Length: 2 Days
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Systems Security Engineering Workshop by Tonex

Systems Security Engineering

Tonex offers a Systems Security Engineering Workshop to provide participants with the skills and knowledge necessary to design, develop, and implement secure systems. It covers topics such as threat modeling, risk management, security requirements engineering, secure design principles, secure coding practices, security testing, and evaluation.

The Systems Security Engineering Workshop by Tonex is a comprehensive training program designed to equip participants with the knowledge and skills necessary to build robust and secure systems. This workshop covers key principles, methodologies, and best practices in the field of systems security engineering, providing a solid foundation for professionals seeking to enhance their expertise in securing complex systems.

Learning Objectives:

  • Gain a deep understanding of systems security engineering principles.
  • Learn to identify and assess security risks in diverse system architectures.
  • Acquire hands-on experience in implementing security controls and countermeasures.
  • Develop the ability to design and integrate security features into systems from the ground up.
  • Understand the importance of continuous monitoring and adaptation in the ever-evolving landscape of cybersecurity.
  • Explore advanced topics such as threat modeling, secure coding practices, and incident response.

Audience:

This workshop is tailored for professionals involved in system design, development, and maintenance, including system architects, engineers, security analysts, and IT professionals seeking to enhance their skills in systems security engineering.

Pre-requisite: None

Course Outline:

Module 1: Introduction to Systems Security Engineering

  • Key Concepts and Definitions
  • Evolution of Systems Security
  • Regulatory Frameworks and Compliance
  • Security Engineering Life Cycle
  • Emerging Trends in Cybersecurity
  • Case Studies in Systems Security

Module 2: Security Risk Assessment

  • Threat Identification and Classification
  • Vulnerability Analysis
  • Impact Assessment
  • Probability and Likelihood Estimation
  • Risk Mitigation Strategies
  • Risk Management Frameworks

Module 3: Security Controls and Countermeasures

  • Access Controls and Authentication
  • Encryption and Data Protection
  • Network Security Measures
  • Application Security Best Practices
  • Endpoint Security Solutions
  • Security Testing and Assessment Tools

Module 4: Secure System Design

  • Security Requirements Analysis
  • Secure Architecture Principles
  • Secure Development Life Cycle (SDLC)
  • Security in DevOps Practices
  • Security Training and Awareness
  • Case Studies in Secure System Design

Module 5: Continuous Monitoring and Adaptation

  • Security Metrics and Key Performance Indicators (KPIs)
  • Security Information and Event Management (SIEM)
  • Threat Intelligence and Analysis
  • Automated Incident Response
  • Security Patch Management
  • Adaptive Security Strategies

Module 6: Advanced Topics in Systems Security Engineering

  • Threat Modeling Techniques
  • Secure Coding Practices
  • Development Methodologies (Agile, Waterfall, etc.)
  • Incident Response Planning and Execution
  • Forensic Analysis in Systems Security
  • Future Trends in Systems Security Engineering

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