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Maximum Availability Server Selection Policy for Efficient and Reliable Session Control Systems

机译:高效可靠的会话控制系统的最大可用性服务器选择策略

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摘要

There has been a rapid growth of services based on session control. Session-based services comprise multimedia conferences, Internet telephone calls, instant messaging, and similar applications consisting of one or more media types such as audio and video. Deployment examples include session control services as part of the IP multimedia subsystem (IMS), in the third-generation mobile networks. High service dependability in session control systems is achieved by introducing redundancy, e.g., through reliable server pooling (RSerPool) or clustering. Namely, session control servers are multiplied in server sets. Performance of such replicated session control servers is quantified by transaction control time. Thus, reducing transaction control time enhances performance. Server selection policies (SSP) are crucial in achieving this goal. The maximum availability (MA) SSP is proposed to improve session control performance in scenarios with server and communication failures. Based on a status vector, MA aims at maximizing the probability of successful transaction with the current transmission, thereby minimizing the average number of attempted servers until success. MA is applicable in a broad range of IP-based systems and services, and it is independent of the fault-tolerant platform. A simple protocol extension is proposed in order to integrate MA into the RSerPool fault-tolerant architecture. In addition, an analytic model is derived based on certain system model assumptions. Analytic and simulation results show that transaction control time is considerably reduced with MA as opposed to when using traditional round robin.
机译:基于会话控制的服务已经迅速增长。基于会话的服务包括多媒体会议,Internet电话呼叫,即时消息传递以及由一种或多种媒体类型(例如音频和视频)组成的类似应用程序。部署示例包括会话控制服务,作为第三代移动网络中IP多媒体子系统(IMS)的一部分。通过引入冗余(例如通过可靠的服务器池(RSerPool)或群集)来实现会话控制系统中的高服务可靠性。即,会话控制服务器被乘以服务器集合。这种复制的会话控制服务器的性能通过事务控制时间来量化。因此,减少事务控制时间可以提高性能。服务器选择策略(SSP)对于实现此目标至关重要。建议使用最大可用性(MA)SSP来提高在服务器和通信出现故障的情况下的会话控制性能。基于状态向量,MA的目标是最大程度地利用当前传输成功进行事务处理,从而最大程度地减少尝试获得成功的服务器的平均数量。 MA适用于各种基于IP的系统和服务,并且独立于容错平台。为了将MA集成到RSerPool容错体系结构中,提出了一个简单的协议扩展。另外,基于某些系统模型假设推导了解析模型。分析和仿真结果表明,与使用传统的轮询机制相比,使用MA可以显着减少事务控制时间。

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