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首页> 外文期刊>International Journal on Wireless and Optical Communications >A HYBRID SCHEME FOR HANDOVER IN ATM-BASED PERSONAL COMMUNICATION NETWORK
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A HYBRID SCHEME FOR HANDOVER IN ATM-BASED PERSONAL COMMUNICATION NETWORK

机译:基于ATM的个人通信网络中的切换混合方案

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In a Personal Communication Networks (PCN), the covered geographical area is typically partitioned into a set of microcells. Each microcell has a Base Station (BS) to exchange radio signals with wireless mobile terminals. Due to the limited range of wireless transceivers, mobile users can communicate only with BSs that reside within the same microcell at any instance. The number of handoffs/handovers during a call will increase as the cell radii decrease, thus affecting the Quality of Service (QoS). Frequent handoff in wireless/mobile networks introduces a new paradigm in the area of network congestion and admission control. The increase in processing load due to demand for service and fast handoffs to mitigate the propagation effect, a high speed backbone network for the PCN to connect BS is required. The ATM technology, which has recently emerged to be a predominant switching technology, is suited to be an infrastructure to interconnect the BSs of the PCN. To support network-wide handoff, new and handoff call requests will compete for connection resources in both the mobile and backbone networks. Handoff calls require a higher congestion related performance, i.e. blocking probability, relative to new calls because forced terminations of ongoing calls due to hand-off call blocking are generally more objectionable then new call blocking from the subscriber's perspective. A hybrid scheme has been proposed for handover in ATM-based PCN, which combines queuing and reservation schemes. In the scheme, FIFO and Measurement Based Priority Scheme (MBPS) queuing discipline [Tekinay & Jabbari, 1992] and the Reserved Channel Scheme (RCS) [Kim et al., 1999] are used. This scheme gives handovers higher priority than queuing or reservation schemes. When reservation is applied on both radio and backbone channels, it leads to significant improvement in QoS. After applying proposed scheme there is a remarkable reduction in Forced Termination Probability (FTP) at the cost of tolerable Call Blocking Probability (CBP).
机译:在个人通信网络(PCN)中,通常将覆盖的地理区域划分为一组微蜂窝。每个微蜂窝都有一个基站(BS),可以与无线移动终端交换无线电信号。由于无线收发器的范围有限,在任何情况下,移动用户只能与驻留在同一微区中的BS通信。呼叫期间的越区切换/越区切换数量将随着小区半径的减小而增加,从而影响服务质量(QoS)。无线/移动网络中的频繁切换在网络拥塞和准入控制领域引入了新的范例。由于对服务的需求以及为了减轻传播效果而需要的快速切换而导致处理负荷的增加,因此需要用于PCN连接BS的高速骨干网。最近已经成为主要的交换技术的ATM技术适合用作互连PCN的BS的基础结构。为了支持全网切换,新的和切换呼叫请求将在移动网络和骨干网中争夺连接资源。相对于新呼叫,越区切换呼叫需要更高的与拥塞相关的性能,即阻塞概率,因为从用户的角度来看,由于越区切换呼叫阻塞而导致正在进行的呼叫被强制终止通常比新呼叫阻塞更令人讨厌。已经提出了一种混合方案,用于在基于ATM的PCN中进行切换,该方案结合了排队和预留方案。在该方案中,使用了FIFO和基于测量的优先级方案(MBPS)排队规则[Tekinay&Jabbari,1992]和预留通道方案(RCS)[Kim等,1999]。与排队或预留方案相比,此方案为切换提供更高的优先级。当在无线电和骨干信道上都应用预留时,它将导致QoS的显着提高。应用提议的方案后,以可忍受的呼叫阻塞概率(CBP)为代价,强制终止概率(FTP)显着降低。

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