In mobile edge computing, there are usually relevant dependencies between different tasks, and traditional algorithms are inefficient in solving dependent task-offloading problems and neglect the impact of the dynamic change of the channel on the offloading strategy. To solve the offloading problem of dependent tasks in a dynamic network environment, this paper establishes the dependent task model as a directed acyclic graph. A Dependent Task-Offloading Strategy (DTOS) based on deep reinforcement learning is proposed with minimizing the weighted sum of delay and energy consumption of network services as the optimization objective. DTOS transforms the dependent task offloading into an optimal policy problem under Markov decision processes. M...
Many applications in Multi-access Edge Computing (MEC) consist of interdependent tasks where the out...
Abstract To improve the quality of computation experience for mobile devices, mobile-edge computing...
Mobile edge computing (MEC) has been envisioned as a promising paradigm that could effectively enhan...
With the rapid development of Internet technology and mobile terminals, users’ demand for high-speed...
In order to solve the problem of task offloading with dependent subtasks in mobile edge computing (M...
In order to solve the problem of task offloading with dependent subtasks in mobile edge computing (M...
With the internet developing rapidly, mobile edge computing (MEC) has been proposed to offer computa...
With the booming proliferation of user requests in the Internet of Things (IoT) network, Edge Comput...
Hardware bottlenecks can throttle smart device (SD) performance when executing computation-intensive...
The rapid growth of mobile internet services has yielded a variety of computation-intensive applicat...
Mobile edge computing (MEC) has been regarded as a promising wireless access architecture to allevia...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
This paper investigates the computation offloading problem in mobile edge computing (MEC) networks w...
Computation-intensive mobile applications are explosively increasing and cause computation overload ...
To improve the quality of computation experience for mobile devices, mobile-edge computing (MEC) is ...
Many applications in Multi-access Edge Computing (MEC) consist of interdependent tasks where the out...
Abstract To improve the quality of computation experience for mobile devices, mobile-edge computing...
Mobile edge computing (MEC) has been envisioned as a promising paradigm that could effectively enhan...
With the rapid development of Internet technology and mobile terminals, users’ demand for high-speed...
In order to solve the problem of task offloading with dependent subtasks in mobile edge computing (M...
In order to solve the problem of task offloading with dependent subtasks in mobile edge computing (M...
With the internet developing rapidly, mobile edge computing (MEC) has been proposed to offer computa...
With the booming proliferation of user requests in the Internet of Things (IoT) network, Edge Comput...
Hardware bottlenecks can throttle smart device (SD) performance when executing computation-intensive...
The rapid growth of mobile internet services has yielded a variety of computation-intensive applicat...
Mobile edge computing (MEC) has been regarded as a promising wireless access architecture to allevia...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
This paper investigates the computation offloading problem in mobile edge computing (MEC) networks w...
Computation-intensive mobile applications are explosively increasing and cause computation overload ...
To improve the quality of computation experience for mobile devices, mobile-edge computing (MEC) is ...
Many applications in Multi-access Edge Computing (MEC) consist of interdependent tasks where the out...
Abstract To improve the quality of computation experience for mobile devices, mobile-edge computing...
Mobile edge computing (MEC) has been envisioned as a promising paradigm that could effectively enhan...