
最高学位:工学博士职称:副教授
西北农林科技大学机械与电子工程学院
陕西省杨凌示范区西农路22号
邮编:712100
电话:87092731
Email:dljing@nwafu.edu.cn
一.教育背景
2015.09-2022.06西安电子科技大学,信息与通信工程,工学博士(硕博连读)
2019.11-2020.11 加拿大约克大学(York University),博士联合培养
2011.09-2015.07安徽工程大学,通信工程,工学学士
二.工作经历
2022.06-至2025.12 西北农林科技大学机械与电子工程学院电信工程系讲师
2026.01-至今西北农林科技大学机械与电子工程学院电信工程系副教授
三.研究方向
物联网可靠通信,纳米/分子通信,大数据及人工智能
四.开设课程
通信原理(本),随机信号分析与处理(本),现代信号处理(研)
五. 学术成果及代表性文章
1. 主持的科研项目
(1) 协作式分子通信系统有限能量调控机理研究,国家自然科学基金-青年科学基金项目(C类),2026.01-2028.12,30万。
(2)基于分子通信的小麦病害胁迫实时监测机理研究,西安市科技计划项目,2025.12-2027.12,5万。
(3) 基于协作式分子通信的小麦条锈病实时监测机理研究,中国博士后科学基金面上项目,2023.6-2025.12,8万。
(4) 有限能量下协作式分子通信高效能量调控研究,陕西省科技计划项目,2024.01-2025.12,5万。
(5)抗舷内/外有源干扰技术,研究所横向,12万。
(6)车间作业过程信息管理系统,研究所横向,9万。
(7)育种玉米田间生理生境数字化监测系统研发,企业横向,5万。
2. 发表论文
期刊论文(Journal Papers)
[1] D. Jing, L. Li, L. Lin and A. W. Eckford, "Tradeoff Between Energy Consumption and BER Performance in Bio‑Inspired Molecular Communications," in IEEE Transactions on Molecular, Biological, and Multi‑Scale Communications, vol. 12, pp. 576‑584, 2026.
[2] D. Jing, L. Li, L. Lin and A. W. Eckford, "CNN‑Based ISI Mitigation in Molecular Communications With Imperfect Transmitter," in IEEE Transactions on Molecular, Biological, and Multi‑Scale Communications, vol. 12, pp. 388‑397, 2026.
[3] J. Chen, L. Li, D. Jing, J. Zhao, L. Lin and A. W. Eckford, "ISI Mitigation Using Neural Networks in Molecular Communication With an Imperfect Transmitter Between Bionanosensors," in IEEE Sensors Journal, vol. 25, no. 24, pp. 43628‑43640, 15 Dec. 2025.
[4] D. Jing, L. Lin and A. W. Eckford, "Optimal Energy Allocation for Cooperative Molecular Communication With Imperfect Transmitters in Internet of Bio‑Nano Things," in IEEE Internet of Things Journal, vol. 12, no. 22, pp. 48351‑48361, 15 Nov. 2025.
[5] D. Jing, L. Li, Z. Cheng, L. Lin and A. W. Eckford, "Energy Efficient Transmitter Creation by Consuming Free Energy in Molecular Communication," in IEEE Transactions on Molecular, Biological, and Multi‑Scale Communications, vol. 11, no. 2, pp. 292‑303, June 2025.
[6] D. Jing, L. Li, L. Lin and A. W. Eckford, "Tradeoff Between the Number of Transmitted Molecules and the BER Performance in Molecular Communication Between Bionanosensors," in IEEE Sensors Journal, vol. 25, no. 1, pp. 89‑98, 1 Jan. 2025.
[7] D. Jing, L. Lin and A. W. Eckford, "Performance Analysis and ISI Mitigation With Imperfect Transmitter in Molecular Communication," in IEEE Transactions on NanoBioscience, vol. 23, no. 3, pp. 428‑438, July 2024.
[8] D. Jing, L. Lin and A. W. Eckford, "Energy Allocation for Multiuser Cooperative Molecular Communication Systems in Internet of Bio‑Nano Things," in IEEE Internet of Things Journal, vol. 11, no. 9, pp. 16303‑16313, 1 May 2024.
[9] D. Jing and A. W. Eckford, "Lightweight Channel Codes for ISI Mitigation in Molecular Communication Between Bionanosensors," in IEEE Sensors Journal, vol. 23, no. 13, pp. 13859‑13867, 1 July 2023.
[10] D. Jing, Y. Li and A. W. Eckford, "An Extended Kalman Filter for Distance Estimation and Power Control in Mobile Molecular Communication," in IEEE Transactions on Communications, vol. 70, no. 7, pp. 4373‑4385, July 2022.
[11] D. Jing, Y. Li and A. W. Eckford, "Power Control for ISI Mitigation in Mobile Molecular Communication," in IEEE Communications Letters, vol. 25, no. 2, pp. 460‑464, Feb. 2021.
会议论文(Conference Papers)
[1] L. Li, L. Zhao and D. Jing, "Energy Allocation in Multiuser Molecular Communication Networks of Nanomachines," in 2026 IEEE 21st Nanotechnology Materials and Devices Conference (NMDC), 2026. (Accepted) (Flag Conference)
[2] D. Jing, L. Li, L. Lin and A. W. Eckford, "Towards Artificial Intelligence of Bio‑Nano Things: Biologically Inspired Deployment Algorithm for Cooperative Nanonetworks," in 2025 IEEE Annual Congress on Artificial Intelligence of Things (AIoT), IEEE, 2025.
[3] D. Jing, H. Zhou, L. Li and A. W. Eckford, "Tradeoff Between Energy Consumption and BER Performance in Molecular Communications," in Proceedings of the 12th Annual ACM International Conference on Nanoscale Computing and Communication, 2025.
[4] L. Li, J. Chen, D. Jing and A. W. Eckford, "Hybrid CNN‑BiLSTM for ISI mitigation in molecular communication for nanosensors with imperfect transmitter," in 2025 IEEE 25th International Conference on Nanotechnology (NANO), pp. 618‑622, 2025.
[5] L. Li, D. Jing and A. W. Eckford, "Energy‑Efficient Transmitter Creation in Molecular Communication," in International Conference on Bio‑inspired Information and Communication Technologies, Cham: Springer Nature Switzerland, 2024.
[6] D. Jing, L. Lin and A. W. Eckford, "Thermodynamic Energy Cost and Bit Error Rate of Imperfect Transmitters in Molecular Communication," in GLOBECOM 2023‑2023 IEEE Global Communications Conference, Kuala Lumpur, Malaysia, 2023, pp. 552‑557.(Flag Conference)
[7] D. Jing, Y. Li and A. W. Eckford, "Distance and Velocity Prediction by Extended Kalman Filter in Mobile Molecular Communication," in 2021 IEEE Global Communications Conference (GLOBECOM), Madrid, Spain, 2021, pp. 01‑06.(Flag Conference)
3. 专利
[1] 一种基于非完美发射端的高能效二进制分子通信方法,发明专利授权,2026
[2] 基于BiLSTM-Transformer动态权重混合架构的土壤含水率预测方法及系统,发明专利授权,2025