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Inria in France seeks a postdoctoral researcher to design, develop and validate graybox tunneling algorithms for multi-objective combinatorial optimization, with emphasis on parallelization and scalability on HPC platforms.
The role focuses on leveraging problem structure to navigate Pareto local optima, extending single-objective tunneling to multi-objective settings, exploring island-model parallelism, and implementing prototypes for large-scale experiments.
Inria, the French national research institute for the digital sciences
Organisation/Company Inria, the French national research institute for the digital sciences Research Field Computer science Researcher Profile Recognised Researcher (R2) Application Deadline 30 Nov 2026 - 00:00 (UTC) Country France Type of Contract Temporary Job Status Full-time Hours Per Week 38.5 Offer Starting Date 1 Jan 2027 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Reference Number 2026-10507 Is the Job related to staff position within a Research Infrastructure? No
The postdoctoral researcher will contribute to the design, development, and experimental validation of novel graybox tunneling algorithms for multi-objective combinatorial optimization, with a particular focus on their parallelization and scalability on high-performance computing (HPC) platforms.
The main assignment will be to investigate how knowledge about the structure and local interactions of combinatorial optimization problems can be exploited to design efficient tunneling mechanisms capable of navigating large sets of Pareto local optima. In particular, the researcher will contribute to extending existing single-objective tunneling principles to the multi-objective setting and to developing new algorithmic strategies for efficiently exploring different regions of the Pareto front.
A second assignment will concern the identification and exploitation of different levels of parallelism arising within tunneling-based multi-objective search. This can include solution-level and iteration-level parallelism, as well as higher-level parallelism based on concurrent tunneling processes. For exemple, the researcher will investigate hybrid optimization strategies, notably based on distributed island models, in which different tunneling processes explore complementary regions of the search space and exchange selected Pareto local optimal solutions.
The researcher will also contribute to the implementation and empirical evaluation of the resulting algorithms on modern HPC platforms. The position is open to candidates with a strong background in combinatorial optimization, evolutionary computation, computational intelligence, heuristic search, or related areas, as well as to candidates with expertise in parallel and HPC computing combined with a solid understanding of combinatorial optimization. While prior HPC experience is an advantage for candidates from optimization and computational intelligence backgrounds, candidates primarily specialized in HPC are also encouraged to apply provided they have relevant expertise in combinatorial optimization.
The work will ultimately contribute to the development of prototype software libraries for parallel tunneling and to systematic computational studies demonstrating their effectiveness and scalability on multi-objective combinatorial optimization problems, such as, NK-landscapes, SAT, TSP.
The main activities of the postdoctoral researcher will include:
The additional activities of the postdoctoral researcher will include:
The position is open to candidates with a strong background in combinatorial optimization, evolutionary computation, computational intelligence, heuristic search, or related areas, as well as to candidates with expertise in parallel and HPC computing combined with a solid understanding of combinatorial optimization. While prior HPC experience is an advantage for candidates from optimization and computational intelligence backgrounds, candidates primarily specialized in HPC are also encouraged to apply provided they have relevant expertise in combinatorial optimization.
Languages FRENCH Level Basic
Languages ENGLISH Level Good