The Migration of Engine ECU Software From Single-Core to Multi-Core

Миграция программного обеспечения ЭБУ двигателя с одноядерной на многоядерную архитектуру
Jun Young Moon, Do Yeon Kim, Jin Ho Kim, Jae Wook Jeon
2021-01-01

AUTOSARISO 26262engine ECUmulti-core architecturemulti-core migration
As multiple functions have been added to single-core-based engine electronic control units (ECUs) in vehicles, automotive researchers and manufacturers have actively studied multi-core architecture for engine ECUs. Multi-core architecture can provide load balancing and parallelism that can meet the requirements of international organization standard (ISO) 26262. However, since real-world engine ECUs have the most complex automotive open system architecture (AUTOSAR)-based control logic and datasets among automotive ECUs, developing multi-core-based engine ECUs is a substantial amount of work. Thus, automotive researchers and manufacturers will need new methodologies for multi-core-based engine ECUs. In this paper, we focus on designing a multi-core migration methodology and applying it to a real-world AUTOSAR-based engine ECU from HYUNDAI. We verify its practicability and enhanced performance. In conclusion, through connection with other automotive domain ECUs, it is demonstrated that a multi-core engine ECU using our migration technology can be applied in real-world automotive vehicles, leading to a significant improvement in performance.
1
Experimental verification demonstrates the migration methodology’s practicality and enhanced performance.
2
Multi-core migration provides load balancing and parallelism relevant to meeting ISO 26262 requirements.
3
The methodology is applied to a real-world Hyundai engine ECU with complex control logic and datasets.
4
The paper develops a methodology for migrating AUTOSAR-based engine ECU software from single-core to multi-core architectures.
5
The resulting multi-core engine ECU can connect with other automotive domain ECUs and is applicable to real-world vehicles.

AUTOSAR-based engine electronic control unit (ECU) migrated from single-core to multi-core architecture

The practicality and performance enhancement of migrating engine ECU control logic and datasets to a multi-core architecture

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Publication Date
2021-01-01
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Authors
Jun Young Moon
Do Yeon Kim
Jin Ho Kim
Jae Wook Jeon
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