Multi-carrier backscatter communication system for concurrent wireless and batteryless sensing

Wireless and batteryless sensing has recently attracted significant attention of researchers in IoT and WSN applications. It turns out to be more challenging when simultaneous data acquisition from multiple sensors is required. This paper introduces a non-orthogonal multiple access technique MSMA, using extremely simple wireless and batteryless sensor tags and a reader to support concurrent streaming from multiple sensors. By simultaneously handling non-orthogonal subcarriers, produced either by multiple or single sensor tag, it can realize concurrent sensor data streaming, which can be used in health monitoring of machinery and civil structures. The paper explains the two primary challenges in MSMA, the optimal assignment of subcarrier frequencies and the unavoidable harmonics from one subcarrier to others. Since the mutual interference among subcarriers is unevenly distributed over the available frequency band, random allocation of subcarrier frequencies may result in degraded system performance. Results show that the interference can be canceled out with the signal processing technique and the system communication capacity can be increased significantly with a proposed heuristic approach compared to random allocation of subcarrier frequencies to the sensor tags.

[1]  Sally Adee Wireless sensors that live forever , 2010, IEEE Spectrum.

[2]  Yuki Sato,et al.  A feasibility study on simultaneous data collection from multiple sensor RF tags with multiple subcarriers , 2014, 2014 IEEE International Conference on RFID (IEEE RFID).

[3]  Rabab Kreidieh Ward,et al.  Performance Analysis of RFID Protocols: CDMA Versus the Standard EPC Gen-2 , 2014, IEEE Transactions on Automation Science and Engineering.

[4]  Donald Malocha,et al.  Pseudo-orthogonal frequency coded wireless SAW RFID temperature sensor tags , 2012, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.

[5]  Tomoaki Ohtsuki,et al.  Multiple-subcarrier optical communication systems with subcarrier signal-point sequence , 2005, IEEE Transactions on Communications.

[6]  Hsin-Chin Liu,et al.  Performance analysis of multi-carrier RFID systems , 2009, 2009 International Symposium on Performance Evaluation of Computer & Telecommunication Systems.

[7]  Frederik Petre,et al.  Energy-autonomous wireless vibration sensor for condition-based maintenance of machinery , 2011, 2011 IEEE SENSORS Proceedings.

[8]  Yuki Igarashi,et al.  Comparative Analysis on Channel Allocation Schemes in Multiple Subcarrier Passive Communication System , 2015, IEICE Trans. Commun..