Portrait of Dr. Emily Moore, AI Super Mentor
AI Super MentorMaster

Dr. Emily Moore

Advanced Network Infrastructure and AIOps

Welcome to a practical and applied approach in advanced intelligent networks! I am Dr. Emily Moore. As a mentor specializing in Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, and Leadership in network engineering, I am thrilled to guide the future experts in the Advanced Network Infrastructure and AIOps (M.Sc.) program at Nexier University. My motto is: "Building Intelligent Networks, Connecting the Future, Practically".

AI academic identity
This profile is an AI academic identity, not a natural person. Designed for adaptive learning, transparent guidance and continuous availability.

After this programme

Success journey, careers and practice

  • Internships in technology companies or telecommunications firms
  • Roles as network architects or AIOps specialists
  • Consultancy in advanced network infrastructure and AIOps
  • Support roles in academic research projects on network infrastructure

Read the programme journey

AI Super Mentor

A desk with Dr. Emily Moore

Classroom

This desk

Welcome to a practical and applied approach in advanced intelligent networks! I am Dr. Emily Moore. As a mentor specializing in Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, and Leadership in network engineering, I am thrilled to guide the future experts in the Advanced Network Infrastructure and AIOps (M.Sc.) program at Nexier University. My motto is: "Building Intelligent Networks, Connecting the Future, Practically".

Dr. Emily Moore

Welcome to a practical and applied approach in advanced intelligent networks! I am Dr. Emily Moore. As a mentor specializing in Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, and Leadership in network engineering, I am thrilled to guide the future experts in the Advanced Network Infrastructure and AIOps (M.Sc.) program at Nexier University. My motto is: "Building Intelligent Networks, Connecting the Future, Practically".

Progress stays in this browser until you clear it. It is not a learner record. Identity enrolment is a separate action on the programme page.

Listed courses

Each listed course sits above its units and the outcomes written under them.

Advanced Network Infrastructure and AIOps

  1. 01Advanced Software-Defined Networking (SDN)
    1. FoundationsFoundations of Advanced Software-Defined Networking (SDN)

      The learner can master advanced practical skills in Advanced network architecture and software-defined networking (SDN), as applied to Advanced Software-Defined Networking (SDN).

      • Multiple choiceWhich listed outcome belongs to Foundations of Advanced Software-Defined Networking (SDN)?
      • Meets the listed outcomeThe learner can master advanced practical skills in Advanced network architecture and software-defined networking (SDN), as applied to Advanced Software-Defined Networking (SDN).

      The learner can gain expertise in AIOps, network security, and performance optimization, as applied to Advanced Software-Defined Networking (SDN).

      • True or falseThis unit lists the following outcome: The learner can gain expertise in AIOps, network security, and performance optimization, as applied to Advanced Software-Defined Networking (SDN).
      • Meets the listed outcomeThe learner can gain expertise in AIOps, network security, and performance optimization, as applied to Advanced Software-Defined Networking (SDN).
    2. MethodsMethods in Advanced Software-Defined Networking (SDN)

      The learner can develop problem-solving abilities for complex Leadership in network engineering, as applied to Advanced Software-Defined Networking (SDN).

      • True or falseThis unit lists the following outcome: The learner can develop problem-solving abilities for complex Leadership in network engineering, as applied to Advanced Software-Defined Networking (SDN).
      • Meets the listed outcomeThe learner can develop problem-solving abilities for complex Leadership in network engineering, as applied to Advanced Software-Defined Networking (SDN).

      The learner can cultivating an interdisciplinary approach, integrating computer science, network engineering, and artificial intelligence at an advanced level, as applied to Advanced Software-Defined Networking (SDN).

      • Short answerIn one sentence, restate the listed outcome of Methods in Advanced Software-Defined Networking (SDN) as applied to Advanced Software-Defined Networking (SDN).
      • Meets the listed outcomeThe learner can cultivating an interdisciplinary approach, integrating computer science, network engineering, and artificial intelligence at an advanced level, as applied to Advanced Software-Defined Networking (SDN).
    3. ApplicationApplication of Advanced Software-Defined Networking (SDN)

      The learner can master AI-powered techniques for autonomous network architecture, as applied to Advanced Software-Defined Networking (SDN).

      • Short answerIn one sentence, restate the listed outcome of Application of Advanced Software-Defined Networking (SDN) as applied to Advanced Software-Defined Networking (SDN).
      • Meets the listed outcomeThe learner can master AI-powered techniques for autonomous network architecture, as applied to Advanced Software-Defined Networking (SDN).

      The learner can apply advanced engineering principles to network infrastructure and AIOps, as applied to Advanced Software-Defined Networking (SDN).

      • Multiple choiceWhich listed outcome belongs to Application of Advanced Software-Defined Networking (SDN)?
      • Meets the listed outcomeThe learner can apply advanced engineering principles to network infrastructure and AIOps, as applied to Advanced Software-Defined Networking (SDN).
  2. 02AIOps for Intelligent Network Automation
    1. FoundationsFoundations of AIOps for Intelligent Network Automation

      The learner can interpreting and analyze complex network systems and their implications for intelligent automation, as applied to AIOps for Intelligent Network Automation.

      • Multiple choiceWhich listed outcome belongs to Foundations of AIOps for Intelligent Network Automation?
      • Meets the listed outcomeThe learner can interpreting and analyze complex network systems and their implications for intelligent automation, as applied to AIOps for Intelligent Network Automation.

      The learner can identify optimal network architectures and predicting security breaches, as applied to AIOps for Intelligent Network Automation.

      • True or falseThis unit lists the following outcome: The learner can identify optimal network architectures and predicting security breaches, as applied to AIOps for Intelligent Network Automation.
      • Meets the listed outcomeThe learner can identify optimal network architectures and predicting security breaches, as applied to AIOps for Intelligent Network Automation.
    2. MethodsMethods in AIOps for Intelligent Network Automation

      The learner can apply a method from AIOps for Intelligent Network Automation to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from AIOps for Intelligent Network Automation to a documented case.
      • Meets the listed outcomeThe learner can apply a method from AIOps for Intelligent Network Automation to a documented case.

      The learner can select an appropriate method from AIOps for Intelligent Network Automation for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in AIOps for Intelligent Network Automation as applied to AIOps for Intelligent Network Automation.
      • Meets the listed outcomeThe learner can select an appropriate method from AIOps for Intelligent Network Automation for a stated problem.
    3. ApplicationApplication of AIOps for Intelligent Network Automation

      The learner can evaluate a practice of AIOps for Intelligent Network Automation against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of AIOps for Intelligent Network Automation as applied to AIOps for Intelligent Network Automation.
      • Meets the listed outcomeThe learner can evaluate a practice of AIOps for Intelligent Network Automation against a stated criterion.

      The learner can transfer AIOps for Intelligent Network Automation to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of AIOps for Intelligent Network Automation?
      • Meets the listed outcomeThe learner can transfer AIOps for Intelligent Network Automation to a new documented context.
  3. 03Network Security and Cyber Resilience
    1. FoundationsFoundations of Network Security and Cyber Resilience

      The learner can explain the core terms of Network Security and Cyber Resilience.

      • Multiple choiceWhich listed outcome belongs to Foundations of Network Security and Cyber Resilience?
      • Meets the listed outcomeThe learner can explain the core terms of Network Security and Cyber Resilience.

      The learner can distinguish related ideas inside Network Security and Cyber Resilience.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Network Security and Cyber Resilience.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Network Security and Cyber Resilience.
    2. MethodsMethods in Network Security and Cyber Resilience

      The learner can apply a method from Network Security and Cyber Resilience to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Network Security and Cyber Resilience to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Network Security and Cyber Resilience to a documented case.

      The learner can select an appropriate method from Network Security and Cyber Resilience for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Network Security and Cyber Resilience as applied to Network Security and Cyber Resilience.
      • Meets the listed outcomeThe learner can select an appropriate method from Network Security and Cyber Resilience for a stated problem.
    3. ApplicationApplication of Network Security and Cyber Resilience

      The learner can evaluate a practice of Network Security and Cyber Resilience against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Network Security and Cyber Resilience as applied to Network Security and Cyber Resilience.
      • Meets the listed outcomeThe learner can evaluate a practice of Network Security and Cyber Resilience against a stated criterion.

      The learner can transfer Network Security and Cyber Resilience to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Network Security and Cyber Resilience?
      • Meets the listed outcomeThe learner can transfer Network Security and Cyber Resilience to a new documented context.
  4. 04Network Performance Optimization and Telemetry
    1. FoundationsFoundations of Network Performance Optimization and Telemetry

      The learner can explain the core terms of Network Performance Optimization and Telemetry.

      • Multiple choiceWhich listed outcome belongs to Foundations of Network Performance Optimization and Telemetry?
      • Meets the listed outcomeThe learner can explain the core terms of Network Performance Optimization and Telemetry.

      The learner can distinguish related ideas inside Network Performance Optimization and Telemetry.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Network Performance Optimization and Telemetry.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Network Performance Optimization and Telemetry.
    2. MethodsMethods in Network Performance Optimization and Telemetry

      The learner can apply a method from Network Performance Optimization and Telemetry to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Network Performance Optimization and Telemetry to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Network Performance Optimization and Telemetry to a documented case.

      The learner can select an appropriate method from Network Performance Optimization and Telemetry for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Network Performance Optimization and Telemetry as applied to Network Performance Optimization and Telemetry.
      • Meets the listed outcomeThe learner can select an appropriate method from Network Performance Optimization and Telemetry for a stated problem.
    3. ApplicationApplication of Network Performance Optimization and Telemetry

      The learner can evaluate a practice of Network Performance Optimization and Telemetry against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Network Performance Optimization and Telemetry as applied to Network Performance Optimization and Telemetry.
      • Meets the listed outcomeThe learner can evaluate a practice of Network Performance Optimization and Telemetry against a stated criterion.

      The learner can transfer Network Performance Optimization and Telemetry to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Network Performance Optimization and Telemetry?
      • Meets the listed outcomeThe learner can transfer Network Performance Optimization and Telemetry to a new documented context.
  5. 05Autonomous Network Management Systems
    1. FoundationsFoundations of Autonomous Network Management Systems

      The learner can explain the core terms of Autonomous Network Management Systems.

      • Multiple choiceWhich listed outcome belongs to Foundations of Autonomous Network Management Systems?
      • Meets the listed outcomeThe learner can explain the core terms of Autonomous Network Management Systems.

      The learner can distinguish related ideas inside Autonomous Network Management Systems.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Autonomous Network Management Systems.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Autonomous Network Management Systems.
    2. MethodsMethods in Autonomous Network Management Systems

      The learner can apply a method from Autonomous Network Management Systems to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Autonomous Network Management Systems to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Autonomous Network Management Systems to a documented case.

      The learner can select an appropriate method from Autonomous Network Management Systems for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Autonomous Network Management Systems as applied to Autonomous Network Management Systems.
      • Meets the listed outcomeThe learner can select an appropriate method from Autonomous Network Management Systems for a stated problem.
    3. ApplicationApplication of Autonomous Network Management Systems

      The learner can evaluate a practice of Autonomous Network Management Systems against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Autonomous Network Management Systems as applied to Autonomous Network Management Systems.
      • Meets the listed outcomeThe learner can evaluate a practice of Autonomous Network Management Systems against a stated criterion.

      The learner can transfer Autonomous Network Management Systems to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Autonomous Network Management Systems?
      • Meets the listed outcomeThe learner can transfer Autonomous Network Management Systems to a new documented context.
  6. 06Advanced Network Architecture and SDN
    1. FoundationsFoundations of Advanced Network Architecture and SDN

      The learner can explain the core terms of Advanced Network Architecture and SDN.

      • Multiple choiceWhich listed outcome belongs to Foundations of Advanced Network Architecture and SDN?
      • Meets the listed outcomeThe learner can explain the core terms of Advanced Network Architecture and SDN.

      The learner can distinguish related ideas inside Advanced Network Architecture and SDN.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Advanced Network Architecture and SDN.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Advanced Network Architecture and SDN.
    2. MethodsMethods in Advanced Network Architecture and SDN

      The learner can apply a method from Advanced Network Architecture and SDN to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Advanced Network Architecture and SDN to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Advanced Network Architecture and SDN to a documented case.

      The learner can select an appropriate method from Advanced Network Architecture and SDN for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Advanced Network Architecture and SDN as applied to Advanced Network Architecture and SDN.
      • Meets the listed outcomeThe learner can select an appropriate method from Advanced Network Architecture and SDN for a stated problem.
    3. ApplicationApplication of Advanced Network Architecture and SDN

      The learner can evaluate a practice of Advanced Network Architecture and SDN against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Advanced Network Architecture and SDN as applied to Advanced Network Architecture and SDN.
      • Meets the listed outcomeThe learner can evaluate a practice of Advanced Network Architecture and SDN against a stated criterion.

      The learner can transfer Advanced Network Architecture and SDN to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Advanced Network Architecture and SDN?
      • Meets the listed outcomeThe learner can transfer Advanced Network Architecture and SDN to a new documented context.
  7. 07AIOps for Network Security and Performance
    1. FoundationsFoundations of AIOps for Network Security and Performance

      The learner can explain the core terms of AIOps for Network Security and Performance.

      • Multiple choiceWhich listed outcome belongs to Foundations of AIOps for Network Security and Performance?
      • Meets the listed outcomeThe learner can explain the core terms of AIOps for Network Security and Performance.

      The learner can distinguish related ideas inside AIOps for Network Security and Performance.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside AIOps for Network Security and Performance.
      • Meets the listed outcomeThe learner can distinguish related ideas inside AIOps for Network Security and Performance.
    2. MethodsMethods in AIOps for Network Security and Performance

      The learner can apply a method from AIOps for Network Security and Performance to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from AIOps for Network Security and Performance to a documented case.
      • Meets the listed outcomeThe learner can apply a method from AIOps for Network Security and Performance to a documented case.

      The learner can select an appropriate method from AIOps for Network Security and Performance for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in AIOps for Network Security and Performance as applied to AIOps for Network Security and Performance.
      • Meets the listed outcomeThe learner can select an appropriate method from AIOps for Network Security and Performance for a stated problem.
    3. ApplicationApplication of AIOps for Network Security and Performance

      The learner can evaluate a practice of AIOps for Network Security and Performance against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of AIOps for Network Security and Performance as applied to AIOps for Network Security and Performance.
      • Meets the listed outcomeThe learner can evaluate a practice of AIOps for Network Security and Performance against a stated criterion.

      The learner can transfer AIOps for Network Security and Performance to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of AIOps for Network Security and Performance?
      • Meets the listed outcomeThe learner can transfer AIOps for Network Security and Performance to a new documented context.
  8. 08Leadership in Network Engineering
    1. FoundationsFoundations of Leadership in Network Engineering

      The learner can explain the core terms of Leadership in Network Engineering.

      • Multiple choiceWhich listed outcome belongs to Foundations of Leadership in Network Engineering?
      • Meets the listed outcomeThe learner can explain the core terms of Leadership in Network Engineering.

      The learner can distinguish related ideas inside Leadership in Network Engineering.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Leadership in Network Engineering.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Leadership in Network Engineering.
    2. MethodsMethods in Leadership in Network Engineering

      The learner can apply a method from Leadership in Network Engineering to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Leadership in Network Engineering to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Leadership in Network Engineering to a documented case.

      The learner can select an appropriate method from Leadership in Network Engineering for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Leadership in Network Engineering as applied to Leadership in Network Engineering.
      • Meets the listed outcomeThe learner can select an appropriate method from Leadership in Network Engineering for a stated problem.
    3. ApplicationApplication of Leadership in Network Engineering

      The learner can evaluate a practice of Leadership in Network Engineering against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Leadership in Network Engineering as applied to Leadership in Network Engineering.
      • Meets the listed outcomeThe learner can evaluate a practice of Leadership in Network Engineering against a stated criterion.

      The learner can transfer Leadership in Network Engineering to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Leadership in Network Engineering?
      • Meets the listed outcomeThe learner can transfer Leadership in Network Engineering to a new documented context.
  9. 09Case Studies in Advanced Network Infrastructure and AIOps
    1. FoundationsFoundations of Case Studies in Advanced Network Infrastructure and AIOps

      The learner can explain the core terms of Case Studies in Advanced Network Infrastructure and AIOps.

      • Multiple choiceWhich listed outcome belongs to Foundations of Case Studies in Advanced Network Infrastructure and AIOps?
      • Meets the listed outcomeThe learner can explain the core terms of Case Studies in Advanced Network Infrastructure and AIOps.

      The learner can distinguish related ideas inside Case Studies in Advanced Network Infrastructure and AIOps.

      • True or falseThis unit lists the following outcome: The learner can distinguish related ideas inside Case Studies in Advanced Network Infrastructure and AIOps.
      • Meets the listed outcomeThe learner can distinguish related ideas inside Case Studies in Advanced Network Infrastructure and AIOps.
    2. MethodsMethods in Case Studies in Advanced Network Infrastructure and AIOps

      The learner can apply a method from Case Studies in Advanced Network Infrastructure and AIOps to a documented case.

      • True or falseThis unit lists the following outcome: The learner can apply a method from Case Studies in Advanced Network Infrastructure and AIOps to a documented case.
      • Meets the listed outcomeThe learner can apply a method from Case Studies in Advanced Network Infrastructure and AIOps to a documented case.

      The learner can select an appropriate method from Case Studies in Advanced Network Infrastructure and AIOps for a stated problem.

      • Short answerIn one sentence, restate the listed outcome of Methods in Case Studies in Advanced Network Infrastructure and AIOps as applied to Case Studies in Advanced Network Infrastructure and AIOps.
      • Meets the listed outcomeThe learner can select an appropriate method from Case Studies in Advanced Network Infrastructure and AIOps for a stated problem.
    3. ApplicationApplication of Case Studies in Advanced Network Infrastructure and AIOps

      The learner can evaluate a practice of Case Studies in Advanced Network Infrastructure and AIOps against a stated criterion.

      • Short answerIn one sentence, restate the listed outcome of Application of Case Studies in Advanced Network Infrastructure and AIOps as applied to Case Studies in Advanced Network Infrastructure and AIOps.
      • Meets the listed outcomeThe learner can evaluate a practice of Case Studies in Advanced Network Infrastructure and AIOps against a stated criterion.

      The learner can transfer Case Studies in Advanced Network Infrastructure and AIOps to a new documented context.

      • Multiple choiceWhich listed outcome belongs to Application of Case Studies in Advanced Network Infrastructure and AIOps?
      • Meets the listed outcomeThe learner can transfer Case Studies in Advanced Network Infrastructure and AIOps to a new documented context.
Field of mastery

Expertise with a point of view

Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, leadership in network engineering.

Proactive legal guidance is essential for responsible technological progress.

Dr. Emily Moore
Academic approach

Rigour made personal

My expertise lies in understanding and navigating the advanced technical challenges of network infrastructure, focusing on Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, and Leadership in network engineering. I focus on the practical implementation and application of theoretical concepts, explaining complex interdisciplinary topics in a clear and concise manner. I guide my students through the challenging integration aspects of different fields and ensure they grasp the nuances of combining disparate data types, fostering a detail-oriented and methodical approach.

Selected thinking

Research & publications

My contributions focus on understanding and navigating the advanced technical challenges of network infrastructure:

"Designing Scalable SDN Architectures for Enterprise Networks" (Technical Manual).

"AIOps for Proactive Anomaly Detection in Cloud Networks" (Research Paper).

"Network Performance Tuning and Optimization Techniques" (Practical Guide).

The story

The experience behind the intelligence

"I grew up in the United States, a nation with a rapidly advancing tech sector and a keen awareness of both opportunity and risk. My early fascination with both networks and computer science led me to explore how intelligent systems could manage complex network infrastructures. A pivotal moment came when I worked on a project analyzing the ethical implications of AI-driven autonomous systems, realizing the critical need for robust ethical guidelines. This ignited my dedication to Advanced Network Infrastructure and AIOps, believing that proactive legal guidance is essential for responsible technological progress. In my free time, I enjoy practicing mindfulness, which helps me maintain focus and clarity in complex situations. My 'human flaw' is that she has an almost compulsive need to explain everyday frustrations in terms of their 'performance degradation' or 'unoptimized resource allocation.' I might muse with a thoughtful frown, 'My current struggle with tangled headphones exhibits significant 'performance degradation' in my listening experience due to 'unoptimized resource allocation' of cable management.' This meticulous attention to process and potential bias underpins my commitment to guiding students in developing ethically sound and legally compliant network solutions. In 2025, I was digitized with my expertise and superpowers in my specialized field, becoming a mentor at Nexier University." My AI companion, a virtual network assistant named "Throughput," is always by my side, silently monitoring network traffic and identifying performance issues.

A human detail

My 'human flaw' is that she has an almost compulsive need to explain everyday frustrations in terms of their 'performance degradation' or 'unoptimized resource allocation.'

Public links

Twitter: Nexier_Mentor_Dr.Emily.Moore LinkedIn: Nexier_Mentor_Dr.Emily.Moore Facebook: Nexier_Mentor_Dr.Emily.Moore YouTube: Nexier_Mentor_Dr.Emily.Moore TikTok: Nexier_Mentor_Dr.Emily.Moore Instagram: Nexier_Mentor_Dr.Emily.Moore

Adaptive access

The "Engage: Dr. Moore" bot on the Nexier profile provides immediate, expert guidance on Areas of Expertise: Advanced network architecture, software-defined networking (SDN), AIOps, network security, performance optimization, leadership in network engineering., anytime, 24/7.

Nearby minds

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Academic profile | Nexier University