very high, as they are specifically designed for this autonomous and networked environment. This paper discusses a use case of a company with legacy devices that wants to benefit from the features and functionality of blockchain technology. In particular, the implications of retrofit solutions are analyzed. The use of the BISS:4.0 platform is proposed as the underlying infrastructure. BISS:4.0 is
intended to integrate the blockchain technologies into existing enterprise environments. Furthermore, a security analysis of IoT and blockchain present attacks and countermeasures are presented that are identified and applied to the mentioned use case.