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Custom MBSE + Cyber Architecture Training & Certification

This Essential MBSE+ Cyber Architecture Applied workshop is customized for 3DS Dassault's Cameo Systems Modeler™, Cameo Enterprise Architect™, and MagicDraw™, and features the Cyber Modeling Language™ (CyberML™) profile for SysML. Contact us for other tool options.

Essential MBSE + Cyber Architecture Applied™: Cameo edition


COURSE ID: WS-MBSE-CYB-CAM
DESCRIPTION: This introductory MBSE + Cyber Architecture workshop teaches how recursive Model-Based Systems Engineering (MBSE) analysis, design, and architecture patterns can be applied to solve tough Cyber Architecture and Design problems. The intensive training includes frequent Q&A and hands-on practice sessions and teaches students how to solve practical cybersecurity problems using the Systems Model Language (SysML) standard and its CyberML™ (Cyber Modeling Language™) extensions for specifying fault-tolerant and cybersecure distributed systems. For more information regarding CyberML and the advantages of reusing its model libraries and patterns for cybersecurity architectures, please explore the CyberML web or contact us.

This MBSE + Cyber Architecture workshop edition is customized to integrate basic modeling tool training with Cameo Systems Modeler/Cameo Enterprise Architecture, an award-winning enterprise architecture modeling tool. Contact us if you are interested in this training with another UML2/SysML compliant architecture modeling tool.

LEARNING OBJECTIVES
Generic MBSE Learning Objectives
• What is Systems Engineering (SE) and how does Model-Based Systems Engineering (MBSE) with SysML improve it?
• What is the MBSE Tetrad (Language, Tool, Framework and Process) and how do these technologies enable MBSE?
• SysML’s basic and advanced constructs for modeling its
Four Pillars (Requirements, Structure, Behavior, Parametrics) and all 9 SysML diagrams + Allocation Tables
• How SysML can specify large, complex system architectures and the full System Development Life Cycle (SDLC)
• How to trace Requirements and perform Verification & Validation (V&V) on a SysML model
• Practical guidelines for specifying correct, complete, clear, concise, and consistent models
More Specialized MBSE + Cyber Architecture & Design Learning Objectives
• What is MBSE Cybersecurity Architecture & Design and how does it facilitate scaleable, fault-tolerant, and secure network-centric architectures?
• How to specify large, complex network architectures with cybersecurity features
• What is CyberML and how does it enable the specification or resilient Cyber Architectures & Designs?
• How to draw SysML + CyberML diagrams, simulate/execute SysML + CyberML diagrams, and generate reports using a selected SysML tool:
Cameo Systems Modeler / Cameo Enterprise Architecture
• How to plan your transition to a MBSE + Cybersecurity Architecture & Design approach
• How to learn more about MBSE + Cybersecurity Architecture & Design approach


TRAINING VENUES: All PivotPoint training workshops can be delivered via:
  • Live Expert VIRTUAL TRAINING (Online) — primary delivery venue (most cost-effective & convenient)
    [Highly-intensive, personally-interactive, hands-on training w/ frequent Q&A and screen sharing betw/ Instructor & students. Delivered online via a secure webcon + videcon facility.];
  • Live Expert ONSITE TRAINING @ CLIENT FACILITY
    [
    Delivered onsite at Client's physical facility; currently only available during non-flu season (Mar-Oct); includes FFP T&E surcharge as per IRS per diem rates; requires 60-day 100% advanced pay.]
CLASS SIZES: Available for SMALL (Up to 5), MEDIUM (Up to 10), LARGE (Up to 15), X-LARGE (Up to 20+) TEAMS. Contact us for Firm-Fixed-Price List.

DURATION: 4-5 days (= 28-35 training hours; length depends upon optional learning modules selected)
AUDIENCE: Cybersecurity professionals, systems engineers, system architects, software architects/engineers/developers/scientists, project managers, and others who want to learn how MBSE + Cyber Architecture patterns and best practices can help them develop more secure and fault-tolerant distributed systems will benefit from this workshop.

PREREQUISITES: Systems engineering, software engineering or other STEM (Science Technology Engineering Math) experience building large, complex systems-of-systems. Strong computer skills and desire to learn. Familiarity with basic computer networking, cryptography and encryption is desirable, but not required.

COURSE AUTHOR & CHIEF INSTRUCTOR: Cris Kobryn is the Founder of PivotPoint Technology and is an internationally-recognized expert in Model-Based Engineering technologies. Cris has been designing and architecting secure distributed software systems for three decades, and recently has designed the CyberML™ (Cyber Modeling Language™) to precisely specify Agile enterprise architectures that are scalable and cybersecure. For more info about Cris' qualifications as a Cybersecurity and Cryptocurrency expert on his corporate bio page...

COURSE SYLLABUS † ‡: All Essential MBSE + Cyber Architecture Applied: Cameo edition training workshops must include the MBSE CYBER: OVERVIEW, MBSE CYBER: BASIC SYSTEM ANALYSIS, MBSE CYBER: BASIC NETWORK ARCHITECTURE, and MBSE CYBER: BASIC MODELING TOOL - CAMEO learning modules. Students can choose additional learning modules as needed, and modules can be tailored to address special team or project needs. In particular, MBSE CYBER: PROJECT PRACTICUM modules are intended to be tailored to specific team or project needs. Contact us for details.

MBSE + CYBER: OVERVIEW [Module# MBSE-CYB-100]
Intro to Model-Based Systems Engineering
• Systems Eng (SE) —> MBSE —> Agile MBSE Overview
• Agile MBSE SDLC (System Development Life Cycle) Quick Tour
• SysML Quick Tour (9 diagrams + Allocation Tables)
Intro to Cyber Architecture & Design
• Network Architecture & Design Primer
• Cybersecurity & Cryptography Primer
• CyberML Quick Tour
Agile MBSE + Cyber SDLC Phases Featured
• System Requirements Analysis
• Cybersecurity Requirements Analysis
SysML Diagram Techniques Featured
• Requirement (REQ), Use Case (UC), Package (PKG), Allocation Tables

[OPTIONAL: May be waived if completed "Essential MBSE + SYSML Applied" or equivalent.]
MBSE + CYBER: BASIC AGILE MBSE ARCHITECTURE [Module# MBSE + CYB-101]
Intro to MBSE and Agile MBSE
MBSE + AI Case Study & Practice Exercises
[Includes hands-on practice exercises w/ featured MBSE SysML ModSim tool]
• How to specify System Requirements and CONOPS
• How to specify System Analysis
SysML Diagram Techniques Featured
• Requirement (REQ), Use Case (UC), Block Definition (BDD) Internal Block (IBD), Parametric (PAR), Package (PKG), Allocation Tables
MBSE + CYBER: BASIC NETWORK ARCHITECTURE [Module# MBSE-CYB-102]
Intro to Network Architecture & Design
• Network Communication Protocols
• Network Topologies
• Network Nodes
• Cybersecurity Devices
• Network Architecture Patterns & Anti-Patterns
Agile MBSE SDLC Phases Featured
• System Low-Level (Detailed) Design / Network Design
Diagram Techniques
• CyberML superset of SysML diagrams

MBSE + CYBER: BASIC ATTACKS & DEFENSES [Module# MBSE-CYB-103]
Intro to Cyber Attacks & Defenses
• Cyber Attack Classifications & Taxonomies
• Cyber Attack Risk Assessment
• Cyber Defense Classifications and Taxonomies
• Allocating Cyber Countermeasures to Cyber Attacks
Agile MBSE SDLC Phases Featured
• System Low-Level (Detailed) Design / Network Design
Diagram Techniques
• CyberML superset of SysML diagrams

MBSE + CYBER: BASIC MODELING TOOL – CAMEO [Module# MBSE-CYB-110-CAM]
Topics
• Projects and diagrams
• Generating documentation
• Importing/exporting models
• Cyber Requirements Verification & Validation (traceability)
• Modeling & Simulation (ModSim)
• Team modeling
Diagram Techniques
• CyberML superset of SysML diagrams

OPTIONAL LEARNING MODULES: May be added if appropriate prerequisites are met. Each optional learning module requires one (1) additional training day.


MBSE + CYBER: BASIC FRAMEWORKS [Module# CYB-CAD-104]
Intro to Cybersecurity Frameworks
Cybersecurity Framework Standards
• NIST Cybersecurity Framework v. 1.0
• NIST Special Publication 800-37
• DoD Risk Management Framework (RMF): DoD Instruction 8510.01
• ISO/IEC 27000
Physical Cybersecurity Architecture Frameworks
• How to define a physical Cybersecurity Architecture Framework
• How to customize a physical Cybersecurity Architecture Framework
Diagram Techniques
• CyberML superset of SysML diagrams

MBSE + CYBER: BASIC PROJECT PRACTICUM [Module# MBSE-CYB-120]
The project practicum provides an opportunity to apply MBSE + Cyber Architecture and Framework principles and best practices to solve project cybersecurity modeling problems in a creative and supervised workshop environment. The practicum can be used to facilitate:
• Cybersecurity Architecture & Design peer reviews, revisions and extreme makeovers
• Cybersecurity Framework peer reviews, revisions and extreme makeovers
Students can identify project modeling problems in advance, or Instructor will work with students to identify them.
CRYPTO + BLOCKCHAIN: OVERVIEW [Module# CYB-CCBC-100]
Cryptocurrency Primer
Cryptography Primer (optional)
Digital Ledger Primer
Smart Contract Primer

Topics
• Cryptocurrency Coins vs. Fiat Currency
• Cryptocurrency Consensus Algorithms: Proof-of-Work vs. Proof-of-Stake
• Cryptocurrency Taxonomy: Coins vs Tokens
• How to mine cryptocurrencies
• How to buy, sell, store cryptocurrencies
• How to exchange cryptocurrencies

CRYPTO + BLOCKCHAIN: BASIC CRYPTOGRAPHY [Module# CYB-CCBC-130]
Cryptography Primer
Topics
• Cryptography vs. Cryptology
• Cryptographic Keys: Public Keys vs. Private Keys
• End-to-End Encryption
• Zero-Knowledge Proofs
Hands-On Practice Exercises
[Default Coin/Blockchain = Ether/Ethereum;
Default OS for Open Source SW = Windows OS]
• How to encrypt/decrypt email
• How to encrypt/decrypt digital assets
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