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Implement Hybrid Interconnectivity

  • Configure Interconnect: This part measures one’s understanding of partner (that is layer 2 versus layer 3 connectivity), bulk storage uploads, and virtualizing with the use of VLAN attachments;
  • Configure Cloud Router for Dependability: You will also be expected to demonstrate competence in this domain as well as in the configuration of site-to-site IPsec VPN.

Reference: https://cloud.google.com/certification/cloud-network-engineer

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How to Prepare For Google Professional Cloud Network Engineer Exam

Preparation Guide for Google Professional Cloud Network Engineer Exam

Introduction

Google has designed a track for IT professionals to endorse as a cloud Network Engineer on the GCP platform. This accreditation program gives Google cloud professionals a way to endorse their skills. The evaluation relies on a meticulous exam using industry standard methodology to conclude whether or not a aspirant meets Google's proficiency standards.

According to Google, a Google Certified Professional Cloud Network Engineer facilitate organizations to influence Google Cloud technologies. By leveraging experience implementing VPCs, network services, hybrid connectivity and security for established network architectures, this individual ensures successful cloud implementations using the Google Cloud Platform Console or the command line interface .

Certification is evidence of your skills, expertise in those areas in which you like to work. If candidate wants to work on Google Professional Cloud Network Engineer and prove his knowledge, certification offered by Google. This Google Professional Cloud Network Engineer Certification helps a candidate to validates his skills in Google Professional Cloud Network Engineer Technology.

In this guide, we will cover the Google Professional Cloud Network Engineer Exam, Google Professional Cloud Network Engineer Certified Professionals salary and all aspects of the Google Professional Cloud Network Engineer Certification.

Topics of Google Professional Cloud Network Engineer Exam

Candidates must know the exam topics before they start of preparation. because it will really help them in hitting the core. Our Google Professional Cloud Network Engineer Dumps will include the following topics:

Network architectures, this individual ensures successful cloud implementations using the command line interface or the Google Cloud Platform Console.

1. Designing, planning, and prototyping a GCP network

Designing the overall network architecture

  • SaaS, PaaS, and IaaS services
  • Optimizing for latency (e.g., MTU size, caches, CDN)
  • Microsegmentation for security purposes (e.g., using metadata, tags)
  • Choosing the appropriate load balancing options
  • Hybrid connectivity (e.g., Google private access for hybrid connectivity)
  • DNS strategy (e.g., on-premises, Cloud DNS, GSLB)
  • IAM and security
  • Failover and disaster recovery strategy
  • Understanding how quotas are applied per project and per VPC
  • Options for high availability
  • Container networking
  • Meeting business requirements

Designing a Virtual Private Cloud (VPC). Considerations include:

  • Firewall (e.g., service account-based, tag-based)
  • Multi-zone and multi-region
  • Peering
  • CIDR range for subnets
  • IP addressing (e.g., static, ephemeral, private)
  • Standalone or shared
  • Multiple vs. single
  • Routes
  • Differences between Google Cloud Networking and other cloud platforms

Designing a hybrid network. Considerations include:

  • Bandwidth
  • Shared vs. standalone VPC interconnect access
  • Cross-organizational access
  • Failover and disaster recovery strategy (e.g., building high availability with BGP using cloud router)
  • Peering options (e.g., direct vs. carrier)
  • IPsec VPN
  • Cloud Router
  • Using interconnect (e.g., dedicated vs. partner)

Designing a container IP addressing plan for Google Kubernetes Engine

2. Implementing a GCP Virtual Private Cloud (VPC)

Configuring VPCs. Considerations include:

  • Creating a shared VPC and explaining how to share subnets with other projects
  • Configuring API access (private, public, NAT GW, proxy)
  • Configuring VPC peering
  • Configuring GCP VPC resources (CIDR range, subnets, firewall rules, etc.)
  • Configuring VPC flow logs

Configuring routing. Tasks include:

  • Configuring routing policies using tags and priority
  • Configuring NAT (e.g., Cloud NAT, instance-based NAT)
  • Configuring internal static/dynamic routing

Configuring and maintaining Google Kubernetes Engine clusters. Considerations include:

  • Cluster network policy
  • Adding authorized networks for cluster master access
  • Private clusters
  • VPC-native clusters using alias IPs
  • Clusters with shared VPC

Configuring and managing firewall rules. Considerations include:

  • Target network tags and service accounts
  • Ingress and egress rules
  • Firewall logs
  • Priority
  • Network protocols

3. Configuring network services

Configuring load balancing. Considerations include:

  • Network load balancer
  • Capacity scaling
  • Firewall and security rules
  • Internal load balancer
  • TCP and SSL proxy load balancers
  • HTTP(S) load balancer: including changing URL maps, backend groups, health checks, CDN, and SSL certs
  • Session affinity
  • Creating backend services

Configuring Cloud CDN. Considerations include:

  • Signed URLs
  • Cache invalidation
  • Enabling and disabling Cloud CDN
  • Using cache keys

Configuring and maintaining Cloud DNS. Considerations include:

  • Managing zones and records
  • Global serving with Anycast
  • Integrating on-premises DNS with GCP
  • Migrating to Cloud DNS
  • Internal DNS
  • DNS Security (DNSSEC)
  • Cloud DNS

Enabling other network services. Considerations include:

  • Enabling private API access
  • Canary (A/B) releases
  • Health checks for your instance groups
  • Distributing backend instances using regional managed instance groups

4. Implementing hybrid interconnectivity

Configuring interconnect. Considerations include:

  • Virtualizing using VLAN attachments
  • Partner (e.g., layer 2 vs. layer 3 connectivity)
  • Bulk storage uploads

Configuring a site-to-site IPsec VPN (e.g., route-based, policy-based, dynamic or static routing).

Configuring Cloud Router for reliability.

5. Implementing network security

Configuring identity and access management (IAM). Tasks include:

  • Using pre-defined IAM roles (e.g., network admin, network viewer, network user)
  • Assigning IAM roles to accounts or Google Groups
  • Defining custom IAM roles
  • Viewing account IAM assignments

Configuring Cloud Armor policies. Considerations include:

  • IP-based access control

Configuring third-party device insertion into VPC using multi-nic (NGFW)

Managing keys for SSH access

6. Managing and monitoring network operations

Logging and monitoring with Stackdriver or GCP Console

Managing and maintaining security. Considerations include:

  • Diagnosing and resolving IAM issues (shared VPC, security/network admin)
  • Firewalls (e.g., cloud-based, private)

Maintaining and troubleshooting connectivity issues. Considerations include:

  • Cross-connect handoff for interconnect
  • Troubleshooting Cloud Router BGP peering issues
  • Monitoring firewall logs
  • Identifying traffic flow topology (e.g., load balancers, SSL offload, network endpoint groups)
  • Monitoring ingress and egress traffic using flow logs
  • Managing and troubleshooting VPNs
  • Draining and redirecting traffic flows

Monitoring, maintaining, and troubleshooting latency and traffic flow. Considerations include:

Network throughput and latency testing Routing issues Tracing traffic flow

7. Optimizing network resources

Optimizing traffic flow. Considerations include:

  • Load balancer and CDN location
  • Expanding subnet CIDR ranges in service
  • Global vs. regional dynamic routing
  • Accommodating workload increases (e.g., autoscaling vs. manual scaling)

Optimizing for cost and efficiency. Considerations include:

  • Cost optimization (Network Service Tiers, Cloud CDN, autoscaler [max instances])
  • Bandwidth utilization (e.g., kernel sys tuning parameters)
  • VPN vs. interconnect
  • Automation

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