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core stateless
相关语句
  核心无状态
     A CSFQ (core stateless fair queuing) based algorithm using rate-based buffer management(rr-CSFQ) was presented.
     在核心无状态公平队列调度(CSFQ)算法的基础上,提出了一种采用基于速率的随机早期检测(RED)机制的核心无状态公平队列调度(rr-CSFQ)算法.
短句来源
     VCSVC: Vector Core Stateless Virtual Clock
     虚拟延迟矢量核心无状态调度策略VCSVC
短句来源
     A core stateless virtual clock-based scheduling algorithm applied to DiffServ
     用于DiffServ的核心无状态的虚拟时钟调度算法
短句来源
     A Core Stateless Fair Queuing Algorithm with High Throughput
     高吞吐量的核心无状态公平队列算法
短句来源
     An Improved Core Stateless Fair Bandwidth Allocation Mechanism
     一种改进的核心无状态公平带宽分配机制
短句来源
更多       
  “core stateless”译为未确定词的双语例句
     By designing TCP-Friendly-Protocol supporting multimedia stream for end users and the progressive SCORE (Core stateless) at the routers, a new SCORE scheme to provide flow protection and priority of sub-flow is present.
     通过在用户端实施支持媒体流传输的TCP友好协议,在网络端扩展SCORE机制,提出了支持多媒体业务流的TCP友好SCORE改进机制。
短句来源
     This novel core stateless virtual clock algorithm can provide rate guarantee for per-flow and keep good scalability at the same time.
     该算法通过构造一个按分组预期离开时间排队的队列来保证每流的带宽,同时通过让分组自携带用于调度的流状态信息,使用一种简单的递推方法计算分组的预期离开时间,从而去除了虚拟时钟算法的有状态性,使得算法在为每流提供速率保证的同时可扩展性得到了很大的提高。
短句来源
     Through stateless networks, CSFQ (Core Stateless Fair Queue) can achieve as well fairness in bandwidth allocation as that implemented by stateful networks. However, its dropping algorithm is derived from non-responsive flows such as UDP flows, and does not suit TCP flows.
     CSFQ(CoreStatelessFairQueue)算法在无状态网实现了如同有状态网那样好的公平带宽分配,但它的丢包算法是针对UDP流等非响应流导出的,不适用于TCP流.
短句来源
  相似匹配句对
     core.
     内核。
短句来源
     Core-stateless virtual clock scheduling algorithms
     核心无状态虚拟时钟调度策略
短句来源
     VCSVC: Vector Core Stateless Virtual Clock
     虚拟延迟矢量核心无状态调度策略VCSVC
短句来源
     Core Competitiveness
     核心竞争力
短句来源
     Stateless object and its application
     无状态对象及应用
短句来源
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  core stateless
The proposed bandwidth broker architecture is designed based on a core stateless virtual time reference system we developed earlier.
      
An example of coordinated scheduling is Core-stateless Jitter Virtual Clock.
      


Router mechanisms designed to achieve fair bandwidth allocations,like Fair Queueing,have many desirable properties for congestion control in the Internet.However,such mechanisms usually need to maintain state,manage buffers,and/or perform packet scheduling on a perflow basis,and this complexity may prevent them from being cost-ef-fectively implemented and widely deployed.To reduce this complexity,this paper propose s an architecture and a scheme on it.And because of this,It call this scheme Core-Stateless...

Router mechanisms designed to achieve fair bandwidth allocations,like Fair Queueing,have many desirable properties for congestion control in the Internet.However,such mechanisms usually need to maintain state,manage buffers,and/or perform packet scheduling on a perflow basis,and this complexity may prevent them from being cost-ef-fectively implemented and widely deployed.To reduce this complexity,this paper propose s an architecture and a scheme on it.And because of this,It call this scheme Core-Stateless Fair Queueing.

路由器的设计要考虑带宽的公平分配问题。就象公平排队算法(FairQueueing)所做的一样,它有许多对互联网上拥塞控制的考虑。然而,这样的要求经常需要设置一些状态、控制缓存块、和/或在考虑每个信息流基础上的复杂的数据包处理算法。技术的复杂性使得它的应用和配置难以得到推广。为了降低设计复杂度,文章提出了一种新的体系结构及在其之上的算法。根据其特点,把这种算法称为状态无关的核心路由器公平排队算法(Core-StatelessFairQueueing)。

A core stateless proportional adaptive fair bandwidth allocation mechanism (CSPAFA) is presented, which performs per flow state management in edge router. In CSPAFA, the edge routers differentiate between marked flows and non marked flows. By using DPS, the relevant information is inserted into IP header in edge routers. Core routers allocate proportionally output link bandwidth to marked flows according to their service profiles and current network load, and perform fair bandwidth allocation...

A core stateless proportional adaptive fair bandwidth allocation mechanism (CSPAFA) is presented, which performs per flow state management in edge router. In CSPAFA, the edge routers differentiate between marked flows and non marked flows. By using DPS, the relevant information is inserted into IP header in edge routers. Core routers allocate proportionally output link bandwidth to marked flows according to their service profiles and current network load, and perform fair bandwidth allocation for non marked flows. In addition, CSPAFA can adjust dynamically bandwidth allocation between marked flows and non marked flows. Finally, the simulation results are given and CSPAFA is testified.

提出了一种核心无状态的自适应成比例公平带宽分配机制 CSPAFA(core stateless proportional adaptivefair allocation) ,在边界路由器完成基于每个流的状态处理 ,将所有流分成标记流和非标记流两种业务类型 ,采用DPS(dynamic packet state)技术将有关信息编码进 IP分组头 .在核心将输出链路带宽分成两部分 ,核心根据当前的网络负荷对标记流按服务规格成比例地分配输出链路带宽 ,对未标记流公平分配带宽 ,并且能自适应地调整两类业务的带宽共享比例 .最后 ,给出了在 NS网络仿真环境下的仿真实验结果

The previous VoD system allocated static channel for every request,and can admit less concurrent on-de-mand user due to the low utility factor of system resource.Based on the controllable high-speed campus network,the authors propose a video multicast policy with dynamic buffering in this paper.The QoS can be guaranteed with a core-stateless proportional adaptive fair bandwidth allocation mechanism.By adapting every multicast stream with integrated scheduling and feedback,they optimize the utility...

The previous VoD system allocated static channel for every request,and can admit less concurrent on-de-mand user due to the low utility factor of system resource.Based on the controllable high-speed campus network,the authors propose a video multicast policy with dynamic buffering in this paper.The QoS can be guaranteed with a core-stateless proportional adaptive fair bandwidth allocation mechanism.By adapting every multicast stream with integrated scheduling and feedback,they optimize the utility factor of system resource,and improve the performance of VoD sys-tem.

传统的视频点播系统为每个点播用户分配单独的静态通信通道,其系统资源利用率低的缺点使得总体时间段上能并发的点播用户数少。针对网管可控的宽带校园网环境,文章提出了一个采用自适应动态缓存的组播策略,它通过差别服务(Diffserv)比例带宽分配机制保证了一定的视频播送服务质量(QoS),并基于服务端综合调度和客户端回馈的方法动态调整各视频流的播送速度,从而优化了系统整个过程的整体资源利用率,提高了系统的点播性能。

 
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