default search action
Jing Yang 0002
Person information
- affiliation (since 2016): Pennsylvania State University, University Park, PA, USA
- affiliation (2012 - 2016): University of Arkansas, Department of Electrical Engineering, Fayetteville, AR, USA
- affiliation (2010 - 2012): University of Wisconsin-Madison, WI, USA
- affiliation (until 2010): University of Maryland, College Park, MD, USA
Other persons with the same name
- Jing Yang — disambiguation page
- Jing Yang 0001 — University of North Carolina at Charlotte (UNCC), Department of Computer Science, NC, USA (and 1 more)
- Jing Yang 0003 — University of Virginia, Charlottesville, VA, USA
- Jing Yang 0004 — University of California at Berkeley, CA, USA
- Jing Yang 0005 — Yale University
- Jing Yang 0006 — The University of Sheffield, UK
- Jing Yang 0007 — Samsung Advanced Institute of Technology
- Jing Yang 0008 — Hefei University of Technology, School of Computer and Information, China
- Jing Yang 0009 — Chinese Academy of Sciences, Shanghai Institutes for Biological Sciences, China (and 1 more)
- Jing Yang 0010 — Harbin Engineering University, College of Computer Science and Technology, China
- Jing Yang 0012 — Chongqing Institute of Technology, Department of Electrical Information Engineering, China
- Jing Yang 0013 — Taiyuan University of Technology, College of Information Engineering / Information Center, China
- Jing Yang 0014 — Xi'an Jiaotong University, Institute of Control Engineering, China
- Jing Yang 0015 — Yangzhou University, School of Information Engineering, China (and 2 more)
- Jing Yang 0016 — École Polytechnique, Palaiseau, France
- Jing Yang 0017 — Guizhou University, MoE Key Laboratory of Advanced Manufacturing Technology, Guiyang, China
- Jing Yang 0018 — Harbin Institute of Technology, Experimental and Innovation Practice Center, Shenzhen, China (and 1 more)
- Jing Yang 0019 — Henan University of Technology, College of Information Science and Engineering, Zhengzhou, China (and 1 more)
- Jing Yang 0020 — Central South University, School of Information Science and Engineering, Changsha, China
- Jing Yang 0021 — Dongbei University of Finance and Economics, School of Management Science and Engineering, Dalian, China
- Jing Yang 0022 — ETH Zurich, Institute for Pervasive Computing, Switzerland
- Jing Yang 0023 — East China Normal University, School of Computer Science and Technology, Shanghai, China
- Jing Yang 0024 — Huazhong University of Science and Technology, School of Electronic Information and Communications, Wuhan, China
- Jing Yang 0025 — Lund University, Department of Electrical and Information Technology, Sweden
- Jing Yang 0026 — Northwestern Polytechnical University, Shaanxi Provincial Key Laboratory of Speech and Image Information Processing, Xi'an, China (and 1 more)
- Jing Yang 0027 — China University of Mining and Technology, Xuzhou, China
- Jing Yang 0028 — Beijing Normal University, School of Management, Zhuhai Campus, China (and 1 more)
- Jing Yang 0029 — Chongqing University of Posts and Telecommunications, School of Communication and Information Engineering, China
- Jing Yang 0030 — Northwestern Polytechnical University, School of Power and Energy, Xi'an, China
- Jing Yang 0031 — State University of Campinas, Institute of Computing, SP, Brazil (and 1 more)
- Jing Yang 0032 — Chinese Academy of Sciences, Institute of Information Engineering, State Key Laboratory of Information Security, Beijing, China (and 1 more)
- Jing Yang 0033 — Zhengzhou University, School of Electrical and Information Engineering, China (and 1 more)
- Jing Yang 0034 — Nanjing Normal University, School of Geography, Key Laboratory of Virtual Geographic Environment, China
- Jing Yang 0035 — Nankai University, Chern Institute of Mathematics and LPMC / Tianjin Key Laboratory of Network and Data Security Technology, Tianjin, China
- Jing Yang 0036 — Wuhan University, Electronic Information School, Radar and Signal Processing Laboratory, China
- Jing Yang 0037 — Anhui University of Science and Technology, School of Mathematics and Big Data, Huainan, China
- Jing Yang 0038 — University of Cambridge, Core LAB, UK (and 3 more)
- Jing Yang 0039 — Guangxi University for Nationalities, College of Information Science and Engineering, Nanning, China (and 2 more)
- Jing Yang 0040 (aka: Jing (Roy) Yang) — Queensland University of Technology, Australia
- Jing Yang 0041 — Hefei University, School of Artificial Intelligence and Big Data, China (and 2 more)
- Jing Yang 0042 — Guizhou University, Department of Electrical Engineering, Guiyang, China
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j34]Songtao Feng, Ming Yin, Ruiquan Huang, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Toward General Function Approximation in Nonstationary Reinforcement Learning. IEEE J. Sel. Areas Inf. Theory 5: 190-206 (2024) - [j33]Xizixiang Wei, Cong Shen, Jing Yang, H. Vincent Poor:
Random Orthogonalization for Federated Learning in Massive MIMO Systems. IEEE Trans. Wirel. Commun. 23(3): 2469-2485 (2024) - [j32]Kun Yang, Chengshuai Shi, Cong Shen, Jing Yang, Shu-Ping Yeh, Jaroslaw J. Sydir:
Offline Reinforcement Learning for Wireless Network Optimization With Mixture Datasets. IEEE Trans. Wirel. Commun. 23(10): 12703-12716 (2024) - [c82]Kun Yang, Shu-Ping Yeh, Menglei Zhang, Jerry Sydir, Jing Yang, Cong Shen:
Advancing RAN Slicing with Offline Reinforcement Learning. DySPAN 2024: 331-338 - [c81]Ruiquan Huang, Yuan Cheng, Jing Yang, Vincent Tan, Yingbin Liang:
Provable Benefits of Multi-task RL under Non-Markovian Decision Making Processes. ICLR 2024 - [c80]Ruiquan Huang, Yingbin Liang, Jing Yang:
Provably Efficient UCB-type Algorithms For Learning Predictive State Representations. ICLR 2024 - [c79]Songtao Feng, Ming Yin, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Improving Sample Efficiency of Model-Free Algorithms for Zero-Sum Markov Games. ICML 2024 - [c78]Renpu Liu, Cong Shen, Jing Yang:
Federated Representation Learning in the Under-Parameterized Regime. ICML 2024 - [c77]Songtao Feng, Ming Yin, Ruiquan Huang, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Towards General Function Approximation in Nonstationary Reinforcement Learning. ISIT 2024: 1-6 - [i54]Chengshuai Shi, Kun Yang, Jing Yang, Cong Shen:
Best Arm Identification for Prompt Learning under a Limited Budget. CoRR abs/2402.09723 (2024) - [i53]Renpu Liu, Cong Shen, Jing Yang:
Federated Representation Learning in the Under-Parameterized Regime. CoRR abs/2406.04596 (2024) - [i52]Ruiquan Huang, Yingbin Liang, Jing Yang:
Non-asymptotic Convergence of Training Transformers for Next-token Prediction. CoRR abs/2409.17335 (2024) - 2023
- [j31]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Reward Teaching for Federated Multiarmed Bandits. IEEE Trans. Signal Process. 71: 4407-4422 (2023) - [c76]Kun Yang, Cong Shen, Jing Yang, Shu-Ping Yeh, Jerry Sydir:
Offline Reinforcement Learning for Wireless Network Optimization with Mixture Datasets. ACSSC 2023: 629-633 - [c75]Xizixiang Wei, Tianhao Wang, Ruiquan Huang, Cong Shen, Jing Yang, H. Vincent Poor:
FLORAS: Differentially Private Wireless Federated Learning Using Orthogonal Sequences. ICC 2023: 3121-3126 - [c74]Yuan Cheng, Ruiquan Huang, Yingbin Liang, Jing Yang:
Improved Sample Complexity for Reward-free Reinforcement Learning under Low-rank MDPs. ICLR 2023 - [c73]Ruiquan Huang, Jing Yang, Yingbin Liang:
Safe Exploration Incurs Nearly No Additional Sample Complexity for Reward-Free RL. ICLR 2023 - [c72]Songtao Feng, Ming Yin, Ruiquan Huang, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Non-stationary Reinforcement Learning under General Function Approximation. ICML 2023: 9976-10007 - [c71]Ruiquan Huang, Huanyu Zhang, Luca Melis, Milan Shen, Meisam Hejazinia, Jing Yang:
Federated Linear Contextual Bandits with User-level Differential Privacy. ICML 2023: 14060-14095 - [c70]Donghao Li, Ruiquan Huang, Cong Shen, Jing Yang:
Near-optimal Conservative Exploration in Reinforcement Learning under Episode-wise Constraints. ICML 2023: 19527-19564 - [c69]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Provably Efficient Offline Reinforcement Learning with Perturbed Data Sources. ICML 2023: 31353-31388 - [c68]Renpu Liu, Jing Yang, Cong Shen:
Exploiting Feature Heterogeneity for Improved Generalization in Federated Multi-task Learning. ISIT 2023: 180-185 - [c67]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Reward Teaching for Federated Multi-armed Bandits. ISIT 2023: 1454-1459 - [c66]Yuan Cheng, Jing Yang, Yingbin Liang:
Provably Efficient Algorithm for Nonstationary Low-Rank MDPs. NeurIPS 2023 - [i51]Yuan Cheng, Ruiquan Huang, Jing Yang, Yingbin Liang:
Improved Sample Complexity for Reward-free Reinforcement Learning under Low-rank MDPs. CoRR abs/2303.10859 (2023) - [i50]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Reward Teaching for Federated Multi-armed Bandits. CoRR abs/2305.02441 (2023) - [i49]Songtao Feng, Ming Yin, Ruiquan Huang, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Non-stationary Reinforcement Learning under General Function Approximation. CoRR abs/2306.00861 (2023) - [i48]Ruiquan Huang, Huanyu Zhang, Luca Melis, Milan Shen, Meisam Hejazinia, Jing Yang:
Federated Linear Contextual Bandits with User-level Differential Privacy. CoRR abs/2306.05275 (2023) - [i47]Donghao Li, Ruiquan Huang, Cong Shen, Jing Yang:
Near-optimal Conservative Exploration in Reinforcement Learning under Episode-wise Constraints. CoRR abs/2306.06265 (2023) - [i46]Xizixiang Wei, Tianhao Wang, Ruiquan Huang, Cong Shen, Jing Yang, H. Vincent Poor:
Differentially Private Wireless Federated Learning Using Orthogonal Sequences. CoRR abs/2306.08280 (2023) - [i45]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Provably Efficient Offline Reinforcement Learning with Perturbed Data Sources. CoRR abs/2306.08364 (2023) - [i44]Ruiquan Huang, Yingbin Liang, Jing Yang:
Provably Efficient UCB-type Algorithms For Learning Predictive State Representations. CoRR abs/2307.00405 (2023) - [i43]Yuan Cheng, Jing Yang, Yingbin Liang:
Provably Efficient Algorithm for Nonstationary Low-Rank MDPs. CoRR abs/2308.05471 (2023) - [i42]Songtao Feng, Ming Yin, Yu-Xiang Wang, Jing Yang, Yingbin Liang:
Model-Free Algorithm with Improved Sample Efficiency for Zero-Sum Markov Games. CoRR abs/2308.08858 (2023) - [i41]Ruiquan Huang, Yuan Cheng, Jing Yang, Vincent Tan, Yingbin Liang:
Provable Benefits of Multi-task RL under Non-Markovian Decision Making Processes. CoRR abs/2310.13550 (2023) - [i40]Kun Yang, Cong Shen, Jing Yang, Shu-Ping Yeh, Jerry Sydir:
Offline Reinforcement Learning for Wireless Network Optimization with Mixture Datasets. CoRR abs/2311.11423 (2023) - [i39]Kun Yang, Shu-Ping Yeh, Menglei Zhang, Jerry Sydir, Jing Yang, Cong Shen:
Advancing RAN Slicing with Offline Reinforcement Learning. CoRR abs/2312.10547 (2023) - 2022
- [j30]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Timely Status Updating Over Erasure Channels Using an Energy Harvesting Sensor: Single and Multiple Sources. IEEE Trans. Green Commun. Netw. 6(1): 6-19 (2022) - [j29]Songtao Feng, Jing Yang:
Precoding and Scheduling for AoI Minimization in MIMO Broadcast Channels. IEEE Trans. Inf. Theory 68(8): 5185-5202 (2022) - [c65]Kun Yang, Donghao Li, Cong Shen, Jing Yang, Shu-Ping Yeh, Jerry Sydir:
Multi-Agent Reinforcement Learning for Wireless User Scheduling: Performance, Scalablility, and Generalization. IEEECONF 2022: 1169-1174 - [c64]Cong Shen, Jing Yang, Jie Xu:
On Federated Learning with Energy Harvesting Clients. ICASSP 2022: 8657-8661 - [c63]Xizixiang Wei, Cong Shen, Jing Yang, H. Vincent Poor:
Random Orthogonalization for Federated Learning in Massive MIMO Systems. ICC 2022: 3382-3387 - [c62]Duo Cheng, Ruiquan Huang, Cong Shen, Jing Yang:
Cascading Bandits with Two-Level Feedback. ISIT 2022: 1892-1896 - [c61]Yuan Cheng, Songtao Feng, Jing Yang, Hong Zhang, Yingbin Liang:
Provable Benefit of Multitask Representation Learning in Reinforcement Learning. NeurIPS 2022 - [i38]Xizixiang Wei, Cong Shen, Jing Yang, H. Vincent Poor:
Random Orthogonalization for Federated Learning in Massive MIMO Systems. CoRR abs/2201.12490 (2022) - [i37]Cong Shen, Jing Yang, Jie Xu:
On Federated Learning with Energy Harvesting Clients. CoRR abs/2202.06105 (2022) - [i36]Yuan Cheng, Songtao Feng, Jing Yang, Hong Zhang, Yingbin Liang:
Provable Benefit of Multitask Representation Learning in Reinforcement Learning. CoRR abs/2206.05900 (2022) - [i35]Ruiquan Huang, Jing Yang, Yingbin Liang:
Safe Exploration Incurs Nearly No Additional Sample Complexity for Reward-free RL. CoRR abs/2206.14057 (2022) - [i34]Xizixiang Wei, Cong Shen, Jing Yang, H. Vincent Poor:
Random Orthogonalization for Federated Learning in Massive MIMO Systems. CoRR abs/2210.09881 (2022) - 2021
- [j28]Songtao Feng, Jing Yang:
Age of Information Minimization for an Energy Harvesting Source With Updating Erasures: Without and With Feedback. IEEE Trans. Commun. 69(8): 5091-5105 (2021) - [c60]Chengshuai Shi, Cong Shen, Jing Yang:
Federated Multi-armed Bandits with Personalization. AISTATS 2021: 2917-2925 - [c59]Songtao Feng, Jing Yang:
Adaptive Surveillance Testing for Efficient Infection Rate Estimation. ISIT 2021: 884-889 - [c58]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Heterogeneous Multi-player Multi-armed Bandits: Closing the Gap and Generalization. NeurIPS 2021: 22392-22404 - [c57]Ruiquan Huang, Weiqiang Wu, Jing Yang, Cong Shen:
Federated Linear Contextual Bandits. NeurIPS 2021: 27057-27068 - [i33]Chengshuai Shi, Cong Shen, Jing Yang:
Federated Multi-armed Bandits with Personalization. CoRR abs/2102.13101 (2021) - [i32]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Timely Status Updating Over Erasure Channels Using an Energy Harvesting Sensor: Single and Multiple Sources. CoRR abs/2109.06855 (2021) - [i31]Ruiquan Huang, Weiqiang Wu, Jing Yang, Cong Shen:
Federated Linear Contextual Bandits. CoRR abs/2110.14177 (2021) - [i30]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Heterogeneous Multi-player Multi-armed Bandits: Closing the Gap and Generalization. CoRR abs/2110.14622 (2021) - 2020
- [j27]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Age-Minimal Transmission for Energy Harvesting Sensors With Finite Batteries: Online Policies. IEEE Trans. Inf. Theory 66(1): 534-556 (2020) - [j26]Chao Gan, Ruida Zhou, Jing Yang, Cong Shen:
Cost-Aware Cascading Bandits. IEEE Trans. Signal Process. 68: 3692-3706 (2020) - [c56]Chao Gan, Jing Yang, Cong Shen:
Thresholded Wirtinger Flow for Fast Millimeter Wave Beam Alignment. ACSSC 2020: 32-36 - [c55]Cong Shen, Donghao Li, Jing Yang:
MIMO Receive Antenna Selection via Deep Learning and Greedy Adaptation. ACSSC 2020: 403-407 - [c54]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Decentralized Multi-player Multi-armed Bandits with No Collision Information. AISTATS 2020: 1519-1528 - [c53]Weiqiang Wu, Jing Yang, Cong Shen:
Stochastic Linear Contextual Bandits with Diverse Contexts. AISTATS 2020: 2392-2401 - [c52]Songtao Feng, Jing Yang:
Information Freshness for Timely Detection of Status Changes. CISS 2020: 1-6 - [c51]Songtao Feng, Jing Yang:
AoI Minimization in Broadcast Channels with Channel State Information. ISIT 2020: 1776-1781 - [c50]Chao Gan, Ruida Zhou, Jing Yang, Cong Shen:
Cost-Aware Learning and Optimization for Opportunistic Spectrum Access. ITA 2020: 1-12 - [i29]Songtao Feng, Jing Yang:
Information Freshness for Timely Detection of Status Changes. CoRR abs/2002.04648 (2020) - [i28]Chengshuai Shi, Wei Xiong, Cong Shen, Jing Yang:
Decentralized Multi-player Multi-armed Bandits with No Collision Information. CoRR abs/2003.00162 (2020) - [i27]Weiqiang Wu, Jing Yang, Cong Shen:
Stochastic Linear Contextual Bandits with Diverse Contexts. CoRR abs/2003.02681 (2020) - [i26]Songtao Feng, Jing Yang:
Precoding and Scheduling for AoI Minimization in MIMO Broadcast Channels. CoRR abs/2009.00171 (2020)
2010 – 2019
- 2019
- [j25]Boyu Wang, Songtao Feng, Jing Yang:
When to preempt? Age of information minimization under link capacity constraint. J. Commun. Networks 21(3): 220-232 (2019) - [j24]Chao Gan, Ruida Zhou, Jing Yang, Cong Shen:
Cost-Aware Learning and Optimization for Opportunistic Spectrum Access. IEEE Trans. Cogn. Commun. Netw. 5(1): 15-27 (2019) - [j23]Silas L. Fong, Jing Yang, Aylin Yener:
Non-Asymptotic Achievable Rates for Gaussian Energy-Harvesting Channels: Save-and-Transmit and Best-Effort. IEEE Trans. Inf. Theory 65(11): 7233-7252 (2019) - [j22]Zuoen Wang, Jingxian Wu, Jing Yang, Yingli Cao:
Optimum Distributed Estimation of a Spatially Correlated Random Field. IEEE Trans. Signal Inf. Process. over Networks 5(4): 739-752 (2019) - [c49]Songtao Feng, Jing Yang:
Adaptive Coding for Information Freshness in a Two-User Broadcast Erasure Channel. GLOBECOM 2019: 1-6 - [c48]Songtao Feng, Jing Yang:
Age-Optimal Transmission of Rateless Codes in an Erasure Channel. ICC 2019: 1-6 - [c47]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Using Erasure Feedback for Online Timely Updating with an Energy Harvesting Sensor. ISIT 2019: 607-611 - [c46]Chao Gan, Jing Yang, Ruida Zhou, Cong Shen:
Online Learning with Diverse User Preferences. ISIT 2019: 2539-2543 - [c45]Chao Wang, Ruida Zhou, Jing Yang, Cong Shen:
A Cascading Bandit Approach To Efficient Mobility Management In Ultra-Dense Networks. MLSP 2019: 1-6 - [i25]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Using Erasure Feedback for Online Timely Updating with an Energy Harvesting Sensor. CoRR abs/1901.08577 (2019) - [i24]Songtao Feng, Jing Yang:
Age-Optimal Transmission of Rateless Codes in an Erasure Channel. CoRR abs/1904.13048 (2019) - [i23]Songtao Feng, Jing Yang:
Adaptive Coding for Information Freshness in a Two-user Broadcast Erasure Channel. CoRR abs/1905.00521 (2019) - 2018
- [j21]Xianwen Wu, Jing Yang, Jingxian Wu:
Optimal Status Update for Age of Information Minimization With an Energy Harvesting Source. IEEE Trans. Green Commun. Netw. 2(1): 193-204 (2018) - [j20]Samrat Nath, Jingxian Wu, Jing Yang:
Delay and Energy Efficiency Tradeoff for Information Pushing System. IEEE Trans. Green Commun. Netw. 2(4): 1027-1040 (2018) - [j19]Donghong Cai, Jingxian Wu, Jing Yang, Pingzhi Fan:
Optimum Spectral and Energy Efficiency Tradeoff in Two-User Gaussian Interference Channel. IEEE Wirel. Commun. Lett. 7(3): 468-471 (2018) - [c44]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Online Timely Status Updates with Erasures for Energy Harvesting Sensors. Allerton 2018: 966-972 - [c43]Boyu Wang, Jing Yang:
Optimal electric vehicle charging scheduling with time-varying profits. CISS 2018: 1-6 - [c42]Ahmed Arafa, Jing Yang, Sennur Ulukus:
Age-Minimal Online Policies for Energy Harvesting Sensors with Random Battery Recharges. ICC 2018: 1-6 - [c41]Samrat Nath, Jingxian Wu, Jing Yang:
Optimum Energy Efficiency and Age-of-Information Tradeoff in Multicast Scheduling. ICC 2018: 1-6 - [c40]Ruida Zhou, Chao Gan, Jing Yang, Cong Shen:
Cost-aware Cascading Bandits. IJCAI 2018: 3228-3234 - [c39]Songtao Feng, Jing Yang:
Optimal status updating for an energy harvesting sensor with a noisy channel. INFOCOM Workshops 2018: 348-353 - [c38]Silas L. Fong, Jing Yang, Aylin Yener:
Non-Asymptotic Achievable Rates for Gaussian Energy-Harvesting Channels: Best-Effort and Save-and-Transmit. ISIT 2018: 871-875 - [c37]Abdulrahman Baknina, Sennur Ulukus, Omur Ozel, Jing Yang, Aylin Yener:
Sening Information Through Status Updates. ISIT 2018: 2271-2275 - [c36]Songtao Feng, Jing Yang:
Minimizing Age of Information for an Energy Harvesting Source with Updating Failures. ISIT 2018: 2431-2435 - [c35]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Age-Minimal Online Policies for Energy Harvesting Sensors with Incremental Battery Recharges. ITA 2018: 1-10 - [c34]Boyu Wang, Songtao Feng, Jing Yang:
To Skip or to Switch? Minimizing Age of Information Under Link Capacity Constraint. SPAWC 2018: 1-5 - [i22]Abdulrahman Baknina, Omur Ozel, Jing Yang, Sennur Ulukus, Aylin Yener:
Sending Information Through Status Updates. CoRR abs/1801.04907 (2018) - [i21]Ahmed Arafa, Jing Yang, Sennur Ulukus:
Age-Minimal Online Policies for Energy Harvesting Sensors with Random Battery Recharges. CoRR abs/1802.01563 (2018) - [i20]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Age-Minimal Online Policies for Energy Harvesting Sensors with Incremental Battery Recharges. CoRR abs/1802.02129 (2018) - [i19]Songtao Feng, Jing Yang:
Optimal Status Updating for an Energy Harvesting Sensor with a Noisy Channel. CoRR abs/1803.01462 (2018) - [i18]Chao Gan, Ruida Zhou, Jing Yang, Cong Shen:
Cost-Aware Learning and Optimization for Opportunistic Spectrum Access. CoRR abs/1804.04048 (2018) - [i17]Silas L. Fong, Jing Yang, Aylin Yener:
Non-Asymptotic Achievable Rates for Gaussian Energy-Harvesting Channels: Best-Effort and Save-and-Transmit. CoRR abs/1805.02829 (2018) - [i16]Ruida Zhou, Chao Gan, Jing Yang, Cong Shen:
Cost-aware Cascading Bandits. CoRR abs/1805.08638 (2018) - [i15]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Age-Minimal Transmission for Energy Harvesting Sensors with Finite Batteries: Online Policies. CoRR abs/1806.07271 (2018) - [i14]Boyu Wang, Songtao Feng, Jing Yang:
To Skip or to Switch? Minimizing Age of Information under Link Capacity Constraint. CoRR abs/1806.08698 (2018) - [i13]Songtao Feng, Jing Yang:
Age of Information Minimization for an Energy Harvesting Source with Updating Erasures: With and Without Feedback. CoRR abs/1808.05141 (2018) - [i12]Ahmed Arafa, Jing Yang, Sennur Ulukus, H. Vincent Poor:
Online Timely Status Updates with Erasures for Energy Harvesting Sensors. CoRR abs/1811.04912 (2018) - [i11]Boyu Wang, Songtao Feng, Jing Yang:
When to Preempt? Age of Information Minimization under Link Capacity Constraint. CoRR abs/1812.05670 (2018) - 2017
- [j18]Zuoen Wang, Jing Yang, Jingxian Wu:
Level Set Estimation of Spatial-Temporally Correlated Random Fields With Active Sparse Sensing. IEEE Trans. Aerosp. Electron. Syst. 53(2): 862-876 (2017) - [j17]Jing Yang, Stark C. Draper, Robert D. Nowak:
Learning the Interference Graph of a Wireless Network. IEEE Trans. Signal Inf. Process. over Networks 3(3): 631-646 (2017) - [c33]Zuoen Wang, Jingxian Wu, Jing Yang:
Distributed estimation of a spatially correlated random field in decentralized sensor networks. ICC 2017: 1-6 - [c32]Xianwen Wu, Jing Yang, Jingxian Wu:
Optimal status updating to minimize age of information with an energy harvesting source. ICC 2017: 1-6 - [c31]Jing Yang, Jingxian Wu:
Optimal transmission for energy harvesting nodes under battery size and usage constraints. ISIT 2017: 819-823 - [c30]Samrat Nath, Jingxian Wu, Jing Yang:
Optimizing age-of-information and energy efficiency tradeoff for mobile pushing notifications. SPAWC 2017: 1-5 - [i10]Xianwen Wu, Jing Yang, Jingxian Wu:
Optimal Status Update for Age of Information Minimization with an Energy Harvesting Source. CoRR abs/1706.05773 (2017) - 2016
- [j16]Jing Yang, Xianwen Wu, Jingxian Wu:
Optimal Online Sensing Scheduling for Energy Harvesting Sensors With Infinite and Finite Batteries. IEEE J. Sel. Areas Commun. 34(5): 1578-1589 (2016) - [j15]Silas L. Fong, Vincent Y. F. Tan, Jing Yang:
Non-Asymptotic Achievable Rates for Energy-Harvesting Channels Using Save-and-Transmit. IEEE J. Sel. Areas Commun. 34(12): 3499-3511 (2016) - [c29]Israel Akingeneye, Jingxian Wu, Jing Yang, Hai Lin:
Optimum Poisson Sensing with Energy Harvesting Power Sources. GLOBECOM 2016: 1-6 - [c28]Zuoen Wang, Jingxian Wu, Jing Yang, Hai Lin:
Optimal energy efficient level set estimation of spatially-temporally correlated random fields. ICC 2016: 1-6 - [c27]Silas L. Fong, Vincent Y. F. Tan, Jing Yang:
A non-asymptotic achievable rate for the AWGN energy-harvesting channel using save-and-transmit. ISIT 2016: 455-459 - [c26]Xianwen Wu, Jing Yang, Jingxian Wu:
Optimal energy management for energy harvesting transmitters under battery usage constraint. ISIT 2016: 475-479 - [i9]Jingxian Wu, Jing Yang:
Quickest Change Detection with Mismatched Post-Change Models. CoRR abs/1601.06868 (2016) - 2015
- [j14]Jingxian Wu, Israel Akingeneye, Jing Yang:
Energy Efficient Optimum Sensing With Energy Harvesting Power Sources. IEEE Access 3: 989-997 (2015) - [j13]Zuoen Wang, Jingxian Wu, Jing Yang, Hai Lin:
Energy-Efficient Wireless Sensing for Level Set Estimations. IEEE Access 3: 1480-1490 (2015) - [j12]Jingxian Wu, Jing Yang:
On the asymptotic equivalence between stochastic and deterministic energy sources in energy harvesting sensing systems. EURASIP J. Wirel. Commun. Netw. 2015: 90 (2015) - [j11]Jing Yang, Xianwen Wu, Jingxian Wu:
Optimal Scheduling of Collaborative Sensing in Energy Harvesting Sensor Networks. IEEE J. Sel. Areas Commun. 33(3): 512-523 (2015) - [c25]Zuoen Wang, Jingxian Wu, Jing Yang, Hai Lin:
Optimum Level Set Estimation of a Time-Varying Random Field under a Power Constraint. GLOBECOM 2015: 1-6 - [c24]Jing Yang, Xianwen Wu, Jingxian Wu:
Adaptive sensing scheduling for energy harvesting sensors with finite battery. ICC 2015: 98-103 - [c23]Jingxian Wu, Israel Akingeneye, Jing Yang:
Optimum sensing of a time-varying random event with energy harvesting power sources. ISIT 2015: 1134-1138 - [c22]Jing Yang, Jingxian Wu:
Online throughput maximization in an energy harvesting multiple access channel with fading. ISIT 2015: 2727-2731 - [i8]Silas L. Fong, Vincent Y. F. Tan, Jing Yang:
Non-Asymptotic Achievable Rates for Energy-Harvesting Channels using Save-and-Transmit. CoRR abs/1507.02444 (2015) - 2014
- [c21]Jing Yang, Zuoen Wang, Jingxian Wu:
Level set estimation with dynamic sparse sensing. GlobalSIP 2014: 487-491 - [c20]Jingxian Wu, Jing Yang:
The asymptotic equivalence between sensing systems with energy harvesting and conventional energy sources. GLOBECOM 2014: 1753-1758 - [c19]Jing Yang, Jingxian Wu:
Optimal sampling of random processes under stochastic energy constraints. GLOBECOM 2014: 3377-3382 - 2013
- [j10]Omur Ozel, Jing Yang, Sennur Ulukus:
Optimal transmission schemes for parallel and fading Gaussian broadcast channels with an energy harvesting rechargeable transmitter. Comput. Commun. 36(12): 1360-1372 (2013) - [j9]Ting-Xin Yan, Jing Yang:
ACM HotMobile 2013 poster: CPM: a participation management framework for mobile crowdsensing. ACM SIGMOBILE Mob. Comput. Commun. Rev. 17(3): 25-26 (2013) - [j8]Berk Gurakan, Omur Ozel, Jing Yang, Sennur Ulukus:
Energy Cooperation in Energy Harvesting Communications. IEEE Trans. Commun. 61(12): 4884-4898 (2013) - [c18]Berk Gurakan, Omur Ozel, Jing Yang, Sennur Ulukus:
Energy cooperation in energy harvesting two-way communications. ICC 2013: 3126-3130 - [i7]Berk Gurakan, Omur Ozel, Jing Yang, Sennur Ulukus:
Energy Cooperation in Energy Harvesting Communications. CoRR abs/1303.2636 (2013) - 2012
- [j7]Jing Yang, Sennur Ulukus:
Optimal packet scheduling in a multiple access channel with energy harvesting transmitters. J. Commun. Networks 14(2): 140-150 (2012) - [j6]Jing Yang, Sennur Ulukus:
Optimal Packet Scheduling in an Energy Harvesting Communication System. IEEE Trans. Commun. 60(1): 220-230 (2012) - [j5]Jing Yang, Omur Ozel, Sennur Ulukus:
Broadcasting with an Energy Harvesting Rechargeable Transmitter. IEEE Trans. Wirel. Commun. 11(2): 571-583 (2012) - [j4]Omur Ozel, Jing Yang, Sennur Ulukus:
Optimal Broadcast Scheduling for an Energy Harvesting Rechargeable Transmitter with a Finite Capacity Battery. IEEE Trans. Wirel. Commun. 11(6): 2193-2203 (2012) - [c17]Berk Gurakan, Omur Ozel, Jing Yang, Sennur Ulukus:
Two-way and multiple-access energy harvesting systems with energy cooperation. ACSCC 2012: 58-62 - [c16]Jing Yang, Yanpei Liu, Stark C. Draper:
Optimal scheduling policies with mutual information accumulation in wireless networks. INFOCOM 2012: 1062-1070 - [c15]Berk Gurakan, Omur Ozel, Jing Yang, Sennur Ulukus:
Energy cooperation in energy harvesting wireless communications. ISIT 2012: 965-969 - [c14]Jing Yang, Stark C. Draper, Robert D. Nowak:
Passive learning of the interference graph of a wireless network. ISIT 2012: 2735-2740 - [i6]Jing Yang, Stark C. Draper, Robert D. Nowak:
Learning the Interference Graph of a Wireless Network. CoRR abs/1208.0562 (2012) - 2011
- [j3]Jing Yang, Sennur Ulukus:
Trading Rate for Balanced Queue Lengths for Network Delay Minimization. IEEE J. Sel. Areas Commun. 29(5): 988-996 (2011) - [j2]Omur Ozel, Kaya Tutuncuoglu, Jing Yang, Sennur Ulukus, Aylin Yener:
Transmission with Energy Harvesting Nodes in Fading Wireless Channels: Optimal Policies. IEEE J. Sel. Areas Commun. 29(8): 1732-1743 (2011) - [c13]Omur Ozel, Jing Yang, Sennur Ulukus:
Optimal transmission policies over vector Gaussian broadcast channels with energy harvesting transmitters. ACSCC 2011: 3-7 - [c12]Yanpei Liu, Jing Yang, Stark C. Draper:
Exploiting route diversity in multi-packet transmission using mutual information accumulation. Allerton 2011: 1793-1800 - [c11]Omur Ozel, Jing Yang, Sennur Ulukus:
Optimal scheduling over fading broadcast channels with an energy harvesting transmitter. CAMSAP 2011: 193-196 - [c10]Omur Ozel, Kaya Tutuncuoglu, Jing Yang, Sennur Ulukus, Aylin Yener:
Adaptive transmission policies for energy harvesting wireless nodes in fading channels. CISS 2011: 1-6 - [c9]Jing Yang, Omur Ozel, Sennur Ulukus:
Optimal Packet Scheduling in a Broadcast Channel with an Energy Harvesting Transmitter. ICC 2011: 1-5 - [c8]Jing Yang, Sennur Ulukus:
Optimal Packet Scheduling in a Multiple Access Channel with Rechargeable Nodes. ICC 2011: 1-5 - [c7]Omur Ozel, Kaya Tutuncuoglu, Jing Yang, Sennur Ulukus, Aylin Yener:
Resource management for fading wireless channels with energy harvesting nodes. INFOCOM 2011: 456-460 - [c6]Omur Ozel, Jing Yang, Sennur Ulukus:
Broadcasting with a battery limited energy harvesting rechargeable transmitter. WiOpt 2011: 205-212 - [i5]Omur Ozel, Kaya Tutuncuoglu, Jing Yang, Sennur Ulukus, Aylin Yener:
Transmission with Energy Harvesting Nodes in Fading Wireless Channels: Optimal Policies. CoRR abs/1106.1595 (2011) - [i4]Yanpei Liu, Jing Yang, Stark C. Draper:
Cooperative Packet Routing using Mutual Information Accumulation. CoRR abs/1108.3097 (2011) - [i3]Jing Yang, Yanpei Liu, Stark C. Draper:
Optimal Backpressure Scheduling in Wireless Networks using Mutual Information Accumulation. CoRR abs/1109.2583 (2011) - 2010
- [b1]Jing Yang:
Delay Minimization in Energy constrained Wireless Communications. University of Maryland, College Park, MD, USA, 2010 - [j1]Jing Yang, Sennur Ulukus:
Delay-Minimal Transmission for Average Power Constrained Multi-Access Communications. IEEE Trans. Wirel. Commun. 9(9): 2754-2767 (2010) - [c5]Jing Yang, Sennur Ulukus:
Transmission completion time minimization in an energy harvesting system. CISS 2010: 1-6 - [c4]Jing Yang, Sennur Ulukus:
Delay minimization with a general pentagon rate region. ISIT 2010: 1808-1812 - [i2]Jing Yang, Sennur Ulukus:
Optimal Packet Scheduling in an Energy Harvesting Communication System. CoRR abs/1010.1295 (2010) - [i1]Jing Yang, Omur Ozel, Sennur Ulukus:
Broadcasting with an Energy Harvesting Rechargeable Transmitter. CoRR abs/1010.2993 (2010)
2000 – 2009
- 2009
- [c3]Jing Yang, Sennur Ulukus:
Delay minimization in multiple access channels. ISIT 2009: 2366-2370 - 2008
- [c2]Jing Yang, Sennur Ulukus:
Delay-minimal transmission for average power constrained multi-access communications. ACSCC 2008: 1426-1430 - [c1]Jing Yang, Sennur Ulukus:
Delay-Minimal Transmission for Energy Constrained Wireless Communications. ICC 2008: 3531-3535
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 2024-11-08 20:26 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint