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添加116字节 、 2020年9月22日 (二) 22:14
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此词条暂由彩云小译翻译,未经人工整理和审校,带来阅读不便,请见谅。
 
此词条暂由彩云小译翻译,未经人工整理和审校,带来阅读不便,请见谅。
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本词条由信白初步翻译<br>
    
[[Image:YYL1.png|right|thumb|Controlling a simple network.]]
 
[[Image:YYL1.png|right|thumb|Controlling a simple network.]]
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Controlling a simple network.
 
Controlling a simple network.
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控制一个简单的网络。
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图1:控制一个简单的网络。
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Network Controllability is concerned about the structural controllability of a network.  Controllability describes our ability to guide a dynamical system from any initial state to any desired final state in finite time, with a suitable choice of inputs. This definition agrees well with our intuitive notion of control. The controllability of general directed and weighted complex networks has recently been the subject of intense study by a number of groups in wide variety of networks, worldwide. Recent studies by Sharma et al.  on multi-type biological networks (gene- gene, miRNA- gene, Protein-protein interaction networks) identified control targets in phenotypically characterized Osteosarcoma showing important role of genes and proteins responsible for maintaining tumor microenvironment.
 
Network Controllability is concerned about the structural controllability of a network.  Controllability describes our ability to guide a dynamical system from any initial state to any desired final state in finite time, with a suitable choice of inputs. This definition agrees well with our intuitive notion of control. The controllability of general directed and weighted complex networks has recently been the subject of intense study by a number of groups in wide variety of networks, worldwide. Recent studies by Sharma et al.  on multi-type biological networks (gene- gene, miRNA- gene, Protein-protein interaction networks) identified control targets in phenotypically characterized Osteosarcoma showing important role of genes and proteins responsible for maintaining tumor microenvironment.
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网络可控性研究的是网络的结构可控性。可控性描述了我们在有限时间内,通过合适的输入选择,引导动力系统从任何初始状态到任何期望的最终状态的能力。这个定义与我们直观的控制概念非常吻合。一般有向和加权复杂网络的可控性是近年来世界范围内各种网络的研究热点之一。夏尔马等人最近的研究。多种生物学网络(基因-基因、 miRNA-基因、蛋白质-蛋白质相互作用网络)在表型特征的骨肉瘤中确定了控制靶点,显示了维持肿瘤微环境的基因和蛋白质的重要作用。
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'''<font color="#FF8000">网络可控性 Network Controllability </font>'''研究的是网络的结构可控性。可控性描述了我们在有限时间内,通过合适的输入选择,引导动力系统从任何初始状态到任何期望的最终状态的能力。这个定义与我们直观的控制概念非常吻合。一般有向加权复杂网络的可控性是近年来世界范围内许多研究小组的重点研究课题。夏尔马等人最近的研究,在多种生物学网络(基因-基因、 miRNA-基因、蛋白质-蛋白质相互作用网络)上,确定了骨肉瘤表型特征的控制目标,显示了基因和蛋白质在维持肿瘤微环境中的重要作用。
          
==Background==
 
==Background==
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背景<br>
    
Consider the canonical linear time-invariant dynamics on a complex network
 
Consider the canonical linear time-invariant dynamics on a complex network
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Consider the canonical linear time-invariant dynamics on a complex network
 
Consider the canonical linear time-invariant dynamics on a complex network
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考虑复杂网络上的正则线性定常动力学
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考虑复杂网络上的正则线性动力学
    
<math>
 
<math>
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