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A Performance Evaluation Framework for Direction Finding Using BLE AoA/AoD Receivers

IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, v.8 no.5, 2021년, pp.3331 - 3345  

Huang, Cheng (Southeast University, National ASIC System Engineering Center, Nanjing, China) ,  Zhuang, Yuan (Wuhan University, State Key Laboratory of Surveying, Mapping and Remote Sensing, Wuhan, China) ,  Liu, Hao (Southeast University, National ASIC System Engineering Center, Nanjing, China) ,  Li, Jianyu (Keysight Technologies, Shanghai, China) ,  Wang, Wei (Beelinker Technology, Suzhou, China)

Abstract AI-Helper 아이콘AI-Helper

Bluetooth low energy (BLE) has been significantly contributed to the Internet of Things applications due to its advantages, such as low power consumption and scalability. To further expand its applications, BLE has adopted the Angle of Arrival (AoA) and the angle of departure (AoD) to improve the ac...

참고문헌 (46)

  1. Belega, Daniel, Petri, Dario, Dallet, Dominique. Amplitude and Phase Estimation of Real-Valued Sine Wave via Frequency-Domain Linear Least-Squares Algorithms. IEEE transactions on instrumentation and measurement, vol.67, no.5, 1065-1077.

  2. 10.1109/ACSSC.2004.1399221 

  3. Liu, Hanli, Sun, Zheng, Tang, Dexian, Huang, Hongye, Kaneko, Tohru, Chen, Zhijie, Deng, Wei, Wu, Rui, Okada, Kenichi. A DPLL-Centric Bluetooth Low-Energy Transceiver With a 2.3-mW Interference-Tolerant Hybrid-Loop Receiver in 65-nm CMOS. IEEE journal of solid-state circuits, vol.53, no.12, 3672-3687.

  4. Introduction to Direction-of-Arrival Estimation chen 2010 

  5. Classical and Modern Direction-of-Arrival Estimation tuncer 2009 

  6. 10.1109/PIMRC.2019.8904093 

  7. Valencia-Velasco, Jose, Longoria-Gandara, Omar, Aldana-Lopez, Rodrigo, Pizano-Escalante, Luis. Low-Complexity Maximum-Likelihood Detector for IoT BLE Devices. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.7, no.6, 4737-4745.

  8. Yadong Yin, Yuepeng Yan, Chenjun Wei, Shaodan Yang. A Low-Power Low-Cost GFSK Demodulator With a Robust Frequency Offset Tolerance. IEEE transactions on circuits and systems. a publication of the IEEE Circuits and Systems Society. II, Express briefs, vol.61, no.9, 696-700.

  9. Liu, Yao-Hong, Purushothaman, Vijaya Kumar, Bachmann, Christian, Staszewski, Robert Bogdan. Design and Analysis of a DCO-Based Phase-Tracking RF Receiver for IoT Applications. IEEE journal of solid-state circuits, vol.54, no.3, 785-795.

  10. Abidi, A.A.. Direct-conversion radio transceivers for digital communications. IEEE journal of solid-state circuits, vol.30, no.12, 1399-1410.

  11. Bluetooth Core Specification V5 1 Feature Overview woolley 2019 

  12. Khan, Aftab, Wang, Stephen, Zhu, Ziming. Angle-of-Arrival Estimation Using an Adaptive Machine Learning Framework. IEEE communications letters : a publication of the IEEE Communications Society, vol.23, no.2, 294-297.

  13. Bluetooth Direction Finding A Technical Overview woolley 2019 

  14. SimpleLink™ Bluetooth® Low Energy CC2640R2F Wireless MCU LaunchPad™ Development Kit 2019 

  15. SimpleLink™ Angle of Arrival BoosterPack 2019 

  16. Bluetooth Test Suite Radio Frequency Physical Layer (RF PHY) Version RF-PHY TS p15 2020 

  17. Tests of Bluetooth Low Energy 5 1 Indoor Navigation–Direction Finding 2019 

  18. RF and Connectivity Tests for New Bluetooth V5 1 Standard With AoA/AoD Specifications 2019 

  19. Li, Hui, Sun, Sining, Wang, Jie. Direction of Arrival Estimation Using Amplitude and Phase Information in Low-Profile MIMO Arrays. IEEE transactions on antennas and propagation, vol.66, no.11, 6457-6462.

  20. Ma, Ruyu, Behdad, Nader. Broadband, Small-Aperture Direction-Finding Array With Azimuth and Elevation Estimation Capability. IEEE transactions on antennas and propagation, vol.68, no.4, 3163-3175.

  21. Lomine, Jimmy, Morlaas, Christophe, Imbert, Christophe, Aubert, Herve. Dual-Band Vector Sensor for Direction of Arrival Estimation of Incoming Electromagnetic Waves. IEEE transactions on antennas and propagation, vol.63, no.8, 3662-3671.

  22. Dead on arrival An empirical study of the Bluetooth 5 1 positioning system cominelli 2019 

  23. Feng, Daquan, Wang, Chunqi, He, Chunlong, Zhuang, Yuan, Xia, Xiang-Gen. Kalman-Filter-Based Integration of IMU and UWB for High-Accuracy Indoor Positioning and Navigation. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.7, no.4, 3133-3146.

  24. N7606C Signal Studio for Bluetooth 2020 

  25. Zhuang, Yuan, Yang, Jun, Qi, Longning, Li, You, Cao, Yue, El-Sheimy, Naser. A Pervasive Integration Platform of Low-Cost MEMS Sensors and Wireless Signals for Indoor Localization. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.5, no.6, 4616-4631.

  26. Wang, Xuyu, Gao, Lingjun, Mao, Shiwen. CSI Phase Fingerprinting for Indoor Localization With a Deep Learning Approach. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.3, no.6, 1113-1123.

  27. 10.1109/WCNC.2019.8885791 

  28. Zhuang, Yuan, Wang, Qin, Shi, Min, Cao, Pan, Qi, Longning, Yang, Jun. Low-Power Centimeter-Level Localization for Indoor Mobile Robots Based on Ensemble Kalman Smoother Using Received Signal Strength. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.6, no.4, 6513-6522.

  29. He, Wei, Ho, Pin-Han, Tapolcai, Janos. Beacon Deployment for Unambiguous Positioning. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.4, no.5, 1370-1379.

  30. Alletto, Stefano, Cucchiara, Rita, Del Fiore, Giuseppe, Mainetti, Luca, Mighali, Vincenzo, Patrono, Luigi, Serra, Giuseppe. An Indoor Location-Aware System for an IoT-Based Smart Museum. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.3, no.2, 244-253.

  31. Li, You, He, Zhe, Gao, Zhouzheng, Zhuang, Yuan, Shi, Chuang, El-Sheimy, Naser. Toward Robust Crowdsourcing-Based Localization: A Fingerprinting Accuracy Indicator Enhanced Wireless/Magnetic/Inertial Integration Approach. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.6, no.2, 3585-3600.

  32. Huang, Cheng, Liu, Hao, Wang, Wei, Li, Jianyu. A Compact and Cost-Effective BLE Beacon With Multiprotocol and Dynamic Content Advertising for IoT Application. IEEE Internet of things journal : a joint publication of the IEEE Sensors Council, the IEEE Communications Society, the IEEE Computer Society, the IEEE Signal Processing Society, vol.7, no.3, 2309-2320.

  33. Zafari, Faheem, Gkelias, Athanasios, Leung, Kin K.. A Survey of Indoor Localization Systems and Technologies. IEEE Communications surveys and tutorials, vol.21, no.3, 2568-2599.

  34. Technical Data of Turntables 2010 

  35. Li, Mingjian, Ma, Ruyu, Behdad, Nader. A Compact, Low-Cost, Ultrawideband Direction-Finding System: Techniques Suitable for Small-Aperture Designs. IEEE antennas and propagation magazine, vol.60, no.6, 32-44.

  36. MXG X-Series Signal Generators N5182B Data Sheet 2014 

  37. Xie, Xu, Xu, Zhengguang. Direction Finding of BPSK Signals Using Time-Modulated Array. IEEE microwave and wireless components letters : a publication of the IEEE Microwave Theory and Techniques Society, vol.28, no.7, 618-620.

  38. Hirota, A., Arai, H., Nakano, M.. Direction-of-Arrival Estimation System for Multipath Propagation in Code-Division Multiple-Access Systems With Synthesized Virtual Planar Array Using Pilot Signals. IEEE transactions on vehicular technology, vol.57, no.4, 2153-2163.

  39. N5161A/62A/81A/82A/83A MXG Signal Generators SCPI Command Reference 2014 

  40. Chen, H., Chan, E.H.W.. Technique to eliminate RF signal amplitude dependence in AOA measurement. Electronics letters, vol.56, no.5, 243-244.

  41. Creating and Downloading Waveform Files 2015 

  42. Kulas, Lukasz. RSS-Based DoA Estimation Using ESPAR Antennas and Interpolated Radiation Patterns. IEEE antennas and wireless propagation letters, vol.17, no.1, 25-28.

  43. BLE-Stack User’s Guide Angle of Arrival 2018 

  44. Bluetooth Angle of Arrival (AoA) Antenna Design porter 2019 

  45. Waveform Download Assistant Software Installation Guide 2014 

  46. Chen, Hao, Chan, Erwin Hoi Wing. Angle-of-Arrival Measurement System Using Double RF Modulation Technique. IEEE photonics journal, vol.11, no.1, 1-10.

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