首页> 外文期刊>Wireless communications & mobile computing >An adaptive space-time receiver for high-capacity communications systems based on multichannel multirate DS-CDMA
【24h】

An adaptive space-time receiver for high-capacity communications systems based on multichannel multirate DS-CDMA

机译:基于多通道多速率DS-CDMA的用于大容量通信系统的自适应空时接收机

获取原文
获取原文并翻译 | 示例
           

摘要

The capacity of wireless communications systems based upon Direct-Sequence Code Division Multiple Access (DS-CDMA) is severely reduced by Multiple Access Interference (MAI), especially at higher bit rates. Therefore, methods aimed at limiting the MAI are mandatory solutions in order to face the ever-growing number of subscribers of next-generation wireless systems. Smart Antennas are a promising technology for improving the performance of high-capacity mobile communications systems, because they are able to increase the Signal to Interference plus Noise power Ratio (SINR) of the received signals by dynamically adapting the equivalent array beam pattern in order 10 track the movements of the users within the cell. Moreover, Spatiotemporal RAKE receivers, representing the synergy between beamforming techniques and RAKE receiver structures, are one of the best candidates for the realization of high-capacity multichannel (CDMA) wireless systems. due to their ability in exploiting both the spatial and temporal diversity inherently offered by wireless channels. This paper is focused on the structure of a Spatiotemporal RAKE receiver for the uplink of multichannel DS-CDMA systems. Its main feature is the capability of coherently combining the multipaths of the useful signal across both space and time, while simultaneously reducing the MAI. A bind anti adaptive beamforming algorithm realizing such a spatiotemporal RAKE receiver is presented. It exploits the knowledge and the synchronization of the scrambling code uniquely assigned to an addressed user, requiring neither estimates of the spatiotemporal propagation channel nor training or pilot sequences. Its design philosophy consists in the maximization of the SINR at the beamformer output, and it is based upon an orthogonal projection.
机译:多址干扰(MAI)严重降低了基于直接序列码分多址(DS-CDMA)的无线通信系统的容量,尤其是在更高的比特率下。因此,旨在限制MAI的方法是强制性的解决方案,以应对下一代无线系统不断增长的用户数量。智能天线是一种用于改善大容量移动通信系统性能的有前途的技术,因为它们能够通过动态适应10阶等效阵列波束方向图来增加接收信号的信号干扰和噪声功率比(SINR)。跟踪用户在单元内的移动。此外,时空RAKE接收机代表了波束成形技术与RAKE接收机结构之间的协同作用,是实现高容量多信道(CDMA)无线系统的最佳候选者之一。由于它们具有利用无线信道固有提供的空间和时间分集的能力。本文的重点是用于多信道DS-CDMA系统上行链路的时空RAKE接收机的结构。它的主要特点是能够在空间和时间上相结合地组合有用信号的多径,同时减少MAI。提出了一种实现这种时空RAKE接收机的绑定反自适应波束形成算法。它利用了唯一分配给寻址用户的扰码的知识和同步,既不需要估计时空传播信道,也不需要训练或导频序列。它的设计理念在于最大化波束形成器输出处的SINR,并且它基于正交投影。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号