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Safety Instrumented System (SIS) and Control

Rp 7.950.000
Stok Tersedia
Kategori Instrumentation and Control, Maintenance, Production Operation

20 - 22 Juli 2026, Bandung

19 - 21 Oktober 2026, Bandung

Trainer: Prof. Endra Joelianto, Ir., Ph.D., SMIEEE

Tentukan pilihan yang tersedia!

Safety Instrumented System (SIS) and Control

BACKGROUND:

Process safety is a critical element in industries involving high-risk operations, such as oil and gas, petrochemicals, and manufacturing. One of the main components in process safety management is the Safety Instrumented System (SIS). SIS is designed to protect personnel, the environment, and assets from potential incidents that can cause significant losses.

This training aims to provide an in-depth understanding of the design, implementation, and management of SIS, in accordance with international standards such as IEC 61508 and IEC 61511. Participants will learn basic concepts, risk analysis, Layer of Protection Analysis management, and system testing to ensure the reliability and integrity of SIS in daily operations.

OBJECTIVES:

  • Expand your practical knowledge in the design and application of safety instrumented systems (SIS) as applied to industrial processes
  • Provide you with the knowledge of the latest standards dealing with each stage of the safety life cycle from the initial evaluation of hazards to the detailed engineering and maintenance of safety instrumented systems
  • Give you the ability to reduce risks and mitigate hazard consequence, then design, implement, operate and maintain the SIS to meet the requirement
  • Assist your company to implement functional safety measures conforms to international standards
  • Mendesain, mengimplementasikan, dan mengelola SIS dengan memperhatikan standar internasional seperti IEC 61508 dan IEC 61511.

COURSE OUTLINE:

  1. Introduction to SIS
  2. Different between SIS and other control system
  3. Review Basic SIS (IEC 61508, IEC 61511 and ISA S84)
  4. Functional Safety
  5. Safety Life Cycle
  6. Risk Reduction
  7. Layers of Protection Analysis (LOPA)
  8. Conceptual Design
  9. Reliability Analysis
  10. Safety in Field Instruments and Devices
  11. Analyzing Risks
  12. Assessing the need for risk reduction
  13. Safety Requirements Specifications
  14. Fault Tree Analysis
  15. Safety Integrity Level (SIL)
  16. Hardware Fault Tolerance
  17. Failure Rate
  18. Technology Choices
  19. Performance Requirement
  20. Implementation of SIS
  21. API RP 754 (Process Safety Performance Indicators)

ABOUT THE COURSE LEADER:

Prof. Ir. Endra Joelianto, Ph.D., SMIEEE is an expert in control engineering. His outstanding research is: Hybrid Control Systems, Discrete Event Control Systems, Petri Nets Analysis and Application on PLC, Robust PID Controller, Advanced Process Control, Industrial Automation using PLC/ DCS. He received first degree (Ir.) in Engineering Physics in 1990 from Department of Engineering Physics, ITB and Doctor of Philosophy (PhD.) in Control Engineering in 2001 from Department of Engineering, The Australian National University, Australia.

Safety Instrumented System (SIS) and Control

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