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Cloud Infrastructure Migration for High-Performance Cybersecurity Platform with Cost Optimization
  1. case
  2. Cloud Infrastructure Migration for High-Performance Cybersecurity Platform with Cost Optimization

Cloud Infrastructure Migration for High-Performance Cybersecurity Platform with Cost Optimization

kandasoft.com
Telecommunications
Financial services
Business services

Identified Challenges in Legacy Cloud Infrastructure Hindering Performance and Cost Efficiency

The client faces operational bottlenecks due to an aging cloud infrastructure hosted on a major cloud platform, resulting in high operational costs and scaling limitations. During peak demand periods, system performance degrades, failing to handle increasing request volumes for real-time security ratings and risk assessments. These issues restrict growth and jeopardize service reliability, calling for a strategic migration to a more scalable and cost-effective cloud environment.

About the Client

A large-scale cybersecurity solutions provider serving enterprise clients, experiencing rapid growth and requiring scalable, secure cloud infrastructure to deliver real-time security ratings and risk assessments.

Goals for Transitioning to a Scalable Cloud Infrastructure with Performance and Cost Benefits

  • Implement a seamless migration of core security services to a cloud platform with enhanced scalability.
  • Achieve a system capable of handling at least 100,000 requests per second during peak hours.
  • Reduce operational expenses by approximately 70% through optimized infrastructure management and autoscaling.
  • Establish resilient, fault-tolerant architecture to ensure high availability during peak loads.
  • Empower the client's internal teams through training on cloud management for ongoing optimization.
  • Ensure compliance with security standards and implement comprehensive logging and threat mitigation measures.

Core Functional System Requirements for Cloud Migration and Optimization

  • Migration of critical services such as DNS management and threat response modules to a new cloud environment.
  • Implementation of autoscaling mechanisms to dynamically adjust resources based on request volume.
  • Deployment of highly available load balancers for traffic distribution and redundancy.
  • Integration of real-time traffic mirroring for intrusion detection and traffic analysis.
  • Secure certificate management with automated provisioning, utilizing cloud-native certificate services.
  • Comprehensive logging and log streaming with retentions over 90 days, protected by cloud security tools.

Preferred Technologies and Architectural Approaches for Cloud Infrastructure

Cloud platform with autoscaling capabilities (e.g., Google Cloud Platform, AWS, Azure)
Elastic load balancing and high-availability architecture
Traffic mirroring and load balancing for real-time threat detection
Cloud-native certificate and security management tools
Pub/Sub or messaging systems for log collection and analysis
Cloud Security tools such as Web Application Firewalls and security groups

External Systems and Services Integration Needs

  • DNS management services for traffic routing and resolution
  • Threat detection and intrusion detection systems for traffic analysis
  • Certificate management services for real-time certificate provisioning
  • Logging and monitoring tools for system observability
  • Security services for threat prevention and mitigation

Non-Functional System Requirements for Performance, Security, and Scalability

  • System must support a minimum throughput of 100,000 requests per second during peak demand.
  • System architecture must be fault-tolerant and highly available, maintaining 99.99% uptime.
  • Autoscaling policies should enable rapid scaling up/down to optimize costs and performance.
  • All traffic must be protected by Web Application Firewalls and standard security protocols.
  • Log retention period should be at least 90 days with secure, scalable storage.
  • Cloud platform should support dynamic traffic management including IP rotation and traffic mirroring.

Expected Business and Technical Benefits of Cloud Infrastructure Modernization

The project aims to deliver a scalable and resilient cloud environment capable of processing at least 100,000 requests per second, ensuring high performance during peak periods. Cost savings of approximately 70% are expected through optimized autoscaling and resource management. Additionally, the enhanced infrastructure will improve system reliability, enable faster response times, and provide the client with greater operational control and security, supporting their continued growth and service excellence.

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