Hits ?▲ |
Authors |
Title |
Venue |
Year |
Link |
Author keywords |
100 | Barbara M. Smith, Karen E. Petrie, Ian P. Gent |
Models and Symmetry Breaking for 'Peaceable Armies of Queens'. |
CPAIOR |
2004 |
DBLP DOI BibTeX RDF |
|
79 | Timothy J. Rolfe |
Las Vegas does n-queens. |
ACM SIGCSE Bull. |
2006 |
DBLP DOI BibTeX RDF |
n-queens problem, probabilistic algorithm, Las Vegas algorithm |
69 | Karen E. Petrie |
Symmetry Breaking in Peaceably Coexisting Armies of Queens. |
CP |
2002 |
DBLP DOI BibTeX RDF |
|
58 | Douglas R. Smith |
KIDS: A Semiautomatic Program Development System. |
IEEE Trans. Software Eng. |
1990 |
DBLP DOI BibTeX RDF |
KIDS, semiautomatic program development system, Kestrel Interactive Development System, deductive inference, finite differencing optimizations, data type refinement, k-queens problem, SUN-4/110, software engineering, formal specifications, compilation, optimisation, partial evaluation, inference mechanisms, algorithm design, program simplification |
53 | Ivan Nunes da Silva, André Nunes de Souza, Mário Eduardo Bordon |
A Modified Hopfield Model for Solving the N-Queens Problem. |
IJCNN (6) |
2000 |
DBLP DOI BibTeX RDF |
|
53 | Cengiz Erbas, Seyed Sarkeshik, Murat M. Tanik |
Different Perspectives of the N-Queens Problem. |
ACM Conference on Computer Science |
1992 |
DBLP DOI BibTeX RDF |
|
53 | Bernard A. Nadel |
Representation Selection for Constraint Satisfaction: A Case Study Using n-Queens. |
IEEE Expert |
1990 |
DBLP DOI BibTeX RDF |
|
47 | |
One Eighth Rule in N-queens Problem Based on Group Theory and Morphological Gene Combinations. |
IFITA (3) |
2009 |
DBLP DOI BibTeX RDF |
morphological gene, N-queens problem, one eighth rule, combinatorial optimization, group theory |
44 | Queens Maria Thomas, Oliver Wasenmüller, Didier Stricker |
DeLiO: Decoupled LiDAR Odometry. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
44 | Queens Maria Thomas, Oliver Wasenmüller, Didier Stricker |
DeLiO: Decoupled LiDAR Odometry. |
IV |
2019 |
DBLP DOI BibTeX RDF |
|
44 | Stefan Büdenbender, Vivien Friedrich, Thomas Burch, Kristina Fink, Lukas Wolfgang, Kathrin Nühlen, Frank Queens, Joshgun Sirajzade |
Transcribo: A Graphical Editor for Transcribing and Annotating Textual Witnesses. Preparing a Historical-Critical Edition of Arthur Schnitzler's Works. |
DH |
2014 |
DBLP BibTeX RDF |
|
44 | Stefan Büdenbender, Thomas Burch, Kristina Fink, Lukas Wolfgang, Frank Queens, Joshgun Sirajzade |
Developing a virtual research environment for scholarly editing. Arthur Schnitzler: Digitale Historisch-Kritische Edition. |
DH |
2013 |
DBLP BibTeX RDF |
|
42 | Steven D. Prestwich |
Combining the Scalability of Local Search with the Pruning Techniques of Systematic Search. |
Ann. Oper. Res. |
2002 |
DBLP DOI BibTeX RDF |
hybrid search, n-queens, maximum cliques, Golomb rulers |
42 | Torsten Fahle, Stefan Schamberger, Meinolf Sellmann |
Symmetry Breaking. |
CP |
2001 |
DBLP DOI BibTeX RDF |
symmetry breaking during search, n-queens problem, golfer problem, graph partitioning |
42 | F. Michel Dekking, Jeffrey O. Shallit, Neil J. A. Sloane |
Queens in Exile: Non-attacking Queens on Infinite Chess Boards. |
Electron. J. Comb. |
2020 |
DBLP DOI BibTeX RDF |
|
42 | Seth Chaiken, Christopher R. H. Hanusa, Thomas Zaslavsky |
A q-queens problem III. Nonattacking partial queens. |
Australas. J Comb. |
2019 |
DBLP BibTeX RDF |
|
42 | Klaus Jaffe |
The need for sperm selection may explain why termite colonies have kings and queens, whereas those of ants, wasps and bees have only queens. |
Theory Biosci. |
2008 |
DBLP DOI BibTeX RDF |
|
37 | Herbert Taylor |
Packing Centrosymmetric Patterns of n Nonattacking Queens on an n × n Board. |
SSC |
2007 |
DBLP DOI BibTeX RDF |
|
37 | Wataru Noguchi, Cong-Kha Pham |
A Proposal to Solve N-Queens Problems Using Maximum Neuron Model with A Modified Hill-Climbing Term. |
IJCNN |
2006 |
DBLP DOI BibTeX RDF |
|
37 | David Ginat |
Queens on a chessboard. |
ACM SIGCSE Bull. |
2005 |
DBLP DOI BibTeX RDF |
|
37 | Adrijan Bozinovski, Stevo Bozinovski |
N-queens pattern generation: an insight into space complexity of a backtracking algorithm. |
ISICT |
2004 |
DBLP DOI BibTeX RDF |
|
37 | Yong Li 0003, Zheng Tang, Rong Long Wang, Guangpu Xia, Jiahai Wang |
A Positively Self-Feedbacked Hopfield Neural Network for N-Queens Problem. |
ISNN (1) |
2004 |
DBLP DOI BibTeX RDF |
|
37 | Paulo Urbano, Luís Moniz, Helder Coelho |
The Queen Robots: Behaviour-Based Situated Robots Solving the N-Queens Puzzle. |
SBIA |
2002 |
DBLP DOI BibTeX RDF |
|
37 | Toshiya Nakaguchi, Kenya Jin'no, Mamoru Tanaka |
Theoretical analysis of hysteresis neural network solving N-Queens problems. |
ISCAS (5) |
1999 |
DBLP DOI BibTeX RDF |
|
37 | Werner Kießling |
A Complex Benchmark for Logic Programming and Deductive Databases, or Who Can Beat the N-Queens ? |
SIGMOD Rec. |
1992 |
DBLP DOI BibTeX RDF |
|
32 | Babak Hamidzadeh, Ng Siu Kee |
A Dynamic Scheduling Benchmark: Design, Implementation and Performance Evaluation. |
ICTAI |
1999 |
DBLP DOI BibTeX RDF |
Benchmark, Dynamic Scheduling |
26 | Michel Vasquez |
New Results on the Queens_n2 Graph Coloring Problem. |
J. Heuristics |
2004 |
DBLP DOI BibTeX RDF |
queens graphs, cliques based filtering, graph coloring, independent sets |
26 | Jiro Naganuma, Takeshi Ogura |
A Highly OR-Parallel Inference Machine (Multi-ASCA) and Its Performance Evaluation: An Architecture and Its Load Balancing Algorithms. |
IEEE Trans. Computers |
1994 |
DBLP DOI BibTeX RDF |
highly OR-parallel inference machine, Multi-ASCA, serial I/O links, modified mesh network, high-speed sequential Prolog processor, locally controlled activity, software simulator, inference tree, OR-parallel benchmarks, n-queens problem, copying method, high-performance artificial intelligence system, nonshared memory multiprocessor system, 20 Mbit/s, performance evaluation, performance evaluation, VLSI, resource allocation, parallel architectures, parallel architecture, virtual machines, PROLOG, parallel machines, inference mechanisms, trace-driven simulation, communication overhead, processing elements, local memory, local communication, load balancing algorithms |
26 | Uday S. Reddy |
Programming with sequences. |
ACM Southeast Regional Conference |
1982 |
DBLP DOI BibTeX RDF |
abstract sequences, axiomatic reasoning, eight-queens problem, functional forms, operational reasoning, functional programming, dynamism, variables, recursion, fixed points, Procedural programming |
21 | Filippos Pantekis, Phillip James, Oliver Kullmann, Liam O'Reilly |
Optimized massively parallel solving of N-Queens on GPGPUs. |
Concurr. Comput. Pract. Exp. |
2024 |
DBLP DOI BibTeX RDF |
|
21 | Abhinav Swaminathan, Abhishek Swaminathan, Janardan Vaidyanathan |
Composing the Queen's Exile - A Knighted Chain Solution to the N-Queens Problem. |
Oper. Res. Forum |
2024 |
DBLP DOI BibTeX RDF |
|
21 | Parth Nobel, Akshay Agrawal 0001, Stephen P. Boyd |
Computing tighter bounds on the n-queens constant via Newton's method. |
Optim. Lett. |
2023 |
DBLP DOI BibTeX RDF |
|
21 | Shunsuke Tsukiyama, Koji Nakano, Yasuaki Ito, Takashi Yazane, Junko Yano, Takumi Kato, Shiro Ozaki, Rie Mori, Ryota Katsuki |
Solving the N-Queens Puzzle by a QUBO Model with Quadratic Size. |
candar |
2023 |
DBLP DOI BibTeX RDF |
|
21 | Philippe Codognet |
Encoding the At-Most-One Constraint for QUBO and Quantum Annealing: Experiments with the N-Queens problem. |
GECCO Companion |
2023 |
DBLP DOI BibTeX RDF |
|
21 | Ali Dehghani, Reza Namvar, Abdullah Khalili |
Henry V: A linear time algorithm for solving the N-Queens Problem using only 5 patterns. |
CSICC |
2023 |
DBLP DOI BibTeX RDF |
|
21 | Yukun Yao, Doron Zeilberger |
Numerical and Symbolic Studies of the Peaceable Queens Problem. |
Exp. Math. |
2022 |
DBLP DOI BibTeX RDF |
|
21 | Wlodzimierz Drabent |
On Correctness and Completeness of an n Queens Program. |
Theory Pract. Log. Program. |
2022 |
DBLP DOI BibTeX RDF |
|
21 | Michael Simkin, Zur Luria |
A Lower Bound for the n-queens Problem. |
SODA |
2022 |
DBLP DOI BibTeX RDF |
|
21 | Barbu Clara, David-Traian Iancu |
Cat Swarm Optimization for Solving the N-Queens Problem. |
ECAI |
2022 |
DBLP DOI BibTeX RDF |
|
21 | Filippos Pantekis, Phillip James, Oliver Kullmann |
Scalable N-Queens Solving on GPGPUs via Interwarp Collaborations. |
CANDAR |
2022 |
DBLP DOI BibTeX RDF |
|
21 | Stefan Glock, David Munhá Correia, Benny Sudakov |
The n-queens completion problem. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
21 | Wlodzimierz Drabent |
On correctness and completeness of an n queens program. |
CoRR |
2021 |
DBLP BibTeX RDF |
|
21 | Jianli Cao, Zhikui Chen, Yuxin Wang, He Guo 0001 |
Parallel Implementations of Candidate Solution Evaluation Algorithm for N-Queens Problem. |
Complex. |
2021 |
DBLP DOI BibTeX RDF |
|
21 | Meghan Reading Turchioe, Alexander Volodarskiy, Jessica S. Ancker, Joshua Vapnik, Sushant Sunkaraneni, David Slotwiner |
Cardiac patients' and healthcare providers' telehealth experiences during the COVID-19 pandemic in Queens, New York. |
AMIA |
2021 |
DBLP BibTeX RDF |
|
21 | Patnala Prudhvi Raj, Snehanshu Saha, Gowri Srinivasa |
Solving the N-Queens and Golomb Ruler Problems Using DQN and an Approximation of the Convergence. |
ICONIP (6) |
2021 |
DBLP DOI BibTeX RDF |
|
21 | Eileen Buckholtz |
Queens of Code. |
IEEE Ann. Hist. Comput. |
2020 |
DBLP DOI BibTeX RDF |
|
21 | Pascal Fua, Krzysztof Lis |
Comparing Python, Go, and C++ on the N-Queens Problem. |
CoRR |
2020 |
DBLP BibTeX RDF |
|
21 | Fernando Arroyo, Sandra Gómez Canaval, Karina Jiménez, Alfonso Ortega de la Puente |
A Linear Time Solution for N-Queens Problem Using Generalized Networks of Evolutionary Polarized Processors. |
Int. J. Found. Comput. Sci. |
2020 |
DBLP DOI BibTeX RDF |
|
21 | Oliver Kolossoski, Luiz Carlos Matioli, Elvis M. R. Torrealba, Juliana G. Silva |
Modular knight distance in graphs and applications on the n-queens problem. |
Discret. Math. |
2020 |
DBLP DOI BibTeX RDF |
|
21 | Seth Chaiken, Christopher R. H. Hanusa, Thomas Zaslavsky |
A q-Queens Problem IV. Attacking configurations and their denominators. |
Discret. Math. |
2020 |
DBLP DOI BibTeX RDF |
|
21 | Christopher R. H. Hanusa, Thomas Zaslavsky |
A q-queens problem VII: Combinatorial types of nonattacking chess riders. |
Australas. J Comb. |
2020 |
DBLP BibTeX RDF |
|
21 | Jianli Cao, Zhikui Chen, Yuxin Wang, He Guo 0001 |
Parallel genetic algorithm for N-Queens problem based on message passing interface-compute unified device architecture. |
Comput. Intell. |
2020 |
DBLP DOI BibTeX RDF |
|
21 | Emily Dinan, Angela Fan, Adina Williams, Jack Urbanek, Douwe Kiela, Jason Weston |
Queens are Powerful too: Mitigating Gender Bias in Dialogue Generation. |
EMNLP (1) |
2020 |
DBLP DOI BibTeX RDF |
|
21 | E. Grigoryan |
Linear algorithm for solution n-Queens Completion problem. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
21 | Wlodzimierz Drabent |
On correctness of an n queens program. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
21 | T. E. Raptis |
Hidden Structure in the Solutions Set of the N Queens Problem. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
21 | Emily Dinan, Angela Fan, Adina Williams, Jack Urbanek, Douwe Kiela, Jason Weston |
Queens are Powerful too: Mitigating Gender Bias in Dialogue Generation. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
21 | Matteo Fischetti, Domenico Salvagnin |
Finding First and Most-Beautiful Queens by Integer Programming. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
21 | Seth Chaiken, Christopher R. H. Hanusa, Thomas Zaslavsky |
A q-queens problem. VI. The bishops' period. |
Ars Math. Contemp. |
2019 |
DBLP DOI BibTeX RDF |
|
21 | Yuji Sasaki, Masanori Fukui, Tsukasa Hirashima |
Development of iOS Software n-Queens Problem for Education and Its Application for Promotion of Computational Thinking. |
GCCE |
2019 |
DBLP DOI BibTeX RDF |
|
21 | Kelvin C. Buño, Francis George C. Cabarle, Marj Darrel Calabia, Henry N. Adorna |
Solving the N-Queens problem using dP systems with active membranes. |
Theor. Comput. Sci. |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Uddalok Sarkar, Sayan Nag |
An Adaptive Genetic Algorithm for Solving N-Queens Problem. |
CoRR |
2018 |
DBLP BibTeX RDF |
|
21 | Matteo Fischetti, Domenico Salvagnin |
Chasing First Queens by Integer Programming. |
CPAIOR |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Yuuma Azuma, Hayato Sakagami, Kenji Kise |
An Efficient Parallel Hardware Scheme for Solving the N-Queens Problem. |
MCSoC |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Bogdan Aman, Gabriel Ciobanu |
Solving the N-Queens Puzzle by Using Few Membranes. |
Enjoying Natural Computing |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Veli-Matti Karhulahti, Kai Kimppa |
"Two Queens and a Pwn, Please." An ethics for purchase, loot, and advantage design in esports. |
GamiFIN |
2018 |
DBLP BibTeX RDF |
|
21 | Ian P. Gent, Christopher Jefferson, Peter Nightingale |
Complexity of n-Queens Completion (Extended Abstract). |
IJCAI |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Thomas Preußer |
A Brute-Force Solution to the 27-Queens Puzzle Using a Distributed Computation. |
Int. Conf. on Membrane Computing |
2018 |
DBLP DOI BibTeX RDF |
|
21 | Ian P. Gent, Christopher Jefferson, Peter Nightingale |
Complexity of n-Queens Completion. |
J. Artif. Intell. Res. |
2017 |
DBLP DOI BibTeX RDF |
|
21 | Eric William Davis Rozier, Kristin Y. Rozier, Ulya Bayram |
Characterizing Data Dependence Constraints for Dynamic Reliability Using n-Queens Attack Domains. |
Leibniz Trans. Embed. Syst. |
2017 |
DBLP DOI BibTeX RDF |
|
21 | Ali Habiboghli, Tayebeh Jalali |
A Solution to the N-Queens Problem Using Biogeography-Based Optimization. |
Int. J. Interact. Multim. Artif. Intell. |
2017 |
DBLP DOI BibTeX RDF |
|
21 | Thomas B. Preußer, Matthias R. Engelhardt |
Putting Queens in Carry Chains, N o̱27. |
J. Signal Process. Syst. |
2017 |
DBLP DOI BibTeX RDF |
|
21 | Jack Lawrence Mason |
Validation of Context Preserving Thread-Level Speculative Execution Using N-Queens: Comparison of Non-CPSE and CPSE-enabled Applications. |
MTV |
2017 |
DBLP DOI BibTeX RDF |
|
21 | Shahenda Sarhan, Mohamed Abu ElSoud, Hebatullah Rashed |
Enhancing Video Games Policy Based on Least-Squares Continuous Action Policy Iteration: Case Study on StarCraft Brood War and Glest RTS Games and the 8 Queens Board Game. |
Int. J. Comput. Games Technol. |
2016 |
DBLP DOI BibTeX RDF |
|
21 | Hussain Mohammad Abu-Dalbouh |
Using a Modified Technology Acceptance Model to Evaluate Designing Eight Queens Chess Puzzle Game. |
J. Comput. Sci. |
2016 |
DBLP DOI BibTeX RDF |
|
21 | Biljana L. Stojkoska, Danco Davcev, Vladimir Trajkovik |
N-queens-based algorithm for moving object detection in distributed wireless sensor networks. |
CoRR |
2016 |
DBLP BibTeX RDF |
|
21 | Kevin Pratt |
Closed-Form Expressions for the n-Queens Problem and Related Problems. |
CoRR |
2016 |
DBLP BibTeX RDF |
|
21 | Zhaocai Wang, Dongmei Huang, Jian Tan, Taigang Liu, Kai Zhao, Lei Li |
A parallel algorithm for solving the n-queens problem based on inspired computational model. |
Biosyst. |
2015 |
DBLP DOI BibTeX RDF |
|
21 | Ulya Bayram, Kristin Yvonne Rozier, Eric William Davis Rozier |
Characterizing Data Dependence Constraints for Dynamic Reliability Using N-Queens Attack Domains. |
QEST |
2015 |
DBLP DOI BibTeX RDF |
|
21 | Max Plauth, Frank Feinbube, Frank Schlegel, Andreas Polze |
Using Dynamic Parallelism for Fine-Grained, Irregular Workloads: A Case Study of the N-Queens Problem. |
CANDAR |
2015 |
DBLP DOI BibTeX RDF |
|
21 | Seth Chaiken, Christopher R. H. Hanusa, Thomas Zaslavsky |
A q-Queens Problem. I. General Theory. |
Electron. J. Comb. |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Vinay Kumar, Abhishek Bansal, Sunil Kumar Muttoo |
Data Hiding Method Based on Inter-Block Difference in Eight Queens Solutions and LSB Substitution. |
Int. J. Inf. Secur. Priv. |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Ali Maroosi, Ravie Chandren Muniyandi |
Accelerated execution of P systems with active membranes to solve the N-queens problem. |
Theor. Comput. Sci. |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Eduardo Zambon, Arend Rensink |
Solving the N-Queens Problem with GROOVE - Towards a Compendium of Best Practices. |
Electron. Commun. Eur. Assoc. Softw. Sci. Technol. |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Ellips Masehian, Hossein Akbaripour, Nasrin Mohabbati-Kalejahi |
Solving the n-queens problem using a tuned hybrid imperialist competitive algorithm. |
Int. Arab J. Inf. Technol. |
2014 |
DBLP BibTeX RDF |
|
21 | Alexandra Dolan-Mescal, Marcie Farwell, Sara A. Howard, Jessica Rozler, Matthew Smith 0005 |
A digital file inventory of the Queens College Special Collections and Archives: Findings, analysis and recommendations for long-term preservation. |
OCLC Syst. Serv. |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Eneko Osaba, Fernando Díaz 0001, Roberto Carballedo, Enrique Onieva, Pedro López-García 0002 |
A study on the impact of heuristic initialization functions in a genetic algorithm solving the N-queens problem. |
GECCO (Companion) |
2014 |
DBLP DOI BibTeX RDF |
|
21 | Marcin Lajtar |
The N queens problem - new variants of the Wirth algorithm. |
Ann. UMCS Informatica |
2013 |
DBLP DOI BibTeX RDF |
|
21 | Ellips Masehian, Hossein Akbaripour, Nasrin Mohabbati-Kalejahi |
Landscape analysis and efficient metaheuristics for solving the n-queens problem. |
Comput. Optim. Appl. |
2013 |
DBLP DOI BibTeX RDF |
|
21 | William D. Weakley |
Toroidal queens graphs over finite fields. |
Australas. J Comb. |
2013 |
DBLP BibTeX RDF |
|
21 | Denis V. Dubrov |
N queens problem: a metaprogramming stress test for the compiler. |
WGP@ICFP |
2013 |
DBLP DOI BibTeX RDF |
|
21 | Ali Maroosi, Ravie Chandren Muniyandi |
Accelerated Simulation of Membrane Computing to Solve the N-queens Problem on Multi-core. |
SEMCCO (2) |
2013 |
DBLP DOI BibTeX RDF |
|
21 | Belal Al-Khateeb, Wadhah Z. Tareq |
Solving 8-Queens Problem by Using Genetic Algorithms, Simulated Annealing, and Randomization Method. |
DeSE |
2013 |
DBLP DOI BibTeX RDF |
|
21 | Sunil Kumar Muttoo, Vinay Kumar, Abhishek Bansal |
Secure Data Hiding Using Eight Queens Solutions. |
Int. J. Inf. Secur. Priv. |
2012 |
DBLP DOI BibTeX RDF |
|
21 | Roel Vertegaal |
Human media lab, Queens University. |
Interactions |
2012 |
DBLP DOI BibTeX RDF |
|
21 | Ahmed Khademzadeh, Morteza Aghamohammadian Sharbaf, Amin Bayati |
An Optimized MPI-based Approach for Solving the N-Queens Problem. |
3PGCIC |
2012 |
DBLP DOI BibTeX RDF |
|
21 | Nasrin Mohabbati-Kalejahi, Hossein Akbaripour, Ellips Masehian |
Basic and Hybrid Imperialist Competitive Algorithms for Solving the Non-attacking and Non-dominating n-Queens Problems. |
IJCCI (Selected Papers) |
2012 |
DBLP DOI BibTeX RDF |
|
21 | Ellips Masehian, Nasrin Mohabbati-Kalejahi, Hossein Akbaripour |
Basic and Hybrid Imperialist Competitive Algorithms for Solving the n-Queens Problem. |
IJCCI |
2012 |
DBLP BibTeX RDF |
|
21 | Ivan Babanin, Ivan Pustovoj, Elena Kleimenova, Sergey Kozhevnikov, Elena V. Simonova, Petr Skobelev, Alexander Tsarev |
Multi-agent Solution for ‘8 Queens' Puzzle. |
IJCCI |
2012 |
DBLP BibTeX RDF |
|
21 | Yuh-Rau Wang, Hsieh-Liang Lin, Ling Yang 0005 |
Swarm Refinement PSO for Solving N-queens Problem. |
IBICA |
2012 |
DBLP DOI BibTeX RDF |
|