Energy Efficiency of Downlink Networks with Caching at Base Stations
arXiv:1505.06615 · doi:10.1109/JSAC.2016.2549398
Abstract
Caching popular contents at base stations (BSs) can reduce the backhaul cost and improve the network throughput. Yet whether locally caching at the BSs can improve the energy efficiency (EE), a major goal for 5th generation cellular networks, remains unclear. Due to the entangled impact of various factors on EE such as interference level, backhaul capacity, BS density, power consumption parameters, BS sleeping, content popularity and cache capacity, another important question is what are the key factors that contribute more to the EE gain from caching. In this paper, we attempt to explore the potential of EE of the cache-enabled wireless access networks and identify the key factors. By deriving closed-form expression of the approximated EE, we provide the condition when the EE can benefit from caching, find the optimal cache capacity that maximizes the network EE, and analyze the maximal EE gain brought by caching. We show that caching at the BSs can improve the network EE when power efficient cache hardware is used. When local caching has EE gain over not caching, caching more contents at the BSs may not provide higher EE. Numerical and simulation results show that the caching EE gain is large when the backhaul capacity is stringent, interference level is low, content popularity is skewed, and when caching at pico BSs instead of macro BSs.
Accepted by Journal on Selected Areas in Communications (JSAC), Special Issue on Energy-Efficient Techniques for 5G Wireless Communication Systems
References in corpus (2)
Cited by in corpus (21)
- A Survey of Energy-Efficient Techniques for 5G Networks and Challenges Ahead
- Caching at the Wireless Edge: Design Aspects, Challenges and Future Directions
- Caching Policy Toward Maximal Success Probability and Area Spectral Efficiency of Cache-enabled HetNets
- Cache-enabled Device-to-Device Communications: Offloading Gain and Energy Cost
- Caching at Base Stations with Heterogeneous User Demands and Spatial Locality
- High Throughput Opportunistic Cooperative Device-to-Device Communications With Caching
- Cache-Aided Non-Orthogonal Multiple Access: The Two-User Case
- Cache-enabled HetNets with Limited Backhaul: A Stochastic Geometry Model
- On Throughput Optimization and Bound Analysis in Cache-Enabled Fiber-Wireless Networks
- A Non-Stationary Bandit-Learning Approach to Energy-Efficient Femto-Caching with Rateless-Coded Transmission
- Optimizing Joint Probabilistic Caching and Communication for Clustered D2D Networks
- Cache-enabled Heterogeneous Cellular Networks: Comparison and Tradeoffs
- AoI-Delay Tradeoff in Mobile Edge Caching with Freshness-Aware Content Refreshing
- Modeling and Performance Analysis in Cache-enabled Millimeter Wave HetNets with Access and Backhaul Integration
- Energy-Efficient Caching for Scalable Videos in Heterogeneous Networks
- A New Class of Structured Beamforming for Content-Centric Fog Radio Access Networks
- Delay and Power Tradeoff with Consideration of Caching Capabilities in Dense Wireless Networks
- Economical Caching for Scalable Videos in Cache-enabled Heterogeneous Networks
- Full-Duplex Enabled Mobile Edge Caching: From Distributed to Cooperative Caching
- Throughput Analysis in Cache-enabled Millimeter Wave HetNets with Access and Backhaul Integration
- Edge Cache-assisted Secure Low-Latency Millimeter Wave Transmission