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Creation and Analysis of a JavaSpace-based Distributed Genetic Algorithm.

, , and . PDPTA, page 1107-1112. CSREA Press, (2002)

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A genetic algorithm to improve linux kernel performance on resource-constrained devices., , and . GECCO (Companion), page 2095-2096. ACM, (2010)Database-aware test coverage monitoring., and . ISEC, page 77-86. ACM, (2008)Empirically studying the role of selection operators duringsearch-based test suite prioritization., , and . GECCO, page 1373-1380. ACM, (2010)An examination of the run-time performance of GUI creation frameworks., , and . PPPJ, volume 42 of ACM International Conference Proceeding Series, page 171-176. ACM, (2003)Using controlled numbers of real faults and mutants to empirically evaluate coverage-based test case prioritization., , , and . AST@ICSE, page 57-63. ACM, (2018)Automatically Evaluating the Efficiency of Search-Based Test Data Generation for Relational Database Schemas., , , and . SEKE, page 352-357. KSI Research Inc. and Knowledge Systems Institute Graduate School, (2015)mrstudyr: Retrospectively Studying the Effectiveness of Mutant Reduction Techniques., , and . ICSME, page 591-595. IEEE Computer Society, (2016)The Impact of Equivalent, Redundant and Quasi Mutants on Database Schema Mutation Analysis., , and . QSIC, page 57-66. IEEE, (2014)Parameter Tuning for Search-Based Test-Data Generation Revisited: Support for Previous Results., and . QSIC, page 79-84. IEEE, (2014)Using synthetic test suites to empirically compare search-based and greedy prioritizers., and . GECCO (Companion), page 2119-2120. ACM, (2010)