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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3




          [118] Ge Chang, Lin Lin, and Hao Yan. “Adaptive detec‑   [129] Satish  K  Tiwari  and  Prabhat  K  Upadhyay.
                tion and ISI mitigation for mobile molecular com‑     “Estimate‑and‑Forward  Relaying  in  Molecular
                munication”.  In:  IEEE  Transactions  on  NanoBio‑   Communication  using  Brownian  Motion  with
                science 17.1 (2017), pp. 21–35.                       Drift”. In: 2018 International Conference on Signal
          [119] Xiaodong  Mu,  Hao  Yan,  Bin  Li,  Manhua  Liu,      Processing  and  Communications  (SPCOM).  IEEE.
                Ruifeng  Zheng,  Yan  Li,  and  Lin  Lin.  “Low‑      2018, pp. 502–506.
                Complexity Adaptive Signal Detection for Mobile  [130]  Hamid  Khoshfekr  Rudsari,  Nader  Mokari,  Mo‑
                Molecular Communication”. In: IEEE Transactions       hammad  Reza  Javan,  Eduard  A  Jorswieck,  and
                on NanoBioscience 19.2 (2020), pp. 237–248.           Mahdi Orooji. “Drug Release Management for Dy‑
                                                                      namic  TDMA‑Based  Molecular  Communication”.
          [120] Lokendra Chouhany, Neeraj Varshney, and  Prab‑
                                                                      In: IEEE Transactions on Molecular, Biological and
                hat  Kumar  Sharma.  “On  Gradient  Descent  Opti‑    Multi‑Scale   Communications
                mization in Diffusion‑Advection based 3‑D Molec‑                                  5.3   (2019),
                ular Cooperative Communication”. In: IEEE Trans‑      pp. 233–246.
                actions on NanoBioscience (2020).              [131]  Uri Rogers and Min‑Sung Koh. “Exploring molecu‑
                                                                      lar distributed detection”. In: 2015 9th IEEE Inter‑
          [121] Jiaxing Wang, Xiqing Liu, Mugen Peng, and Mah‑
                                                                      national Conference on Nano/Molecular Medicine
                moud Daneshmand. “Performance Analysis of D‑
                MoSK Modulation in Mobile Diffusive‑Drift Molec‑      &   Engineering   (NANOMED).   IEEE.   2015,
                ular Communications”. In: IEEE Internet of Things     pp. 153–158.
                Journal (2020).                                [132] Trang  C  Mai,  Malcolm  Egan,  Trung  Q  Duong,

          [122] Yonathan Murin, Nariman Farsad, Mainak Chowd‑         and  Marco  Di  Renzo.  “Event  detection  in  molec‑
                hury,  and  Andrea  Goldsmith.  “Optimal  detection   ular  communication  networks  with  anomalous
                for  one‑shot  transmission  over  diffusion‑based    diffusion”.  In:  IEEE  Communications  Letters  21.6
                molecular timing channels”. In: IEEE Transactions     (2017), pp. 1249–1252.
                on  Molecular,  Biological  and  Multi‑Scale  Commu‑   [133] Shuai  Huang,  Lin  Lin,  Hao  Yan,  Juan  Xu,  and
                nications 4.2 (2018), pp. 43–60.                      Fuqiang Liu. “Statistical analysis of received signal
          [123] Manav  R  Bhatnagar  et  al.  “M‑ary  Poisson  recep‑   and error performance for mobile molecular com‑
                tion  in  molecular  communication”.  In:  Micro  &   munication”.  In:  IEEE  Transactions  on  NanoBio‑
                Nano Letters 13.4 (2018), pp. 509–513.                science 18.3 (2019), pp. 415–427.
          [124] Wayan  Wicke,  Arman  Ahmadzadeh,  Vahid  Ja‑   [134] S. Md Mustam, S. K. Syed‑Yusof, and S. Zubair. “Ca‑
                mali, Harald Unterweger, Christoph Alexiou, and       pacity and Delay Spread in Multilayer Diffusion‑
                Robert  Schober.  “Magnetic  nanoparticle‑based       Based  Molecular  Communication  (DBMC)  Chan‑
                                                                      nel”. In: IEEE Transactions on NanoBioscience 15.7
                molecular  communication  in    luidic  envi‑
                ronments”.  In:  IEEE  Transactions  on  NanoBio‑     (2016), pp. 599–612. DOI: 10.1109/TNB.2016.
                science 18.2 (2019), pp. 156–169.                     2631240.
          [125]  Qingchao  Li.  “A  Novel  Time‑Based  Modulation  [135] Bin  Li,  Mengwei  Sun,  Siyi  Wang,  Weisi  Guo,
                Scheme  in  Time‑Asynchronous  Channels  for          and  Chenglin  Zhao.  “Local  convexity  inspired
                Molecular  Communications”.  In:  IEEE  Transac‑      low‑complexity  noncoherent  signal  detector  for
                tions   on   NanoBioscience   19.1   (2019),          nanoscale  molecular  communications”.  In:  IEEE
                pp.  59–67.                                           Transactions  on  Communications  64.5  (2016),
                                                                      pp. 2079–2091.
          [126] Yanbin  Chen,  Yu  Li,  Lin  Lin,  and  Hao  Yan.  “Pa‑
                rameter  Estimation  of  Diffusive  Molecular  Com‑   [136] Amit  Kumar  Shrivastava,  Debanjan  Das,  and  Ra‑
                munication With Drift”. In: IEEE Access 8 (2020),     jarshi Mahapatra. “Adaptive Threshold Detection
                pp. 142704–142713.                                    and  ISI  Mitigation  in  Mobile  Molecular  Commu‑
                                                                      nication”. In: 2020 IEEE Wireless Communications
          [127] Fardad Vakilipoor, Francesca Ratti, Maurizio Ma‑
                                                                      and Networking Conference (WCNC). IEEE. 2020,
                garini,  and  Hamdan  Awan.  “Linear  Receiver  De‑
                                                                      pp. 1–6.
                sign for Time‑Varying Poisson Molecular Commu‑
                nication  Channels  with  Memory”.  In:  2020  IEEE  [137] Shuai  Huang,  Lin  Lin,  Weisi  Guo,  Hao  Yan,  Juan
                21st International Workshop on Signal Processing      Xu, and Fuqiang Liu. “Initial Distance Estimation
                Advances  in  Wireless  Communications  (SPAWC).      and Signal Detection for Diffusive Mobile Molec‑
                IEEE. 2020, pp. 1–5.                                  ular  Communication”.  In:  IEEE  Transactions  on
          [128] Nooshin Tavakkoli, Paeiz Azmi, and Nader Mokari.      NanoBioscience (2020).
                “Performance  evaluation  and  optimal  detection  [138] Arzhang  Shahbazi  and  Ali  Jamshidi.  “Improving
                of relay‑assisted diffusion‑based molecular com‑      adaptive   receivers   performance   in   molec‑
                munication  with  drift”.  In:  IEEE  Transactions  on  ular  communication  via  diffusion”.  In:  IET
                NanoBioscience 16.1 (2016), pp. 34–42.                Nanobiotechnology 13.4 (2019), pp. 441–448.





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