So how to avoid and control congestion is one of the most active fields in the computer networks.
因此如何更好地预防和控制拥塞一直是近年来国际上网络研究领域的热点问题。
Increasing UDP deteriorates the ability of TCP to control congestion and is a source of high drop rates.
不断增加的UDP数据流恶化了TCP控制拥塞的能力,而且是引起高丢包率的原因之一。
This paper proposes an approach to design a rate based flow control mechanism in order to regulate the Available Bit Rate (ABR) traffic and effectively control congestion of the networks.
对此,本文提出一种方法来设计基于速率的流量控制机制以便调节ABR服务并有效地控制网络拥塞。
When using this approach congestion control can be implemented manually.
当使用这种方法的时候,拥塞控制可以手动地实现。
You'll also find support for backward congestion notification (BCN), which improves congestion management by actively tightening the control loop through messaging.
还可以找到对后向堵塞通知(BCN)的支持,这以消息的方式加紧控制循环,从而改进了堵塞管理。
Packet loss, or late arrival, enables congestion control, which further limits performance to avoid more global networking issues.
数据包丢失或延迟到达情况下将启用阻塞控制,进一步限制性能以避免更多全局网络问题。
What about congestion control?
那么考虑到了拥塞控制吗?
Underspecification also means that there is little thought for congestion control.
不指定也意味着对拥塞处理考虑不足。
The types of flow control are buffering, windowing, and congestion avoidance.
流量控制的类型:缓冲、窗口机制和拥塞避免。
With the increase of network traffic, the congestion control is the challenge of network.
随着网络业务量的增加,网络的拥塞控制越发成为迫切需要解决的难题。
Under the market environment and based on different trade patterns, the optimal models of congestion dispatch incorporating FACTS control is set up.
在电力市场的背景下,基于不同的交易模式,提出含有FACTS控制的电力系统阻塞调度的优化模型。
Section 3 explains its congestion control algorithm.
第3节说明了它的拥塞控制算法。
How to optimize the congestion control becomes a focus in current research.
如何对拥塞控制进行优化也就变成当前研究的热点和难点。
Section 4 introduces Composable UDT that supports configurability of congestion control algorithms.
第4节介绍了支持可配置可组合udt的拥塞控制算法。
A regulation method for UPFC control para-meters in congestion dispatch is present.
提出一种在阻塞调度中upfc控制参数的整定方法。
It consists of three main elements: the congestion status control packet, the early congestion detection and the adaptive rate traffic conditioner.
该方案主要包括三个组成部分:拥塞状态控制分组、早期拥塞检测和流量控制算法。
We propose a model-based congestion control scheme named MBCC.
对基于模型的拥塞控制方法进行了研究和改进。
Due to the end-to-end essence of TCP, the source algorithm of congestion control can't acquire enough information of intermediate network to control traffic ideally.
由于TCP端到端的本质,拥塞控制的源算法无法利用网络中的具体信息进行理想地拥塞控制。
The goals of Internet congestion control are maximization of throughput, minimization of the average delay of packets and fair allocation of resources among users.
拥塞控制的目标就是要达到链路吞吐量的最大化、分组延迟的最小化和各用户之间资源分配的合理化。
The congestion control algorithm mainly divides into two parts: source algorithm which USES on the end system and the link algorithm which USES on the network equipment.
拥塞控制算法主要分为两部分:在端系统上使用的源算法和在网络设备上使用的链路算法。
The prediction of network traffic flow is a problem of great significance in the research work of resource allocation and congestion control.
在高速网络资源分配与拥塞控制研究中,网络业务流量的预报是一个具有重要意义的课题。
But till now, the stability of system, especially the oscillations of buffer occupancy have not been the focus of research in congestion control.
但目前在拥塞控制方面的研究对于网络节点的缓冲占有量的抖动性即系统稳定性考虑不多。
The purpose of TCP Congestion Control was to ensure that every device on the network cooperates to not overwhelm its resource.
TCP的目标就是确保网络中的每一台设备都是合作状态,而不会压跨它占有的资源。
TCP Congestion Control on clients and servers is setup to "back off" in these cases in order to ensure that the network remains available for all its users.
TCP拥塞控制就是在这种情况下,通过服务器和客户端的控制“回退”,以确保网络对于其他的所有用户仍然可用。
Network congestion control is a very important problem of network designing and management.
有关网络的拥塞控制是网络设计和管理中一个重要问题。
Then, with the features of Packet Radio Backbone Network, five algorithms of flow and congestion control are brought forward.
然后,在分析分组无线干线网的特点的基础上,提出了五种流量和拥塞控制的算法。
Thus, the congestion control of the Internet is a key problem.
因此,互联网的拥塞控制成为一个非常关键的问题。
Thus, the congestion control of the Internet is a key problem.
因此,互联网的拥塞控制成为一个非常关键的问题。
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