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As the Industry 4.0 is evolving, the previously separated Operational Technology (OT) and Information Technology (IT) is converging. Connecting devices in the industrial setting to the Internet exposes these systems to a broader spectrum of cyber-attacks. The reason is that since OT does not have much security measures as much as IT, it is more vulnerable from the attacker's perspective. Another factor contributing to the vulnerability of OT is that, when it comes to cybersecurity, industries have focused on protecting information technology and less prioritizing the control systems. The consequences of a security breach in an OT system can be more adverse as it can lead to physical damage, industrial accidents and physical harm to human beings. Hence, for the OT networks, certificate-based authentication is implemented. This involves stages of managing credentials in their communication endpoints. In the previous works of ivESK, a solution was developed for managing credentials. This involves a CANopen-based physical demonstrator where the certificate management processes were developed. The extended feature set involving certificate management will be based on the existing solution. The thesis aims to significantly improve such a solution by addressing two key areas that is enhancing functionality and optimizing real-time performance. Regarding the first goal, firstly, an analysis of the existing feature set shall be carried out, where the correct functionality shall be guaranteed. The limitations from the previously implemented system will be addressed and to make sure it can be applied to real world scenarios, it will be implemented and tested in the physical demonstrator. This will lay a concrete foundation that these certificate management processes can be used in the industries in large-scale networks. Implementation of features like revocation mechanism for certificates, automated renewal of the credentials and authorization attribute checks for the certificate management will be implemented. Regarding the second goal, the impact of credential management processes on the ongoing CANopen real-time traffic shall be a studied. Since in real life scenarios, mission-critical applications like Industrial control systems, medical devices, and transportation networks rely on real-time communication for reliable operation, delays or disruptions caused by credential management processes can have severe consequences. Optimizing these processes is crucial for maintaining system integrity and safety. The effect to minimize the disturbance of the credential management processes on the normal operation of the CANopen network shall be characterized. This shall comprise testing real-time parameters in the network such as CPU load, network load and average delay. Results obtained from each of these tests will be studied.
Privacy is the capacity to keep some things private despite their social repercussions. It relates to a person’s capacity to control the amount, time, and circumstances under which they disclose sensitive personal information, such as a person’s physiology, psychology, or intelligence. In the age of data exploitation, privacy has become even more crucial. Our privacy is now more threatened than it was 20 years ago, outside of science and technology, due to the way data and technology highly used. Both the kinds and amounts of information about us and the methods for tracking and identifying us have grown a lot in recent years. It is a known security concern that human and machine systems face privacy threats. There are various disagreements over privacy and security; every person and group has a unique perspective on how the two are related. Even though 79% of the study’s results showed that legal or compliance issues were more important, 53% of the survey team thought that privacy and security were two separate things. Data security and privacy are interconnected, despite their distinctions. Data security and data privacy are linked with each other; both are necessary for the other to exist. Data may be physically kept anywhere, on our computers or in the cloud, but only humans have authority over it. Machine learning has been used to solve the problem for our easy solution. We are linked to our data. Protect against attackers by protecting data, which also protects privacy. Attackers commonly utilize both mechanical systems and social engineering techniques to enter a target network. The vulnerability of this form of attack rests not only in the technology but also in the human users, making it extremely difficult to fight against. The best option to secure privacy is to combine humans and machines in the form of a Human Firewall and a Machine Firewall. A cryptographic route like Tor is a superior choice for discouraging attackers from trying to access our system and protecting the privacy of our data There is a case study of privacy and security issues in this thesis. The problems and different kinds of attacks on people and machines will then be briefly talked about. We will explain how Human Firewalls and machine learning on the Tor network protect our privacy from attacks such as social engineering and attacks on mechanical systems. As a real-world test, we will use genomic data to try out a privacy attack called the Membership Inference Attack (MIA). We’ll show Machine Firewall as a way to protect ourselves, and then we’ll use Differential Privacy (DP), which has already been done. We applied the method of Lasso and convolutional neural networks (CNN), which are both popular machine learning models, as the target models. Our findings demonstrate a logarithmic link between the desired model accuracy and the privacy budget.
Das automatisierte Erkennen von Schwachstellen wird immer wichtiger. Gerade bei der Softwareentwicklung werden immer häufiger Schwachstellenscanner eingesetzt. Das Ziel der vorliegenden Arbeit ist es einen Überblick zu erhalten, welche Schwachstellenscanner für Webanwendungen existieren und wie sinnvoll deren Einsatz ist. Um diese Frage zu beantworten, werden vier auf dem Markt verfügbare Schwachstellenscanner getestet. Aus der bisherigen Infrastruktur von M und M Software werden Anforderungen und Selektionskriterien abgeleitet. In zwei Testphasen werden verschiedene Schwachstellenscanner analysiert und bewertet wie gut sie die Kriterien erfüllen. Am Ende wird bewertet, ob der Einsatz eines Schwachstellenscanners in der Infrastruktur sinnvoll ist. Neben dieser Analyse wird außerdem untersucht welche Chancen die AI-Technologie für Schwachstellenscanner bietet.
Linux and Linux-based operating systems have been gaining more popularity among the general users and among developers. Many big enterprises and large companies are using Linux for servers that host their websites, some even require their developers to have knowledge about Linux OS. Even in embedded systems one can find many Linux-based OS that run them. With its increasing popularity, one can deduce the need to secure such a system that many personnel rely on, be it to protect the data that it stores or to protect the integrity of the system itself, or even to protect the availability of the services it offers. Many researchers and Linux enthusiasts have been coming up with various ways to secure Linux OS, however new vulnerabilities and new bugs are always found, by malicious attackers, with every update or change, which calls for the need of more ways to secure these systems.
This Thesis explores the possibility and feasibility of another way to secure Linux OS, specifically securing the terminal of such OS, by altering the commands of the terminal, getting in the way of attackers that have gained terminal access and delaying, giving more time for the response teams and for forensics to stop the attack, minimize the damage, restore operations, and to identify collect and store evidence of the cyber-attack. This research will discuss the advantages and disadvantages of various security measures and compare and contrast with the method suggested in this research.
This research is significant because it paints a better picture of what the state of the art of Linux and Linux-based operating systems security looks like, and it addresses the concerns of security enthusiasts, while exploring new uncharted area of security that have been looked at as a not so significant part of protecting the OSes out of concern of the various limitations and problems it entails. This research will address these concerns while exploring few ways to solve them, as well as addressing the ideal areas and situations in which the proposed method can be used, and when would such method be more of a burden than help if used.
Diese Bachelorthesis behandelt die Entwicklung eines Prototyps zur Identifizierung und Verhinderung von Angriffen mithilfe von KI- und ML-Modellen. Untersucht werden die Leistungsfähigkeit verschiedener theoretischer Modelle im Kontext der Intrusion Detection, wobei Machine-Learning-Modelle wie Entscheidungsbäume, Random Forests und Naive Bayes analysiert werden. Die Arbeit betont die Relevanz der Datensatzauswahl, die Vorbereitung der Daten und bietet einen Ausblick auf zukünftige Entwicklungen in der Angriffserkennung.
Die folgende Arbeit thematisiert ein Konzept zur Automatisierung von Firewall-Audits und die Implementierung eines Tools zur Durchführung. Für das Audit relevante Aspekte von NGFWs werden ausgewählt und näher erläutert. Diese bestehen aus der Objektdatenbank, Firewall-Regelwerken und VPN-Konfigurationen. Die Analyse der Daten basiert auf einerseits eigens erstellten Kriterien, andererseits auf Empfehlungen des BSI und des NIST. Zusätzlich wird auf Basis von NIST Recommended Practices und dem CVSS der „Awareness Score“ eingeführt, der auf Fehlkonfigurationen innerhalb des Firewall-Regelwerks aufmerksam machen soll. Das Konzept für das Tool sieht vor, Firewalls mehrerer Hersteller, darunter Cisco, Checkpoint und Sophos, auditieren zu können. Die Implementierung wurde aus zeitlichen Gründen nur für Firewalls des Herstellers Cisco durchgeführt. Für die Analyse wird ein einheitliches Firewall-Modell erzeugt. So sollen auch Firewalls anderer Hersteller zu dem Tool hinzugefügt werden können. Die Ergebnisse des Audits werden in einem Bericht dargestellt.
Künstliche Intelligenzen, Deep Learning und Machine-Learning-Algorithmen sind im digitalen Zeitalter zu einem Punkt gekommen, in dem es schwer ist zu unterscheiden, welche Informationen und Quellen echt sind und welche nicht. Der Begriff „Deepfakes“ wurde erstmals 2017 genutzt und hat bereits 2018 mit einer App bewiesen, wie einfach es ist, diese Technologie zu verwenden um mit Videos, Bildern oder Ton Desinformationen zu verbreiten, politische Staatsoberhäupter nachzuahmen oder unschuldige Personen zu deformieren. In der Zwischenzeit haben sich Deepfakes bedeutend weiterentwickelt und stellen somit eine große Gefahr dar.
Diese Arbeit bietet eine Einführung in das Themengebiet Deepfakes. Zudem behandelt sie die Erstellung, Verwendung und Erkennung von Deepfakes, sowie mögliche Abwehrmaßnahmen und Auswirkungen, welche Deepfakes mit sich bringen.
Eine reine Passwortauthentifizierung, wie sie im Hochschulumfeld eingesetzt wird, bringt Sicherheitsrisiken mit sich. Ziel dieser Arbeit ist es zu analysieren, wie die Sicherheit in der Praxis mittels einer Zwei-Faktor-Authentifizierung erhöht werden kann und in welcher Weise die Einführung eines Single-Sign-On Konzept zum Erreichen dieses Ziels beiträgt. Es konnte gezeigt werden, dass eine Shibboleth IdP Installation als zentraler Zugangspunkt für Single-Sign-On sowie eine daran angebundene privacyIDEA-Instanz die Umsetzung der Zwei-Faktor-Authentifizierung für einige aber nicht alle Dienste ermöglicht.
Extensible Authentication Protocol (EAP) bietet eine flexible Möglichkeit zur Authentifizierung von Endgeräten und kann in Kombination mit TLS für eine zertifikatsbasierte Authentifizierung verwendet werden. Motiviert wird diese Arbeit von einer potenziellen Erweiterung für PROFINET, die diese Protokolle einsetzen soll.
Dabei soll eine sicherer EAP-TLS-Protokollstacks für eingebettete Systeme in der Programmiersprache Rust entwickelt werden. Durch das Ownership-System von Rust können Speicherfehler eliminiert werden, ohne dabei auf die positiven Eigenschaften von nativen Sprachen zu verzichten. Es wird ein besonderes Augenmerk auf wie die Verwendung klassischer Rust-Bibliotheken im Umfeld von eingebetteten Systemen, den Einfluss des Speichermodells auf das Design, sowie die Integration von C-Bibliotheken für automatisierte Interoperabilitätstests gelegt.
The Internet of Things is spreading significantly in every sector, including the household, a variety of industries, healthcare, and emergency services, with the goal of assisting all of those infrastructures by providing intelligent means of service delivery. An Internet of Vulnerabilities (IoV) has emerged as a result of the pervasiveness of the Internet of Things (IoT), which has led to a rise in the use of applications and devices connected to the IoT in our day-to-day lives. The manufacture of IoT devices are growing at a rapid pace, but security and privacy concerns are not being taken into consideration. These intelligent Internet of Things devices are especially vulnerable to a variety of attacks, both on the hardware and software levels, which leaves them exposed to the possibility of use cases. This master’s thesis provides a comprehensive overview of the Internet of Things (IoT) with regard to security and privacy in the area of applications, security architecture frameworks, a taxonomy of various cyberattacks based on various architecture models, such as three-layer, four-layer, and five-layer. The fundamental purpose of this thesis is to provide recommendations for alternate mitigation strategies and corrective actions by using a holistic rather than a layer-by-layer approach. We discussed the most effective solutions to the problems of privacy and safety that are associated with the Internet of Things (IoT) and presented them in the form of research questions. In addition to that, we investigated a number of further possible directions for the development of this research.