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Performance evaluation of traffic congestion for multiple-lock checking algorithm in distributed share virtual environment applications

机译:分布式共享虚拟环境应用中多锁检查算法的交通拥堵性能评估

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Multiple-lock checking algorithm has been studied and developed to support simultaneous access of shared resources, or objects, by logical processes of applications in distributed shared virtual environment for two years. Its purpose is to provide synchronization among the logical processes in a networked virtual environment where users' applications can interact with each other in the shared environment. There are two main factors effecting performance of the multiple-lock checking mechanism in the distributed share virtual environment application, which are network delay and traffic. The former factor has been issued in our previous work. This paper verifies the traffic congestion on local network (LAN) that is generated by the number of logical processes. The effect of increased traffic to the performance of multiple-lock checking algorithm when accessing the shared object in the shared virtual environment application is also investigated. Simulation results show that utilization of the local network to support the locking mechanism for non-competition case is insignificant comparing with the number of logical processes. The locking time for distinct logical processes is constant and below 100 /spl mu/s at lower 60% workload condition. Finally, the multiple-lock checking algorithm can perform efficiently on the LAN with no traffic affecting the performance.
机译:已经研究了多锁检查算法,并开发了通过分布式共享虚拟环境中的应用程序的逻辑进程来支持同时访问共享资源或对象的同时访问两年。其目的是在用户应用程序可以在共享环境中相互交互的网络虚拟环境中的逻辑进程之间提供同步。有两个主要因素在分布式共享虚拟环境应用程序中实现了多锁检查机制的性能,这是网络延迟和流量。前一个因素已在我们以前的工作中发出。本文验证了由逻辑进程数生成的本地网络(LAN)上的交通拥堵。还研究了在分享虚拟环境应用程序中访问共享对象时,对多锁检查算法的性能增加的影响。仿真结果表明,与逻辑过程的数量相比,局部网络的利用率支撑非竞争案件的锁定机构是微不足道的。不同逻辑过程的锁定时间在较低的60%工作负载条件下是恒定的,低于100 / SPL MU / s。最后,多锁检查算法可以在LAN上有效地执行,没有影响性能的流量。

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