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| 1 | 带并联电抗器的交流特高压输电线路单相自适应重合闸故障识别方法(英文)显示文摘In order to avoid single-phase adaptive reclosure overlap in a permanent fault,accurate identification of the fault types on transmission line is necessary.We present a fault nature identification method for ultra-high voltage alternating current(UHVAC) transmission lines with shunt reactor.The voltage amplitude ratios of the neutral small reactance voltage to terminal voltage under transient fault and permanent fault are calculated.The significant differences of the ratio under the two faults have been analyzed.It is found that the ratio can be a criterion to distinguish the fault type,transient or permanent,accurately.Additionally,we also proposed a method that delays a beat frequency oscillation cycle to decide the fault types for the existence of beat frequency oscillation which will cause misidentification on transient faults.Abundant simulation results of ATP/EMTP show that the voltage amplitude ratio under transient fault is between 0.6 and 0.7,which is bigger than 2.5,the ratio under permanent fault. | LIN Xin XIE Yinzhi SUI Dongpeng XU Jianyuan LIU Yang | 2013 | 高电压技术2013,39,4: | 4 |
| 2 | Multi-dimensional, light-controlled switch of fluorescence resonance energy transfer based on orderly assembly of 0D dye@micro-micelles and 2D ultrathin-layered nanosheets显示文摘荧光回声精力转移(烦恼) 系统在视觉察觉,聪明的材料,和生物成像有宽广应用,所有哪个帮助通过多重尺寸并且在多样的方向的光的传播。此处,我们示威了多维(0D 和 2D ) 由采用 layer-by-layer (LBL ) 在一部多层的 ultrathin 电影(UTF ) 以内烦恼集会技术。(tert 丁基 acrylate-co-ethyl acrylate-co-methacrylic 酸)(PTBEM ) anionic 块共聚物 micelle poly 为二度(8-hydroxyquinolate ) 的加入被选择为一个分子的搬运人锌(Znq 2) 和开戒指的 merocyanine (MC )( 是表示了(Znq 2/MC)@PTBEM) 。或者,静电的汇编与 cationic 被执行分层的双氢氧化物(LDH ) nanosheets (是表示了[(Znq 2/MC)@PTBEM/LDH] n ) 。这[(Znq 2/MC)@PTBEM/LDH] n 系统提供多维的繁殖媒介并且保证 FRET 施主和领受人位于他们的 F 以内 ? 在每个方向的 rster 半径。系统表明能经由轮流出现被交换的 FRET 进程紫外 / 可见(UV/vis ) 照耀与悦耳的 blue-green/red 荧光,象 81.7% 一样高导致 FRET 效率。这被期望这个汇编方法,它在 2D 上使用 0D 微粒分层的材料,能为进一步的开发被扩大到另外的系统多维烦恼。 | Zhixiong Li Ruizheng Liang Simin Xu Wendi Liu Dongpeng Yan Min Wei David G. Evans Xue Duan | 2016 | Nano Research2016,9,12: | 4 |
| 3 | Memory access integrity:detecting fine-grained memory access errors in binary code显示文摘As one of the most notorious programming errors,memory access errors still hurt modern software security.Particularly,they are hidden deeply in important software systems written in memory unsafe languages like C/C++.Plenty of work have been proposed to detect bugs leading to memory access errors.However,all existing works lack the ability to handle two challenges.First,they are not able to tackle fine-grained memory access errors,e.g.,data overflow inside one data structure.These errors are usually overlooked for a long time since they happen inside one memory block and do not lead to program crash.Second,most existing works rely on source code or debugging information to recover memory boundary information,so they cannot be directly applied to detection of memory access errors in binary code.However,searching memory access errors in binary code is a very common scenario in software vulnerability detection and exploitation.In order to overcome these challenges,we propose Memory Access Integrity(MAI),a dynamic method to detect finegrained memory access errors in off-the-shelf binary executables.The core idea is to recover fine-grained accessing policy between memory access behaviors and memory ranges,and then detect memory access errors based on the policy.The key insight in our work is that memory accessing patterns reveal information for recovering the boundary of memory objects and the accessing policy.Based on these recovered information,our method maintains a new memory model to simulate the life cycle of memory objects and report errors when any accessing policy is violated.We evaluate our tool on popular CTF datasets and real world softwares.Compared with the state of the art detection tool,the evaluation result demonstrates that our tool can detect fine-grained memory access errors effectively and efficiently.As the practical impact,our tool has detected three 0-day memory access errors in an audio decoder. | Wenjie Li Dongpeng Xu WeiWu Xiaorui Gong Xiaobo Xiang Yan Wang Fangming gu Qianxiang Zeng | 2019 | Cybersecurity2019,2,1: | 1 |
| 4 | Multi-functional stimuli-responsive biomimetic flower assembled from CLCE and MOF-based pedals显示文摘Simulating the structures and behaviors of living organisms are of great significance to develop novel multi-functional intelligent devices. However, the development of biomimetic devices with complex deformable structures and synergistic properties is still on the way. Herein, we propose a simple and effective approach to create the multi-functional stimuli-responsive biomimetic devices with independently pre-programmable colorful visual patterns, complex geometries and morphable modes. The metal organic framework(MOF)-based composite film acts as a rigidity actuation substrate to support and mechanically guide the spatial configuration of the soft chiral nematic liquid crystal elastomer(CLCE) sheet. We can directly program the structural color of the CLCE sheet by adjusting the thickness distribution without tedious chemical modification. By using this coordination strategy, we fabricate an artificial flower, which exhibits a synergistic effect of both shape transformation and color change like paeonia ‘Coral Sunset’at different flowering stages, and can even perform different flowering behaviors by bending, twisting and curling petals. The assembled bionic flower is innovatively demonstrated to respond to local stimuli of humidity, heat or ultraviolet irradiation. Therefore, the spatial assembly of CLCE combined with functional MOF materials has a wide range of potential application in multi-functional integrated artificial systems. | Dongpeng Sun Lin Zheng Xuejing Xu Kaiyang Du Zhiqiang An Xuan Zhou Li Chen Jiliang Zhu Dong Chen | 2023 | Chinese Chemical Letters2023,34,1: | 1 |
| 5 | Seasonal variation of airborne fungi of the Tiantishan Grottoes andWestern Xia Museum,Wuwei,China显示文摘In this study,a systematic survey of cultural airborne fungi was carried out in the occurrence environments of wall paintings that are preserved in the Tiantishan Grottoes and the Western Xia Museum,China.A bio-aerosol sampler was used for sampling in four seasons in 2016.Culture-dependent and-independent methods were taken to acquire airborne fungal concentration and purified strains;by the extraction of genomic DNA,amplification of fungal ITS rRNA gene region,sequencing,and phylogenetic analysis,thereafter the fungal community composition and distribution characteristics of different study sites were clarified.We disclosure the main environmental factors which may be responsible for dynamic changes of airborne fungi at the sampling sites.The concentration of cultural airborne fungi was in a range from 13 to 1,576 CFU/m^(3),no significant difference between the two sites at the Tiantishan Grottoes,with obvious characteristics of seasonal variation,in winter and spring were higher than in summer and autumn.Also,there was a significant difference in fungal concentration between the inside and outside of the Western Xia Museum,the outside of the museum was far more than the inside of the museum in the four seasons,particularly in the winter.Eight fungal genera were detected,including Cladosporium,Penicillium,Alternaria,and Filobasidium as the dominant groups.The airborne fungal community structures of the Tiantishan Grottoes show a distinct characteristic of seasonal variation and spatial distribution.Relative humidity,temperature and seasonal rainfall influence airborne fungal distribution.Some of the isolated strains have the potential to cause biodeterioration of ancient wall paintings.This study provides supporting information for the pre-warning conservation of cultural relics that are preserved at local sites and inside museums. | YuLong Duan FaSi Wu DongPeng He RuiHong Xu HuYuan Feng Tuo Chen GuangXiu Liu WanFu Wang | 2021 | Research in Cold and Arid Regions2021,13,6: | 0 |
| 6 | Overview on artificial intelligence in design of Organic Rankine Cycle显示文摘Converting thermal energy into mechanical work by means of Organic Rankine Cycle is a validated technology to exploit low-grade waste heat.The typical design process of Organic Rankine Cycle system,which commonly in-volves working fluid selection,cycle configuration selection,operating parameters optimization,and component selection and sizing,is time-consuming and highly dependent on engineer’s experience.Thus,it is difficult to achieve the optimal design in most cases.In recent decades,artificial intelligence has been gradually introduced into the design of energy system to overcome above shortcomings.In order to clarify the research field of arti-ficial intelligence technique in Organic Rankine Cycle design and guide artificial intelligence technique to assist Organic Rankine Cycle design better,this study presents a preliminary literature summary on recent progresses of artificial intelligence technique in organic Rankine cycle systems design.First,this study analyzes four main procedures which constitute a typical design process of Organic Rankine Cycle systems and finds that design problems encountered during design process can be divided into three categories:decision making,parameter optimization and parameter prediction.In the second section,a detailed literature review on each design proce-dures using artificial intelligence algorithms is presented.At last,the state of art in this field and the prospects for the future work are provided. | Dongpeng Zhao Shuai Deng Li Zhao Weicong Xu Wei Wang Xianhua Nie Mengchao Chen | 2020 | Energy and AI2020,1,1: | 0 |
| 7 | Memory access integrity:detecting fine-grained memory access errors in binary code显示文摘As one of the most notorious programming errors,memory access errors still hurt modern software security.Particularly,they are hidden deeply in important software systems written in memory unsafe languages like C/C++.Plenty of work have been proposed to detect bugs leading to memory access errors.However,all existing works lack the ability to handle two challenges.First,they are not able to tackle fine-grained memory access errors,e.g.,data overflow inside one data structure.These errors are usually overlooked for a long time since they happen inside one memory block and do not lead to program crash.Second,most existing works rely on source code or debugging information to recover memory boundary information,so they cannot be directly applied to detection of memory access errors in binary code.However,searching memory access errors in binary code is a very common scenario in software vulnerability detection and exploitation.In order to overcome these challenges,we propose Memory Access Integrity(MAI),a dynamic method to detect finegrained memory access errors in off-the-shelf binary executables.The core idea is to recover fine-grained accessing policy between memory access behaviors and memory ranges,and then detect memory access errors based on the policy.The key insight in our work is that memory accessing patterns reveal information for recovering the boundary of memory objects and the accessing policy.Based on these recovered information,our method maintains a new memory model to simulate the life cycle of memory objects and report errors when any accessing policy is violated.We evaluate our tool on popular CTF datasets and real world softwares.Compared with the state of the art detection tool,the evaluation result demonstrates that our tool can detect fine-grained memory access errors effectively and efficiently.As the practical impact,our tool has detected three 0-day memory access errors in an audio decoder. | Wenjie Li Dongpeng Xu WeiWu Xiaorui Gong Xiaobo Xiang YanWang Fangming gu Qianxiang Zeng | 2018 | Cybersecurity2018,1,1: | 0 |
| 8 | Experimental study on the effect of Huangqi and Danshen ultramicro gel on vascular healing of wound in rats based on network pharmacology显示文摘Objective:To explore the effective components of Huangqi(Astragalus membranaceus(Fisch.)Bge.)and Danshen(Salvia miltiorrhiza Bge.)and predict their potential functional targets,to explore the effect and mechanism of Huangqi and Danshen ultrafine granule gel on wound vascular healing in rats by network pharmacology and experimental verification.Methods:Using the TCMSP database to screen the active components of two herbs and their potential targets,to search the target related to vascular injury through the Gene Card database,and to select the gene target with correlation coefficient greater than 10%.Then map the disease related target to the potential target of the compound,to obtain the common target,and to import the information to the String online analysis platform and Cytoscape to make the PPI map,and to carry on the topological analysis,KEGG and GO enrichment analysis through Metascape platform.The expression analysis of the main target genes of network pharmacology was verified by pathological section staining and optical density method to determine the content of vascular endothelial growth factor(VEGF)in tissues,the number of tissue new capillaries,and the wound healing rate.Results:A total of 115 active components and 297 target genes were selected from Huangqi and Danshen,and 123 target genes were intersected with vascular injury,among which IL6,AKT1,INS,VEGFA,TNF,EGF,CASP3,MAPK1,TP53 were the active genes with the highest intersection value.The pathways involved are mainly related to AGE-RAGE signaling pathway in diabetic complications,MAPK signaling pathway,Pathways in cancer,human cytomegalovirus infection,Fluid shear stress and atherosclerosis,Endocrine resistance,foxo signaling pathway etc.We experimentally validated VEGFA based on the primary target of vascular regeneration,the experimental results showed that there was different expression of VEGFA proteins in wound vascular healing process,and the quercetin,daidzein,luteolin,apigenin,tanshinone i of 115 active components were selected as the main compounds acting on the VEGFA.Conclusion:This study systematically reveals the material basis and mechanism of Huangqi and Danshen regulating wound vascular healing through multi-component,multi-target and multi-pathway and provides theoretical and scientific basis for the clinical application of Huangqi and Danshen. | Yikang Yu Kai Yu Bocheng Liang Dongpeng Tu WenKai Zhang Chao Xu Zheng Liu Yi Peng Bin Zhang | 2021 | TMR Modern Herbal Medicine2021,4,4: | 0 |