diff --git a/nfc-paper.bib b/nfc-paper.bib new file mode 100644 index 0000000..ed845a5 --- /dev/null +++ b/nfc-paper.bib @@ -0,0 +1,41 @@ +@INPROCEEDINGS{6929404, +author={Perret, E. and Nair, R.S. and Bel Kamel, E. and Vena, A. and Tedjini, S.}, +booktitle={General Assembly and Scientific Symposium (URSI GASS), 2014 XXXIth URSI}, +title={Chipless RFID tags for passive wireless sensor grids}, +year={2014}, +pages={1-4}, +keywords={radiofrequency identification;wireless sensor networks;chipless RFID tags;chipless sensor tags;frequency coded tag;frequency domain;nanomaterial;passive wireless sensor grids;Delays;Humidity;Monitoring;Radiofrequency identification;Semiconductor device measurement;Temperature measurement}, +doi={10.1109/URSIGASS.2014.6929404}, +month={Aug},} +@ARTICLE{4806180, +author={Shrestha, S. and Balachandran, M. and Agarwal, M. and Phoha, V.V. and Varahramyan, K.}, +journal={Microwave Theory and Techniques, IEEE Transactions on}, +title={A Chipless RFID Sensor System for Cyber Centric Monitoring Applications}, +year={2009}, +volume={57}, +number={5}, +pages={1303-1309}, +keywords={electric sensing devices;high-frequency transmission lines;microstrip lines;radiofrequency identification;chipless RFID sensor system;cyber centric monitoring applications;flexible substrate;load modulated backscattered communication techniques;microstrip transmission lines;specialized reader system;tag identification generation circuit;Chipless RF identification (RFID) sensor system;RFID reader;cyber centric monitoring;passive tags;transmission line identification (ID) generation}, +doi={10.1109/TMTT.2009.2017298}, +ISSN={0018-9480}, +month={May},} +@INPROCEEDINGS{6196980, +author={Serfass, D. and Yoshigoe, K.}, +booktitle={Southeastcon, 2012 Proceedings of IEEE}, +title={Wireless Sensor Networks using android virtual devices and Near Field Communication peer-to-peer emulation}, +year={2012}, +pages={1-6}, +keywords={Java;application program interfaces;near-field communication;peer-to-peer computing;smart phones;telecommunication computing;wireless sensor networks;Android AVD platform;Android NFC P2P API;Android SDK;Android emulator;Android smartphone sensors;Android virtual device;DroidWSN model design;DroidWSN model execution time;JNFC cost;JavaMail NFC API;NFC application development;NFC support;P2P communication;Sun SPOT wireless device;application program interface;near field communication;peer-to-peer data exchange;sensor emulated API;wireless sensor network;Androids;Arrays;Electronic mail;Humanoid robots;Sensors;Smart phones;Wireless sensor networks;near field communication;p2p;wireless sensor network}, +doi={10.1109/SECon.2012.6196980}, +ISSN={1091-0050}, +month={March},} +@INPROCEEDINGS{6379169, +author={Matos, A. and Romao, D. and Trezentos, P.}, +booktitle={Wireless and Mobile Computing, Networking and Communications (WiMob), 2012 IEEE 8th International Conference on}, +title={Secure hotspot authentication through a Near Field Communication side-channel}, +year={2012}, +pages={807-814}, +keywords={computer network security;cryptography;near-field communication;wireless LAN;NFC side-channel;NFC-enabled devices;Wi-Fi access point configuration;Wi-Fi hotspot authentication system;access point identity verification;asymmetric cryptographic system;captive portal eavesdropping;evil twin attack;hotspot authentication security;hotspot portal eavesdropping;man-in-the-middle attacks;near field communication side-channel;security threats;user privacy;user security;wireless network security;Authentication;Communication system security;IEEE 802.11 Standards;Portals;Public key;Wireless networks}, +doi={10.1109/WiMOB.2012.6379169}, +ISSN={2160-4886}, +month={Oct},}