标题: | 两层式无线非同步传输模式网路细胞指派问题的研究 A Study of Cell Assignment Problem of the Two-Level wireless ATM Network |
作者: | 丁德荣 Der-Rong Din 曾宪雄 Shian-Shyong Tseng 资讯科学与工程研究所 |
关键字: | 细胞指派问题;无线非同步传输模式网路;基因演算法;模拟退火;启发式演算法;cell assignment problem;wireless ATM;genetic algorithm;simulated annealing;heuristic algorithm |
公开日期: | 2000 |
摘要: | 近来,扩充非同步传输模式(ATM)的技术,以便能应用于无线通讯环境的许多议题已引起广泛的兴趣与研究。而其主要的动机是在无线通讯网路与非同步传输模式网路之间,设计一个完整无瑕之连结;及在实际生活中对于行动多媒体之服务的急切需求。于本文中,我们将研究个人通讯服务(PCS)系统中之基地台指派至ATM网路中之交换器的问题。此问题讨论:若给定一个行动通讯系统及一个非同步传输模式网路,并假设基地台及交换器之位置为固定且已知,则如何将基地台指派及连接至交换器以获得最佳的效率。 在本论文内,我们首先以一个复杂的整数规划模式来定义此问题,因为找出此问题之最佳解答为一个NP-Hard的问题,故我们发展数个启发式演算法,基因演算法及模拟退火演算法来解决此问题。实验之结果显示出,这些演算法获得良好之效率。 其次,因为行动电话的快速普及,导致话务量大增;而基地台本身有通话容量的限制,导致必须建立新的基地台或经过细胞分裂的过程,以增加基地台的通话量进而能提供较佳的通话品质。而当基地台增加的同时,新基地台与宽频骨干的交换器之间的连线方式亦是一个亟待解决的问题。另外,基于可靠度及网路可用度的考量,我们也考虑到当基地台所指派的交换器不只一个时的派模式。针对不同的模式,我们均发展出基因演算法用以解决。 Recently, there has been some interest in extending ATM (Asynchronous Transfer Mode) technology to the wireless environment. The motivation behind this extension (termed wireless ATM) includes the desire for seamless interconnection of wireless and ATM networks, and the need to support emerging mobile multimedia services. In this dissertation, we investigate the problem of optimum assignment of cells in PCS (Personal Communication Service) to switches in a wireless ATM network. Given cells and switches in an ATM network (whose locations are fixed and known), the problem is assigning cells to switches such that the cost can be minimized. The cost has two components, one is the cost of handoffs that involve two switches, and the other is the cost of cabling. In this dissertation, first, this problem named cell assignment problem is modeled as a complex integer-programming problem. Since finding an optimal solution to this problem is NP-hard, we develop several heuristic algorithms, genetic algorithms, and a simulated annealing algorithm to solve this problem. Experimental results show that these algorithms have good efficiency. Second, due to the tremendous growth in the usage of mobile phone, the call may be dropped if the congestion occurred at the base station. To provide better quality of the communication, new base stations may be added into the PCS network or cell may be split to increase the whole capacities of the PCS network. Moreover, the original connections between cells and switches may be out of date or the handoff traffic between cells may be changed. After the number of base stations is increased, how to assign newly added and split cells of PCS network to switches in ATM network such that the total cost is minimized is an important issue. Furthermore, extended cell assignment problem and the network expansion problem are formulated and solved. Beside, since the availability and the reliability of the wireless ATM network are important. We also solve the dual-homing cell assignment problem, which allows each cell can be assigned to two switches in ATM network. For the different kinds of cell assignment problem, genetic algorithms are proposed to solve these problems. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT890394036 http://hdl.handle.net/11536/66938 |
显示于类别: | Thesis |