
Automated scheduling solution for safety-critical functions in SDVs, ensuring precise and deterministic execution across distributed systems.
Vendor
TTTech Auto
Company Website


MotionWise Schedule offers a comprehensive approach to scheduling in SDVs, addressing the challenges of integrating safety-critical and time-sensitive applications. Its global scheduling algorithms generate task and network scheduling solutions, eliminating the need for manual OS configuration iterations. The time-triggered execution provides strong time isolation between tasks, enabling mixed-criticality on the same CPU cores. The activity sequencer supports data-flow driven execution, allowing parallel execution on CPU cores with minimalistic modeling. Computation chains can be easily defined with end-to-end execution deadlines, ensuring time-bounded latencies across multiple CPU cores, including chains spanning multiple chips. Time synchronization ensures each component operates synchronously using a shared time base, enhancing debugging processes. Task monitoring is automatically applied based on application needs, with configurable reactions to ensure optimal performance and reliability. MotionWise Schedule is ASIL D-compliant and compatible with both Ethernet and shared memory architectures.
Features:
- Global Scheduling: Automates task and network scheduling, eliminating manual OS configuration iterations.
- Time-Triggered Execution: Provides strong time isolation between tasks, enabling mixed-criticality on the same CPU cores.
- Activity Sequencer: Supports data-flow driven execution with parallel execution on CPU cores and minimalistic modeling.
- Computation Chains: Allows easy definition of application chains with end-to-end execution deadlines, ensuring time-bounded latencies across multiple CPU cores.
- Time Synchronization: Ensures precise and deterministic execution of distributed functions using a shared time base.
- Task Monitoring: Automatically applies monitoring based on application needs, with configurable reactions for optimal performance.