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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Detection Capability of Downlink Signals in Mobile WiMAX and 3GPP LTE with an FFT-Based UWB Receiver
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Detection Capability of Downlink Signals in Mobile WiMAX and 3GPP LTE with an FFT-Based UWB Receiver

机译:具有基于FFT的UWB接收器的移动WiMAX和3GPP LTE中下行信号的检测能力

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摘要

The paper presents capability of signal detection for realizing coexistence between broadband wireless access (BWA) systems and ultra wideband (UWB) devices. The capability is experimentally evaluated for baseband signals of downlink (DL) in both mobile WiMAX and 3GPP LTE. An UWB receiver based on fast Fourier transform (FFT) compliant with MB-OFDM standard is implemented as a detector of the BWA signals. The capability is evaluated in terms of elapsed time required to achieve signal detection with probability of 99% by the implemented FFT-based UWB receiver at different conditions of the receiver. Decisions on the signal detection are made by the simplest method which is by setting a threshold which is determined by noise floor of the receiver as reference. The experiments have been conducted though baseband signals for both AWGN and multipath fading channels without any synchronization between the DL signals and UWB receiver. In AWGN environment, results show that the elapsed time depends on the duty ratio of the DL signal to be detected, however, the correlation between the required time and duty ratio is not linear since their envelopes of the DL signals are not constant. In multi-path fading environments based on channel models commonly employed as mobile radio environments, the required time for the signal detection becomes as 17 times longer than that in AWGN due to its signal attenuation. For robust signal detection in multipath fading environments, it has been revealed that the number of quantization bits at ADC is crucial through the experiments.
机译:本文提出了实现宽带无线接入(BWA)系统与超宽带(UWB)设备之间共存的信号检测能力。对移动WiMAX和3GPP LTE中的下行链路(DL)的基带信号进行了实验评估。基于MB-OFDM标准的基于快速傅立叶变换(FFT)的UWB接收机被用作BWA信号的检测器。通过已实现的基于FFT的UWB接收机在接收机的不同条件下以99%的概率实现信号检测所需的经过时间来评估该能力。信号检测的决定是通过最简单的方法进行的,即通过设置一个阈值来确定,该阈值由接收机的本底噪声确定。通过AWGN和多径衰落信道的基带信号进行了实验,而DL信号和UWB接收机之间没有任何同步。在AWGN环境中,结果显示经过的时间取决于要检测的DL信号的占空比,但是,由于DL信号的包络不是恒定的,因此所需时间和占空比之间的相关性不是线性的。在基于通常用作移动无线电环境的信道模型的多径衰落环境中,由于其信号衰减,信号检测所需的时间比AWGN中的检测时间长17倍。对于多径衰落环境中的稳健信号检测,已经揭示出通过实验,ADC的量化位数至关重要。

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