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Designing radio interferometric positioning systems for indoor localizations in millimeter wave bands

机译:设计毫米波波段室内定位的无线电干涉定位系统

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Recently, millimeter wave (MMW) systems that operate at 60 GHz are proposed for the short-range communications to reduce the interference. Taking advantage of the spectrum characteristics of MMW bands, the indoor localization system using the radio interferometric positioning system (RIPS) employing space-time coding is proposed in this paper. The RIPS is a promising localization scheme for its low complexity and high accuracy, and the space-time RIPS (STRIPS) is the enhancement of the RIPS to work in MMW bands under the flat-fading channel. Two anchor nodes simultaneously transmit at two time slots with different frequencies, and the signal is sampled at the low-sampling frequency at the target node. The STRIPS achieve the range-difference (RD) estimate without approximation and is immune to channel fading effects. To accommodate the frequency offsets, the ESPRIT-based algorithm is adopted. Monte-Carlo simulation results are presented to confirm the performance of the STRIPS.
机译:近来,针对短距离通信提出了在60 GHz下运行的毫米波(MMW)系统,以减少干扰。利用MMW频段的频谱特性,提出了一种采用时空编码的无线干涉定位系统(RIPS)的室内定位系统。 RIPS的低复杂度和高精度是一种很有前途的本地化方案,而时空RIPS(STRIPS)是RIPS的增强,使其可以在平坦衰落信道下的MMW频段中工作。两个锚点节点同时在两个时隙中以不同的频率进行传输,并且在目标节点处以低采样频率对信号进行采样。 STRIPS无需近似即可实现范围差(RD)估计,并且不受信道衰落效应的影响。为了适应频率偏移,采用了基于ESPRIT的算法。提出了蒙特卡洛模拟结果,以确认STRIPS的性能。

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