一种新的GSM分界蜂窝网络固定信道分配方案分析

S. Tokekar, N. Purohit
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引用次数: 13

摘要

GSM蜂窝网络包含许多蜂窝,这些蜂窝连接到一个称为主交换中心(MSC)的主控单元。每个小区负责向其所在区域的移动用户提供无线双工信道。用于上述目的的小区电路称为基站收发站(BTS)。无线网络中的信道是一种稀缺资源,因此信道分配对网络的业务性能有很大的影响。研究表明,在流量容量方面,动态信道分配(DCA)算法优于其他算法(A. Boukerche et al., 2004)。但是它们需要大量的信令,并且增加了向用户分配信道的延迟。另一方面,固定信道分配(FCA)是蜂窝网络中最简单、最快速的一种方式,但由于蜂窝网络中业务的不均匀性,使得固定信道分配的业务容量较差。在一些实际情况下,这两种技术都不能令人满意地工作,例如,如果一个或多个低通信量小区位于周围通信量大的小区;原因可能是地理上的(例如在城市中心存在一个湖泊),社会上的(例如一个低调的地区)或任何其他。在这项工作中,我们提出了一种新的FCA方案,用于这种情况下的信道分配。该分析是针对GSM分块网络进行的。我们不是在解决临时热点的问题,而是在分析长期的交通不平衡。可以观察到,在服务等级(GOS)的增强与共信道用户接收到的语音质量的下降之间存在权衡。这项工作解决了这种权衡
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of a new fixed channel allocation scheme for a sectorized GSM cellular network
A GSM cellular network contains many cells which are connected to a main control unit called main switching centre (MSC). Each cell is responsible to provide a wireless duplex channel to mobile users of its area. The circuitry used at cells for the above purpose is called base transreceiver station (BTS). The channels in wireless networks are a scare resource thus the allotment of channels to the cells has a greater impact on the traffic performance of the network. It is shown that in terms of traffic capacity the dynamic channel allocation (DCA) algorithms outperform other algorithms (A. Boukerche et al., 2004). But they require heavy signaling and increases delay in channel allocation to the users. On the other hand fixed channel allocation (FCA) is simplest and fastest but have poor traffic capacity due to non uniform nature of the traffic in cellular networks. In some practical scenario neither of these techniques works satisfactory e.g. if one or more low traffic cells are located with heavy traffic surrounding cells; the reasons may be geographical (e.g. a lake exists in centre of city), social (e.g. a low profile area) or any other. In this work we have proposed a new FCA scheme for channel allocation in such scenario. The analysis is done for a sectorized GSM network. We are not addressing the problem of temporary hot spots but we are analyzing the long term traffic imbalance. It is observed that there exits a tradeoff between enhancement in grade of service (GOS) so achieved and the degradation in the voice quality received by cochannel users. This tradeoff is addressed in this work
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