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당사는 사이트와 서비스를 제공하는 데 필요한 필수 쿠키 및 유사한 도구를 사용합니다. 고객이 사이트를 어떻게 사용하는지 파악하고 개선할 수 있도록 성능 쿠키를 사용해 익명의 통계를 수집합니다. 필수 쿠키는 비활성화할 수 없지만 '사용자 지정' 또는 ‘거부’를 클릭하여 성능 쿠키를 거부할 수 있습니다.

사용자가 동의하는 경우 AWS와 승인된 제3자도 쿠키를 사용하여 유용한 사이트 기능을 제공하고, 사용자의 기본 설정을 기억하고, 관련 광고를 비롯한 관련 콘텐츠를 표시합니다. 필수가 아닌 모든 쿠키를 수락하거나 거부하려면 ‘수락’ 또는 ‘거부’를 클릭하세요. 더 자세한 내용을 선택하려면 ‘사용자 정의’를 클릭하세요.

AWS Well-Architected design considerations - Data Transfer from Amazon S3 Glacier Vaults to Amazon S3
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AWS Well-Architected design considerations

This solution uses the best practices from the AWS Well-Architected Framework, which helps customers design and operate reliable, secure, efficient, and cost-effective workloads in the cloud.

This section describes how the design principles and best practices of the Well-Architected Framework benefit this solution.

Operational excellence

This section describes how we architected this solution using the principles and best practices of the operational excellence pillar.

  • This solution pushes metrics to CloudWatch at various stages to provide visibility into archive transfer progress.

Security

This section describes how we architected this solution using the principles and best practices of the security pillar.

  • All interservice communications use applicable AWS Identity and Access Management (IAM) roles.

  • All roles used by the solution follow least privilege access. They only contain the minimum permissions required to accomplish the transfer.

  • All data storage, including the S3 buckets, encrypts the data at rest.

Reliability

This section describes how we architected this solution using the principles and best practices of the reliability pillar.

  • The solution uses a serverless architecture to achieve high availability and recovery from failure.

  • The solution protects against state machine definition errors through a suite of automated tests.

  • Data processing uses Lambda functions. Data is stored in DynamoDB and Amazon S3, which persist in multiple Availability Zones by default.

Performance efficiency

This section describes how we architected this solution using the principles and best practices of the performance efficiency pillar.

  • The solution uses a serverless architecture with the ability to scale horizontally as needed.

  • The solution is tested and deployed daily to achieve consistency as AWS services change.

Cost optimization

This section describes how we architected this solution using the principles and best practices of the cost optimization pillar.

  • The solution uses a serverless architecture that only charges customers for what they use.

  • DynamoDB global secondary indexes are selected to reduce the pricing for queries.

Sustainability

This section describes how we architected this solution using the principles and best practices of the sustainability pillar.

  • The solution uses managed serverless services to minimize the environmental impact of the backend services compared to continually operating on-premises services.

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