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作 者:CHEN Zhiwei ZHOU Ziming ZHANG Luogeng CUI Chaowei ZHONG Jilong
机构地区:[1]Unmanned System Research Institute,Northwestern Polytechnical University,Xi’an 710109,China [2]College of Science,University of Shanghai for Science and Technology,Shanghai 200093,China [3]National Institute of Defense Technology Innovation,Academy of Military Science,Beijing 100091,China
出 处:《Journal of Systems Engineering and Electronics》2023年第3期588-597,共10页系统工程与电子技术(英文版)
基 金:supported by the National Natural Science Foundation of China(72101270,72001213).
摘 要:The concept of unmanned weapon system-of-systems(UWSoS)involves a collection of various unmanned systems to achieve or accomplish a specific goal or mission.The mission reliability of UWSoS is represented by its ability to finish a required mission above the baselines of a given mission.However,issues with heterogeneity,cooperation between systems,and the emergence of UWSoS cannot be effectively solved by traditional system reliability methods.This study proposes an effective operation-loop-based mission reliability evaluation method for UWSoS by analyzing dynamic reconfiguration.First,we present a new connotation of an effective operation loop by considering the allocation of operational entities and physical resource constraints.Then,we propose an effective operationloop-based mission reliability model for a heterogeneous UWSoS according to the mission baseline.Moreover,a mission reliability evaluation algorithm is proposed under random external shocks and topology reconfiguration,revealing the evolution law of the effective operation loop and mission reliability.Finally,a typical 60-unmanned-aerial-vehicle-swarm is taken as an example to demonstrate the proposed models and methods.The mission reliability is achieved by considering external shocks,which can serve as a reference for evaluating and improving the effectiveness of UWSoS.
关 键 词:mission reliability unmanned weapon system-ofsystems dynamic reconfiguration effective operation loop
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