A Learning Theoretic Approach to Energy Harvesting Communication System Optimization
arXiv:1208.4290 · doi:10.1109/TWC.2013.030413.121120
Abstract
A point-to-point wireless communication system in which the transmitter is equipped with an energy harvesting device and a rechargeable battery, is studied. Both the energy and the data arrivals at the transmitter are modeled as Markov processes. Delay-limited communication is considered assuming that the underlying channel is block fading with memory, and the instantaneous channel state information is available at both the transmitter and the receiver. The expected total transmitted data during the transmitter's activation time is maximized under three different sets of assumptions regarding the information available at the transmitter about the underlying stochastic processes. A learning theoretic approach is introduced, which does not assume any a priori information on the Markov processes governing the communication system. In addition, online and offline optimization problems are studied for the same setting. Full statistical knowledge and causal information on the realizations of the underlying stochastic processes are assumed in the online optimization problem, while the offline optimization problem assumes non-causal knowledge of the realizations in advance. Comparing the optimal solutions in all three frameworks, the performance loss due to the lack of the transmitter's information regarding the behaviors of the underlying Markov processes is quantified.
References in corpus (1)
Cited by in corpus (47)
- A Survey of Energy-Efficient Techniques for 5G Networks and Challenges Ahead
- Sensing, Computing, and Communication for Energy Harvesting IoTs: A Survey
- Simultaneous Information and Energy Transfer in Large-Scale Networks with/without Relaying
- A Lyapunov Optimization Approach for Green Cellular Networks with Hybrid Energy Supplies
- Throughput Maximization for Two-way Relay Channels with Energy Harvesting Nodes: The Impact of Relaying Strategies
- Energy Harvesting Broadband Communication Systems with Processing Energy Cost
- LoRa-RL: Deep Reinforcement Learning for Resource Management in Hybrid Energy LoRa Wireless Networks
- Power Allocation for Energy Harvesting Transmitter with Causal Information
- Spatial Domain Simultaneous Information and Power Transfer for MIMO Channels
- Online Power Control Optimization for Wireless Transmission with Energy Harvesting and Storage
- Closed-Form Delay-Optimal Power Control for Energy Harvesting Wireless System with Finite Energy Storage
- Grid Energy Consumption and QoS Tradeoff in Hybrid Energy Supply Wireless Networks
- Downlink Power Control in Two-Tier Cellular Networks with Energy-Harvesting Small Cells as Stochastic Games
- Stochastic Routing and Scheduling Policies for Energy Harvesting Communication Networks
- Distributed Power Control Schemes for In-Band Full-Duplex Energy Harvesting Wireless Networks
- An MDP Model for Censoring in Harvesting Sensors: Optimal and Approximated Solutions
- Max-min Fair Rate Allocation and Routing in Energy Harvesting Networks: Algorithmic Analysis
- Channel Sensing and Communication over a Time-Correlated Channel with an Energy Harvesting Transmitter
- Learning to Minimize Age of Information over an Unreliable Channel with Energy Harvesting
- Modeling and Analysis of Energy Harvesting and Smart Grid-Powered Wireless Communication Networks: A Contemporary Survey
- A Maximin Optimal Online Power Control Policy for Energy Harvesting Communications
- Reinforcement Learning based Multi-Access Control and Battery Prediction with Energy Harvesting in IoT Systems
- Optimal Reliability in Energy Harvesting Industrial Wireless Sensor Networks
- On Optimal Power Control for Energy Harvesting Communications with Lookahead
- Learning Aided Optimization for Energy Harvesting Devices with Outdated State Information
- Joint Retransmission, Compression and Channel Coding for Data Fidelity under Energy Constraints
- Geometric projection-based switching policy for multiple energy harvesting transmitters
- On Green Energy Powered Cognitive Radio Networks
- Capacity of the AWGN Channel with Random Battery Recharges
- Finite Horizon Energy-Efficient Scheduling with Energy Harvesting Transmitters over Fading Channels
- No-Pain No-Gain: DRL Assisted Optimization in Energy-Constrained CR-NOMA Networks
- Resource Allocation for Simultaneous Wireless Information and Power Transfer Systems: A Tutorial Overview
- User Grouping and Resource Allocation in Multiuser MIMO Systems under SWIPT
- Harvest-or-Transmit Policy for Cognitive Radio Networks: A Learning Theoretic Approach
- Optimal Radio Frequency Energy Harvesting with Limited Energy Arrival Knowledge
- Event-Trigger Based Robust-Optimal Control for Energy Harvesting Transmitter
- Multi-Agent Reinforcement Learning for Energy Harvesting Two-Hop Communications with a Partially Observable State
- Dynamic Resource Optimization for Decentralized Estimation in Energy Harvesting IoT Networks
- Energy harvesting wireless networks with correlated energy sources
- Communication over a time correlated channel with an energy harvesting transmitter
- Offline Delay-Optimal Transmission for Energy Harvesting Nodes
- Performance Bounds for Remote Estimation under Energy Harvesting Constraints
- Stochastic Online Control for Energy-Harvesting Wireless Networks with Battery Imperfections
- Power Allocation and Transmitter Switching for Broadcasting with Multiple Energy Harvesting Transmitters
- On the Optimality of the Greedy Policy for Battery Limited Energy Harvesting Communications
- On the Effects of Battery Imperfections in an Energy Harvesting Device
- Multi-Task Lifelong Reinforcement Learning for Wireless Sensor Networks