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Adaptive Request Prioritization in Dynamic Service-Oriented Systems

机译:面向动态服务的系统中的自适应请求优先级

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The availability of scarce resources in a service-oriented system demands for context-aware selection policies that adapt based on service-level agreements (SLAs). One of the open issues is to prioritize service requests in dynamically changing environments where concurrent instances of processes may compete for resources. Here we propose a runtime monitoring approach to observe the actual state of the system. We argue that priorities should be assigned to requests based on potential violations of SLA objectives. While most existing work in the area of quality of service monitoring and SLA modeling focuses typically on purely technical systems, we consider service-oriented systems spanning both software-based services and human actors. Adaptive request scheduling in such systems is challenging due to the poorly predictable behavior of human actors in performing tasks. Our approach helps to cope with these challenges by prioritizing service requests that may cause violations of SLAs and corresponding objectives that are associated with processes.
机译:面向服务的系统中稀缺资源的可用性要求根据服务级别协议(SLA)进行适应的上下文感知选择策略。开放的问题之一是在动态更改的环境中对服务请求进行优先级排序,在该环境中,进程的并发实例可能会争用资源。在这里,我们提出了一种运行时监视方法来观察系统的实际状态。我们认为,应该根据可能违反SLA目标的情况为请求分配优先级。尽管服务质量监视和SLA建模领域中的大多数现有工作通常都集中在纯技术系统上,但我们认为面向服务的系统既涵盖基于软件的服务,又涵盖人类行为者。由于人类参与者在执行任务时行为的可预测性很差,因此此类系统中的自适应请求调度具有挑战性。我们的方法通过优先处理可能导致违反SLA和与流程相关联的相应目标的服务请求,来帮助应对这些挑战。

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