


default search action
Mi Yang 0001
Person information
- affiliation: Beijing Jiaotong University, Frontiers Science Center for Smart High-Speed Railway System, China
- affiliation (PhD 2017): Beijing Jiaotong University, School of Electronic and Information Engineering, China
Other persons with the same name
- Mi Yang — disambiguation page
- Mi Yang 0002
— Northwestern Polytechnical University, School of Aeronautics, China
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2026
[j39]Kailin Wang
, Guoyu Ma
, Jingya Yang
, Yiyan Ma
, Mi Yang
, Yunlong Lu
, Guowei Shi, Bo Ai
:
Optimized Clipping Thresholds for Tandem Spreading Multiple Access in 6G IoT Under Impulsive Noise. IEEE Commun. Lett. 30: 882-886 (2026)
[j38]Xuejian Zhang
, Ruisi He
, Mi Yang
, Ziyi Qi
, Zhengyu Zhang
, Bo Ai
, Zhangdui Zhong
:
Vision-Aided Channel Prediction Based on Image Segmentation at Street Intersection Scenarios. IEEE Trans. Cogn. Commun. Netw. 12: 1678-1693 (2026)
[j37]Xuejian Zhang
, Ruisi He
, Bo Ai
, Mi Yang
, Jianwen Ding
, Shuaiqi Gao
, Ziyi Qi
, Zhengyu Zhang
, Zhangdui Zhong
:
Cluster-Based Time-Variant Channel Characterization and Modeling for 5G-Railways. IEEE Trans. Wirel. Commun. 25: 9111-9127 (2026)- 2025
[j36]Chenyang Zhang, Mi Yang, Lu Bai, Bo Ai, Ruisi He, Zhibin Gao, Yi Gong, Guowei Shi:
A Geometry-Based Marine Channel Model for UAV-to-Ship Communication Systems. IET Commun. 19(1) (2025)
[j35]Zhong Zhang
, Ruisi He
, Mi Yang
, Ziyi Qi
, Zhuoyin Li
, Bo Ai
, Haoxiang Zhang
, Jiahui Han:
Impact of Point Cloud Reconstruction Detail on mmWave Ray-Tracing in Indoor Environments. IEEE Internet Things J. 12(24): 54859-54872 (2025)
[j34]Yuxin Zhang
, Ruisi He
, Mi Yang
, Chenlong Wang
, Zhicheng Qiu
, Yang Lu
, Bo Ai
:
Sparse Channel Reconstruction: A Generative-Adversarial-Network-Based Approach. IEEE Trans. Cogn. Commun. Netw. 11(4): 2386-2398 (2025)
[j33]Zhengyu Zhang
, Ruisi He
, Bo Ai
, Mi Yang
, Xuejian Zhang
, Ziyi Qi
, Yuan Yuan
:
Channel Measurements and Modeling for Dynamic Vehicular ISAC Scenarios at 28 GHz. IEEE Trans. Commun. 73(8): 6884-6897 (2025)
[j32]Jingli Li
, Yiyan Ma
, Chenxi Liu
, Guangyang Zhang
, Guoyu Ma
, Mi Yang
, Wenwei Yue
, Zhangdui Zhong
, Bo Ai
:
Exploring Dynamic Beamforming for Reliable Handover in 5G Railway Communication Systems. IEEE Trans. Commun. 73(11): 12929-12942 (2025)
[j31]Zhicheng Qiu
, Ruisi He
, Mi Yang
, Shun Zhou
, Long Yu
, Chenlong Wang
, Yuxin Zhang
, Jianhua Fan
, Bo Ai
:
Impact of Environmental Granularity on CNN-Based Wireless Channel Prediction. IEEE Trans. Veh. Technol. 74(1): 1765-1769 (2025)
[j30]Xuejian Zhang
, Ruisi He
, Mi Yang
, Zhengyu Zhang
, Ziyi Qi
, Bo Ai
:
Vision Aided Channel Prediction for Vehicular Communications: A Case Study of Received Power Prediction Using RGB Images. IEEE Trans. Veh. Technol. 74(11): 17531-17544 (2025)
[j29]Kailin Wang
, Guoyu Ma
, Yiyan Ma
, Mi Yang
, Yunlong Lu
, Jingya Yang
, Bo Ai
:
Collision Control in Tandem Spreading Multiple Access with Cognitive Radio for 6G Internet of Things: Enhanced System Reliability through Effective User Identification. IEEE Veh. Technol. Mag. 20(1): 65-73 (2025)
[j28]Ruisi He, Nicola Di Cicco, Bo Ai, Mi Yang, Yang Miao, Mate Boban
:
COST CA20120 INTERACT Framework of Artificial Intelligence-Based Channel Modeling. IEEE Wirel. Commun. 32(4): 200-207 (2025)
[j27]Yiyan Ma
, Bo Ai
, Guoyu Ma
, Akram Shafie
, Qingqing Cheng
, Mi Yang
, Jingli Li, Xuebo Pang
, Jinhong Yuan
, Zhangdui Zhong
:
Channel Spreading Function-Inspired Channel Transfer Function Estimation for OFDM Systems With High Mobility. IEEE Wirel. Commun. Lett. 14(7): 2169-2173 (2025)
[c22]Bo Ai, Jing Li, Yiyan Ma, Guoyu Ma, Mi Yang, Zhangdui Zhong:
DRL-Aided Dynamic Beamforming for Reliable Handover in 5G Railway Communication Systems. VTC2025-Fall 2025: 1-5
[c21]Keying Guo, Ruisi He, Mi Yang, Yuxin Zhang, Tianyu Shao, Bo Ai:
Deep Learning for Dynamic Non-Stationary Channel Modeling: A GAN-LSTM Approach. VTC2025-Fall 2025: 1-5
[c20]Tianyu Shao, Ruisi He, Mi Yang, Chenlong Wang, Zhicheng Qiu, Keying Guo, Bo Ai, Zhangdui Zhong:
Empirical Propagation Model Assisted Deep Learning Network for Path Loss Prediction. VTC2025-Fall 2025: 1-5
[i10]Xuejian Zhang, Ruisi He, Mi Yang, Ziyi Qi, Zhengyu Zhang, Bo Ai, Zhangdui Zhong:
Vision-Aided Channel Prediction Based on Image Segmentation at Street Intersection Scenarios. CoRR abs/2501.15726 (2025)
[i9]Xuejian Zhang, Ruisi He, Mi Yang, Jianwen Ding, Ruifeng Chen, Shuaiqi Gao, Ziyi Qi, Zhengyu Zhang, Bo Ai, Zhangdui Zhong:
Measurement-Based Non-Stationary Markov Tapped Delay Line Channel Model for 5G-Railways. CoRR abs/2501.15729 (2025)
[i8]Xuejian Zhang, Ruisi He, Mi Yang, Zhengyu Zhang, Ziyi Qi, Bo Ai:
Vision Aided Channel Prediction for Vehicular Communications: A Case Study of Received Power Prediction Using RGB Images. CoRR abs/2501.18618 (2025)
[i7]Keying Guo, Ruisi He, Mi Yang, Yuxin Zhang, Bo Ai, Haoxiang Zhang, Jiahui Han, Ruifeng Chen:
A CGAN-LSTM-Based Framework for Time-Varying Non-Stationary Channel Modeling. CoRR abs/2503.13468 (2025)
[i6]Jingli Li, Yiyan Ma, Bo Ai, Qingqing Cheng, Guoyu Ma, Mi Yang, Yunlong Lu, Wenwei Yue, Zhangdui Zhong:
Sensing-Enhanced Handover Criterion for Low-Altitude Wireless Networks (LAWNs). CoRR abs/2505.16350 (2025)- 2024
[j26]Mi Yang, Ruisi He, Bo Ai, Chen Huang, Chenlong Wang, Yuxin Zhang, Zhangdui Zhong:
AI-Enabled Data-Driven Channel Modeling for Future Communications. IEEE Commun. Mag. 62(4): 112-118 (2024)
[j25]Yuan Yuan
, Ruisi He
, Bo Ai
, Yong Niu
, Mi Yang
, Gongpu Wang
, Ruifeng Chen
, Yujian Li
, Jing Li
, Jianwen Ding
, Zhangdui Zhong
:
A 3D Geometry-Based Reconfigurable Intelligent Surfaces-Assisted mmWave Channel Model for High-Speed Train Communications. IEEE Trans. Veh. Technol. 73(2): 1524-1539 (2024)
[j24]Xuejian Zhang
, Ruisi He
, Mi Yang
, Ziyi Qi
, Zhengyu Zhang
, Bo Ai
, Ruifeng Chen
:
Narrowband Channel Measurements and Statistical Characterization in Subway Tunnels at 1.8 and 5.8 GHz. IEEE Trans. Veh. Technol. 73(7): 10228-10240 (2024)
[j23]Mi Yang
, Ruisi He
, Shun Zhou
, Yi Li, Yujian Li
, Jing Li
, Zhangdui Zhong
, Bo Ai
:
Measurement and Characterization of Vehicle-to-Vehicle Channels in Vegetated Environment. IEEE Trans. Veh. Technol. 73(11): 15955-15968 (2024)
[j22]Conggang Hu, Yang Lu
, Hongyang Du
, Mi Yang
, Bo Ai
, Dusit Niyato
:
AI-Empowered RIS-Assisted Networks: CV-Enabled RIS Selection and DNN-Enabled Transmission. IEEE Trans. Veh. Technol. 73(11): 17854-17858 (2024)
[j21]Zhengyu Zhang
, Ruisi He
, Bo Ai
, Mi Yang
, Yong Niu
, Zhangdui Zhong
, Yujian Li
, Xuejian Zhang
, Jing Li
:
A Cluster-Based Statistical Channel Model for Integrated Sensing and Communication Channels. IEEE Trans. Wirel. Commun. 23(9): 11597-11611 (2024)
[c19]Zhengyu Zhang, Ruisi He, Mi Yang, Xuejian Zhang
, Ziyi Qi, Yuan Yuan, Bo Ai:
Characterization of Wireless Channel Semantics: A New Paradigm. VTC Spring 2024: 1-5
[c18]Xuejian Zhang
, Ruisi He, Mi Yang, Shuaiqi Gao, Ziyi Qi, Zhengyu Zhang, Bo Ai, Zhangdui Zhong:
Measurement-Based Channel Characterization and Modeling for 5G-Railways at 2.16 GHz. WCSP 2024: 254-259
[i5]Ruisi He, Nicola Di Cicco, Bo Ai, Mi Yang, Yang Miao, Mate Boban
:
COST CA20120 INTERACT Framework of Artificial Intelligence Based Channel Modeling. CoRR abs/2411.11798 (2024)
[i4]Xuejian Zhang, Ruisi He, Bo Ai, Mi Yang, Jianwen Ding, Shuaiqi Gao, Ziyi Qi, Zhengyu Zhang, Zhangdui Zhong:
Cluster-Based Time-Variant Channel Characterization and Modeling for 5G-Railways. CoRR abs/2412.20943 (2024)- 2023
[j20]Zhengyu Zhang, Ruisi He, Bo Ai, Mi Yang, Chao Li, Hang Mi, Zhangdui Zhang:
A General Channel Model for Integrated Sensing and Communication Scenarios. IEEE Commun. Mag. 61(5): 68-74 (2023)
[c17]Yuxin Zhang, Ruisi He, Mi Yang, Chenlong Wang, Bo Ai, Ruifeng Chen, Tong Wu
:
Deep Learning Based Cross Frequency Channel Reconstruction and Modeling. VTC Fall 2023: 1-5- 2022
[j19]Ruisi He, Bo Ai, Zhangdui Zhong, Mi Yang, Ruifeng Chen, Jianwen Ding, Zhangfeng Ma, Guiqi Sun, Changzhu Liu:
5G for Railways: Next Generation Railway Dedicated Communications. IEEE Commun. Mag. 60(12): 130-136 (2022)
[j18]Zhangfeng Ma
, Bo Ai
, Ruisi He
, Hang Mi
, Mi Yang
, Ning Wang
, Zhangdui Zhong
, Wei Fan
:
Modeling and Analysis of MIMO Multipath Channels With Aerial Intelligent Reflecting Surface. IEEE J. Sel. Areas Commun. 40(10): 3027-3040 (2022)
[j17]Hang Mi
, Bo Ai
, Ruisi He
, Mi Yang
, Zhangfeng Ma
, Zhangdui Zhong
, Ning Wang
:
A Novel Denoising Method Based on Machine Learning in Channel Measurements. IEEE Trans. Veh. Technol. 71(1): 994-999 (2022)
[c16]Mi Yang, Bo Ai, Ruisi He, Zhangfeng Ma, Zhangdui Zhong:
Vehicle-to-Vehicle Channel Characteristics in Intersection Environment. ICC Workshops 2022: 1124-1129
[i3]Ruisi He, Bo Ai, Zhangdui Zhong, Mi Yang, Ruifeng Chen, Jianwen Ding, Zhangfeng Ma, Guiqi Sun, Changzhu Liu:
5G for Railways: the Next Generation Railway Dedicated Communications. CoRR abs/2207.03127 (2022)- 2021
[j16]Zhangfeng Ma
, Bo Ai
, Ruisi He
, Zhangdui Zhong
, Mi Yang:
A Non-Stationary Geometry-Based MIMO Channel Model for Millimeter-Wave UAV Networks. IEEE J. Sel. Areas Commun. 39(10): 2960-2974 (2021)
[j15]Tianshi Li
, Ruisi He
, Bo Ai
, Mi Yang, Zhangdui Zhong
, Haoxiang Zhang:
OTFS modulation performance in a satellite-to-ground channel at sub-6-GHz and millimeter-wave bands with high mobility. Frontiers Inf. Technol. Electron. Eng. 22(4): 517-526 (2021)
[j14]Mi Yang
, Bo Ai
, Ruisi He
, Chao Shen, Miaowen Wen
, Chen Huang, Jianzhi Li, Zhangfeng Ma
, Liang Chen, Xue Li
, Zhangdui Zhong
:
Machine-Learning-Based Scenario Identification Using Channel Characteristics in Intelligent Vehicular Communications. IEEE Trans. Intell. Transp. Syst. 22(7): 3961-3974 (2021)
[j13]Mi Yang
, Bo Ai
, Ruisi He
, Chen Huang
, Zhangfeng Ma
, Zhangdui Zhong
, Junhong Wang
, Li Pei
, Yujian Li
, Jing Li
:
Machine-Learning-Based Fast Angle-of-Arrival Recognition for Vehicular Communications. IEEE Trans. Veh. Technol. 70(2): 1592-1605 (2021)
[j12]Mi Yang
, Bo Ai
, Ruisi He
, Zhangfeng Ma
, Zhangdui Zhong
, Junhong Wang
, Li Pei
, Yujian Li
, Jing Li
, Ning Wang
:
Non-Stationary Vehicular Channel Characterization in Complicated Scenarios. IEEE Trans. Veh. Technol. 70(9): 8387-8400 (2021)
[j11]Ruisi He, Bo Ai, Gongpu Wang, Mi Yang, Chen Huang, Zhangdui Zhong:
Wireless Channel Sparsity: Measurement, Analysis, and Exploitation in Estimation. IEEE Wirel. Commun. 28(4): 113-119 (2021)
[c15]Zhangfeng Ma, Bo Ai, Ruisi He, Changzhu Liu, Ning Wang, Mi Yang, Zhangdui Zhong, Wei Fan:
Multipath Fading Channel Modeling with Aerial Intelligent Reflecting Surface. GLOBECOM 2021: 1-6
[i2]Ruisi He, Bo Ai, Zhangdui Zhong, Mi Yang, Chen Huang, Ruifeng Chen, Jianwen Ding, Hang Mi, Zhangfeng Ma, Guiqi Sun, Changzhu Liu:
Radio Communication Scenarios in 5G-Railways. CoRR abs/2105.01511 (2021)
[i1]Zirui Wen, Ruisi He, Bo Ai, Chen Huang, Mi Yang, Zhangdui Zhong:
A Scheme of Channel Prediction Based on Artificial Neural Network. CoRR abs/2111.15476 (2021)- 2020
[j10]Zhangfeng Ma
, Bo Ai
, Ruisi He
, Gongpu Wang
, Yong Niu
, Mi Yang
, Junhong Wang
, Yujian Li
, Zhangdui Zhong
:
Impact of UAV Rotation on MIMO Channel Characterization for Air-to-Ground Communication Systems. IEEE Trans. Veh. Technol. 69(11): 12418-12431 (2020)
[j9]Mi Yang
, Bo Ai
, Ruisi He
, Gongpu Wang
, Liang Chen, Xue Li
, Chen Huang
, Zhangfeng Ma
, Zhangdui Zhong
, Junhong Wang
, Yujian Li
, Tutun Juhana
:
Measurements and Cluster-Based Modeling of Vehicle-to-Vehicle Channels With Large Vehicle Obstructions. IEEE Trans. Wirel. Commun. 19(9): 5860-5874 (2020)
[j8]Bo Ai, Ruisi He, Han Zhang, Mi Yang, Zhangfeng Ma, Guiqi Sun
, Zhangdui Zhong:
Feeder Communication for Integrated Networks. IEEE Wirel. Commun. 27(6): 20-27 (2020)
[c14]Zhangfeng Ma, Bo Ai, Ruisi He, Zhangdui Zhong, Mi Yang, Junhong Wang, Li Pei, Yujian Li, Jing Li:
Three-Dimensional Modeling of Millimeter-Wave MIMO Channels for UAV-Based Communications. GLOBECOM 2020: 1-6
[c13]Zhangfeng Ma, Bo Ai, Ruisi He, Gongpu Wang, Zhangdui Zhong, Mi Yang, Junhong Wang, Yujian Li:
Impact of UAV Rotation on MIMO Channel Space-Time Correlation. VTC Fall 2020: 1-5
[c12]Mi Yang, Bo Ai, Ruisi He, Chen Huang, Jianzhi Li, Zhangfeng Ma, Liang Chen, Xue Li, Zhangdui Zhong:
Identification of Vehicle Obstruction Scenario Based on Machine Learning in Vehicle-to-vehicle Communications. VTC Spring 2020: 1-5
[c11]Mi Yang, Bo Ai, Ruisi He, Chen Huang, Zhangfeng Ma, Zhangdui Zhong:
Angle-of-Arrival Estimation for Vehicle-to-vehicle Communications based on Machine Learning. WCSP 2020: 154-158
2010 – 2019
- 2019
[j7]Bei Zhang
, Zhangdui Zhong, Ruisi He
, Ghassan S. Dahman
, Jianwen Ding
, Siyu Lin
, Bo Ai
, Mi Yang
:
Measurement-Based Markov Modeling for Multi-Link Channels in Railway Communication Systems. IEEE Trans. Intell. Transp. Syst. 20(3): 985-999 (2019)
[j6]Mi Yang
, Bo Ai
, Ruisi He
, Liang Chen, Xue Li
, Jianzhi Li
, Bei Zhang, Chen Huang
, Zhangdui Zhong:
A Cluster-Based Three-Dimensional Channel Model for Vehicle-to-Vehicle Communications. IEEE Trans. Veh. Technol. 68(6): 5208-5220 (2019)
[j5]Jianzhi Li
, Bo Ai
, Ruisi He
, Mi Yang
, Zhangdui Zhong, Yang Hao
:
A Cluster-Based Channel Model for Massive MIMO Communications in Indoor Hotspot Scenarios. IEEE Trans. Wirel. Commun. 18(8): 3856-3870 (2019)
[j4]Jianzhi Li
, Bo Ai
, Ruisi He
, Mi Yang
, Zhangdui Zhong, Yang Hao
, Guowei Shi:
On 3D Cluster-Based Channel Modeling for Large-Scale Array Communications. IEEE Trans. Wirel. Commun. 18(10): 4902-4914 (2019)
[c10]Xu Zhang, Mi Yang, Wei Wang, Ruisi He, Jun Hou, Xinyi Liu:
Measurement and Analysis of Fading Characteristics of V2V Propagation Channel at 5.9 GHz in Tunnel. IoTaaS 2019: 151-160
[c9]Mi Yang, Bo Ai, Ruisi He, Liang Chen, Xue Li, Jianzhi Li, Zhangfeng Ma, Zhangdui Zhong:
Directional Analysis of Vehicle-to-Vehicle Channels with Large Vehicle Obstructions. VTC Fall 2019: 1-5- 2018
[j3]Jianzhi Li
, Bo Ai, Ruisi He, Mi Yang, Qi Wang
, Bei Zhang
, Zhangdui Zhong:
Cluster-Based 3-D Channel Modeling for Massive MIMO in Subway Station Environment. IEEE Access 6: 6257-6272 (2018)
[c8]Qi Wang, Bo Ai, Ruisi He, Mi Yang, Bei Zhang, Jianzhi Li, Liang Chen, Xue Li:
Time-Variant Cluster-Based Channel Modeling for V2V Communications. ICC 2018: 1-6
[c7]Mi Yang, Bo Ai, Ruisi He, Liang Chen, Xue Li, Jianzhi Li, Qi Wang, Bei Zhang, Chen Huang:
A Cluster-Based 3D Channel Model for Vehicle-to-Vehicle Communications. ICCC 2018: 741-746
[c6]Jianzhi Li, Bo Ai, Ruisi He, Mi Yang, Zhangdui Zhong, Yang Hao:
Measurement-Based Massive MIMO Channel Characterization in Lobby Environment at 11 GHz. ICCC 2018: 762-767
[c5]Jianzhi Li, Bo Ai, Ruisi He, Mi Yang, Qi Wang, Bei Zhang, Zhangdui Zhong, Yang Hao:
Channel Characterization for Massive MIMO in Subway Station Environment at 6 GHz and 11 GHz. VTC Fall 2018: 1-5
[c4]Jianzhi Li, Bo Ai, Ruisi He, Mi Yang, Yu Zhang, Xin Liu, Zhangdui Zhong, Yang Hao:
Directional Analysis of Massive MIMO Channels at 11 GHz in Theater Environment. VTC Fall 2018: 1-5
[c3]Jianzhi Li, Bo Ai, Ruisi He, Mi Yang, Zhangdui Zhong, Yang Hao, Guowei Shi:
The 3D Spatial Non-Stationarity and Spherical Wavefront in Massive MIMO Channel Measurement. WCSP 2018: 1-6
[c2]Mi Yang, Bo Ai, Ruisi He, Liang Chen, Xue Li, Zefang Huang, Jianzhi Li, Chen Huang:
Path Loss Analysis and Modeling for Vehicle-to-Vehicle Communications with Vehicle Obstructions. WCSP 2018: 1-6- 2017
[j2]Bei Zhang
, Zhangdui Zhong, Ruisi He, Bo Ai, Ghassan S. Dahman, Mi Yang, Jianzhi Li
:
Multi-User Channels With Large-Scale Antenna Arrays in a Subway Environment: Characterization and Modeling. IEEE Access 5: 23613-23625 (2017)
[j1]Jianzhi Li, Bo Ai, Ruisi He, Qi Wang, Mi Yang, Bei Zhang, Ke Guan, Danping He, Zhangdui Zhong, Ting Zhou, Nan Li:
Indoor massive multiple-input multiple-output channel characterization and performance evaluation. Frontiers Inf. Technol. Electron. Eng. 18(6): 773-787 (2017)
[c1]Jianzhi Li, Bo Ai, Ruisi He, Qi Wang, Bei Zhang, Mi Yang, Ke Guan, Zhangdui Zhong:
Directional Analysis of Indoor Massive MIMO Channels at 6 GHz Using SAGE. VTC Spring 2017: 1-5
Coauthor Index

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from
to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the
of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from
,
, and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from
and
to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from
.
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2026-02-14 22:49 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint


Google
Google Scholar
Semantic Scholar
Internet Archive Scholar
CiteSeerX
ORCID







