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Dive into the research topics where Christoph Egger is active.

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Featured researches published by Christoph Egger.


wireless on demand network systems and service | 2010

A cross-layer route discovery strategy for virtual currency systems in mobile ad hoc networks

Lukas Wallentin; Joachim Fabini; Christoph Egger; Marco Happenhofer

New challenges arise for mobile ad hoc networks when their nodes belong to different authorities. Cooperation and fair behavior cannot be taken for granted, but are essential for wide distribution of this network type. One solution to this problem is the integration of rewarding schemes using virtual currency systems. Nodes are compensated for their service to stimulate cooperation, and payment for used services prevents selfishness and free riders. Besides, integrated payment systems can make mobile ad hoc networks attractive for a number of business scenarios. Most of todays payment systems are realized as a service in mobile ad hoc networks and consequently do not profit from deep integration into routing mechanism. As a solution to this drawback, we present in this paper a new cross layer optimized route discovery scheme for reactive routing protocols, particularly designed to fit the needs of payment systems. Using a distributed route pre-selection technique in combination with artificial delaying of route discovery packets, the performance of the protocol was optimized which will be shown using simulations. The proposed route discovery scheme can be used by a number of reactive routing protocols. Exemplarily, we present a realization based on dynamic source routing (DSR). Additionally we discuss other application scenarios that can profit by using the concepts presented in this paper.


international teletraffic congress | 2010

Quality of signalling: A new concept for evaluating the performance of non-INVITE SIP transactions

Marco Happenhofer; Christoph Egger; Peter Reichl

Providing Quality of Service (QoS) and Quality of Experience (QoE) in connection with media data like audio or video is of key importance for the evolution of future packet-based networks. Especially in telecommunications, the subjective service quality as perceived by the end user depends amongst other parameters on the setup success rate as well as on the delay for session setup, which is measured end to end. In this paper, we introduce the new concept of “Quality of Signaling” (QoSg) and present an analysis based on Session Initiation Protocol (SIP) networks, where messages traverse usually several hops (SIP proxies) and several connections. SIP introduces the concept of transactions that are managed hop-by-hop and form the basic building blocks for SIP signaling. We argue that the end-to-end service quality strongly depends on the performance of these transactions and provide a comprehensive analytic, simulative and measurement-based performance evaluation of single SIP transactions.


international conference on the digital society | 2009

Using E-Mail SPAM DNS Blacklists for Qualifying the SPAM-over-Internet-Telephony Probability of a SIP Call

Michael Hirschbichler; Christoph Egger; O. Pasteka; Andreas Berger

SPIT is an upcoming threat for receiving unsolicited messages in Voice over IP systems. We assume, that future SPIT will be sent through the same infrastructure as SPAM today, namely through a network of compromised hosts. Therefore spammers will see SPIT as an additional business case. In this paper we show a viable way to increase the hit rate of a SPIT detection system. Our proposal is to query e-mail SPAM blacklists for IP addresses which are sent with SIP/SDP messages. We enabled a well-established e-mail filter application to handle information out of these messages. We also present the performance of such a solution with respect to call setup delays and success rates.


International Journal of Measurement Technologies and Instrumentation Engineering archive | 2011

An Architectural and Evaluative Review of Implicit and Explicit SIP Overload Handling

Marco Happenhofer; Joachim Fabini; Christoph Egger; Michael Hirschbichler

Last years trend to migrate circuit-switched voice networks to packet switched Internet Protocol IP based networks has favored wide deployment of Session Initiation Protocol SIP based systems and networks. As a reaction to large-scale SIP deployment experiences in the field and the need to implement high availability and reliability within these new networks, the focus of SIP extension standardization has shifted from adding new SIP signaling functionality to operational and maintenance aspects, a particular importance being attributed to overload control. Overload denotes a situation in which the traffic injected into a system exceeds the systems designed capacity. The authors present a detailed categorization of overload architectures and outline main reasons why SIP-based networks are at high risk to collapse when operating at overload. Using measurements in a real SIP infrastructure this paper compares the performance of two overload protection schemes, namely implicit and explicit overload protection, against the performance of non-protected systems. The measurement results recommend overload protection as a mandatory component of commercial SIP deployments to safeguard operation and prevent system collapse in case of overload.


Praxis Der Informationsverarbeitung Und Kommunikation | 2012

Collapse Detection and Avoidance for SIP Architectures

Christoph Egger; Marco Happenhofer; Joachim Fabini; Peter Reichl

Abstract The Session Initiation Protocol (SIP) relies on timer-based message retransmission for safeguarding reliable message transfer when deployed on top of the unreliable User Datagram Protocol (UDP) over IP. In this paper we present a detailed impact analysis of SIP timers onto the functionality of a system and its capabilities to recover from overload situations. The results of our event-based SIP simulations demonstrate that message retransmissions originating from a minor short-term overload can force a system into a deterministic congestion collapse when using default SIP timer settings. A recovery from this severe system overload situation is highly difficult or impossible, even if the system load is reduced substantially afterward. Our performance evaluation shows that an increase of timer T1s value significantly enhances the stability, robustness and the ability of systems to handle overload, whereas the resulting increase of response times is relatively small and overall system responsiveness can even improve in some cases. We propose an algorithm for implicit collapse detection as solution for dynamic timer T1 optimization. Based on monitoring of system load and pending transaction counts, our algorithm enables intermediate SIP proxies to detect congestion in a very early phase, allowing them to counteract in time, i.e., to modify timers and reject new system load in order to prevent the system from collapse.


NEW2AN | 2012

Stop the Flood – Perimeter Security- and Overload- Pre-evaluation in Carrier Grade VoIP Infrastructures

Michael Hirschbichler; Joachim Fabini; Bernhard Seifert; Christoph Egger

With the upcoming introduction of the Session Initiation Protocol to carrier grade telecommunication infrastructures, the threat of attacks is increasing massively. Multiple types of unsolicited communication, like high and low rate Denial-of-Service attacks as well as Spam over Internet Telephony driven by Botnets will be an upcoming risk for all telecommunication operators.


2011 IEEE International Workshop on Measurements and Networking Proceedings (M&N) | 2011

A study of SIP proxy load patterns

Christoph Egger; Marco Happenhofer; Michael Hirschbichler

We present sensing mechanisms that can be used for implicit high-load and overload detection in SIP networks. By means of measurements and simulations we highlight the characteristics of SIP proxy servers for different load situations and using different transport protocols. Each protocol yields to distinctive patterns that encourage deriving an algorithm that is able to estimate a downstream servers current load.


testbeds and research infrastructures for the development of networks and communities | 2010

BIQINI – A Flow-Based QoS Enforcement Architecture for NGN Services

Christoph Egger; Marco Happenhofer; Joachim Fabini; Peter Reichl

Novel mobile cellular access network technologies like Long Term Evolution (LTE) promise capacities exceeding the ones of existing 3G networks by at least one order of magnitude. This evolution will enable the deployment of services which, due to their capacity requirements, are currently restricted to fixed access networks. On the other hand, packet-switched-only architectures raise the need for a reliable and accurate management of these high access capacities, particularly service-specific Quality of Service (QoS) enforcement, in order to prioritize real-time (voice) services and safeguard a satisfactory Quality of Experience (QoE) to the user.


ad hoc networks | 2010

Cashflow: A Channel-Oriented, Credit-Based Virtual Currency System for Establishing Fairness in Ad-Hoc Networks with Selfish Nodes

Lukas Wallentin; Joachim Fabini; Christoph Egger; Marco Happenhofer

Cooperation in ad hoc networks cannot be taken for granted when nodes belong to distinct authoritative domains. In this paper we present Cashflow, a virtual currency system to motivate nodes to participate in ad hoc networks and to prevent selfishness. This system is different to previously proposed virtual currency systems in that it uses a channel concept for data transmission as well as a market system for pricing. The combination of channel and market concept results in a number of positive system characteristics. For instance, Cashflow provides implicit access regulation and load balancing mechanisms to avoid overload situations in the network. Additionally it considers node context for data transmission and pricing. Cashflow also leaves the decision about the participation degree to the user, which is an important but frequently neglected topic for the user acceptance of virtual currency systems.


testbeds and research infrastructures for the development of networks and communities | 2008

Generic access network emulation for NGN testbeds

Joachim Fabini; Peter Reichl; Christoph Egger; Marco Happenhofer; Michael Hirschbichler; Lukas Wallentin

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Marco Happenhofer

Vienna University of Technology

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Joachim Fabini

Vienna University of Technology

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Michael Hirschbichler

Vienna University of Technology

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Lukas Wallentin

Vienna University of Technology

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Bernhard Seifert

Vienna University of Technology

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