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On the UWB system coexistence with GSM900, UMTS/WCDMA, and GPS

机译:在UWB系统上与GSM900,UMTS / WCDMA和GPS共存

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This paper evaluates the level of interference caused by different ultra-wideband (UWB) signals to other various radio systems, as well as the performance degradation of UWB systems in the presence of narrowband interference and pulsed jamming. The in-band interference caused by a selection of UWB signals is calculated at GSM900, UMTS/wideband code-division multiple-access (WCDMA), and Global Position System (GPS) frequency bands as a function of the UWB pulsewidth. Several short-pulse waveforms, based on the Gaussian pulse, can be used to generate UWB transmission. The two UWB system concepts studied here are time hopping and direct sequence spread spectrum. Baseband binary pulse amplitude modulation is used as the data modulation scheme. Proper selection of pulse waveform and pulsewidth allows one to avoid some rejected frequency bands up to a certain limit. However, the pulse shape is also intertwined with the data rate demands. If short-pulses are used in UWB communication the high-pass filtered waveforms are preferred according to the results. The use of long pulses, however, favors the generic Gaussian waveform instead. An UWB system suffers most from narrowband systems if the narrowband interference and the nominal center frequency of the UWB signal overlap. This is proved by bit-error rate simulations in an additive white Gaussian noise (AWGN) channel with interference at global system for mobile communication (GSM) and UMTS/WCDMA frequencies.
机译:本文评估了由不同的超宽带(UWB)信号对其他各种无线电系统造成的干扰程度,以及在存在窄带干扰和脉冲干扰的情况下UWB系统的性能下降。在GSM900,UMTS /宽带码分多址(WCDMA)和全球定位系统(GPS)频段上,根据UWB脉宽计算了由选择UWB信号引起的带内干扰。基于高斯脉冲的几种短脉冲波形可用于生成UWB传输。此处研究的两个UWB系统概念是跳时和直接序列扩频。基带二进制脉冲幅度调制被用作数据调制方案。正确选择脉冲波形和脉冲宽度可以避免某些被拒绝的频带达到一定限制。但是,脉冲形状也与数据速率要求交织在一起。如果在UWB通信中使用短脉冲,则根据结果,首选高通滤波波形。但是,长脉冲的使用代替了一般的高斯波形。如果窄带干扰和UWB信号的标称中心频率重叠,则UWB系统受窄带系统的影响最大。在加性高斯白噪声(AWGN)信道中的误码率仿真证明了这一点,在全球移动通信系统(GSM)和UMTS / WCDMA频率上存在干扰。

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