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Modeling, design and evaluation of networking systems and protocols through simulation.

机译:通过仿真对网络系统和协议进行建模,设计和评估。

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Computer modeling and simulation is a practical way to design and test a system without actually having to build it. Simulation has many benefits which apply to many different domains: it reduces costs creating different prototypes for mechanical engineers, increases the safety of chemical engineers exposed to dangerous chemicals, speeds up the time to model physical reactions, and trains soldiers to prepare for battle.; The motivation behind this work is to build a common software framework that can be used to create new networking simulators on top of an HLA-based federation for distributed simulation. The goals are to model and simulate networking architectures and protocols by developing a common underlying simulation infrastructure and to reduce the time a developer has to learn the semantics of message passing and time management to free more time for experimentation and data collection and reporting.; This is accomplished by evolving the simulation engine through three different applications that model three different types of network protocols. Computer networking is a good candidate for simulation because of the Internet's rapid growth that has spawned off the need for new protocols and algorithms and the desire for a common infrastructure to model these protocols and algorithms. One simulation, the 3DInterconnect simulator, simulates data transmitting through a hardware k-array n-cube network interconnect. Performance results show that k-array n-cube topologies can sustain higher traffic load than the currently used interconnects. The second simulator, Cluster Leader Logic Algorithm Simulator, simulates an ad-hoc wireless routing protocol that uses a data distribution methodology based on the GPS-QHRA routing protocol. CLL algorithm can realize a maximum of 45% power savings and maximum 25% reduced queuing delay compared to GPS-QHRA. The third simulator simulates a grid resource discovery protocol for helping Virtual Organizations to find resource on a grid network to compute or store data on. Results show that worst-case 99.43% of the discovery messages are able to find a resource provider to use for computation. The simulation engine was then built to perform basic HLA operations. Results show successful HLA functions including creating, joining, and resigning from a federation, time management, and event publication and subscription.
机译:计算机建模和仿真是设计和测试系统的一种实用方法,而无需实际构建。模拟具有许多优点,这些优点适用于许多不同的领域:它降低了为机械工程师创建不同原型的成本,提高了化学工程师接触危险化学品的安全性,加快了对物理反应进行建模的时间,并训练了士兵为战斗做准备。这项工作的目的是建立一个通用的软件框架,该框架可用于在基于HLA的联合分布式仿真的基础上创建新的网络仿真器。目标是通过开发通用的基础模拟基础结构来建模和模拟网络体系结构和协议,并减少开发人员必须学习消息传递和时间管理的语义的时间,以腾出更多时间进行实验,数据收集和报告。这是通过使模拟引擎通过对三种不同类型的网络协议建模的三个不同应用程序发展而实现的。由于互联网的快速发展催生了对新协议和算法的需求,以及对通用基础结构进行建模的需求,因此计算机网络是进行模拟的理想选择。一种模拟是3DInterconnect模拟器,它模拟通过硬件k阵列n立方体网络互连进行的数据传输。性能结果表明,与当前使用的互连相比,k阵列n多维数据集拓扑可以承受更高的流量负载。第二个模拟器是Cluster Leader Logic Algorithm Simulator,它模拟一个临时无线路由协议,该协议使用基于GPS-QHRA路由协议的数据分发方法。与GPS-QHRA相比,CLL算法最多可节省45%的功率,并最多减少25%的排队延迟。第三个模拟器模拟网格资源发现协议,以帮助虚拟组织在网格网络上查找资源以计算或存储数据。结果表明,最坏情况下的发现消息中有99.43%的发现消息能够找到用于计算的资源提供者。然后构建仿真引擎以执行基本的HLA操作。结果显示了成功的HLA功能,包括创建,加入联合关系以及从联合关系中退出,时间管理以及事件发布和订阅。

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