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Performance flexibility architecture of core service platform for next-generation network

机译:下一代网络核心服务平台的性能灵活性架构

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摘要

The hardware and software architectures of core service platforms for next-generation networks were analyzed to compute the minimum cost hardware configuration of a core service platform. This method gives a closed form expression for the optimized hardware cost configuration based on the service requirements, the processing features of the computers running the core service platform software, and the processing capabilities of the common object request broker architecture middleware. Three simulation scenarios were used to evaluate the model. The input includes the number of servers for the protocol mapping (PM), Parlay gateway (PG), application sever (AS), and communication handling (CH) functions. The simulation results show that the mean delay meets requirements. When the number of servers for PM, PG, AS, and CH functions were not properly selected, the mean delay was excessive. Simulation results show that the model is valid and can be used to optimize investments in core service platforms.
机译:分析了下一代网络核心服务平台的硬件和软件架构,以计算核心服务平台的最低成本硬件配置。该方法根据服务需求,运行核心服务平台软件的计算机的处理功能以及公共对象请求代理体系结构中间件的处理能力,为优化的硬件成本配置提供封闭式表达。三种仿真方案用于评估模型。输入包括用于协议映射(PM),Parlay网关(PG),应用服务器(AS)和通信处理(CH)功能的服务器数量。仿真结果表明,平均时延满足要求。如果未正确选择用于PM,PG,AS和CH功能的服务器数量,则平均延迟过大。仿真结果表明该模型是有效的,可用于优化核心服务平台的投资。

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