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Disaster Recovery (DR) Architecture on AWS, Part IV: Multi-site Active/Active

AWS Disaster Recovery

My subsequent posts shared details on the backup and restore , pilot light, and warm standby active/passive strategies. In this post, you’ll learn how to implement an active/active strategy to run your workload and serve requests in two or more distinct sites. DR strategies: Multi-site active/active.

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Disaster Recovery (DR) Architecture on AWS, Part II: Backup and Restore with Rapid Recovery

AWS Disaster Recovery

By using the best practices provided in the AWS Well-Architected Reliability Pillar whitepaper to design your DR strategy, your workloads can remain available despite disaster events such as natural disasters, technical failures, or human actions. DR strategies: Choosing backup and restore. Implementing backup and restore.

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Disaster Recovery (DR) Architecture on AWS, Part I: Strategies for Recovery in the Cloud

AWS Disaster Recovery

Figure 2 shows the four strategies for DR that are highlighted in the DR whitepaper. Active/passive and active/active DR strategies. Active/passive DR. Figure 2 categorizes DR strategies as either active/passive or active/active. In Figure 3, we show how active/passive works.

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Disaster Recovery (DR) Architecture on AWS, Part III: Pilot Light and Warm Standby

AWS Disaster Recovery

In this blog post, you will learn about two more active/passive strategies that enable your workload to recover from disaster events such as natural disasters, technical failures, or human actions. Then we explored the backup and restore strategy. Backups are necessary to enable you to get back to the last known good state.

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Why Containers are Susceptible to Ransomware (& How Zerto Can Help!)

Zerto

The IDC study found that 79% of those surveyed activated a disaster response, 83% experienced data corruption from an attack, and nearly 60% experienced unrecoverable data. Check out the IDC whitepaper The State of Ransomware and Disaster Preparedness. Backup to a Cloud Bucket. CDP-As-Code.