3 个仓库
Theoretical frameworks for calculating and optimizing system availability based on component dependency structures.
Distinguishing note: Focuses on the mathematical and logical modeling of availability rather than monitoring tools.
Explore 3 awesome GitHub repositories matching software engineering & architecture · Availability Modeling. Refine with filters or upvote what's useful.
这是一个关于分布式系统架构和后端基础设施设计的综合教育资源和学习指南。它为掌握设计复杂软件系统所需的扩展性、可靠性和性能原则提供了结构化课程。 该仓库通过提供一种系统化的技术面试准备方法脱颖而出,结合了设计模式、架构权衡和间隔重复工具,帮助用户记忆复杂概念。它强调约束驱动的分析,教授用户在起草架构设计时如何评估延迟、一致性和可用性等相互竞争的需求。 内容涵盖了广泛的系统设计能力,包括数据库扩展、流量管理和基础设施优化策略。它详细介绍了水平扩展、多层缓存、异步通信和服务发现技术,同时还提供了用于执行资源估算和容量规划的框架。 文档以学习指南的形式组织,为后端工程和大规模系统设计的基础知识提供了系统化的路径。
Provides theoretical frameworks for calculating and optimizing system availability based on component dependency structures.
This project is a comprehensive educational resource focused on the principles, patterns, and trade-offs required to design scalable, reliable, and high-performance distributed systems. It provides a structured curriculum that covers the fundamental architectural strategies necessary for building modern software infrastructure, ranging from high-level system decomposition to low-level networking and data management. The repository distinguishes itself by offering deep dives into complex architectural patterns, such as microservices-based decomposition, event-driven communication, and command-
If a service consists of multiple components prone to failure, the service's overall availability depends on whether the components are in sequence or in parallel. ### Sequence Overall availability decreases when two com
This project is a comprehensive educational resource and curriculum focused on site reliability engineering, distributed systems, and infrastructure operations. It provides technical guides, a systems engineering course, and instructional manuals designed to teach the principles of managing large-scale computing environments. The curriculum covers high-level architectural design for scalability and resilience, including fault-tolerant infrastructure, high-availability patterns, and microservices decomposition. It emphasizes the practical application of site reliability engineering through the
Offers theoretical frameworks for calculating and optimizing system availability based on component dependency structures.