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A feasibility study of RIP using 2.4 GHz 802.15.4 radios

机译:使用2.4 GHz 802.15.4无线电进行RIP的可行性研究

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This paper contains a feasibility study of Radio Interferometric Positioning (RIP) implemented on a widely used 2.4 GHz radio (CC2430). RIP is a relatively new localization technique that uses signal strength measurements. Although RIP outperforms other RSS-based localization techniques, it imposes a set of unique requirements on the used radios. Therefore, it is not surprising that all existing RIP implementations use the same radio (CC1000), which operates below the 1 GHz range. This paper analyzes to what extent the CC2430 complies with these requirements. This analysis shows that the CC2430 platform introduces large and dynamic sources of errors. Measurements with a CC2430 test bed in a line-of-sight indoor environment verify this. The measurements indicate that the existing RIP algorithm cannot cope with these types of errors, and will incur a relatively low accuracy of 3.1 meter. Based on these results, we made an initial implementation of a new algorithm, which can cope with these errors, and decreases this positioning error by a factor of two to 1.5 meter accuracy.
机译:本文包含在广泛使用的2.4 GHz无线电(CC2430)上实现的无线电干涉定位(RIP)的可行性研究。 RIP是一种相对较新的定位技术,它使用信号强度测量。尽管RIP优于其他基于RSS的定位技术,但它对使用的无线电设备提出了一系列独特的要求。因此,所有现有的RIP实现都使用工作在1 GHz范围以下的同一无线电(CC1000)也就不足为奇了。本文分析了CC2430在何种程度上符合这些要求。该分析表明,CC2430平台引入了大量动态错误源。在视线室内环境中使用CC2430测试台进行的测量可以验证这一点。测量结果表明,现有的RIP算法无法应对这些类型的错误,并且会产生3.1米的较低精度。基于这些结果,我们初步实现了一种新算法,该算法可以应对这些误差,并将定位误差降低2到1.5米。

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