Detecting Relative Amplitude of IR Signals with Active Sensors and Its Application to a Positioning System

Author:

Aparicio-Esteve Elena,Hernández ÁlvaroORCID,Ureña JesúsORCID,Villadangos José ManuelORCID,Lluva Sergio,Pérez-Rubio María CarmenORCID

Abstract

Nowadays, there is an increasing interest in smart systems, e.g., smart metering or smart spaces, for which active sensing plays an important role. In such systems, the sample or environment to be measured is irradiated with a signal (acoustic, infrared, radio-frequency…) and some of their features are determined from the transmitted or reflected part of the original signal. In this work, infrared (IR) signals are emitted from different sources (four in this case) and received by a unique quadrature angular diversity aperture (QADA) sensor. A code division multiple access (CDMA) technique is used to deal with the simultaneous transmission of all the signals and their separation (depending on the source) at the receiver’s processing stage. Furthermore, the use of correlation techniques allows the receiver to determine the amount of energy received from each transmitter, by quantifying the main correlation peaks. This technique can be used in any system requiring active sensing; in the particular case of the IR positioning system presented here, the relative amplitudes of those peaks are used to determine the central incidence point of the light from each emitter on the QADA. The proposal tackles the typical phenomena, such as distortions caused by the transducer impulse response, the near-far effect in CDMA-based systems, multipath transmissions, the correlation degradation from non-coherent demodulations, etc. Finally, for each emitter, the angle of incidence on the QADA receiver is estimated, assuming that it is on a horizontal plane, although with any rotation on the vertical axis Z. With the estimated angles and the known positions of the LED emitters, the position (x, y, z) of the receiver is determined. The system is validated at different positions in a volume of 3 × 3 × 3.4 m3 obtaining average errors of 7.1, 5.4, and 47.3 cm in the X, Y and Z axes, respectively.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Conditioning Stage of a QADA Receiver for a Large Range IR Positioning System;2024 IEEE International Instrumentation and Measurement Technology Conference (I2MTC);2024-05-20

2. High-Rate Acquisition System for an Infrared LPS;2023 38th Conference on Design of Circuits and Integrated Systems (DCIS);2023-11-15

3. Centralized Optical 3D Positioning System for Emitting Tags;2023 13th International Conference on Indoor Positioning and Indoor Navigation (IPIN);2023-09-25

4. Experimental Evaluation of a Machine Learning-Based RSS Localization Method Using Gaussian Processes and a Quadrant Photodiode;Journal of Lightwave Technology;2022

5. Using Perspective-n-Point Algorithms for a Local Positioning System Based on LEDs and a QADA Receiver;Sensors;2021-09-30

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