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Optimal discrete spreading factor determination for uplink resource allocation in multiservice UMTS and HSUPA networks

机译:多业务UMTS和HSUPA网络中用于上行链路资源分配的最优离散扩展因子确定

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Attention to resource allocation algorithms for multiservice Code Division Multiple Access CDMA networks has focused on algorithms maximizing the uplink aggregate throughput. In the present paper we address the problem of the joint power and spreading factor (SF) allocation to non real-time (NRT) terminals on the uplink, once real time constraints are satisfied. An optimal algorithm is proposed, that maximizes the uplink aggregate NRT throughput while allocating SF in a set of discrete values, as those used in 3G systems. It is shown that the results obtained are close to the theoretical upper bound, and that thanks to power control, more NRT services can be admitted. Compared to Univeral Mobile Telecommunications System (UMTS) services, the High Speed Uplink Packet Access (HSUPA) services increase the aggregate uplink NRT throughput, especially at low cell's load, and decrease the interferences generated at the base station level at high cell's load. In return, the number of simultaneously served NRT services is significantly lower.
机译:对用于多业务码分多址CDMA网络的资源分配算法的关注已集中在使上行链路总吞吐量最大化的算法上。在本文中,一旦满足实时约束,我们将解决联合功率和扩频因子(SF)分配给上行链路上非实时(NRT)终端的问题。提出了一种最佳算法,该算法可以最大化上行链路聚合NRT吞吐量,同时在一组离散值中分配SF,如3G系统中所使用的那样。结果表明,所获得的结果接近理论上限,并且由于功率控制,可以接纳更多的NRT服务。与通用移动电信系统(UMTS)服务相比,高速上行链路分组接入(HSUPA)服务增加了上行链路NRT的总吞吐量,尤其是在低小区负载时,并减少了在高小区负载时在基站级别产生的干扰。作为回报,同时提供服务的NRT服务的数量要少得多。

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