Performance Models of Event-Driven Architectures

C. Woodside
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Abstract

Event-driven architecture (EDAs) improves scalability by combining stateless servers and asynchronous interactions. Models to predict the performance of pure EDA systems are relatively easy to make, systems with a combination of event-driven components and legacy components with blocking service requests (synchronous interactions) require special treatment. Layered queueing was developed for such systems, and this work describes a method for combining event-driven behaviour and synchronous behaviour in a layered queueing model. The performance constraints created by the legacy components can be explored to guide decisions regarding converting them, or reconfiguring them, when the system is scaled.
事件驱动架构的性能模型
事件驱动的体系结构(EDAs)通过组合无状态服务器和异步交互来提高可伸缩性。预测纯EDA系统性能的模型相对容易建立,具有事件驱动组件和具有阻塞服务请求(同步交互)的遗留组件组合的系统需要特殊处理。分层排队是为这样的系统开发的,这项工作描述了一种在分层排队模型中结合事件驱动行为和同步行为的方法。可以研究遗留组件创建的性能约束,以便在扩展系统时指导有关转换它们或重新配置它们的决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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