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首页> 外文期刊>International journal of antennas and propagation >A Novel Enhanced Positioning Trilateration Algorithm Implemented for Medical Implant In-Body Localization
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A Novel Enhanced Positioning Trilateration Algorithm Implemented for Medical Implant In-Body Localization

机译:一种用于植入物体内定位的新型增强定位三边测量算法

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Medical implants based on wireless communication will play crucial role in healthcare systems. Some applications need to know the exact position of each implant. RF positioning seems to be an effective approach for implant localization. The two most common positioning data typically used for RF positioning are received signal strength and time of flight of a radio signal between transmitter and receivers (medical implant and network of reference devices with known position). This leads to positioning methods: received signal strength (RSS) and time of arrival (ToA). Both methods are based on trilateration. Used positioning data are very important, but the positioning algorithm which estimates the implant position is important as well. In this paper, the proposal of novel algorithm for trilateration is presented. The proposed algorithm improves the quality of basic trilateration algorithms with the same quality of measured positioning data. It is called Enhanced Positioning Trilateration Algorithm (EPTA). The proposed algorithm can be divided into two phases. The first phase is focused on the selection of the most suitable sensors for position estimation. The goal of the second one lies in the positioning accuracy improving by adaptive algorithm. Finally, we provide performance analysis of the proposed algorithm by computer simulations.
机译:基于无线通信的医疗植入物将在医疗保健系统中发挥关键作用。一些应用需要知道每个植入物的确切位置。 RF定位似乎是植入物定位的有效方法。通常用于RF定位的两个最常见的定位数据是接收信号强度和无线电信号在发射器和接收器(具有已知位置的参考装置的医疗植入物和网络)之间的飞行时间。这导致了定位方法:接收信号强度(RSS)和到达时间(ToA)。两种方法都基于三边测量。使用的定位数据非常重要,但是估计植入物位置的定位算法也很重要。本文提出了一种新的三边测量算法的建议。所提出的算法提高了基本三边测量算法的质量,而测量的定位数据质量却与之相同。它称为增强定位三边测量算法(EPTA)。所提出的算法可以分为两个阶段。第一阶段的重点是为位置估计选择最合适的传感器。第二个目标是通过自适应算法提高定位精度。最后,我们通过计算机仿真对提出的算法进行性能分析。

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