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Spatial and temporal processing for Global Navigation Satellite Systems: the GPS receiver paradigm

机译:全球导航卫星系统的时空处理:GPS接收器范例

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We address the problem of navigation data demodulation by an adaptive GPS receiver that utilizes a bank of single-satellite linear-tap-delay filters and employs antenna-array reception. The presence of an antenna array allows the receiver to operate in the spatial domain in addition to the temporal (code) domain. We investigate disjoint-domain as well as joint-domain space-time GPS signal processing techniques and we consider design criteria of conventional matched-filter (MF) type, minimum-mean-square-error (MMSE), minimum-variance-distortionless-response (MVDR) type and auxiliary-vector (AV) type. The proposed structures utilize filters that operate at a fraction of the navigation data bit period (1 ms) and are followed by hard-decision detectors. Hard decisions taken over a navigation data bit period (20 ms) are then combined according to a simple combining rule for further bit-error-rate (BER) performance improvements. Analytic, numerical, and simulation comparisons illustrate the relative merits of the investigated receiver design alternatives.
机译:我们解决了通过自适应GPS接收器对导航数据进行解调的问题,该GPS接收器利用了一组单卫星线性抽头延迟滤波器并采用了天线阵列接收。天线阵列的存在允许接收器除了在时间(代码)域之外还在空间域中操作。我们研究不相交域以及联合域时空GPS信号处理技术,并考虑了常规匹配滤波器(MF)类型,最小均方误差(MMSE),最小方差无失真-响应(MVDR)类型和辅助向量(AV)类型。所提出的结构利用以导航数据比特周期的一小部分(1ms)工作的滤波器,并且紧随其后的是硬判决检测器。然后,根据简单的合并规则将在导航数据比特周期(20 ms)上做出的硬性决定进行合并,以进一步提高误码率(BER)性能。解析,数值和仿真比较说明了所研究的接收机设计备选方案的相对优点。

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