标题: 多媒体分码多重进接细胞网路之功率及允入控制
Power and Admission Control for Multimedia CDMA Cellular Networks
作者: 王瑞腾
Jui Teng Wang
李程辉
Tsern-Huei Lee
电信工程研究所
关键字: 分码多重进接;多媒体;功率控制;允入控制;CDMA;Multimedia;Power control;Admission control
公开日期: 1998
摘要: 本论文主要在研究多媒体分码多重进接网路的功率控制及允入控制,在此研究中,使用者可以有不同的资料率及服务品质要求(以位元能量对干扰之比值来表示)。在集中式功率控制方面,本论文推导出最佳之合适功率(能满足所有使用者服务品质要求之功率),此功率可以藉着解一组线性方程式而得到。在分散式功率控制方面,本论文证明了只要系统存在有合适功率,则所提出的分散式功率控制演算法均能找到一组解。此外,本论文亦提出一个仅作部分链路增益量测之类集中式功率控制演算法来加速找到合适功率,数值结果显示其找到合适功率的速度会增快许多。
有关多媒体分码多重进接网路的允入控制技术最近在[13,14]中被提出,有考虑及未考虑活动力因素之允入法则和系统容量分别被推导出来,由于在他们的分析中,自己的发射功率被视为干扰的一部份,因此其所得到的为系统容量的下界;若多路径干扰分量可以完全被解析出来,则吾人可以得到一个较乐观的系统容量上界,本论文即针对此推导出最佳之功率配置及能满足所有使用者服务品质要求的允入法则,从数值结果可以发现其系统容量确实可以获得明显之提升。数个可以确保延迟界限要求的进接控制策略亦分别被提出,模拟结果显示这些策略可以使系统接受更多的连结。
We study in this dissertation both power control and admission control for multimedia CDMA networks. In our study, users can have different data rates as well as different quality of service (QoS) requirements characterized by bit energy-to-interference ratios. For centralized power control, we derive an optimal feasible power set which can be obtained by solving a set of linear equations. For distributed power control, we prove that, as long as there are solutions of power levels for all users to meet their QoS requirements, the proposed distributed power control algorithm can always find one. A quasi-centralized power control algorithm with partial link gain measurements is proposed to speed up the process in finding a feasible power set. In the algorithm, a base station measures the link gains for all mobiles connected to it. Numerical results show that quasi-centralized power control can find a feasible power set much faster than distributed power control.
An admission control technique for multimedia CDMA networks has recently been proposed [13,14] to provide integrated services in a wireless packet network. Admission criteria and system capacities with and without considering user activity factors were derived. The analysis gives a lower bound of system capacity because a user's transmitted power is considered part of the interference to its own signal. In this dissertation, we present an optimistic upper bound assuming that there is no multipath fading or the energy of a signal in all multipath components can be fully resolved. An optimum power vector assignment and a simple criterion for all users to simultaneously achieve their quality of service requirements (in terms of bit energy-to-interference density ratios) are derived. We found from numerical examples that, compared with the lower bound given in [13,14], significant improvement can be obtained if multipath fading can be satisfactorily handled. Several access control schemes are also studied to guarantee delay bound requirements. Simulation results reveal that more connections can be further accommodated with access control.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT870435106
http://hdl.handle.net/11536/64566
显示于类别:Thesis