| 2021 | GECCO | Unit-aware multi-objective genetic programming for the prediction of the stokes flow around a sphere. | Heiner Zille, Sanaz Mostaghim, Fabien Evrard, Berend G. M. van Wachem |
| 2020 | CEC | On the Scalable Multi-Objective Multi-Agent Pathfinding Problem. | Jens Weise, Sebastian Mai, Heiner Zille, Sanaz Mostaghim |
| 2019 | EMO | Linear Search Mechanism for Multi- and Many-Objective Optimisation. | Heiner Zille, Sanaz Mostaghim |
| 2019 | EPIA | Online Optimization of Movement Cost for Robotic Applications of PSO. | Sebastian Mai, Heiner Zille, Christoph Steup, Sanaz Mostaghim |
| 2019 | GECCO | Performance of dynamic algorithms on the dynamic distance minimization problem. | Mard Helbig, Heiner Zille, Mahrokh Javadi, Sanaz Mostaghim |
| 2019 | GECCO | Modified crowding distance and mutation for multimodal multi-objective optimization. | Mahrokh Javadi, Heiner Zille, Sanaz Mostaghim |
| 2019 | GECCO | Multi-objective collective search and movement-based metrics in swarm robotics. | Sebastian Mai, Heiner Zille, Christoph Steup, Sanaz Mostaghim |
| 2018 | GECCO | Transfer strategies from single- to multi-objective grouping mechanisms. | Frederick Sander, Heiner Zille, Sanaz Mostaghim |
| 2017 | CEC | Elitism and aggregation methods in partial redundant evolutionary swarms solving a multi-objective tasks. | Ruby L. V. Moritz, Heiner Zille, Sanaz Mostaghim |
| 2017 | CEC | Dynamic Distance Minimization Problems for dynamic multi-objective optimization. | Heiner Zille, Andre Kottenhahn, Sanaz Mostaghim |
| 2016 | CEC | Functional brain network extraction using a genetic algorithm with a kick-out method. | Kei Harada, Misato Tanaka, Satoru Hiwa, Heiner Zille, Sanaz Mostaghim, Tomoyuki Hiroyasu |
| 2016 | CEC | Multi-objective fitness-proportional attraction approach with weights. | Patrick Laack, Heiner Zille, Sanaz Mostaghim |
| 2016 | GECCO | Weighted Optimization Framework for Large-scale Multi-objective Optimization. | Heiner Zille, Hisao Ishibuchi, Sanaz Mostaghim, Yusuke Nojima |
| 2015 | CEC | Properties of scalable Distance Minimization Problems using the Manhattan metric. | Heiner Zille, Sanaz Mostaghim |