default search action
Ching-Yao Chan
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j28]Biao Yang, Caizhen He, Pin Wang, Ching-Yao Chan, Xiaofeng Liu, Yang Chen:
TPPO: A Novel Trajectory Predictor With Pseudo Oracle. IEEE Trans. Syst. Man Cybern. Syst. 54(5): 2846-2859 (2024) - [c41]Po-Chen Wu, Li-Hsiang Shen, Kai-Ten Feng, Ching-Yao Chan:
Federated Reinforcement Learning for Multi-Dual-STAR-RIS Assisted DFRC-Enabled Multi-BS in ISAC Systems. ICC 2024: 2986-2991 - [c40]Yu-Ting Li, Li-Hsiang Shen, Kai-Ten Feng, Ching-Yao Chan:
Genetic Multi-Agent Reinforcement Learning for Multiple Double-Sided STAR-RISs in Full-Duplex MIMO Networks. ICC 2024: 5003-5008 - 2023
- [j27]Yuke Li, Pin Wang, Ching-Yao Chan:
RESTEP Into the Future: Relational Spatio-Temporal Learning for Multi-Person Action Forecasting. IEEE Trans. Multim. 25: 1954-1963 (2023) - [c39]I-Hsi Kao, Ching-Yao Chan:
Analysis of Pedestrians Intention Prediction Based on Gradient-weighted Class Activation Mapping. ICCE-Taiwan 2023: 445-446 - [i20]Yuke Li, Lixiong Chen, Guangyi Chen, Ching-Yao Chan, Kun Zhang, Stefano Anzellotti, Donglai Wei:
Learning Socio-Temporal Graphs for Multi-Agent Trajectory Prediction. CoRR abs/2312.14373 (2023) - 2022
- [j26]Pei Wang, Tingting Zhang, Xiao Zhou, Sanaz Motamedi, Ching-Yao Chan:
Evaluate the Understandability of Information Display Board Signs Using a Driving Simulator Experiment. Int. J. Hum. Comput. Interact. 38(17): 1668-1686 (2022) - [j25]Lili Lu, Jian Wang, Yukou Wu, Xu Chen, Ching-Yao Chan:
A Real-Time Prediction Model for Individual Vehicle Travel Time on an Undersaturated Signalized Arterial Roadway. IEEE Intell. Transp. Syst. Mag. 14(5): 72-87 (2022) - [j24]Xiao Zhou, Hongyu Ren, Tingting Zhang, Xingang Mou, Yi He, Ching-Yao Chan:
Prediction of Pedestrian Crossing Behavior Based on Surveillance Video. Sensors 22(4): 1467 (2022) - [j23]I-Hsi Kao, Ching-Yao Chan:
Comparison of Eye and Face Features on Drowsiness Analysis. Sensors 22(17): 6529 (2022) - [j22]Chien-Yu Lin, Lih-Jen Kau, Ching-Yao Chan:
Bimodal Extended Kalman Filter-Based Pedestrian Trajectory Prediction. Sensors 22(21): 8231 (2022) - [j21]I-Hsi Kao, Ching-Yao Chan:
Impact of Posture and Social Features on Pedestrian Road-Crossing Trajectory Prediction. IEEE Trans. Instrum. Meas. 71: 1-16 (2022) - [j20]Biao Yang, Weiqin Zhan, Pin Wang, Ching-Yao Chan, Yingfeng Cai, Nan Wang:
Crossing or Not? Context-Based Recognition of Pedestrian Crossing Intention in the Urban Environment. IEEE Trans. Intell. Transp. Syst. 23(6): 5338-5349 (2022) - [j19]Cong Zhao, Yifan Zhu, Yuchuan Du, Feixiong Liao, Ching-Yao Chan:
A Novel Direct Trajectory Planning Approach Based on Generative Adversarial Networks and Rapidly-Exploring Random Tree. IEEE Trans. Intell. Transp. Syst. 23(10): 17910-17921 (2022) - [j18]Arian Ranjbar, Sascha Hornauer, Jonas Fredriksson, Stella X. Yu, Ching-Yao Chan:
Safety Monitoring of Neural Networks Using Unsupervised Feature Learning and Novelty Estimation. IEEE Trans. Intell. Veh. 7(3): 711-721 (2022) - [j17]Biao Yang, Guocheng Yan, Pin Wang, Ching-Yao Chan, Xiang Song, Yang Chen:
A Novel Graph-Based Trajectory Predictor With Pseudo-Oracle. IEEE Trans. Neural Networks Learn. Syst. 33(12): 7064-7078 (2022) - [c38]Yu-Ke Li, Pin Wang, Lixiong Chen, Zheng Wang, Ching-Yao Chan:
ELMA: Energy-Based Learning for Multi-Agent Activity Forecasting. AAAI 2022: 1482-1490 - [d1]Yi He, Bo Cao, Ching-Yao Chan:
WUT-NGSIM: A High-precision and Trustworthy Vehicle Trajectory Dataset. IEEE DataPort, 2022 - 2021
- [j16]Yi He, Shuo Yang, Ching-Yao Chan, Long Chen, Chaozhong Wu:
Visualization Analysis of Intelligent Vehicles Research Field Based on Mapping Knowledge Domain. IEEE Trans. Intell. Transp. Syst. 22(9): 5721-5736 (2021) - [c37]I-Hsi Kao, Xiao Zhou, I-Ming Chen, Pin Wang, Ching-Yao Chan:
A Posture Features Based Pedestrian Trajectory Prediction with LSTM. ICCE-TW 2021: 1-2 - [c36]Pin Wang, Dapeng Liu, Jiayu Chen, Hanhan Li, Ching-Yao Chan:
Decision Making for Autonomous Driving via Augmented Adversarial Inverse Reinforcement Learning. ICRA 2021: 1036-1042 - [c35]Pin Wang, Hanhan Li, Ching-Yao Chan:
Meta-Adversarial Inverse Reinforcement Learning for Decision-making Tasks. ICRA 2021: 12632-12638 - [c34]Fei Ye, Pin Wang, Ching-Yao Chan, Jiucai Zhang:
Meta Reinforcement Learning-Based Lane Change Strategy for Autonomous Vehicles. IV 2021: 223-230 - [c33]Fei Ye, Shen Zhang, Pin Wang, Ching-Yao Chan:
A Survey of Deep Reinforcement Learning Algorithms for Motion Planning and Control of Autonomous Vehicles. IV 2021: 1073-1080 - [c32]Yu-Ke Li, Pin Wang, Mang Ye, Ching-Yao Chan:
Imitative Learning for Multi-Person Action Forecasting. ACM Multimedia 2021: 451-459 - [i19]Pin Wang, Hanhan Li, Ching-Yao Chan:
Meta-Adversarial Inverse Reinforcement Learning for Decision-making Tasks. CoRR abs/2103.12694 (2021) - [i18]Fei Ye, Shen Zhang, Pin Wang, Ching-Yao Chan:
A Survey of Deep Reinforcement Learning Algorithms for Motion Planning and Control of Autonomous Vehicles. CoRR abs/2105.14218 (2021) - 2020
- [j15]Tingting Li, Jianping Wu, Ching-Yao Chan, Mingyu Liu, Chunli Zhu, Weixin Lu, Kezhen Hu:
A Cooperative Lane Change Model for Connected and Automated Vehicles. IEEE Access 8: 54940-54951 (2020) - [j14]Sanaz Motamedi, Pei Wang, Tingting Zhang, Ching-Yao Chan:
Acceptance of Full Driving Automation: Personally Owned and Shared-Use Concepts. Hum. Factors 62(2) (2020) - [j13]Jiajia Liu, Huei-Ru Tseng, Ching-Yao Chan:
Introduction to the Special Section on Connected and Autonomous Vehicles: Technologies, Methodologies, and Applications. IEEE Trans. Veh. Technol. 69(9): 9251-9252 (2020) - [c31]Arian Ranjbar, Chun-Hsiao Yeh, Sascha Hornauer, Stella X. Yu, Ching-Yao Chan:
Scene Novelty Prediction from Unsupervised Discriminative Feature Learning. ITSC 2020: 1-7 - [c30]Julian M. Salt Ducaju, Chen Tang, Masayoshi Tomizuka, Ching-Yao Chan:
Application Specific System Identification for Model-Based Control in Self-Driving Cars. IV 2020: 384-390 - [c29]Fei Ye, Xuxin Cheng, Pin Wang, Ching-Yao Chan, Jiucai Zhang:
Automated Lane Change Strategy using Proximal Policy Optimization-based Deep Reinforcement Learning. IV 2020: 1746-1752 - [c28]Wenshuo Wang, Chengyuan Zhang, Pin Wang, Ching-Yao Chan:
Learning Representations for Multi-Vehicle Spatiotemporal Interactions with Semi-Stochastic Potential Fields. IV 2020: 1935-1940 - [i17]Biao Yang, Guocheng Yan, Pin Wang, Ching-Yao Chan, Xiaofeng Liu, Yang Chen:
A Novel Graph based Trajectory Predictor with Pseudo Oracle. CoRR abs/2002.00391 (2020) - [i16]Biao Yang, Guocheng Yan, Pin Wang, Ching-Yao Chan, Xiaofeng Liu, Yang Chen:
TPPO: A Novel Trajectory Predictor with Pseudo Oracle. CoRR abs/2002.01852 (2020) - [i15]Fei Ye, Xuxin Cheng, Pin Wang, Ching-Yao Chan:
Automated Lane Change Strategy using Proximal Policy Optimization-based Deep Reinforcement Learning. CoRR abs/2002.02667 (2020) - [i14]Fei Ye, Pin Wang, Ching-Yao Chan, Jiucai Zhang:
Meta Reinforcement Learning-Based Lane Change Strategy for Autonomous Vehicles. CoRR abs/2008.12451 (2020)
2010 – 2019
- 2019
- [j12]Yanli Ma, Shouming Qi, Luyang Fan, Weixin Lu, Ching-Yao Chan, Yaping Zhang:
Dynamic Bayesian Network Approach to Evaluate Vehicle Driving Risk Based on On-Road Experiment Driving Data. IEEE Access 7: 135050-135062 (2019) - [j11]Xu Li, Wei Chen, Ching-Yao Chan, Bin Li, Xianghui Song:
Multi-sensor fusion methodology for enhanced land vehicle positioning. Inf. Fusion 46: 51-62 (2019) - [c27]Tingting Li, Jianping Wu, Ching-Yao Chan:
Evolutionary Learning in Decision Making for Tactical Lane Changing. ITSC 2019: 1826-1831 - [c26]I-Ming Chen, Cong Zhao, Ching-Yao Chan:
A Deep Reinforcement Learning-Based Approach to Intelligent Powertrain Control for Automated Vehicles. ITSC 2019: 2620-2625 - [c25]Long Xin, Shengbo Eben Li, Pin Wang, Wenhan Cao, Bingbing Nie, Ching-Yao Chan, Bo Cheng:
Accelerated Inverse Reinforcement Learning with Randomly Pre-sampled Policies for Autonomous Driving Reward Design. ITSC 2019: 2757-2764 - [c24]Tianyu Shi, Pin Wang, Xuxin Cheng, Ching-Yao Chan, Ding Huang:
Driving Decision and Control for Automated Lane Change Behavior based on Deep Reinforcement Learning. ITSC 2019: 2895-2900 - [c23]Mengyu Guo, Pin Wang, Ching-Yao Chan, Sid Askary:
A Reinforcement Learning Approach for Intelligent Traffic Signal Control at Urban Intersections. ITSC 2019: 4242-4247 - [c22]Liting Sun, Wei Zhan, Ching-Yao Chan, Masayoshi Tomizuka:
Behavior Planning of Autonomous Cars with Social Perception. IV 2019: 207-213 - [c21]Pin Wang, Hanhan Li, Ching-Yao Chan:
Continuous Control for Automated Lane Change Behavior Based on Deep Deterministic Policy Gradient Algorithm. IV 2019: 1454-1460 - [c20]Pin Wang, Tianyu Shi, Chonghao Zou, Long Xin, Ching-Yao Chan:
A Data Driven Method of Feedforward Compensator Optimization for Autonomous Vehicle Control. IV 2019: 2012-2017 - [i13]Tianyu Shi, Pin Wang, Ching-Yao Chan, Chonghao Zou:
A Data Driven Method of Optimizing Feedforward Compensator for Autonomous Vehicle. CoRR abs/1901.11212 (2019) - [i12]Tianyu Shi, Pin Wang, Xuxin Cheng, Ching-Yao Chan:
Driving Decision and Control for Autonomous Lane Change based on Deep Reinforcement Learning. CoRR abs/1904.10171 (2019) - [i11]Liting Sun, Wei Zhan, Ching-Yao Chan, Masayoshi Tomizuka:
Behavior Planning of Autonomous Cars with Social Perception. CoRR abs/1905.00988 (2019) - [i10]Mengyu Guo, Pin Wang, Ching-Yao Chan, Sid Askary:
A Reinforcement Learning Approach for Intelligent Traffic Signal Control at Urban Intersections. CoRR abs/1905.07698 (2019) - [i9]Pin Wang, Hanhan Li, Ching-Yao Chan:
Continuous Control for Automated Lane Change Behavior Based on Deep Deterministic Policy Gradient Algorithm. CoRR abs/1906.02275 (2019) - [i8]Pin Wang, Tianyu Shi, Chonghao Zou, Long Xin, Ching-Yao Chan:
A Data Driven Method of Feedforward Compensator Optimization for Autonomous Vehicle Control. CoRR abs/1906.02277 (2019) - [i7]Long Xin, Pin Wang, Ching-Yao Chan, Jianyu Chen, Shengbo Eben Li, Bo Cheng:
Intention-aware Long Horizon Trajectory Prediction of Surrounding Vehicles using Dual LSTM Networks. CoRR abs/1906.02815 (2019) - [i6]Pin Wang, Dapeng Liu, Jiayu Chen, Ching-Yao Chan:
Adversarial Inverse Reinforcement Learning for Decision Making in Autonomous Driving. CoRR abs/1911.08044 (2019) - [i5]Pin Wang, Hanhan Li, Ching-Yao Chan:
Quadratic Q-network for Learning Continuous Control for Autonomous Vehicles. CoRR abs/1912.00074 (2019) - 2018
- [j10]Qimin Xu, Xu Li, Ching-Yao Chan:
Enhancing Localization Accuracy of MEMS-INS/GPS/In-Vehicle Sensors Integration During GPS Outages. IEEE Trans. Instrum. Meas. 67(8): 1966-1978 (2018) - [c19]Long Xin, Pin Wang, Ching-Yao Chan, Jianyu Chen, Shengbo Eben Li, Bo Cheng:
Intention-aware Long Horizon Trajectory Prediction of Surrounding Vehicles using Dual LSTM Networks. ITSC 2018: 1441-1446 - [c18]Xuemei Chen, Qiang Zhang, Zhen-hua Zhang, Ge-meng Liu, Jianwei Gong, Ching-Yao Chan:
Research on Intelligent Merging Decision-making of Unmanned Vehicles Based on Reinforcement Learning. Intelligent Vehicles Symposium 2018: 91-96 - [c17]Wei Zhan, Arnaud de La Fortelle, Yi-Ting Chen, Ching-Yao Chan, Masayoshi Tomizuka:
Probabilistic Prediction from Planning Perspective: Problem Formulation, Representation Simplification and Evaluation Metric. Intelligent Vehicles Symposium 2018: 1150-1156 - [c16]Pin Wang, Ching-Yao Chan, Arnaud de La Fortelle:
A Reinforcement Learning Based Approach for Automated Lane Change Maneuvers. Intelligent Vehicles Symposium 2018: 1379-1384 - [i4]Pin Wang, Ching-Yao Chan, Hanhan Li:
Maneuver Control based on Reinforcement Learning for Automated Vehicles in An Interactive Environment. CoRR abs/1803.09200 (2018) - [i3]Pin Wang, Ching-Yao Chan:
Autonomous Ramp Merge Maneuver Based on Reinforcement Learning with Continuous Action Space. CoRR abs/1803.09203 (2018) - [i2]Pin Wang, Ching-Yao Chan, Arnaud de La Fortelle:
A Reinforcement Learning Based Approach for Automated Lane Change Maneuvers. CoRR abs/1804.07871 (2018) - 2017
- [j9]Qimin Xu, Xu Li, Ching-Yao Chan:
A Cost-Effective Vehicle Localization Solution Using an Interacting Multiple Model-Unscented Kalman Filters (IMM-UKF) Algorithm and Grey Neural Network. Sensors 17(6): 1431 (2017) - [c15]Pin Wang, Ching-Yao Chan:
Formulation of deep reinforcement learning architecture toward autonomous driving for on-ramp merge. ITSC 2017: 1-6 - [c14]Wei Zhan, Jianyu Chen, Ching-Yao Chan, Changliu Liu, Masayoshi Tomizuka:
Spatially-partitioned environmental representation and planning architecture for on-road autonomous driving. Intelligent Vehicles Symposium 2017: 632-639 - [c13]Yang Liu, Wei-Bin Zhang, Zhong-li Wang, Ching-Yao Chan:
DSRC-based end of queue warning system. Intelligent Vehicles Symposium 2017: 993-998 - [i1]Pin Wang, Ching-Yao Chan:
Formulation of Deep Reinforcement Learning Architecture Toward Autonomous Driving for On-Ramp Merge. CoRR abs/1709.02066 (2017) - 2016
- [j8]Shu-Hui Lin, Chung-Yu Chen, Eric Hsiao-Kuang Wu, Ching-Yao Chan, Emery Jou:
A New e-Bus System Using Two-Way Government Radio Networks. IEEE Intell. Transp. Syst. Mag. 8(1): 51-60 (2016) - [j7]Xu Li, Ching-Yao Chan, Yu Wang:
A Reliable Fusion Methodology for Simultaneous Estimation of Vehicle Sideslip and Yaw Angles. IEEE Trans. Veh. Technol. 65(6): 4440-4458 (2016) - [c12]Wei Zhan, Changliu Liu, Ching-Yao Chan, Masayoshi Tomizuka:
A non-conservatively defensive strategy for urban autonomous driving. ITSC 2016: 459-464 - [c11]Tong Zhao, Yuan Yuan, Yichun Duan, Wei Yan, Ching-Yao Chan:
A Link Reliability Model of Metropolitan VANETs for Data Dissemination. VTC Fall 2016: 1-5 - 2015
- [c10]Tsung-Hsiang Wu, Chih-Wei Yi, Ching-Yao Chan, Ya-Lan Chang, Chien-Chao Tseng, Chun-Fu Chung:
A preliminary study on SPC-crowd pavement indexing. APNOMS 2015: 336-339 - [c9]Yaoqiong Du, Yizhou Wang, Ching-Yao Chan:
Autonomous lane-change controller. Intelligent Vehicles Symposium 2015: 386-393 - 2014
- [c8]Yi-Ta Chuang, Chih-Wei Yi, Tsung-Hsiang Wu, Ching-Yao Chan:
Model the vibrations of rack-mounted on-vehicle devices by underdamped oscillations. ITSC 2014: 982-987 - [c7]Yaoqiong Du, Yizhou Wang, Ching-Yao Chan:
Autonomous lane-change controller via mixed logical dynamical. ITSC 2014: 1154-1159 - 2013
- [c6]Kuan-Lin Chiu, Chih-Che Lin, Somak Datta Gupta, Ching-Yao Chan:
A traffic speed enforcement system for high speed environment based on Dedicated Short-Range Communications (DSRC) technology. ITSC 2013: 1292-1297 - 2012
- [c5]Somak Datta Gupta, Chih-Che Lin, Ching-Yao Chan:
BSM Emulator - advanced vehicle safety application testbed. ITSC 2012: 1868-1873 - 2010
- [c4]Ching-Yao Chan, Christian Manasseh, Shahram Rezaei:
Experimental design and evaluation of Networked Traveler field tests of safety applications in California. Intelligent Vehicles Symposium 2010: 39-44
2000 – 2009
- 2007
- [j6]Ching-Yao Chan:
Trends in Crash Detection and Occupant Restraint Technology. Proc. IEEE 95(2): 388-396 (2007) - 2006
- [j5]Ching-Yao Chan:
Characterization of Driving Behaviors Based on Field Observation of Intersection Left-Turn Across-Path Scenarios. IEEE Trans. Intell. Transp. Syst. 7(3): 322-331 (2006) - 2002
- [j4]Ching-Yao Chan:
Magnetic sensing as a position reference system for ground vehicle control. IEEE Trans. Instrum. Meas. 51(1): 43-52 (2002) - [j3]Ching-Yao Chan:
On the detection of vehicular crashes-system characteristics and architecture. IEEE Trans. Veh. Technol. 51(1): 180-193 (2002) - [c3]Kun Zhou, Xiqin Wang, Masayoshi Tomizuka, Wei-Bin Zhang, Ching-Yao Chan:
A new maneuvering target tracking algorithm with input estimation. ACC 2002: 166-171 - 2001
- [j2]Ching-Yao Chan, Han-Shue Tan:
Feasibility analysis of steering control as a driver-assistance function in collision situations. IEEE Trans. Intell. Transp. Syst. 2(1): 1-9 (2001) - 2000
- [c2]Ching-Yao Chan, Bénédicte Bougler, David Nelson, Paul Kretz, Han-Shue Tan, Wei-Bin Zhang:
Characterization of magnetic tape and magnetic markers as a position sensing system for vehicle guidance and control. ACC 2000: 95-99 - [c1]Han-Shue Tan, Ching-Yao Chan:
Design of steering controller and analysis of vehicle lateral dynamics under impulsive disturbances. ACC 2000: 2023-2027
1990 – 1999
- 1998
- [j1]Ching-Yao Chan, Bakhtiar Litkouhi:
Technological Challenges In the Development of AHS. J. Intell. Transp. Syst. 4(1-2): 81-100 (1998)
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 2024-10-07 22:17 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint