SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites

With the rapid development of space technology, the environment of the space domain has become more and more complex and changeable, which brought great difficulties in cognition of space domain activity. As space domain awareness (SDA) required, any relevant information and knowledge from various s...

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Main Authors: Yining Song, Zhi Li, Zhanyue Zhang, Xia Wang, Yuqiang Fang
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9899446/
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author Yining Song
Zhi Li
Zhanyue Zhang
Xia Wang
Yuqiang Fang
author_facet Yining Song
Zhi Li
Zhanyue Zhang
Xia Wang
Yuqiang Fang
author_sort Yining Song
collection DOAJ
description With the rapid development of space technology, the environment of the space domain has become more and more complex and changeable, which brought great difficulties in cognition of space domain activity. As space domain awareness (SDA) required, any relevant information and knowledge from various sources are needed as much as possible, while all of those can be sorted and integrated for effective cognition of space objects, including the cognition of their status. This paper proposes a knowledge integration framework (SSC-KA) designed for the cognition of space target and its status. In the framework (SSC-KA), open-source information and data acquired from multi-kinds of sensors are sent into parallel channels, and then processed by the algorithm this paper designed into sequence data as the channels’ output. Furthermore, the rules and four statuses defined in this paper can be judged for the anomaly detection of satellites. Based on the space domain knowledge acquisition framework of SSC-KA, this paper describes a complete abnormal state detection method for satellites step by step through multi-level feature engineering. Therefore, the method is used to analyze four different statuses of satellites in this paper, to verify the validity and feasibility of the application of the method in the cognition of spatial events, thus laying the foundation for the cognition of Space Domain Awareness.
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spelling doaj.art-bfe804c6f5ac40a593c5e29ba833fd732022-12-22T03:37:04ZengIEEEIEEE Access2169-35362022-01-011010175010176110.1109/ACCESS.2022.32085589899446SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of SatellitesYining Song0https://orcid.org/0000-0003-1970-0093Zhi Li1Zhanyue Zhang2Xia Wang3Yuqiang Fang4Department of Aerospace Science and Technology, Space Engineering University, Beijing, ChinaDepartment of Aerospace Science and Technology, Space Engineering University, Beijing, ChinaDepartment of Aerospace Science and Technology, Space Engineering University, Beijing, ChinaDepartment of Aerospace Science and Technology, Space Engineering University, Beijing, ChinaDepartment of Aerospace Science and Technology, Space Engineering University, Beijing, ChinaWith the rapid development of space technology, the environment of the space domain has become more and more complex and changeable, which brought great difficulties in cognition of space domain activity. As space domain awareness (SDA) required, any relevant information and knowledge from various sources are needed as much as possible, while all of those can be sorted and integrated for effective cognition of space objects, including the cognition of their status. This paper proposes a knowledge integration framework (SSC-KA) designed for the cognition of space target and its status. In the framework (SSC-KA), open-source information and data acquired from multi-kinds of sensors are sent into parallel channels, and then processed by the algorithm this paper designed into sequence data as the channels’ output. Furthermore, the rules and four statuses defined in this paper can be judged for the anomaly detection of satellites. Based on the space domain knowledge acquisition framework of SSC-KA, this paper describes a complete abnormal state detection method for satellites step by step through multi-level feature engineering. Therefore, the method is used to analyze four different statuses of satellites in this paper, to verify the validity and feasibility of the application of the method in the cognition of spatial events, thus laying the foundation for the cognition of Space Domain Awareness.https://ieeexplore.ieee.org/document/9899446/Space domain awareness (SDA)knowledge engineeringanomaly detectionactivity cognition
spellingShingle Yining Song
Zhi Li
Zhanyue Zhang
Xia Wang
Yuqiang Fang
SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
IEEE Access
Space domain awareness (SDA)
knowledge engineering
anomaly detection
activity cognition
title SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
title_full SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
title_fullStr SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
title_full_unstemmed SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
title_short SSC-KA: A Framework of Space Situational Knowledge Acquisition for Status-Cognition of Satellites
title_sort ssc ka a framework of space situational knowledge acquisition for status cognition of satellites
topic Space domain awareness (SDA)
knowledge engineering
anomaly detection
activity cognition
url https://ieeexplore.ieee.org/document/9899446/
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