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| 1 | Cyber-physical security of a smart grid infrastructure 显示文摘 | Mo Yilin Kim T H Brancik K | 2012 | Proceedings of the IEEE2012,100,1: | 1 |
| 2 | Kalman filtering with intermittentobservations:tail distribution and critical value 显示文摘 | MO Yilin SINOPOLI B | 2012 | IEEE Trans Autom Control2012,57,3: | 1 |
| 3 | Detecting integrity attacks on SCADA systems显示文摘 | Mo Yilin Chabukswar R Sinopoli B | 2014 | IEEE Transactions on Con- trol Systems Technology2014,22,4: | 1 |
| 4 | Integrity data attacks in power market operations显示文摘 | XIE Le MO Yilin SINOPOLI B | 2011 | IEEE Transactions on Smart Grid2011,2,4: | 1 |
| 5 | Cyber-physical security of a smart grid infrastructure显示文摘 | Mo Yilin KIM T H | 2012 | Proceedings of the IEEE2012,1,100: | 1 |
| 6 | Cyber-physical security of a smart grid infi'astructure显示文摘 | Yilin Mo Hyun-Jin Kim T Brancik K | 2012 | Proceedings of the IEEE2012,100,1: | 1 |
| 7 | Integrity data attacks in power market operations显示文摘 | Le Xie Yilin Mo Sinopoli B | 2011 | IEEE Trans on Smart Grid2011,2,4: | 1 |
| 8 | Distributed Application Addressing in 6G Network显示文摘To ensure the extreme performances of the new 6G services,applications will be deployed at deep edge,resulting in a serious challenge of distributed application addressing.This paper traces back the latest development of mobile network application addressing,analyzes two novel addressing methods in carrier network,and puts forward a 6G endogenous application addressing scheme by integrating some of their essence into the 6G network architecture,combining the new 6G capabilities of computing&network convergence,endogenous intelligence,and communication-sensing integration.This paper further illustrates how that the proposed method works in 6G networks and gives preliminary experimental verification. | Liu Jie Chen Sibo Liu Yuqin Mo Zhiwei Lin Yilin Zhu Hongmei He Yufeng | 2024 | China Communications2024,21,4: | 0 |
| 9 | Security for cyber-physical systems: Secure control against known-plaintext attack显示文摘There has been a surge of interests in the security of cyber-physical systems(CPSs), yet it is commonly assumed that the adversary has a full knowledge of physical system models. This paper argues that such an unrealistic assumption can be relaxed: the adversary might still be able to identify the system model by passively observing the control input and sensory data. In such a setup, the attack with knowledge of input-output data can be categorized as a Known-Plaintext Attack. A necessary and sufficient condition has been provided, under which the adversary can uniquely obtain the knowledge of the underlying physical system.From the defender's perspective, a secure controller design—which exhibits a low rank structure—is proposed which renders the system unidentifiable to the adversary, while trading off the control system's performance. Finally, a numerical example has been provided to demonstrate the effectiveness of the proposed secure controller design. | YUAN Ye MO YiLin | 2020 | Science China(Technological Sciences)2020,63,9: | 0 |
| 10 | Guest Editorial for Special Issue on Cyber-Physical Systems显示文摘Ⅰ.Introduction CYBER-PHYSICAL system is a system of collaborating computational elements to control physical entities.The coordination and the tight link between computational,virtual and physical resources in cyber-physical system will have a pervasive effect on our everyday life.The development of cyber-physical system will create new opportunities for the introduction of services that will enhance the quality of life | Youxian Sun Xinping Guan Jiming Chen Yilin Mo | 2015 | IEEE/CAA Journal of Automatica Sinica2015,2,3: | 0 |
| 11 | Grid cell remapping under three-dimensional object and social landmarks detected by implantable microelectrode arrays for the medial entorhinal cortex显示文摘Grid cells with stable hexagonal firing patterns in the medial entorhinal cortex(MEC)carry the vital function of serving as a metric for the surrounding environment.Whether this mechanism processes only spatial information or involves nonspatial information remains elusive.Here,we fabricated an MEC-shaped microelectrode array(MEA)to detect the variation in neural spikes and local field potentials of the MEC when rats forage in a square enclosure with a planar,three-dimensional object and social landmarks in sequence.The results showed that grid cells exhibited rate remapping under social conditions in which spike firing fields closer to the social landmark had a higher firing rate.Furthermore,global remapping showed that hexagonal firing patterns were rotated and scaled when the planar landmark was replaced with object and social landmarks.In addition,when grid cells were activated,the local field potentials were dominated by the theta band(5–8 Hz),and spike phase locking was observed at troughs of theta oscillations.Our results suggest the pattern separation mechanism of grid cells in which the spatial firing structure and firing rate respond to spatial and social information,respectively,which may provide new insights into how the brain creates a cognitive map. | Zhaojie Xu Fan Mo Gucheng Yang Penghui Fan Yiding Wang Botao Lu Jingyu Xie Yuchuan Dai Yilin Song Enhui He Shihong Xu Juntao Liu Mixia Wang Xinxia Cai | 2022 | Microsystems & Nanoengineering2022,8,5: | 0 |
| 12 | Detection of neuronal defensive discharge information transmission and characteristics in periaqueductal gray double-subregions using PtNP/PEDOT:PSS modified microelectrode arrays显示文摘Threatened animals respond with appropriate defensive behaviors to survive.It has been accepted that midbrain periaqueductal gray(PAG)plays an essential role in the circuitry system and organizes defensive behavioral responses.However,the role and correlation of different PAG subregions in the expression of different defensive behaviors remain largely unexplored.Here,we designed and manufactured a microelectrode array(MEA)to simultaneously detect the activities of dPAG and vPAG neurons in freely behaving rats.To improve the detection performance of the MEAs,PtNP/PEDOT:PSS nanocomposites were modified onto the MEAs.Subsequently,the predator odor was used to induce the rat’s innate fear,and the changes and information transmission in neuronal activities were detected in the dPAG and vPAG.Our results showed that the dPAG and vPAG participated in innate fear,but the activation degree was distinct in different defense behaviors.During flight,neuronal responses were stronger and earlier in the dPAG than the vPAG,while vPAG neurons responded more strongly during freezing.By applying high-performance MEA,it was revealed that neural information spread from the activated dPAG to the weakly activated vPAG.Our research also revealed that dPAG and vPAG neurons exhibited different defensive discharge characteristics,and dPAG neurons participated in the regulation of defense responses with burst-firing patterns.The slow activation and continuous firing of vPAG neurons cooresponded with the regulation of long-term freezing responses.The results demonstrated the important role of PAG neuronal activities in controlling different aspects of defensive behaviors and provided novel insights for investigating defense from the electrophysiological perspective. | Botao Lu Penghui Fan Ming Li Yiding Wang Wei Liang Gucheng Yang Fan Mo Zhaojie Xu Jin Shan Yilin Song Juntao Liu Yirong Wu Xinxia Cai | 2023 | Microsystems & Nanoengineering2023,9,3: | 0 |