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An Integrated RF and Ambient Magnetic Field Approach for Indoor Positioning

机译:室内定位的集成RF和环境磁场方法

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摘要

Background: A new technology for indoor positioning is proposed in this paper by applying combined RFID (Radio Frequency ID) / IRID (Infrared ID) and spatial fluctuations of the ambient magnetic field. Due to the presence of interior reinforced concrete construction, furniture, electronics and other indoor subjects, the distribution of the magnetic field intensity is fluctuated. Methods: Based on the spatial fluctuations, a particle filter algorithm can be employed to locate the indoor target. However, the computation power required for positioning in a large area could be very high because of the complexity of the application of the particle filter. Results: Similar patterns of magnetic field in large area could also result in wrong location. Because of the short and tunable radiating range of the RF signal and the short response time of identification signal, the target may be positioned within a certain range by using RFID. Therefore, RFID/IRID positioning technique is introduced to approximate the position of the target and then particle filter is applied for precise positioning in the range of RFID/IRID signals. Conclusion: This can effectively reduce the number of required particles to carry out the particle filter algorithm, thereby reducing the amount of computation power, reducing the response time of the positioning and improving the accuracy of the estimated target position.
机译:背景:本文提出了一种新技术,通过应用RFID(射频ID)/ IRID(红外ID)和环境磁场的空间波动,提出了一种新的室内定位技术。由于内部钢筋混凝土施工,家具,电子和其他室内受试者,磁场强度的分布波动。方法:基于空间波动,可以采用粒子滤波器算法来定位室内目标。然而,由于颗粒滤波器的应用的复杂性,在大面积中定位所需的计算能力可能非常高。结果:大面积中的磁场类似模式也可能导致错误的位置。由于RF信号的短路和可调辐射范围和识别信号的短响应时间,因此可以通过使用RFID定位在一定范围内。因此,引入RFID / IRID定位技术以近似目标的位置,然后施加粒子滤波器以在RFID / IRID信号的范围内进行精确定位。结论:这可以有效地降低所需粒子的数量来执行粒子滤波器算法,从而减少计算能力的量,减少定位的响应时间并提高估计目标位置的准确性。

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