DOMAIN 4: Communication and Network Security
SLIDE 3: Domain Objectives
• Understand the structures, transmission methods, transport formats, and security measures
used to provide confidentiality, integrity, and avail
...
DOMAIN 4: Communication and Network Security
SLIDE 3: Domain Objectives
• Understand the structures, transmission methods, transport formats, and security measures
used to provide confidentiality, integrity, and availability for transmissions over private and
public communications networks and media.
• Identify risks that can be quantitatively and qualitatively measured to support the building of
business cases to drive proactive security in the enterprise.
SLIDE 4: Domain Agenda
• Apply Secure Design Principles to Network Architecture
• Securing Network Components
• Design and Establish Secure Communication Channels
• Prevent or Mitigate Network Attacks
•
Apply Secure Design Principles to Network Architecture
SLIDE 6 - 7: Module Topics
• Layering Models
• Open System Interconnect (OSI) Model
• TCP/IP Reference Model
• Internet Protocol (IP) Networking
• Directory Services
• HTTP Proxying
• Implication of Multilayer Protocols
• Converged Protocols
• Multi-Protocol Label Switching (MPLS)
• Voice over Internet Protocol (VoIP)
• Types of Wireless Technologies
• Types of Wireless Networks
• Spread Spectrum
• Wireless Security Issues
• Cryptography to Maintain
• Communications Security
• How Certificates are Used
• Securing Network ComponentsD4 P2 v.01_2018
SLIDE 8: Layering Models
There are two layering models that in use today:
The first of being the OSI reference model. It is important to understand that the OSI Reference model is
only used for standardization. It is not used to transmit data. Transmission of data is the responsibility of
the TCP/IP Model (aka DoD Model)
SLIDE 9: OSI Model
SLIDE 10: Layer 1 Physical Layer
The physical layer consists of the electronic circuit transmission technologies of a network. It is a fundamental
layer underlying the higher level functions in a network.
This is perhaps the most complex layer in the OSI architecture due to the ple-thor-a of available hardware
technologies with widely varying characteristics.
The physical layer defines the means of transmitting raw bits rather than logical data packets over a physical link
connecting network nodes.
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