Coherent Detector for Pseudo-FSK Backscatter Under Ambient Constant Envelope Illumination

G. Vougioukas, Panos N. Alevizos, A. Bletsas
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引用次数: 8

Abstract

This work studies ambient backscatter, where the tag utilizes a frequency-shifted form of on-off keying (OOK), which may be coined as pseudo-frequency shift keying (pseudo-FSK). Such scheme, offers the possibility of simple, frequency-domain multiple access (due to FSK), by appropriate selection of the switching frequencies among (possibly receiverless) tags, while reserving bandwidth (due to OOK). A constant envelope-modulated ambient signal is assumed to illuminate the tag, resembling signals from (analog) FM radio, (digital) minimum-shift keying (MSK), or phase-shift keying (PSK) broadcasting stations. Fully coherent, maximum likelihood (ML) detection is derived for tag information, without estimating or detecting the ambient signal; instead, the law of large numbers is exploited, in conjunction with channel estimation techniques, even though the ambient unknown signal changes between successive tag bits. Closed-form expression for the probability of error is also given and simulations verify theoretical results. Ambient is a special case of bistatic backscatter; thus, useful design principles for ambient systems can stem from the bistatic backscatter literature.
环境恒定包络光照下伪fsk后向散射相干检测器
这项工作研究了环境后向散射,其中标签利用频移形式的开关键控(OOK),这可能被称为伪频移键控(伪fsk)。这种方案提供了简单的频域多址(由于FSK)的可能性,通过适当选择标签之间(可能无接收器)的切换频率,同时保留带宽(由于OOK)。假设一个恒定的包络调制环境信号照亮标签,类似于(模拟)调频无线电,(数字)最小移键控(MSK)或相移键控(PSK)广播电台的信号。标签信息的完全相干、最大似然(ML)检测,无需估计或检测环境信号;相反,大数定律被利用,与信道估计技术相结合,即使环境未知信号在连续的标签位之间变化。给出了误差概率的封闭表达式,并通过仿真验证了理论结果。环境是双基地后向散射的一种特殊情况;因此,对环境系统有用的设计原则可以从双基地后向散射文献中得到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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