Inter-symbol interference reduction channel codes based on time gap in diffusion-based molecular communications

Nano Communication Networks - Tập 19 - Trang 148-156 - 2019
Alireza Keshavarz-Haddad1, Ali Jamshidi1, Parvin Akhkandi1
1School of Electrical and Computer Engineering, Shiraz University, Shiraz, Iran

Tài liệu tham khảo

Nakano, 2012, Molecular communication and networking: Opportunities and challenges, IEEE Trans. NanoBiosci., 11, 135, 10.1109/TNB.2012.2191570 Ardeshiri, 2017, Optimal relay location in diffusion based molecular communication Ardeshiri, 2017, Performance analysis of decode and forward relay network in diffusion based molecular communication Suda, 2009, Biologically inspired approaches to network systems, 99 Fang, 2016, Distributed cooperative detection for multi-receiver molecular communication, 1 Farsad, 2016, A comprehensive survey of recent advancements in molecular communication, IEEE Commun. Surv. Tutor., 18, 1887, 10.1109/COMST.2016.2527741 Bigharaz, 2016, A realistic receiver model for neuro-spike communication, 239 Arifler, 2011, Capacity analysis of a diffusion-based short-range molecular nano-communication channel, Comput. Netw., 55, 1426, 10.1016/j.comnet.2010.12.024 Damrath, 2017, Equivalent discrete-time channel modeling for molecular communication with emphasize on an absorbing receiver, IEEE Trans. NanoBiosci., 16, 60, 10.1109/TNB.2017.2648042 Gohari, 2016, Information theory of molecular communication: Directions and challenges, IEEE Trans. Mol. Biol. Multi-Scale Commun., 2, 120, 10.1109/TMBMC.2016.2640284 Felicetti, 2016, Applications of molecular communications to medicine: A survey, Nano Commun. Netw., 7, 27, 10.1016/j.nancom.2015.08.004 Meng, 2012, Optimal detection for diffusion-based communications in the presence of ISI, 3819 Yeh, 2012, A new frontier of wireless communication theory: diffusion-based molecular communications, IEEE Wirel. Commun., 19, 28, 10.1109/MWC.2012.6339469 Shih, 2012, Channel codes for mitigating intersymbol interference in diffusion-based molecular communications, 4228 Moore, 2009, Molecular communication: Modeling noise effects on information rate, IEEE Trans. NanoBiosci., 8, 169, 10.1109/TNB.2009.2025039 Pierobon, 2014, A statistical-physical model of interference in diffusion-based molecular nanonetworks, IEEE Trans. Commun., 62, 10.1109/TCOMM.2014.2314650 Aminian, 2015, Capacity of LTI-Poisson channel for diffusion based molecular communication, 1060 Genc, 2016, ISI-aware modeling and achievable rate analysis of the diffusion channel, IEEE Commun. Lett., 20, 1729, 10.1109/LCOMM.2016.2586069 Atakan, 2012, Nanoscale communication with molecular arrays in nanonetworks, IEEE Trans. NanoBiosci., 11, 149, 10.1109/TNB.2011.2181862 Pudasaini, 2014, Run-length aware hybrid modulation scheme for diffusion-based molecular communication, 439 Ko, 2012, A new paradigm for channel coding in diffusion-based molecular communications: Molecular coding distance function, 3748 Leeson, 2012, Forward error correction for molecular communications, Nano Commun. Netw., 3, 161, 10.1016/j.nancom.2012.09.001 Akhkandi, 2016, A new channel code for decreasing inter-symbol-interference in diffusion based molecular communications, 277 Noel, 2014, Improving receiver performance of diffusive molecular communication with enzymes, IEEE Trans. NanoBiosci., 13, 31, 10.1109/TNB.2013.2295546 Heren, 2015, Effect of degradation in molecular communication: Impairment or enhancement?, IEEE Trans. Mol. Biol. Multi-Scale Commun., 1, 217, 10.1109/TMBMC.2015.2502859 Farsad, 2016, A molecular communication system using acids, bases and hydrogen ions Movahednasab, 2016, Adaptive transmission rate with a fixed threshold decoder for diffusion-based molecular communication, IEEE Trans. Commun., 64, 236, 10.1109/TCOMM.2015.2501823 Kabir, 2015, D-MoSK modulation in molecular communications, IEEE Trans. NanoBiosci., 14, 680, 10.1109/TNB.2015.2436409 Tepekule, 2015, ISI mitigation techniques in molecular communication, IEEE Trans. Mol. Biol. Multi-Scale Commun., 1, 202, 10.1109/TMBMC.2015.2501745 Shih, 2013, Channel codes for reliability enhancement in molecular communication, IEEE J. Sel. Areas Commun., 31, 857, 10.1109/JSAC.2013.SUP2.12130018 W. Haselmayr, S.M.H. Aejaz, A.T. Asyhari, A. Springer, W. Guo, On the Impact of Transposition Errors in Diffusion-Based Channels. arXiv preprint arXiv:1701.02971, 2017. Bicen, 2016 Kadloor, 2012, Molecular communication using Brownian motion with drift, IEEE Trans. NanoBiosci., 11, 89, 10.1109/TNB.2012.2190546 Eckford, 2007, Nanoscale communication with Brownian motion, 160