Cloud control DTN utilizing general user' smartphones for narrowband edge computing
Takeshi Ogawa, Taichi Yoshimura, Noriharu Miyaho · 2018
By realizing “narrowband edge computing”, which applies low power wireless access network (LPWAN) to communication between the edges and the cloud, it is expected that edge computing will be further economized. However, in some situations, it is necessary to upload a large amount of data that exceeds the capacity of the LPWAN if the data processing cannot be completed within the edge. In this paper, we propose cloud control disruption tolerant networking (CC-DTN) to upload large amounts of data from the edge to the cloud by multi-hop communication using Wi-Fi via the smartphones of general users who happen to be in the vicinity of the edge. With the proposed CC-DTN, the cloud centrally controls the connection between the edges and the smartphones via the LPWAN and LTE networks by using the movement history of the smartphones. Therefore, unlike the existing DTN, where the terminal performs data transmission based on local information exchanged between the terminals, large data can be efficiently transferred to the cloud while suppressing the power consumption of the edge. Furthermore, we report the effectiveness of the proposed method by simulations.