With the explosive growth of multimedia services and the continuous emergence of new space tasks, the spatial task scheduling timeliness problem is of great concern. The high computational cost of existing task scheduling methods is not suitable for the time-varying scenarios of space-based networks. This paper proposes a scheduling optimization method containing an atomic task offloading model based on maximum flow theory and a dynamic caching model. Firstly, the model calculates the task offloading upper limit in the satellite network based on the maximum flow theory to achieve the maximum volume of offloaded tasks to improve the resource utilization of idle satellites. Then, we design onboard task offloading and buffer optimization algor...
2017 IEEE International Conference on Communications, ICC 2017, Paris, France, 21-25 May 2017In data...
Abstract—A decomposition-based optimization algorithm was proposed for solving Earth Observation Sat...
When working with space systems the keyword is resources. For a satellite in orbit all resources are...
In this paper, we propose an efficient single-resource task scheduling algorithm for the Communicati...
With the popularization of satellite technology and the normal development of satellite use, the num...
AbstractThrough research in task scheduling of related field domestic and overseas, this paper analy...
Imaging satellite scheduling is an NP-hard problem with many complex constraints. This paper researc...
Satellite edge computing (SEC) has become a promising technology for future wireless networks to pro...
With the development of satellite-terrestrial network (STN), mobile edge computing (MEC) servers are...
When managing a constellation of nanosatellites, one may leverage this structure to improve the miss...
Earth observation satellite task scheduling research plays a key role in space-based remote sensing ...
In this paper we address the deterministic, multi-satellite, multi-ground station communi- cation sc...
We evaluate four scheduling algorithms for satellite communications that use the Time Division Multi...
We derive an autonomous scheduling system for low earth orbiting store-and-forward communications na...
A satellite's operations schedule is crafted based on each subsystem/payload operational needs, whil...
2017 IEEE International Conference on Communications, ICC 2017, Paris, France, 21-25 May 2017In data...
Abstract—A decomposition-based optimization algorithm was proposed for solving Earth Observation Sat...
When working with space systems the keyword is resources. For a satellite in orbit all resources are...
In this paper, we propose an efficient single-resource task scheduling algorithm for the Communicati...
With the popularization of satellite technology and the normal development of satellite use, the num...
AbstractThrough research in task scheduling of related field domestic and overseas, this paper analy...
Imaging satellite scheduling is an NP-hard problem with many complex constraints. This paper researc...
Satellite edge computing (SEC) has become a promising technology for future wireless networks to pro...
With the development of satellite-terrestrial network (STN), mobile edge computing (MEC) servers are...
When managing a constellation of nanosatellites, one may leverage this structure to improve the miss...
Earth observation satellite task scheduling research plays a key role in space-based remote sensing ...
In this paper we address the deterministic, multi-satellite, multi-ground station communi- cation sc...
We evaluate four scheduling algorithms for satellite communications that use the Time Division Multi...
We derive an autonomous scheduling system for low earth orbiting store-and-forward communications na...
A satellite's operations schedule is crafted based on each subsystem/payload operational needs, whil...
2017 IEEE International Conference on Communications, ICC 2017, Paris, France, 21-25 May 2017In data...
Abstract—A decomposition-based optimization algorithm was proposed for solving Earth Observation Sat...
When working with space systems the keyword is resources. For a satellite in orbit all resources are...