| 2024 | CGO | Experiences Building an MLIR-Based SYCL Compiler. | Ettore Tiotto, Victor Perez, Whitney Tsang, Lukas Sommer, Julian Oppermann, Victor Lomller, Mehdi Goli, James Brodman |
| 2024 | EuroPar | Runtime Instantiation of Kernels for Fast Fourier Transforms Using SYCL Specialization Constants. | Victor Perez, Victor Lomller, Lukas Sommer, Julian Oppermann, Romain Biessy, Tadej Ciglaric, Mehdi Goli |
| 2022 | CGO | SPNC: An Open-Source MLIR-Based Compiler for Fast Sum-Product Network Inference on CPUs and GPUs. | Lukas Sommer, Cristian Axenie, Andreas Koch |
| 2020 | CLUSTER | Extending High-Level Synthesis with High-Performance Computing Performance Visualization. | Jens Huthmann, Artur Podobas, Lukas Sommer, Andreas Koch, Kentaro Sano |
| 2020 | EMSOFT | OpenMP Device Offloading for Embedded Heterogeneous Platforms - Work-in-Progress. | Lukas Sommer, Andreas Koch |
| 2020 | FCCM | Comparison of Arithmetic Number Formats for Inference in Sum-Product Networks on FPGAs. | Lukas Sommer, Lukas Weber, Martin Kumm, Andreas Koch |
| 2020 | PDP | Using Parallel Programming Models for Automotive Workloads on Heterogeneous Systems - a Case Study. | Lukas Sommer, Florian Stock, Leonardo Solis-Vasquez, Andreas Koch |
| 2019 | CGO | Extending LLVM for Lightweight SPMD Vectorization: Using SIMD and Vector Instructions Easily from Any Language. | Robin Kruppe, Julian Oppermann, Lukas Sommer, Andreas Koch |
| 2019 | EMSOFT | DAPHNE - An automotive benchmark suite for parallel programming models on embedded heterogeneous platforms: work-in-progress. | Lukas Sommer, Florian Stock, Leonardo Solis-Vasquez, Andreas Koch |
| 2019 | SC | High-Throughput Multi-Threaded Sum-Product Network Inference in the Reconfigurable Cloud. | Micha Ober, Jaco A. Hofmann, Lukas Sommer, Lukas Weber, Andreas Koch |
| 2018 | FPL | Dependence Graph Preprocessing for Faster Exact Modulo Scheduling in High-Level Synthesis. | Julian Oppermann, Melanie Reuter-Oppermann, Lukas Sommer, Oliver Sinnen, Andreas Koch |
| 2018 | ICCD | Automatic Mapping of the Sum-Product Network Inference Problem to FPGA-Based Accelerators. | Lukas Sommer, Julian Oppermann, Alejandro Molina, Carsten Binnig, Kristian Kersting, Andreas Koch |