In this paper, we present the computation-efficient resource allocation (RA) schemes for millimeter-wave mobile edge computing (mmWave-MEC) system with the aid of reconfigurable intelligent surface (RIS), which is used to assist the uplink communication from the users to the base station (BS). By means of the theoretical analysis, the achievable rate and computation efficiency (CE) are derived. Then, the optimization problem for the CE maximization under the constraints of the minimum rate, maximum power consumption and local CPU frequency is formulated, where the joint design of the hybrid beamforming at the BS and the passive beamforming at the RIS as well as the local resource allocation of each user is carried out. An effective iterativ...
Wireless powered mobile edge computing (WP-MEC) has been recognized as a promising technique to prov...
Mobile edge computing (MEC) is envisioned as a promising technology for enhancing the computation ca...
Towards 6G networks, such as virtual reality (VR) applications, Industry 4.0 and automated driving, ...
In this paper, we present the computation-efficient resource allocation (RA) schemes for millimeter-...
In this paper, by improving the computation efficiency (CE) and ensuring the fairness among users, w...
10.13039/501100001809-National Natural Science Foundation of China (Grant Number: 61971220, 62031017...
National Natural Science Foundation of China (62031017, 61971220, 61971221); Open Research Fund of S...
Mobile Edge Computing (MEC) plays a key role in the 5G roadmap, as a way to bring information techno...
This paper investigates an active reconfigurable intelligent surface (RIS)-aided mobile edge computi...
In this paper, a novel concept called simultaneously transmitting and reflecting RIS (STAR-RIS) is i...
Given the proliferation of wireless sensors and smart mobile devices, an explosive escalation of the...
The energy efficiency (EE) of the reconfigurable intelligent surface (RIS) aided multiuser (MU) mill...
Edge computing, as one of the key technologies in 6G networks, establishes a distributed computing e...
In this paper, we investigate the cooperation of idle computation resources of nearby mobile devices...
Mobile edge computing (MEC) and millimeter wave (mmWave) communications are capable of significantly...
Wireless powered mobile edge computing (WP-MEC) has been recognized as a promising technique to prov...
Mobile edge computing (MEC) is envisioned as a promising technology for enhancing the computation ca...
Towards 6G networks, such as virtual reality (VR) applications, Industry 4.0 and automated driving, ...
In this paper, we present the computation-efficient resource allocation (RA) schemes for millimeter-...
In this paper, by improving the computation efficiency (CE) and ensuring the fairness among users, w...
10.13039/501100001809-National Natural Science Foundation of China (Grant Number: 61971220, 62031017...
National Natural Science Foundation of China (62031017, 61971220, 61971221); Open Research Fund of S...
Mobile Edge Computing (MEC) plays a key role in the 5G roadmap, as a way to bring information techno...
This paper investigates an active reconfigurable intelligent surface (RIS)-aided mobile edge computi...
In this paper, a novel concept called simultaneously transmitting and reflecting RIS (STAR-RIS) is i...
Given the proliferation of wireless sensors and smart mobile devices, an explosive escalation of the...
The energy efficiency (EE) of the reconfigurable intelligent surface (RIS) aided multiuser (MU) mill...
Edge computing, as one of the key technologies in 6G networks, establishes a distributed computing e...
In this paper, we investigate the cooperation of idle computation resources of nearby mobile devices...
Mobile edge computing (MEC) and millimeter wave (mmWave) communications are capable of significantly...
Wireless powered mobile edge computing (WP-MEC) has been recognized as a promising technique to prov...
Mobile edge computing (MEC) is envisioned as a promising technology for enhancing the computation ca...
Towards 6G networks, such as virtual reality (VR) applications, Industry 4.0 and automated driving, ...