RTL-201 · Real-Time Systems · Advanced

Motion Control Systems — full syllabus

Applying real-time Linux to closed-loop control, with the architecture patterns that work in production.

Duration2 full days in person · 4 half-days online
Cohortmax 14 in person · 20 online
Pricefrom SAR 6,000 in person · local pricing per city
Delivery35% principles · 20% guided investigation · 45% engineering studio

Who this course is for

Controls and software engineers putting real-time Linux in the path of a closed-loop system — who need architecture patterns that hold up in production, not a demo.

Prerequisites

Course outline

Day 1 — The control loop on Linux

  • Timing requirements and jitter budgets: how much jitter a loop actually tolerates
  • Periodic activation with clock_nanosleep and absolute deadlines
  • Structuring the RT application: SCHED_FIFO threads, memory locking, no allocation in the loop
  • Keeping non-RT work off the critical path: logging, networking, UI
  • Measuring loop jitter from inside the application

Day 2 — Fieldbus integration and safety architecture

  • EtherCAT and fieldbus integration on RT Linux: master placement and cycle alignment
  • Distributed clocks and synchronising the control loop to the bus cycle
  • Safety architecture: separating safety-rated and non-safety functions
  • Watchdogs, deadline monitoring and detecting a missed cycle in production
  • Case study: dissecting where a real system lost its determinism

Hands-on labs

  1. Lab: Implement a periodic control loop with clock_nanosleep and absolute deadlines; instrument its own jitter
  2. Lab: Break the loop deliberately — a page fault, an allocation, a mutex inversion — and identify each failure from the jitter trace
  3. Lab: Drive a simulated fieldbus cycle and align the control loop phase to the bus
  4. Lab: Add a deadline monitor and watchdog to the loop; prove it catches injected overruns and degrades safely

Capstone project

Build a two-axis simulated motion controller on PREEMPT_RT: a hard-deadline servo loop with in-loop jitter instrumentation, a fieldbus-cycle-aligned execution phase, a non-RT path for telemetry and commands, and a supervisor that detects missed deadlines and forces a defined safe state — delivered with jitter distributions under load and a written safety-separation argument for the architecture.

What you leave with

Upcoming dates

DatesWhereSeatsEarly birdRegular
11 Oct – 12 Oct 20262 full days RiyadhIn person · KAFD Conference Centre 5 of 14 —SAR 6,000
11 Oct – 12 Oct 20262 full days Kuwait CityIn person · Al Hamra Tower 10 of 14 —KWD 500
18 Oct – 19 Oct 20262 full days MuscatIn person · Knowledge Oasis Muscat 5 of 14 —OMR 620
25 Oct – 28 Oct 20264 half-days Gulf bandLive online · 09:00–13:00 GMT+3 3 of 20 —US$1,150
26 Oct – 27 Oct 20262 full days OttawaIn person · Kanata North Tech Park 10 of 14 —CAD 2,180
26 Oct – 27 Oct 20262 full days TorontoIn person · MaRS Discovery District 5 of 14 —CAD 2,180
26 Oct – 29 Oct 20264 half-days Europe bandLive online · 09:00–13:00 CET 8 of 20 —US$1,150
2 Nov – 3 Nov 20262 full days LondonIn person · Shoreditch Works 10 of 14 —GBP 1,250
2 Nov – 5 Nov 20264 half-days Americas bandLive online · 13:00–17:00 ET 13 of 20 —US$1,150
9 Nov – 10 Nov 20262 full days BerlinIn person · Factory Görlitzer Park 5 of 14 EUR 1,320until 10 OctEUR 1,470

Book a seat, or bring this course to your team

Seats can be reserved online; private delivery runs on-site or live online, adapted to your stack.

Course page & booking

Questions about fit or prerequisites? Email hello@kernelsystems.academy. To save this syllabus, print this page to PDF from your browser.