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Rayna Georgieva
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2020 – today
- 2023
- [c26]Tzvetan Ostromsky, Ivan Dimov, Rayna Georgieva, Venelin Todorov:
Sensitivity Study of a Large-scale Air Pollution Model on the Bulgarian Petascale Supercomputer Discoverer. FedCSIS 2023: 1093-1100 - [c25]Venelin Todorov, Slavi G. Georgiev, Ivan Tomov Dimov, Rayna Georgieva, Tzvetan Ostromsky:
Improved Stochastic Lattice Methods for Large-Scale Air Pollution Model. LSSC 2023: 363-371 - 2022
- [c24]Venelin Todorov, Ivan Dimov, Stefka Fidanova, Rayna Georgieva, Tzvetan Ostromsky, Stoyan Poryazov:
An Optimized Monte Carlo Approach for Multidimensional Integrals Related to Intelligent Systems. FedCSIS (Communication Papers) 2022: 101-104 - [c23]Tzvetan Ostromsky, Venelin Todorov, Ivan Dimov, Rayna Georgieva:
Sensitivity Analysis of an Air Pollution Model with Using Innovative Monte Carlo Methods in Calculating Multidimensional Integrals. NMA 2022: 258-270 - [c22]Venelin Todorov, Ivan Dimov, Rayna Georgieva, Tzvetan Ostromsky:
Optimized Stochastic Approaches Based on Sobol Quasirandom Sequences for Fredholm Integral Equations of the Second Kind. NMA 2022: 302-313 - 2021
- [j6]Venelin Todorov, Ivan Dimov, Tzvetan Ostromsky, Stoyan Apostolov, Rayna Georgieva, Yuri Dimitrov, Zahari Zlatev:
Advanced stochastic approaches for Sobol' sensitivity indices evaluation. Neural Comput. Appl. 33(6): 1999-2014 (2021) - [c21]Venelin Todorov, Tzvetan Ostromsky, Ivan Dimov, Rayna Georgieva:
Optimized stochastic methods for sensitivity analysis for large-scale air pollution model. FedCSIS (Position Papers) 2021: 85-88 - [c20]Venelin Todorov, Ivan Dimov, Stefka Fidanova, Rayna Georgieva:
Optimized stochastic approach for integral equations. FedCSIS 2021: 239-242 - [c19]Tzvetan Ostromsky, Venelin Todorov, Ivan Dimov, Rayna Georgieva, Zahari Zlatev, Stoyan Poryazov:
Sensitivity Study of Large-Scale Air Pollution Model Based on Modifications of the Latin Hypercube Sampling Method. LSSC 2021: 156-163 - [c18]Venelin Todorov, Ivan Dimov, Rayna Georgieva, Tzvetan Ostromsky, Zahari Zlatev, Stoyan Poryazov:
Multidimensional Sensitivity Analysis of an Air Pollution Model Based on Modifications of the van der Corput Sequence. LSSC 2021: 180-187 - [c17]Venelin Todorov, Ivan Dimov, Rayna Georgieva, Stoyan Apostolov, Stoyan Poryazov:
Advanced Stochastic Approaches Based on Optimization of Lattice Sequences for Large-Scale Finance Problems. LSSC 2021: 257-265 - 2020
- [j5]Venelin Todorov, Ivan Dimov, Rayna Georgieva, Stoyan Dimitrov:
Adaptive Monte Carlo algorithm for Wigner kernel evaluation. Neural Comput. Appl. 32(14): 9953-9964 (2020) - [c16]Venelin Todorov, Ivan Dimov, Tzvetan Ostromsky, Zahari Zlatev, Rayna Georgieva, Stoyan Poryazov:
Sensitivity Study of a Large-Scale Air Pollution Model by Using Optimized Latin Hyprecube Sampling. WCO@FedCSIS 2020: 371-387 - [c15]Venelin Todorov, Ivan Dimov, Tzvetan Ostromsky, Zahari Zlatev, Rayna Georgieva, Stoyan Poryazov:
Optimized Quasi-Monte Carlo Methods Based on Van der Corput Sequence for Sensitivity Analysis in Air Pollution Modelling. WCO@FedCSIS 2020: 389-405
2010 – 2019
- 2018
- [c14]Venelin Todorov, Nikolay Ikonomov, Ivan Dimov, Rayna Georgieva:
A New Monte Carlo Algorithm for Linear Algebraic Systems Based on the "Walk on Equations" Algorithm. FedCSIS 2018: 257-260 - 2014
- [c13]Jean Michel D. Sellier, Rayna Georgieva, Ivan Tomov Dimov:
Sensitivity Analysis of Design Parameters for Silicon Diodes. NMA 2014: 34-43 - [c12]Ivan Dimov, Rayna Georgieva, Venelin Todorov:
Balancing of Systematic and Stochastic Errors in Monte Carlo Algorithms for Integral Equations. NMA 2014: 44-51 - 2013
- [j4]Ivan Dimov, Rayna Georgieva, Tzvetan Ostromsky, Zahari Zlatev:
Advanced algorithms for multidimensional sensitivity studies of large-scale air pollution models based on Sobol sequences. Comput. Math. Appl. 65(3): 338-351 (2013) - [c11]Philipp Schwaha, Mihail Nedjalkov, Siegfried Selberherr, Jean Michel D. Sellier, Ivan Dimov, Rayna Georgieva:
Stochastic Formulation of Newton's Acceleration. LSSC 2013: 178-185 - 2012
- [j3]Ivan Dimov, Rayna Georgieva, Tzvetan Ostromsky:
Monte Carlo sensitivity analysis of an Eulerian large-scale air pollution model. Reliab. Eng. Syst. Saf. 107: 23-28 (2012) - [c10]Ivan Dimov, Rayna Georgieva, Tzvetan Ostromsky, Zahari Zlatev:
Variance-Based Sensitivity Analysis of the Unified Danish Eulerian Model According to Variations of Chemical Rates. NAA 2012: 247-254 - [c9]Tzvetan Ostromsky, Ivan Dimov, Rayna Georgieva, Pencho Marinov, Zahari Zlatev:
High Performance Computing of Data for a New Sensitivity Analysis Algorithm, Applied in an Air Pollution Model. NAA 2012: 428-436 - 2011
- [c8]Tzvetan Ostromsky, Ivan Dimov, Rayna Georgieva, Zahari Zlatev:
Parallel Computation of Sensitivity Analysis Data for the Danish Eulerian Model. LSSC 2011: 307-315 - 2010
- [j2]Ivan Dimov, Rayna Georgieva, Sofiya Ivanovska, Tzvetan Ostromsky, Zahari Zlatev:
Studying the sensitivity of pollutants' concentrations caused by variations of chemical rates. J. Comput. Appl. Math. 235(2): 391-402 (2010) - [j1]Ivan Dimov, Rayna Georgieva:
Monte Carlo algorithms for evaluating Sobol' sensitivity indices. Math. Comput. Simul. 81(3): 506-514 (2010) - [c7]Ivan Dimov, Rayna Georgieva:
Monte Carlo Method for Numerical Integration Based on Sobol's Sequences. NMA 2010: 50-59
2000 – 2009
- 2009
- [c6]Tzvetan Ostromsky, Ivan Dimov, Rayna Georgieva, Zahari Zlatev:
Sensitivity Analysis of a Large-Scale Air Pollution Model: Numerical Aspects and a Highly Parallel Implementation. LSSC 2009: 197-205 - [c5]Ivan Dimov, Rayna Georgieva:
Monte Carlo Adaptive Technique for Sensitivity Analysis of a Large-Scale Air Pollution Model. LSSC 2009: 387-394 - 2007
- [c4]Ivan Dimov, Rayna Georgieva:
Complexity of Monte Carlo Algorithms for a Class of Integral Equations. International Conference on Computational Science (1) 2007: 731-738 - 2003
- [c3]Rayna Georgieva, Sofiya Ivanovska:
Importance Separation for Solving Integral Equations. LSSC 2003: 144-152 - 2002
- [c2]Ivan Dimov, Aneta Karaivanova, Rayna Georgieva, Sofiya Ivanovska:
Parallel Importance Separation and Adaptive Monte Carlo Algorithms for Multiple Integrals. Numerical Methods and Application 2002: 99-107 - 2001
- [c1]Aneta Karaivanova, Rayna Georgieva:
Solving Systems of Linear Algebraic Equations Using Quasirandom Numbers. LSSC 2001: 166-174
Coauthor Index
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