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EMB 501
Term 1
3 credits

Advanced Embedded Computer Architecture

This graduate-level course, EMB 501, delves into the advanced architectural concepts critical for high-performance embedded systems design. Students will gain a deep understanding of modern processor pipelines, cache coherence mechanisms, and sophisticated memory hierarchies, exploring their impact on real-time performance and power efficiency. The course emphasizes the practical implications of these architectural choices in resource-constrained environments. Furthermore, the curriculum covers industry-standard bus fabrics like AMBA/AXI for efficient inter-component communication, and examines the complexities of multicore microcontrollers. A significant portion of the course is dedicated to performance measurement, profiling, and tuning techniques specifically tailored for embedded targets, enabling students to optimize system throughput and responsiveness.

Course outline

Lectures, virtual labs, and graded assignments — completed in your browser.

01Foundations of Embedded Computer Architecturelecture
02Pipelined Processor Design and Optimizationlecture
03Cache Memory Principles and Coherencelecture
04Memory Hierarchy and Performance Impactlecture
05Virtual Memory and Memory Management Unitslecture
06AMBA AXI Bus Fabric Architecturelecture
07System-on-Chip Interconnectslecture
08Multicore Microcontroller Architectureslecture
09Multicore Synchronization and Communicationlecture
10Embedded System Performance Metricslecture
11Profiling and Debugging Embedded Performancelecture
12Performance Tuning Strategieslecture
13Power Optimization in Embedded Systemslecture
14Advanced Topics and Case Studieslecture

Syllabus

Week 1: Introduction to Advanced Embedded Architectures
Week 2: Processor Pipelining and Instruction-Level Parallelism
Week 3: Cache Memory Design and Performance Analysis
Week 4: Advanced Memory Hierarchies and Virtual Memory
Week 5: Memory Management Units (MMUs) and Protection
Week 6: Bus Fabrics: AMBA AXI Protocol Deep Dive
Week 7: Interconnects and System-on-Chip (SoC) Design
Week 8: Multicore Microcontrollers: Architectures and Synchronization
Week 9: Real-Time Operating Systems (RTOS) and Multicore Scheduling
Week 10: Performance Measurement and Profiling Tools
Week 11: Performance Tuning Techniques for Embedded Targets
Week 12: Power Management and Energy Efficiency in Embedded Systems
Week 13: Hardware Accelerators and Custom Logic Integration
Week 14: Final Project Presentations and Advanced Topics