| 2025 | ECRTS | Enabling Containerisation of Distributed Applications with Real-Time Constraints. | Nasim Samimi, Luca Abeni, Daniel Casini, Mauro Marinoni, Twan Basten, Mitra Nasri, Marc Geilen, Alessandro Biondi |
| 2024 | ECRTS | Reachability-Based Response-Time Analysis of Preemptive Tasks Under Global Scheduling. | Pourya Gohari, Jeroen Voeten, Mitra Nasri |
| 2024 | ETFA | Guaranteeing Weakly-Hard Timing Constraints of Real-Time Server-Based Systems. | Nasim Samimi, Mitra Nasri, Twan Basten, Marc Geilen |
| 2024 | RTAS | Work in Progress: Guaranteeing Weakly-Hard Timing Constraints in Server-Based Real-Time Systems. | Nasim Samimi, Mitra Nasri, Twan Basten, Marc Geilen |
| 2024 | RTNS | Leveraging Parallelism in Global Scheduling to Improve State Space Exploration in the SAG Framework. | Pourya Gohari, Geoffrey Nelissen, Jeroen Voeten, Mitra Nasri |
| 2024 | RTNS | Towards a Safe and Latency-Aware Fault-tolerant Scheduling Technique for Multi-rate Task Chains. | Pourya Gohari, Jeroen Voeten, Mitra Nasri |
| 2024 | RTNS | Online Admission Test for Real-Time Tasks with Arrival Curves for Server Platforms. | Nasim Samimi, Mitra Nasri, Twan Basten, Marc Geilen |
| 2023 | RTSS | Work-in-Progress: Tight Response-Time Analysis for Periodic Preemptive Tasks Under Global Scheduling. | Pourya Gohari, Jeroen Voeten, Mitra Nasri |
| 2023 | RTSS | Work-in-Progress: Generating Counter-Examples to Schedulability Using the Schedule Abstraction. | Yimi Zhao, Srinidhi Srinivasan, Geoffrey Nelissen, Mitra Nasri |
| 2023 | RTCSA | Response-time Analysis of Fault-Tolerant Hard Real-Time Systems Under Global Scheduling. | Pourya Gohari, Jeroen Voeten, Mitra Nasri |
| 2022 | ECRTS | Response-Time Analysis for Non-Preemptive Periodic Moldable Gang Tasks. | Geoffrey Nelissen, Joan Marc i Igual, Mitra Nasri |
| 2022 | RTAS | Partial-Order Reduction for Schedule-Abstraction-based Response-Time Analyses of Non-Preemptive Tasks. | Sayra Ranjha, Geoffrey Nelissen, Mitra Nasri |
| 2022 | RTNS | Data-Age Analysis for Multi-Rate Task Chains under Timing Uncertainty. | Pourya Gohari, Mitra Nasri, Jeroen Voeten |
| 2021 | RTSS | Vulnerability of Controller Area Network to Schedule-Based Attacks. | Sena Hounsinou, Mark Stidd, Uchenna Ezeobi, Habeeb Olufowobi, Mitra Nasri, Gedare Bloom |
| 2021 | RTSS | Work-in-Progress: Partial-Order Reduction in Reachability-Based Response-Time Analyses. | Sayra Ranjha, Mitra Nasri, Geoffrey Nelissen |
| 2020 | RTSS | An Empirical Survey-based Study into Industry Practice in Real-time Systems. | Benny Akesson, Mitra Nasri, Geoffrey Nelissen, Sebastian Altmeyer, Robert I. Davis |
| 2020 | RTSS | Response-Time Analysis for Non-Preemptive Global Scheduling with FIFO Spin Locks. | Suhail Nogd, Geoffrey Nelissen, Mitra Nasri, Bjrn B. Brandenburg |
| 2020 | RTSS | Robust and Accurate Period Inference using Regression-Based Techniques. | Serban Vadineanu, Mitra Nasri |
| 2019 | DATE | An Exact Schedulability Test for Non-Preemptive Self-Suspending Real-Time Tasks. | Beyazit Yalcinkaya, Mitra Nasri, Bjrn B. Brandenburg |
| 2019 | ECRTS | From Iteration to System Failure: Characterizing the FITness of Periodic Weakly-Hard Systems. | Arpan Gujarati, Mitra Nasri, Rupak Majumdar, Bjrn B. Brandenburg |
| 2019 | ECRTS | Response-Time Analysis of Limited-Preemptive Parallel DAG Tasks Under Global Scheduling. | Mitra Nasri, Geoffrey Nelissen, Bjrn B. Brandenburg |
| 2019 | RTSS | From Code to Weakly Hard Constraints: A Pragmatic End-to-End Toolchain for Timed C. | Saranya Natarajan, Mitra Nasri, David Broman, Bjrn B. Brandenburg, Geoffrey Nelissen |
| 2019 | RTAS | On the Pitfalls and Vulnerabilities of Schedule Randomization Against Schedule-Based Attacks. | Mitra Nasri, Thidapat Chantem, Gedare Bloom, Ryan M. Gerdes |
| 2018 | ECRTS | Quantifying the Resiliency of Fail-Operational Real-Time Networked Control Systems. | Arpan Gujarati, Mitra Nasri, Bjrn B. Brandenburg |
| 2018 | ECRTS | A Response-Time Analysis for Non-Preemptive Job Sets under Global Scheduling. | Mitra Nasri, Geoffrey Nelissen, Bjrn B. Brandenburg |
| 2018 | RTAS | FIFO with Offsets: High Schedulability with Low Overheads. | Mitra Nasri, Robert I. Davis, Bjrn B. Brandenburg |
| 2017 | ICIP | Towards scheduling hard real-time image processing tasks on a single GPU. | Vladislav Golyanik, Mitra Nasri, Didier Stricker |
| 2017 | RTSS | An Exact and Sustainable Analysis of Non-preemptive Scheduling. | Mitra Nasri, Bjrn B. Brandenburg |
| 2017 | RTAS | Offline Equivalence: A Non-preemptive Scheduling Technique for Resource-Constrained Embedded Real-Time Systems (Outstanding Paper). | Mitra Nasri, Bjrn B. Brandenburg |
| 2016 | ECRTS | Non-work-conserving Non-preemptive Scheduling: Motivations, Challenges, and Potential Solutions. | Mitra Nasri, Gerhard Fohler |
| 2016 | ECRTS | A New Approach for Limited Preemptive Scheduling in Systems with Preemption Overhead. | Mitra Nasri, Geoffrey Nelissen, Gerhard Fohler |
| 2016 | RTNS | On the Problem of Finding Optimal Harmonic Periods. | Morteza Mohaqeqi, Mitra Nasri, Yang Xu, Anton Cervin, Karl-Erik rzn |
| 2016 | RTNS | Quantifying the Effect of Period Ratios on Schedulability of Rate Monotonic. | Mitra Nasri, Morteza Mohaqeqi, Gerhard Fohler |
| 2015 | ECRTS | An Efficient Method for Assigning Harmonic Periods to Hard Real-Time Tasks with Period Ranges. | Mitra Nasri, Gerhard Fohler |
| 2015 | RTNS | Non-work-conserving scheduling of non-preemptive hard real-time tasks based on fixed priorities. | Mitra Nasri, Gerhard Fohler |
| 2014 | ECRTS | A Framework to Construct Customized Harmonic Periods for Real-Time Systems. | Mitra Nasri, Gerhard Fohler, Mehdi Kargahi |
| 2014 | RTNS | On the Optimality of RM and EDF for Non-Preemptive Real-Time Harmonic Tasks. | Mitra Nasri, Sanjoy K. Baruah, Gerhard Fohler, Mehdi Kargahi |
| 2012 | RTCSA | A Method for Improving Delay-Sensitive Accuracy in Real-Time Embedded Systems. | Mitra Nasri, Mehdi Kargahi |
| 2009 | AINA | Load Balancing Using Consistent Hashing: A Real Challenge for Large Scale Distributed Web Crawlers. | Mitra Nasri, Mohsen Sharifi |
| 2008 | CSICC | Performance Modeling of a Distributed Web Crawler Using Stochastic Activity Networks. | Mitra Nasri, Saeed Shariati, Mohammad Abdollahi Azgomi |