Mobile edge computing (MEC) is a prominent computing paradigm which expands the application fields of wireless communication. Due to the limitation of the capacities of user equipments and MEC servers, edge caching (EC) optimization is crucial to the effective utilization of the caching resources in MEC-enabled wireless networks. However, the dynamics and complexities of content popularities over space and time as well as the privacy preservation of users pose significant challenges to EC optimization. In this paper, a privacy-preserving distributed deep deterministic policy gradient (P2D3PG) algorithm is proposed to maximize the cache hit rates of devices in the MEC networks. Specifically, we consider the fact that content popularities are...
This is the author accepted manuscript. the final version is available from IEEE via the DOI in this...
Mobile edge caching/computing (MEC) has emerged as a promising approach for addressing the drastic i...
Today, billions of smart devices are interconnected via wireless networks, leading to large volumes ...
Caching contents at the edge of network is considered to be a cost-effective solution to cope with o...
Mobile Edge Caching (MEC) can be exploited for reducing redundant data transmissions and improving c...
Proactive edge association is capable of improving wireless connectivity at the cost of increased ha...
The vehicular edge computing (VEC) can cache contents in different RSUs at the network edge to suppo...
Content Caching at the edge of vehicular networks has been considered as a promising technology to s...
Publisher Copyright: AuthorMobile networks experience a tremendous increase in data volume and user ...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
International audienceCaching contents at the edge of mobile networks is an efficient mechanism that...
Federated learning (FL) has been increasingly considered to preserve data training privacy from eave...
By deploying resources in the vicinity of users, edge caching can substantially reduce the latency f...
Vehicular edge computing (VEC) is a promising technology to support real-time applications through c...
In order to meet the growing demands for multimedia service access and release the pressure of the c...
This is the author accepted manuscript. the final version is available from IEEE via the DOI in this...
Mobile edge caching/computing (MEC) has emerged as a promising approach for addressing the drastic i...
Today, billions of smart devices are interconnected via wireless networks, leading to large volumes ...
Caching contents at the edge of network is considered to be a cost-effective solution to cope with o...
Mobile Edge Caching (MEC) can be exploited for reducing redundant data transmissions and improving c...
Proactive edge association is capable of improving wireless connectivity at the cost of increased ha...
The vehicular edge computing (VEC) can cache contents in different RSUs at the network edge to suppo...
Content Caching at the edge of vehicular networks has been considered as a promising technology to s...
Publisher Copyright: AuthorMobile networks experience a tremendous increase in data volume and user ...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
International audienceCaching contents at the edge of mobile networks is an efficient mechanism that...
Federated learning (FL) has been increasingly considered to preserve data training privacy from eave...
By deploying resources in the vicinity of users, edge caching can substantially reduce the latency f...
Vehicular edge computing (VEC) is a promising technology to support real-time applications through c...
In order to meet the growing demands for multimedia service access and release the pressure of the c...
This is the author accepted manuscript. the final version is available from IEEE via the DOI in this...
Mobile edge caching/computing (MEC) has emerged as a promising approach for addressing the drastic i...
Today, billions of smart devices are interconnected via wireless networks, leading to large volumes ...