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A precision receiver for CDMA communication using neural-based array processors.

机译:使用基于神经的阵列处理器进行CDMA通信的精密接收器。

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摘要

With rapid advances of deep-submicron semiconductor technology and progress in communication systems, our lives enter a new Multimedia Era: communicating in any place and at any time as evidenced by the availability of personal communication systems. Among all possible technologies, Code Division Multiple Access (CDMA) has been receiving more and more attention and the market of wireless communication with CDMA is booming since the year 1990.;CDMA is a spread spectrum technology. All of the CDMA users share the same bandwidth and their communication channels are separated by means of pseudorandom codes. The universal frequency reuse is crucial to the high spectral efficiency. To maintain high quality and high spectral efficiency in CDMA systems, the power difference of received signals should be as small as possible. In satellite communication, the high-power and low-power transmitter co-exist. In land communication, some users may be near the base-station and some may be far away. A 60 dB or more signal power difference is quite possible. This is called near-far problem. In 1986, S. Verdu illustrated in theoretical derivation that the optimal near-far resistance detector could be achieved. However, no electronic implementation has been developed so far.;The one-dimensional compact neural network is very suitable for communication receivers in CDMA systems. Its architecture is based on a combination of the locally connected cellular neural network and the fully-connected Hopfield neural network. The compact neural network is a very efficient architecture for electronic implementation. It exhibits high degree of fault tolerance, high data throughput rate, and low power consumption. By properly mapping the cost function of optimal near-far resistance detector onto the energy function of the compact neural network and applying the innovative hardware annealing technique, multiuser detector with optimized solution is achieved. Extensive computer simulation using MATLAB codes has been conducted. Satisfactory results are obtained. The neural network-based CDMA receiver-design is a very convincing solution in future personal communication systems.
机译:随着深亚微米半导体技术的迅猛发展和通信系统的进步,我们的生活进入了一个新的多媒体时代:在任何地方,任何时间进行通信,这可通过个人通信系统得到证明。自1990年以来,在所有可能的技术中,码分多址(CDMA)受到越来越多的关注,并且与CDMA的无线通信市场蓬勃发展。CDMA是一种扩频技术。所有的CDMA用户共享相同的带宽,并且它们的通信信道通过伪随机码分开。通用频率复用对于高频谱效率至关重要。为了在CDMA系统中保持高质量和高频谱效率,接收信号的功率差应尽可能小。在卫星通信中,高功率和低功率发射机共存。在陆地通信中,一些用户可能在基站附近,而某些用户可能在远处。 60 dB或更高的信号功率差是完全可能的。这称为远近问题。 1986年,S。Verdu在理论推论中证明了可以实现最佳的远近电阻检测器。但是,到目前为止,尚未开发出任何电子实现方法。一维紧凑型神经网络非常适合CDMA系统中的通信接收器。它的架构基于本地连接的细胞神经网络和完全连接的Hopfield神经网络的组合。紧凑型神经网络是用于电子实现的非常有效的体系结构。它具有高度的容错能力,高数据吞吐率和低功耗。通过将最佳近距离电阻检测器的成本函数正确映射到紧凑型神经网络的能量函数,并应用创新的硬件退火技术,可以实现具有优化解决方案的多用户检测器。已经使用MATLAB代码进行了广泛的计算机仿真。获得令人满意的结果。基于神经网络的CDMA接收器设计在未来的个人通信系统中是一种非常令人信服的解决方案。

著录项

  • 作者

    Chen, Cheng-Hsiung.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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