Desislava C. Dimitrova

dblp:66/4739 · DBLP profile ↗
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12ranked-venue papers
2as first author
0since 2021 · last 2018
0000-0002-8235-7665ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 6 · 1 first-authorSystems, architecture and hardware · 1Software engineering, systems software and programming languages · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
3 papers
Cloud and datacenter computing · 54% Distributed systems · 27% Electronic design automation · 14%
Computer networks
1 paper
Network management and operations · 100%

Topics — the 7 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Cloud and datacenter computing
autoscaling
0.312018
Three steps is all you need: fast, accurate, automatic scaling decisions for distributed streaming dataflows · OSDI 2018
Cloud and datacenter computing
cluster resource management and scheduling
0.312018
Three steps is all you need: fast, accurate, automatic scaling decisions for distributed streaming dataflows · OSDI 2018
Electronic design automation › timing analysis
critical path analysis
0.312018
SnailTrail: Generalizing Critical Paths for Online Analysis of Distributed Dataflows · NSDI 2018
Distributed systems › stream processing
distributed stream processing
0.312018
Three steps is all you need: fast, accurate, automatic scaling decisions for distributed streaming dataflows · OSDI 2018
Cloud and datacenter computing › datacenter operations
datacenter monitoring
0.312017
Online Reconstruction of Structural Information from Datacenter Logs · EuroSys 2017
Distributed systems › observability › distributed monitoring
distributed tracing
0.312017
Online Reconstruction of Structural Information from Datacenter Logs · EuroSys 2017
Cloud and datacenter computing
log analysis
0.312017
Online Reconstruction of Structural Information from Datacenter Logs · EuroSys 2017

Methods — techniques the papers use, named apart from their topics

structural information recovery · 0.6log reconstruction · 0.6
YearPublicationVenuePosition
2018 SnailTrail: Generalizing Critical Paths for Online Analysis of Distributed Dataflows
Moritz Hoffmann 0001, Andrea Lattuada 0001, John Liagouris, Vasiliki Kalavri, Desislava C. Dimitrova, Sebastian Wicki, Zaheer Chothia, Timothy Roscoe
NSDI5
2018 Three steps is all you need: fast, accurate, automatic scaling decisions for distributed streaming dataflows
Vasiliki Kalavri, John Liagouris, Moritz Hoffmann 0001, Desislava C. Dimitrova, Matthew Forshaw, Timothy Roscoe
OSDI4
2017 Online Reconstruction of Structural Information from Datacenter Logs
abstract
Well-run datacenter application architectures are heavily instrumented to provide detailed traces of messages and remote invocations. Reconstructing user sessions, call graphs, transaction trees, and other structural information from these messages, a process known as sessionization, is the foundation for a variety of diagnostic, profiling, and monitoring tasks essential to the operation of the datacenter.
Zaheer Chothia, John Liagouris, Desislava C. Dimitrova, Timothy Roscoe
EuroSys3
2015 Critical issues of centralized and cloudified LTE-FDD Radio Access Networks
abstract
Cloudification of the Centralized-Radio Access Network (C-RAN) in which signal processing runs on general purpose processors inside virtual machines has lately received significant attention. Due to short deadlines in the LTE frequency division duplex access method, processing time fluctuations introduced by the virtualization process have a deep impact on C-RAN performance. This paper evaluates bottlenecks of the OpenAirInterface (OAI is an open-source software-based implementation of LTE) cloud performance, provides feasibility studies on C-RAN execution, and introduces recommendations for cloud architecture that significantly reduces the encountered execution problems. In typical cloud environments, the OAI processing time deadlines cannot be guaranteed. Our proposed cloud architecture shows good characteristics for OAI cloud execution. As an example, in our setup more than 99.5% processed LTE subframes reach reasonable processing deadlines close to performance of a dedicated machine of a single core CPU.
Islam Alyafawi, Eryk Schiller, Torsten Braun, Desislava C. Dimitrova, Andre S. Gomes, Navid Nikaein
ICC4
2015 A time-based passive source localization system for narrow-band signal
abstract
Time-based indoor localization has been investigated for several years but the accuracy of existing solutions is limited by several factors, e.g., imperfect synchronization, signal bandwidth and indoor environment. In this paper, we compare two time-based localization algorithms for narrow-band signals, i.e., multilateration and fingerprinting. First, we develop a new Linear Least Square (LLS) algorithm for Differential Time Difference Of Arrival (DTDOA). Second, fingerprinting is among the most successful approaches used for indoor localization and typically relies on the collection of measurements on signal strength over the area of interest. We propose an alternative by constructing fingerprints of fine-grained time information of the radio signal. We offer comprehensive analytical discussions on the feasibility of the approaches, which are backed up by evaluations in a software defined radio based IEEE 802.15.4 testbed. Our work contributes to research on localization with narrow-band signals. The results show that our proposed DTDOA-based LLS algorithm obviously improves the localization accuracy compared to traditional TDOA-based LLS algorithm but the accuracy is still limited because of the complex indoor environment. Furthermore, we show that time-based fingerprinting is a promising alternative to power-based fingerprinting.
Zan Li 0002, Torsten Braun, Desislava C. Dimitrova
ICC3
2015 Robust indoor localization of narrowband signals
abstract
Many location-based services target users in indoor environments. Similar to the case of dense urban areas where many obstacles exist, indoor localization techniques suffer from outlying measurements caused by severe multipath propaga­tion and non-line-of-sight (NLOS) reception. Obstructions in the signal path caused by static or mobile objects downgrade localization accuracy. We use robust multipath mitigation techniques to detect and filter out outlying measurements in indoor environments. We validate our approach using a power-based lo­calization system with GSM. We conducted experiments without any prior knowledge of the tracked device's radio settings or the indoor radio environment. We obtained localization errors in the range of 3m even if the sensors had NLOS links to the target device.
Islam Alyafawi, Torsten Braun, Desislava C. Dimitrova
PIMRC3
2015 Methodology for GPS Synchronization Evaluation with High Accuracy
abstract
Clock synchronization in the order of nanoseconds is one of the critical factors for time-based localization. Currently used time synchronization methods are developed for the more relaxed needs of network operation. Their usability for positioning should be carefully evaluated. In this paper, we are particularly interested in GPS-based time synchronization. To judge its usability for localization we need a method that can evaluate the achieved time synchronization with nanosecond accuracy. Our method to evaluate the synchronization accuracy is inspired by signal processing algorithms and relies on fine-grain time information. The method is able to calculate the clock offset and skew between devices with nanosecond accuracy in real time. It was implemented using software defined radio technology. We demonstrate that GPS-based synchronization suffers from remaining clock offset in the range of a few hundred of nanoseconds but the clock skew is negligible. Finally, we determine a corresponding lower bound on the expected positioning error.
Zan Li 0002, Torsten Braun, Desislava C. Dimitrova
VTC Spring3
2015 A passive WiFi source localization system based on fine-grained power-based trilateration
abstract
Indoor localization systems become more interesting for researchers because of the attractiveness of business cases in various application fields. A WiFi-based passive localization system can provide user location information to third-party providers of positioning services. However, indoor localization techniques are prone to multipath and Non-Line Of Sight (NLOS) propagation, which lead to significant performance degradation. To overcome these problems, we provide a passive localization system for WiFi targets with several improved algorithms for localization. Through Software Defined Radio (SDR) techniques, we extract Channel Impulse Response (CIR) information at the physical layer. CIR is later adopted to mitigate the multipath fading problem. We propose to use a Nonlinear Regression (NLR) method to relate the filtered power information to propagation distances, which significantly improves the ranging accuracy compared to the commonly used log-distance path loss model. To mitigate the influence of ranging errors, a new trilateration algorithm is designed as well by combining Weighted Centroid and Constrained Weighted Least Square (WC-CWLS) algorithms. Experiment results show that our algorithm is robust against ranging errors and outperforms the linear least square algorithm and weighted centroid algorithm.
Zan Li 0002, Torsten Braun, Desislava C. Dimitrova
WOWMOM3
2014 Real-time passive capturing of the GSM radio
abstract
This paper addresses the problem of service development based on GSM handset signaling. The aim is to achieve this goal without the participation of the users, which requires the use of a passive GSM receiver on the uplink. Since no tool for GSM uplink capturing was available, we developed a new method that can synchronize to multiple mobile devices by simply overhearing traffic between them and the network. Our work includes the implementation of modules for signal recovery, message reconstruction and parsing. The method has been validated against a benchmark solution on GSM downlink and independently evaluated on uplink channels. Initial evaluations show up to 99% success rate in message decoding, which is a very promising result. Moreover, we conducted measurements that reveal insights on the impact of signal power on the capturing performance and investigate possible reactive measures.
Islam Alyafawi, Desislava C. Dimitrova, Torsten Braun
ICC2
2010 Sensitivity Analysis of the Optimal Parameter Settings of an LTE Packet Scheduler
abstract
Advanced packet scheduling schemes in 3G/3G+ mobile networks provide one or more parameters to optimise the trade-off between QoS and resource efficiency. In this paper we study the sensitivity of the optimal parameter setting for packet scheduling in LTE radio networks with respect to various traffic and environment aspects. For our investigations we consider a reference packet scheduling algorithm containing elements of proportional fairness and packet urgency to support mixes of real-time and non-real-time traffic. We present extensive simulation results showing the impact of traffic characteristics (like file size distribution, traffic mix) and environment conditions (regarding e.g. multipath fading and shadowing) on the optimal parameter setting. Although, in some cases, efficiency gains of about twenty percent can be achieved by proper tuning of the scheduling parameters, the overall view from our investigations is that a single, robust setting of the parameters can be determined which provides near optimal trade-offs under almost all practically relevant conditions.
I. Fernandez Diaz, Desislava C. Dimitrova, Kathleen Spaey, Remco Litjens, Hans van den Berg
VTC Spring2
2008 Impact of Inter-cell Interference on Flow Level Performance of Scheduling Schemes for the UMTS EUL
abstract
The UMTS enhanced uplink (EUL) is expected to provide higher capacity, increased data rates, and smaller latency on the communication link from users towards the network. A key mechanism in EUL traffic handling is the packet scheduler, for which a number of basic schemes can be identified (one-by-one, partial parallel, and full parallel). In this paper we analyze the interaction between the EUL scheduling scheme deployed in the network and the inter-cell interference. On the one hand, different scheduling schemes cause different inter-cell interference patterns on neighbouring cells. On the other hand, the different schemes are affected by inter-cell interference in different ways. The scheduling schemes are evaluated and compared under different approaches for reserving part of the allowed noise rise at the base station for inter-cell interference. For our analysis, we have developed a hybrid analytical/simulation approach allowing for fast evaluation of performance measures such as the mean flow transfer time and fairness expressing how the performance depends on the user's location. This approach takes into account both the packet-level characteristics and the flow-level dynamics due to the random user behaviour.
Desislava C. Dimitrova, Geert Heijenk, Hans van den Berg, Remco Litjens
WiMob1
2008 Severe congestion handling approaches in NSIS RMD domains with bi-directional reservations
Desislava C. Dimitrova, Georgios Karagiannis, Pieter-Tjerk de Boer
Comput. Commun.1