Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem
Satellite task planning not only plans the observation tasks to collect images of the earth surface, but also schedules the transmission tasks to download images to the ground station for users’ using, which plays an important role in improving the efficiency of the satellite observation system. How...
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Series: | Mathematical Problems in Engineering |
Online Access: | http://dx.doi.org/10.1155/2017/7304506 |
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doaj-cd41414802e741f1a18e2c5b16234a672020-11-25T00:28:32ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472017-01-01201710.1155/2017/73045067304506Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning ProblemShuang Peng0Hao Chen1Jun Li2Ning Jing3School of Electronic Science and Engineering, National University of Defense Technology, Hunan, Changsha 410073, ChinaSchool of Electronic Science and Engineering, National University of Defense Technology, Hunan, Changsha 410073, ChinaSchool of Electronic Science and Engineering, National University of Defense Technology, Hunan, Changsha 410073, ChinaSchool of Electronic Science and Engineering, National University of Defense Technology, Hunan, Changsha 410073, ChinaSatellite task planning not only plans the observation tasks to collect images of the earth surface, but also schedules the transmission tasks to download images to the ground station for users’ using, which plays an important role in improving the efficiency of the satellite observation system. However, most of the work to our knowledge, scheduling the observation and transmission tasks separately, ignores the correlation between them in resource (e.g., energy and memory) consumption and acquisition. In this paper, we study the single-satellite observation and transmission task planning problem under a more accurate resource usage model. Two preprocessing strategies including graph partition and nondominated subpaths selection are used to decompose the problem, and an improved label-setting algorithm with the lower bound cutting strategy is proposed to maximize the total benefit. Finally, we compare the proposed method with other three algorithms based on three data sets, and the experimental result shows that our method can find the near-optimal solution in much less time.http://dx.doi.org/10.1155/2017/7304506 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shuang Peng Hao Chen Jun Li Ning Jing |
spellingShingle |
Shuang Peng Hao Chen Jun Li Ning Jing Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem Mathematical Problems in Engineering |
author_facet |
Shuang Peng Hao Chen Jun Li Ning Jing |
author_sort |
Shuang Peng |
title |
Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem |
title_short |
Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem |
title_full |
Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem |
title_fullStr |
Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem |
title_full_unstemmed |
Approximate Path Searching Method for Single-Satellite Observation and Transmission Task Planning Problem |
title_sort |
approximate path searching method for single-satellite observation and transmission task planning problem |
publisher |
Hindawi Limited |
series |
Mathematical Problems in Engineering |
issn |
1024-123X 1563-5147 |
publishDate |
2017-01-01 |
description |
Satellite task planning not only plans the observation tasks to collect images of the earth surface, but also schedules the transmission tasks to download images to the ground station for users’ using, which plays an important role in improving the efficiency of the satellite observation system. However, most of the work to our knowledge, scheduling the observation and transmission tasks separately, ignores the correlation between them in resource (e.g., energy and memory) consumption and acquisition. In this paper, we study the single-satellite observation and transmission task planning problem under a more accurate resource usage model. Two preprocessing strategies including graph partition and nondominated subpaths selection are used to decompose the problem, and an improved label-setting algorithm with the lower bound cutting strategy is proposed to maximize the total benefit. Finally, we compare the proposed method with other three algorithms based on three data sets, and the experimental result shows that our method can find the near-optimal solution in much less time. |
url |
http://dx.doi.org/10.1155/2017/7304506 |
work_keys_str_mv |
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1725335567349055488 |