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A New Approach To Synthesing Radio Frequency Channel Characteristics models For Testing Of Wcdma Cellular Communication System

机译:Wcdma蜂窝通信系统测试的综合射频信道特性模型的新方法

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Channel modeling for mobile cellular communication systems is a rapidly changing area, and the models are becoming increasingly accurate and more comprehensive to allow radio channel simulators to be implemented either by software or hardware to simulate diversity systems with many users. However, the challenge is to develop models that exhaustively reproduce the propagation scenarios accounted in reality. The paper introduces a new method of synthesizing RF channels of cellular communication systems for computer simulation and for controlled laboratory testing that is based on extensive observations of real signals in the field. Channel parameters are utilized as time histories of deterministic estimates derived from the field measurements. The stored channel data then be used to reconstruct the field channel conditions for laboratory testing. An iterative gradient search is performed to refine the state estimate (measurements are compared to the modeled output). The processing is performed using a WCDMA acquire search (Primary Synchronization Code Acquisition) to estimate the CPICH power and PN position of detectable primary scrambling. Full description of this deterministic stored channel impulse response model is presented. Using this methodology, an accurate channel model is possible, because it provides actual information from the channel. This was done to show how some physical link aspects such as power control and data rate can be tested for quality performance of these systems under real field conditions due to the ability of constructing controlled laboratory testing, though this type of controlled testing is extremely difficult to accomplish in the field due to the practical constraints.
机译:用于移动蜂窝通信系统的信道建模是一个快速变化的领域,并且模型正变得越来越精确和更加全面,以允许通过软件或硬件来实现无线电信道模拟器,以模拟具有许多用户的分集系统。但是,挑战在于开发一种模型,该模型详尽地再现现实中考虑的传播场景。本文介绍了一种新的合成蜂窝通信系统RF通道的方法,该方法用于计算机模拟和受控实验室测试,该方法基于对现场实际信号的广泛观察。信道参数被用作从现场测量中得出的确定性估计的时间历史。然后,存储的通道数据将用于重建现场通道条件以进行实验室测试。执行迭代梯度搜索以细化状态估计(将测量结果与建模输出进行比较)。使用WCDMA获取搜索(主同步码获取)执行该处理,以估计可检测的主加扰的CPICH功率和PN位置。给出了此确定性存储通道脉冲响应模型的完整描述。使用这种方法,可以提供准确的渠道模型,因为它可以提供渠道的实际信息。这样做是为了说明如何通过构建受控实验室测试的能力来测试某些物理链路方面(例如功率控制和数据速率)在实际条件下如何针对这些系统的质量性能进行测试,尽管这种受控测试非常难以由于实际限制,无法在现场完成。

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