12 research outputs found

    On Evaluating Commercial Cloud Services: A Systematic Review

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    Background: Cloud Computing is increasingly booming in industry with many competing providers and services. Accordingly, evaluation of commercial Cloud services is necessary. However, the existing evaluation studies are relatively chaotic. There exists tremendous confusion and gap between practices and theory about Cloud services evaluation. Aim: To facilitate relieving the aforementioned chaos, this work aims to synthesize the existing evaluation implementations to outline the state-of-the-practice and also identify research opportunities in Cloud services evaluation. Method: Based on a conceptual evaluation model comprising six steps, the Systematic Literature Review (SLR) method was employed to collect relevant evidence to investigate the Cloud services evaluation step by step. Results: This SLR identified 82 relevant evaluation studies. The overall data collected from these studies essentially represent the current practical landscape of implementing Cloud services evaluation, and in turn can be reused to facilitate future evaluation work. Conclusions: Evaluation of commercial Cloud services has become a world-wide research topic. Some of the findings of this SLR identify several research gaps in the area of Cloud services evaluation (e.g., the Elasticity and Security evaluation of commercial Cloud services could be a long-term challenge), while some other findings suggest the trend of applying commercial Cloud services (e.g., compared with PaaS, IaaS seems more suitable for customers and is particularly important in industry). This SLR study itself also confirms some previous experiences and reveals new Evidence-Based Software Engineering (EBSE) lessons

    Advances in Information Security and Privacy

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    With the recent pandemic emergency, many people are spending their days in smart working and have increased their use of digital resources for both work and entertainment. The result is that the amount of digital information handled online is dramatically increased, and we can observe a significant increase in the number of attacks, breaches, and hacks. This Special Issue aims to establish the state of the art in protecting information by mitigating information risks. This objective is reached by presenting both surveys on specific topics and original approaches and solutions to specific problems. In total, 16 papers have been published in this Special Issue

    Authentication Aura: A cooperative and distributed approach to user authentication on mobile devices

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    As information technology pervades our lives we have increasingly come to rely on these evermore sophisticated and ubiquitous items of equipment. Portability and the desire to be connected around the clock has driven the rapid growth in adoption of mobile devices that enable us to talk, message, tweet and inform at will, whilst providing a means to shop and administer bank accounts. These high value, high risk, desirable devices are increasingly the target of theft and improvement in their protection is actively sought by Governments and security agencies. Although forms of security are in place they are compromised by human reluctance and inability to administer them effectively. With typical users operating across multiple devices, including traditional desktop PCs, laptops, tablets and smartphones, they can regularly find themselves having a variety of devices open concurrently. Even if the most basic security is in place, there is a resultant need to repeatedly authenticate, representing a potential source of hindrance and frustration. This thesis explores the need for a novel approach to user authentication, which will reduce the authentication burden whilst providing a secure yet adaptive security mechanism; a so called Authentication Aura. It proposes that the latent security potential contained in surrounding devices and possessions in everyday life can be leveraged to augment security, and provides a framework for a distributed and cooperative approach. An experiment was performed to ascertain the technological infrastructure, devices and inert objects that surround individuals throughout the day. Using twenty volunteers, over a fourteen-day period a dataset of 1.57 million recorded observations was gathered, which confirmed that between 6am and 12pm a significant device or possession is in near proximity 97.84% of the time. Using the data provided by the experiment as the basis for a simulation of the framework, it suggests a reduction of up to 80.36% in the daily number of required authentications for a user operating a device once every 30 minutes, with a 10 minute screen lock in place. Examining the influence of location alone indicated a reduction of 50.74% in user interventions lowering the average from 32 to 15.76, the addition of the surroundings reducing this further to 13.00. The analysis also investigated how a user’s own authentication status could be used to negate the need to repeatedly manually authenticate and it was found that it delayed the process for up to 90 minutes for an individual user. Ultimately, it confirms that during device activation it is possible to remove the need to authenticate with the Authentication Aura providing sufficient assurance.Orange/France Teleco

    Risk Management for the Future

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    A large part of academic literature, business literature as well as practices in real life are resting on the assumption that uncertainty and risk does not exist. We all know that this is not true, yet, a whole variety of methods, tools and practices are not attuned to the fact that the future is uncertain and that risks are all around us. However, despite risk management entering the agenda some decades ago, it has introduced risks on its own as illustrated by the financial crisis. Here is a book that goes beyond risk management as it is today and tries to discuss what needs to be improved further. The book also offers some cases

    Konzepte fĂĽr Datensicherheit und Datenschutz in mobilen Anwendungen

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    Smart Devices und insbesondere Smartphones nehmen eine immer wichtigere Rolle in unserem Leben ein. Aufgrund einer kontinuierlich anwachsenden Akkulaufzeit können diese Geräte nahezu ununterbrochen mitgeführt und genutzt werden. Zusätzlich sorgen stetig günstiger werdende Mobilfunktarife und ansteigende Datenraten dafür, dass den Nutzern mit diesen Geräten eine immerwährende Verbindung zum Internet zur Verfügung steht. Smart Devices sind dadurch nicht mehr reine Kommunikationsmittel sondern ebenfalls Informationsquellen. Darüber hinaus gibt es eine Vielzahl an Anwendungen von Drittanbietern für diese Geräte. Dank der darin verbauten Sensoren, können darauf beispielsweise ortsbasierte Anwendungen, Gesundheitsanwendungen oder Anwendungen für die Industrie 4.0 ausgeführt werden, um nur einige zu nennen. Solche Anwendungen stellen allerdings nicht nur ein großes Nutzen-, sondern zu gleich ein immenses Gefahrenpotential dar. Über die Sensoren können die unterschiedlichsten Kontextdaten erfasst und relativ präzise Rückschlüsse auf den Nutzer gezogen werden. Daher sollte bei diesen Geräten ein besonderes Augenmerk auf die Datensicherheit und insbesondere auf den Datenschutz gelegt werden. Betrachtet man allerdings die bestehenden Datensicherheits- und Datenschutzkomponenten in den aktuell vorherrschenden mobilen Plattformen, so fällt auf, dass keine der Plattformen die speziellen Anforderungen an ein mobiles Datensicherheits- und Datenschutzsystem zufriedenstellend erfüllt. Aus diesem Grund steht im Zentrum der vorliegende Arbeit die Konzeption und Umsetzung neuartiger Datensicherheits- und Datenschutzkonzepte für mobile Anwendungen. Hierfür werden die folgenden fünf Forschungsbeiträge erbracht: [FB1] Bestehende Datensicherheits- und Datenschutzkonzepte werden analysiert, um deren Schwachstellen zu identifizieren. [FB2] Ein kontextsensitives Berechtigungsmodell wird erstellt. [FB3] Das Berechtigungsmodell wird in einem flexiblen Datenschutzsystem konzeptionell eingebettet und anschließend implementiert. [FB4] Das Datenschutzsystem wird zu einem holistischen Sicherheitssystem erweitert. [FB5] Das daraus entstandene holistische Sicherheitssystem wird evaluiert. Um die Forschungsziele zu erreichen, wird mit dem Privacy Policy Model (PPM) ein gänzlich neues Modell zur Formulierung von feingranularen Berechtigungsregeln eingeführt, die es dem Nutzer ermöglichen, je nach Bedarf, einzelne Funktionseinheiten einer Anwendung zu deaktivieren, um dadurch die Zugriffsrechte der Anwendung einzuschränken. Zusätzlich kann der Nutzer auch die Genauigkeit der Daten, die der Anwendung zur Verfügung gestellt werden, reduzieren. Das PPM wird in der Privacy Policy Platform (PMP) implementiert. Die PMP ist ein Berechtigungssystem, das nicht nur für die Einhaltung der Datenschutzrichtlinien sorgt, sondern auch einige der Schutzziele der Datensicherheit erfüllt. Für die PMP werden mehrere Implementierungsstrategien diskutiert und deren Vor- und Nachteile gegeneinander abgewogen. Um neben den Datenschutz auch die Datensicherheit gewährleisten zu können, wird die PMP um den Secure Data Container (SDC) erweitert. Mit dem SDC können sensible Daten sicher gespeichert und zwischen Anwendungen ausgetauscht werden. Die Anwendbarkeit der PMP und des SDCs wird an Praxisbeispielen aus vier unterschiedlichen Domänen (ortsbasierte Anwendungen, Gesundheitsanwendungen, Anwendungen in der Industrie 4.0 und Anwendungen für das Internet der Dinge) demonstriert. Bei dieser Analyse zeigt sich, dass die Kombination aus PMP und SDC nicht nur sämtliche Schutzziele, die im Rahmen der vorliegenden Arbeit relevant sind und sich am ISO-Standard ISO/IEC 27000:2009 orientieren, erfüllt, sondern darüber hinaus sehr performant ist. Durch die Verwendung der PMP und des SDCs kann der Akkuverbrauch von Anwendungen halbiert werden

    Federated Authentication using the Cloud (Cloud Aura)

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    Individuals, businesses and governments undertake an ever-growing range of activities online and via various Internet-enabled digital devices. Unfortunately, these activities, services, information and devices are the targets of cybercrimes. Verifying the user legitimacy to use/access a digital device or service has become of the utmost importance. Authentication is the frontline countermeasure of ensuring only the authorised user is granted access; however, it has historically suffered from a range of issues related to the security and usability of the approaches. Traditionally deployed in a point-of-entry mode (although a number of implementations also provide for re-authentication), the intrusive nature of the control is a significant inhibitor. Thus, it is apparent that a more innovative, convenient and secure user authentication solution is vital. This thesis reviews the authentication methods along with the current use of authentication technologies, aiming at developing a current state-of-the-art and identifying the open problems to be tackled and available solutions to be adopted. It also investigates whether these authentication technologies have the capability to fill the gap between the need for high security whilst maximising user satisfaction. This is followed by a comprehensive literature survey and critical analysis of the existing research domain on continuous and transparent multibiometric authentication. It is evident that most of the undertaken studies and proposed solutions thus far endure one or more shortcomings; for instance, an inability to balance the trade-off between security and usability, confinement to specific devices, lack or negligence of evaluating users’ acceptance and privacy measures, and insufficiency or absence of real tested datasets. It concludes that providing users with adequate protection and convenience requires innovative robust authentication mechanisms to be utilised in a universal manner. Accordingly, it is paramount to have a high level of performance, scalability, and interoperability amongst existing and future systems, services and devices. A survey of 302 digital device users was undertaken and reveals that despite the widespread interest in more security, there is a quite low number of respondents using or maintaining the available security measures. However, it is apparent that users do not avoid applying the concept of authentication security but avoid the inconvenience of its current common techniques (biometrics are having growing practical interest). The respondents’ perceptions towards Trusted Third-Party (TTP) enable utilising biometrics for a novel authentication solution managed by a TTP working on multiple devices to access multiple services. However, it must be developed and implemented considerately. A series of experimental feasibility analysis studies disclose that even though prior Transparent Authentication Systems (TAS) models performed relatively well in practice on real live user data, an enhanced model utilising multibiometric fusion outweighs them in terms of the security and transparency of the system within a device. It is also empirically established that a centralised federated authentication approach using the Cloud would help towards constructing a better user profile encompassing multibiometrics and soft biometric information from their multiple devices and thus improving the security and convenience of the technique beyond those of unimodal, the Non-Intrusive and Continuous Authentication (NICA), and the Weighted Majority Voting Fusion (WMVF) and what a single device can do by itself. Furthermore, it reduces the intrusive authentication requests by 62%-74% (of the total assumed intrusive requests without operating this model) in the worst cases. As such, the thesis proposes a novel authentication architecture, which is capable of operating in a transparent, continuous and convenient manner whilst functioning across a range of digital devices – bearing in mind it is desirable to work on differing hardware configurations, operating systems, processing capabilities and network connectivity but they are yet to be validated. The approach, entitled Cloud Aura, can achieve high levels of transparency thereby being less dependent on secret-knowledge or any other intrusive login and leveraging the available devices capabilities without requiring any external sensors. Cloud Aura incorporates a variety of biometrics from different types, i.e. physiological, behavioural, and soft biometrics and deploys an on-going identity confidence level based upon them, which is subsequently reflected on the user privileges and mapped to the risk level associated to them, resulting in relevant reaction(s). While in use, it functions with minimal processing overhead thereby reducing the time required for the authentication decision. Ultimately, a functional proof of concept prototype is developed showing that Cloud Aura is feasible and would have the provisions of effective security and user convenience.Royal Commission for Jubail and Yanbu, Kingdom of Saudi Arabi

    Continuous User Authentication Using Multi-Modal Biometrics

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    It is commonly acknowledged that mobile devices now form an integral part of an individual’s everyday life. The modern mobile handheld devices are capable to provide a wide range of services and applications over multiple networks. With the increasing capability and accessibility, they introduce additional demands in term of security. This thesis explores the need for authentication on mobile devices and proposes a novel mechanism to improve the current techniques. The research begins with an intensive review of mobile technologies and the current security challenges that mobile devices experience to illustrate the imperative of authentication on mobile devices. The research then highlights the existing authentication mechanism and a wide range of weakness. To this end, biometric approaches are identified as an appropriate solution an opportunity for security to be maintained beyond point-of-entry. Indeed, by utilising behaviour biometric techniques, the authentication mechanism can be performed in a continuous and transparent fashion. This research investigated three behavioural biometric techniques based on SMS texting activities and messages, looking to apply these techniques as a multi-modal biometric authentication method for mobile devices. The results showed that linguistic profiling; keystroke dynamics and behaviour profiling can be used to discriminate users with overall Equal Error Rates (EER) 12.8%, 20.8% and 9.2% respectively. By using a combination of biometrics, the results showed clearly that the classification performance is better than using single biometric technique achieving EER 3.3%. Based on these findings, a novel architecture of multi-modal biometric authentication on mobile devices is proposed. The framework is able to provide a robust, continuous and transparent authentication in standalone and server-client modes regardless of mobile hardware configuration. The framework is able to continuously maintain the security status of the devices. With a high level of security status, users are permitted to access sensitive services and data. On the other hand, with the low level of security, users are required to re-authenticate before accessing sensitive service or data

    Modellierung ortsabhängiger Zugriffskontrolle für mobile Geschäftsprozesse

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    Der Einsatz mobiler Computer wie Smartphones für die Abarbeitung mobiler Geschäftsprozesse bringt neben großen Vorteilen auch spezifische Sicherheitsherausforderungen mit sich. Als ein Lösungsansatz hierfür wird "ortsabhängige Zugriffskontrolle" verfolgt. Die Grundidee dabei ist es, den aktuellen Aufenthaltsort des Nutzers für die Zugriffskontrollentscheidung auszuwerten. Zur Modellierung solcher Ortseinschränkungen wird eine auf UML-Aktivitätsdiagrammen aufbauende Notation eingeführt
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