Hits ?▲ |
Authors |
Title |
Venue |
Year |
Link |
Author keywords |
99 | Hung-chih Yang, Ali Dasdan, Ruey-Lung Hsiao, Douglas Stott Parker Jr. |
Map-reduce-merge: simplified relational data processing on large clusters. |
SIGMOD Conference |
2007 |
DBLP DOI BibTeX RDF |
map-reduce-merge, cluster, parallel, search engine, distributed, relational, join, data processing, map-reduce |
52 | Foto N. Afrati, Jeffrey D. Ullman |
Optimizing joins in a map-reduce environment. |
EDBT |
2010 |
DBLP DOI BibTeX RDF |
|
46 | Mohamad Al Hajj Hassan, Mostafa Bamha |
Semi-join computation on distributed file systems using map-reduce-merge model. |
SAC |
2010 |
DBLP DOI BibTeX RDF |
map-reduce-merge model, semi-join operations, distributed file systems, data skew |
41 | Foto N. Afrati, Jeffrey D. Ullman |
Optimizing Multiway Joins in a Map-Reduce Environment. |
IEEE Trans. Knowl. Data Eng. |
2011 |
DBLP DOI BibTeX RDF |
parallel computing, query optimization, joins, Map-reduce |
41 | Neda Alipanah, Pallabi Parveen, Latifur Khan, Bhavani Thuraisingham |
Ontology-Driven Query Expansion Using Map/Reduce Framework to Facilitate Federated Queries. |
ICWS |
2011 |
DBLP DOI BibTeX RDF |
Federated Query, Map/Reduce, Distributed Computation, Query Expansion, Hadoop |
41 | Flavio Chierichetti, Ravi Kumar 0001, Andrew Tomkins |
Max-cover in map-reduce. |
WWW |
2010 |
DBLP DOI BibTeX RDF |
maximum cover, greedy algorithm, map-reduce |
41 | Jenq-Shiou Leu, Yun-Sun Yee, Wa-Lin Chen |
Comparison of Map-Reduce and SQL on Large-Scale Data Processing. |
ISPA |
2010 |
DBLP DOI BibTeX RDF |
Cloud-Computing, SQL, Hadoop, Map-Reduce |
41 | Kuznecov Sergey, Kudryavcev Yury |
Applying Map-Reduce Paradigm for Parallel Closed Cube Computation. |
DBKDA |
2009 |
DBLP DOI BibTeX RDF |
closed cubes, map reduce, olap |
40 | Radhika Sridhar, Padmashree Ravindra, Kemafor Anyanwu |
RAPID: Enabling Scalable Ad-Hoc Analytics on the Semantic Web. |
ISWC |
2009 |
DBLP DOI BibTeX RDF |
Scalable Analytical Processing, Pig Latin, RDF, Map-Reduce |
40 | Fei Xu, Kevin S. Beyer, Vuk Ercegovac, Peter J. Haas, Eugene J. Shekita |
E = MC3: managing uncertain enterprise data in a cluster-computing environment. |
SIGMOD Conference |
2009 |
DBLP DOI BibTeX RDF |
jaql, monte carlo, uncertain data, map-reduce, json |
39 | Jost Berthold, Mischa Dieterle, Rita Loogen |
Implementing Parallel Google Map-Reduce in Eden. |
Euro-Par |
2009 |
DBLP DOI BibTeX RDF |
|
39 | Jackson H. C. Yeung, C. C. Tsang, Kuen Hung Tsoi, Bill S. H. Kwan, Chris C. C. Cheung, Anthony P. C. Chan, Philip Heng Wai Leong |
Map-reduce as a Programming Model for Custom Computing Machines. |
FCCM |
2008 |
DBLP DOI BibTeX RDF |
|
34 | Spiros Papadimitriou, Jimeng Sun 0001 |
DisCo: Distributed Co-clustering with Map-Reduce: A Case Study towards Petabyte-Scale End-to-End Mining. |
ICDM |
2008 |
DBLP DOI BibTeX RDF |
|
31 | Janakiram Dharanipragada, Geeta Iyer, Sriram Kailasam |
Generate-map-reduce: An extension to map-reduce to support shared data and recursive computations. |
Concurr. Comput. Pract. Exp. |
2014 |
DBLP DOI BibTeX RDF |
|
30 | Murat Ali Bayir, Ismail Hakki Toroslu, Ahmet Cosar, Guven Fidan |
Smart Miner: a new framework for mining large scale web usage data. |
WWW |
2009 |
DBLP DOI BibTeX RDF |
map/reduce, web user modeling, web usage mining, graph mining, parallel data mining |
30 | Richard A. Brown |
Hadoop at home: large-scale computing at a small college. |
SIGCSE |
2009 |
DBLP DOI BibTeX RDF |
data-intensive scalable computing, examples in education, student system management, cluster computing, hadoop, map-reduce, beowulf |
26 | Reymonrod G. Vasquez, Kunal Verma, Alex Kass |
Distributing Computationally Expensive Matching of Requirements to Capability Models. |
ICSC |
2011 |
DBLP DOI BibTeX RDF |
Natural Language Processing, Hadoop, Map-Reduce, document and text processing |
26 | Ashish Thusoo, Zheng Shao, Suresh Anthony, Dhruba Borthakur, Namit Jain, Joydeep Sen Sarma, Raghotham Murthy, Hao Liu 0018 |
Data warehousing and analytics infrastructure at facebook. |
SIGMOD Conference |
2010 |
DBLP DOI BibTeX RDF |
hive, log aggregation, scribe, distributed systems, scalability, data warehouse, resource sharing, distributed file system, hadoop, facebook, analytics, map-reduce, data discovery |
26 | Zhi-Dan Zhao, Mingsheng Shang 0001 |
User-Based Collaborative-Filtering Recommendation Algorithms on Hadoop. |
WKDD |
2010 |
DBLP DOI BibTeX RDF |
recommender systems, cloud computing, collaborative filtering, hadoop, Map-Reduce |
26 | Adam Ji Dou, Vana Kalogeraki, Dimitrios Gunopulos, Taneli Mielikäinen, Ville H. Tuulos |
Misco: a MapReduce framework for mobile systems. |
PETRA |
2010 |
DBLP DOI BibTeX RDF |
mobile systems, distributed real-time systems, map reduce |
26 | Qiming Chen, Andy Therber, Meichun Hsu, Hans Zeller, Bin Zhang 0004, Ren Wu |
Efficiently support MapReduce-like computation models inside parallel DBMS. |
IDEAS |
2009 |
DBLP DOI BibTeX RDF |
query executor, relation valued function, parallel database, map-reduce, user defined function |
26 | Xumei Shan, Hefeng Liu |
Enterprise Cloud Architecture for Chinese Ministry of Railway. |
CloudCom |
2009 |
DBLP DOI BibTeX RDF |
Tashi, Cloud Computing, Hadoop, Map Reduce, HDFS |
26 | Shrideep Pallickara, Jaliya Ekanayake, Geoffrey C. Fox |
An Overview of the Granules Runtime for Cloud Computing. |
eScience |
2008 |
DBLP DOI BibTeX RDF |
cloud computing, runtime, map-reduce, streaming systems |
22 | K. Arunkumar, N. Karthikeyan, S. Karthik 0001 |
An Iterative Processing Scheme for Enhancing the Map Reduce Using Map Information Storage in Wireless Environment. |
Wirel. Pers. Commun. |
2020 |
DBLP DOI BibTeX RDF |
|
22 | Jianbo Zhang, Simin Zhou, Tingnan Liang, Yongchang Li, Caikun Chen, Hao Xia |
A two-level storage strategy for map-reduce enabled computation of local map algebra. |
Earth Sci. Informatics |
2020 |
DBLP DOI BibTeX RDF |
|
22 | J. V. N. Lakshmi |
Data analysis on big data: improving the map and shuffle phases in Hadoop Map Reduce. |
Int. J. Data Anal. Tech. Strateg. |
2018 |
DBLP DOI BibTeX RDF |
|
22 | Darío Ramos-López, Antonio Salmerón, Rafael Rumí, Ana M. Martínez, Thomas D. Nielsen, Andrés R. Masegosa, Helge Langseth, Anders L. Madsen |
Scalable MAP inference in Bayesian networks based on a Map-Reduce approach. |
Probabilistic Graphical Models |
2016 |
DBLP BibTeX RDF |
|
22 | Vishnu Shankar Tiwari, Arti Arya, Sudha Chaturvedi |
Framework for Horizontal Scaling of Map Matching: Using Map-Reduce. |
ICIT |
2014 |
DBLP DOI BibTeX RDF |
|
20 | Christopher Olston, Benjamin C. Reed, Utkarsh Srivastava, Ravi Kumar 0001, Andrew Tomkins |
Pig latin: a not-so-foreign language for data processing. |
SIGMOD Conference |
2008 |
DBLP DOI BibTeX RDF |
pig latin, dataflow language |
20 | Hung-chih Yang, Douglas Stott Parker Jr. |
Traverse: Simplified Indexing on Large Map-Reduce-Merge Clusters. |
DASFAA |
2009 |
DBLP DOI BibTeX RDF |
|
20 | Petr Krajca, Vilém Vychodil |
Distributed Algorithm for Computing Formal Concepts Using Map-Reduce Framework. |
IDA |
2009 |
DBLP DOI BibTeX RDF |
|
19 | Ashraf Aboulnaga, Ziyu Wang, Zi Ye Zhang |
Packing the most onto your cloud. |
CloudDB@CIKM |
2009 |
DBLP DOI BibTeX RDF |
scheduling, virtual machines, performance modeling, hadoop |
16 | M. R. Sundara Kumar, H. S. Mohan |
Improving big data analytics data processing speed through map reduce scheduling and replica placement with HDFS using genetic optimization techniques. |
J. Intell. Fuzzy Syst. |
2024 |
DBLP DOI BibTeX RDF |
|
16 | S. Nagendra Babu, J. Jebamalar Tamilselvi |
Map Reduce approach for road accident data analysis using data mining techniques. |
Int. J. Adv. Intell. Paradigms |
2024 |
DBLP DOI BibTeX RDF |
|
16 | V. Sitharamulu, K. Rajendra Prasad, K. Sudheer Reddy, A. V. Krishna Prasad, M. Venkat Dass |
Hybrid classifier model for big data by leveraging map reduce framework. |
Int. J. Data Min. Model. Manag. |
2024 |
DBLP DOI BibTeX RDF |
|
16 | Shanuja Sasi, Onur Günlü, B. Sundar Rajan |
Multi-access Distributed Computing Models from Map-Reduce Arrays. |
CoRR |
2024 |
DBLP DOI BibTeX RDF |
|
16 | |
Retraction Note: Big data analytic diabetics using map reduce and classification techniques. |
J. Supercomput. |
2023 |
DBLP DOI BibTeX RDF |
|
16 | A. Suki Antely, P. Jegatheeswari, M. Bibin Prasad, V. Vinolin, S. Vinusha, B. R. Rajakumar, D. Binu |
Sparse FCM-Based Map-Reduce Framework for Distributed Parallel Data Clustering in E-Khool Learning Platform. |
Int. J. Uncertain. Fuzziness Knowl. Based Syst. |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Hua-Yi Lin |
Secure cloud internet of vehicles based on blockchain and data transmission scheme of map/reduce. |
Comput. Sci. Inf. Syst. |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Shengying Yang, Wuyin Jin, Yunxiang Yu, Kamarul Faizal Hashim |
Optimized hadoop map reduce system for strong analytics of cloud big product data on amazon web service. |
Inf. Process. Manag. |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Zefeng Qiu, Prashanth Umapathy, Qingquan Zhang, Guanqun Song, Ting Zhu |
Map-Reduce for Multiprocessing Large Data and Multi-threading for Data Scraping. |
CoRR |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Vinícius Souza, Luiz Olmes Carvalho, Daniel de Oliveira 0001, Marcos V. N. Bedo, Lúcio F. D. Santos |
Adding Result Diversification to kNN-Based Joins in a Map-Reduce Framework. |
DEXA (1) |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Aditi R. Durge, Deepti D. Shrimankar |
MRQPMS: Design of a Map Reduce Bioinspired Model for Solving Quorum Planted Motif Search for High-Speed Deployments. |
BIOINFORMATICS |
2023 |
DBLP DOI BibTeX RDF |
|
16 | Mengying Shang, Yonghua Zhou, Hamido Fujita |
Energy-Saving Operation Synergy for Multiple Metro-Trains Using Map-Reduce Parallel Optimization. |
IEEE Trans. Veh. Technol. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | M. J. Abinash, V. Vasudevan |
Gene data classification using Map Reduce based linear SVM. |
Concurr. Comput. Pract. Exp. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Varalakshmi Perumal, Sankari Subbiah |
Optimized scheduling of multi-user Map-Reduce jobs in heterogeneous environment. |
Concurr. Comput. Pract. Exp. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Fugui Li, Ashutosh Sharma |
Missing Data Filling Algorithm for Big Data-Based Map-Reduce Technology. |
Int. J. e Collab. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Jan Konecny 0001, Petr Krajca |
On pruning techniques in map-reduce style CbO algorithms. |
Ann. Math. Artif. Intell. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Zheng Xu |
Computational intelligence based sustainable computing with classification model for big data visualization on map reduce environment. |
Discov. Internet Things |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Alexandros Gazis, Eleftheria Katsiri |
Crowd tracking and monitoring middleware via Map-Reduce. |
Int. J. Parallel Emergent Distributed Syst. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Viomesh Kumar Singh, Sangeeta Sabharwal, Goldie Gabrani |
A new fuzzy clustering-based recommendation method using grasshopper optimization algorithm and Map-Reduce. |
Int. J. Syst. Assur. Eng. Manag. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Alexandros Gazis, Eleftheria Katsiri |
Crowd tracking and monitoring middleware via Map-Reduce. |
CoRR |
2022 |
DBLP BibTeX RDF |
|
16 | U. S. N. Raju, Hillol Barman, Rohan Kishor Netalkar, Sanjay Kumar, Hariom Kumar |
Distributed JPEG Compression and Decompression for Big Image Data Using Map-Reduce Paradigm. |
J. Mobile Multimedia |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Narayana Satyala, Suresh Babu Chandanapalli, Mekala Srinivasa Rao, Kalyanapu Srinivas |
Ant Cat Swarm Optimization-Enabled Deep Recurrent Neural Network for Big Data Classification Based on Map Reduce Framework. |
Comput. J. |
2022 |
DBLP DOI BibTeX RDF |
|
16 | Shubham Jambhulkar, Deepak Singh Tomar, R. K. Pateriya |
Analysis of Vulnerabilities in Hadoop Map Reduce Framework: A Review. |
WCNC |
2022 |
DBLP BibTeX RDF |
|
16 | N. Yamuna Devi |
A Parallel Direct-Vertical Map Reduce Programming model for an effective frequent pattern mining in a dispersed environment. |
Concurr. Comput. Pract. Exp. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Hossein Azgomi, Mohammad Karim Sohrabi |
MR-MVPP: A map-reduce-based approach for creating MVPP in data warehouses for big data applications. |
Inf. Sci. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | R. Thanga Selvi, I. Muthulakshmi |
Modelling the map reduce based optimal gradient boosted tree classification algorithm for diabetes mellitus diagnosis system. |
J. Ambient Intell. Humaniz. Comput. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Maria Fazio, Alina Buzachis, Antonino Galletta, Antonio Celesti, Jiafu Wan, Antonella Longo, Massimo Villari |
A Map-Reduce Approach for the Dijkstra Algorithm in SDN Over Osmotic Computing Systems. |
Int. J. Parallel Program. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | J. Ramsingh, V. Bhuvaneswari |
An efficient Map Reduce-Based Hybrid NBC-TFIDF algorithm to mine the public sentiment on diabetes mellitus - A big data approach. |
J. King Saud Univ. Comput. Inf. Sci. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Chitrakant Banchhor, N. Srinivasu |
Analysis of Bayesian optimization algorithms for big data classification based on Map Reduce framework. |
J. Big Data |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Deepak Kumar, Vijay Kumar Jha |
An improved query optimization process in big data using ACO-GA algorithm and HDFS map reduce technique. |
Distributed Parallel Databases |
2021 |
DBLP DOI BibTeX RDF |
|
16 | V. Malsoru, A. R. Naseer, G. Narsimha |
Two-way distributed sequential pattern mining using fruit fly algorithm along with Hadoop and map reduce framework. |
Int. J. Comput. Aided Eng. Technol. |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Abeer A. Amer, Sarah S. Abulwafa, Mohamed M. El-Hadi |
A Proposed Framework for Building Semantic Search Engine with Map-Reduce. |
AMLTA |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Haiyan Lv, Zhiqiang Li, Baoqiang Wen, Chauan Wan |
A Big Data Platform Tourism Price Strategy Method with Map/Reduce. |
BIC |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Siddhartha Balakrishna Rai, Anand Sivasubramaniam, Adithya Kumar, Prasanna Venkatesh Rengasamy, Vijaykrishnan Narayanan, Ameen Akel, Sean Eilert |
Design space for scaling-in general purpose computing within the DDR DRAM hierarchy for map-reduce workloads. |
CF |
2021 |
DBLP DOI BibTeX RDF |
|
16 | Mohammad Nishat Akhtar, Junita Mohamad-Saleh, Habib Awais, Elmi Abu Bakar |
Map-Reduce based tipping point scheduler for parallel image processing. |
Expert Syst. Appl. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Hymavathi Thottathyl, Karteeka Pavan Kanadam, Rajeev Priyatam Panchadula |
Microarray Breast Cancer Data Clustering Using Map Reduce Based K-Means Algorithm. |
Rev. d'Intelligence Artif. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Yashuang Mu, Xiaodong Liu 0001, Lidong Wang, Juxiang Zhou |
A parallel fuzzy rule-base based decision tree in the framework of map-reduce. |
Pattern Recognit. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | |
Big data analytic diabetics using map reduce and classification techniques. |
J. Supercomput. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Shujun Pei, Yu Zhang, Liang Chao |
Fast Pruning Algorithm and Task Scheduling under Map/Reduce. |
Int. J. Perform. Eng. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Vasavi Ravuri, S. Vasundra |
Moth-Flame Optimization-Bat Optimization: Map-Reduce Framework for Big Data Clustering Using the Moth-Flame Bat Optimization and Sparse Fuzzy C-Means. |
Big Data |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Ramakrishna Guttula, Venkateswara Rao Nandanavanam |
Patch antenna design optimization using opposition based grey wolf optimizer and map-reduce framework. |
Data Technol. Appl. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Raju Bhukya, Sumit Deshmuk |
Referential DNA data compression using hadoop map reduce framework. |
Int. Arab J. Inf. Technol. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Chitrakant Banchhor, N. Srinivasu |
Integrating Cuckoo search-Grey wolf optimization and Correlative Naive Bayes classifier with Map Reduce model for big data classification. |
Data Knowl. Eng. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Faris Mohammad Abd, Mehdi Ebady Manaa |
Predicting Heart Diseases from Large Scale IoT Data Using a Map-Reduce Paradigm. |
Open Comput. Sci. |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Johannes Härtel, Ralf Lämmel |
Incremental Map-Reduce on Repository History. |
SANER |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Jan Konecny 0001, Petr Krajca |
Pruning in Map-Reduce Style CbO Algorithms. |
ICCS |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Ishaan Lagwankar, Ananth Narayan Sankaranarayanan, Subramaniam Kalambur |
Impact of Map-Reduce framework on Hadoop and Spark MR Application Performance. |
IEEE BigData |
2020 |
DBLP DOI BibTeX RDF |
|
16 | Sandip Samaddar, Rituparna Sinha, Rajat K. De |
A Model for Distributed Processing and Analyses of NGS Data under Map-Reduce Paradigm. |
IEEE ACM Trans. Comput. Biol. Bioinform. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Rutuja Dadasaheb Mote, Ambika Vishal Pawar |
Privacy preservation using hybrid cloud environment and Map-Reduce for data deduplication. |
Int. J. Adv. Intell. Paradigms |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Armin Moharrer, Stratis Ioannidis |
Distributing Frank-Wolfe via map-reduce. |
Knowl. Inf. Syst. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Shaik Fathimabi, R. B. V. Subramanyam, Durvasula V. L. N. Somayajulu |
MSP: Multiple Sub-graph Query Processing using Structure-based Graph Partitioning Strategy and Map-Reduce. |
J. King Saud Univ. Comput. Inf. Sci. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Adam Lev-Libfeld, Alexander Margolin |
Fast Data: Moving beyond from Big Data's map-reduce. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
16 | Antoine Paris, Hamed Mirghasemi, Ivan Stupia, Luc Vandendorpe |
Energy-Efficient Edge-Facilitated Wireless Collaborative Computing using Map-Reduce. |
CoRR |
2019 |
DBLP BibTeX RDF |
|
16 | Priyank Jain, Manasi Gyanchandani, Nilay Khare |
Enhanced Secured Map Reduce layer for Big Data privacy and security. |
J. Big Data |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Khyati Ahlawat, Anuradha Chug, Amit Prakash Singh |
Empirical Evaluation of Map Reduce Based Hybrid Approach for Problem of Imbalanced Classification in Big Data. |
Int. J. Grid High Perform. Comput. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Katherapaka Sudhakar, M. A. H. Farquad, G. Narshimha |
Effective convolution method for privacy preserving in cloud over big data using map reduce framework. |
IET Softw. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | M. R. M. VeeraManickam, M. Mohanapriya, Bishwajeet K. Pandey, Sushma Akhade, S. A. Kale, Reshma Patil, M. Vigneshwar |
Map-Reduce framework based cluster architecture for academic student's performance prediction using cumulative dragonfly based neural network. |
Clust. Comput. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Kyung Mi Lee, Yoon-Su Jeong, Sang Ho Lee 0002, Keon-Myung Lee |
Bucket-size balancing locality sensitive hashing using the map reduce paradigm. |
Clust. Comput. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | G. Venkatesh 0002, K. Arunesh |
Map Reduce for big data processing based on traffic aware partition and aggregation. |
Clust. Comput. |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Antoine Paris, Hamed Mirghasemi, Ivan Stupia, Luc Vandendorpe |
Energy-Efficient Edge-Facilitated Wireless Collaborative Computing using Map-Reduce. |
SPAWC |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Sukjong Ha, Jingjing Zhang 0002, Osvaldo Simeone, Joonhyuk Kang |
Wireless Map-Reduce Distributed Computing with Full-Duplex Radios and Imperfect CSI. |
SPAWC |
2019 |
DBLP DOI BibTeX RDF |
|
16 | K. R. Jayaram, Anshul Gandhi, Hongyi Xin, Shu Tao |
Adaptively Accelerating Map-Reduce/Spark with GPUs: A Case Study. |
ICAC |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Enrico Barbierato, Marco Gribaudo, Mauro Iacono |
Map-Reduce Process Algebra: A Formalism to Describe Directed Acyclic Graph Task-Based Jobs in Parallel Environments. |
ASMTA |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Hamdi Hassen, Nasreddine Hajlaoui, Khemak Maher |
DMRA-MCP: A Distributed Map-Reduce Applications Deployments in a Multi-Cloud Platform Based on Cloud Broker Architecture. |
KES-IDT (1) |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Marwa Bouraoui, Ines Bouzouita, Amel Grissa Touzi |
Map-Reduce Based Generic Basis of Association Rules Mining from Big Bata. |
ICNC-FSKD |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Abdelhakim El Fatmi, Ali Bekri, Said Benhlima |
Novel searching program for RNA homologous sequences based on Map-Reduce Framework. |
BDIoT |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Sandhya Narayanan, Philip Samuel, Mariamma Chacko |
Back propagation network based prediction on map-reduce platforms. |
DATA |
2019 |
DBLP DOI BibTeX RDF |
|
16 | Ting Lv, Donghong Qin, Lina Ge, Song Wen 0003 |
A Map-Reduce-Based Relation Inference Algorithm for Autonomous System. |
PDCAT |
2019 |
DBLP DOI BibTeX RDF |
|