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Baseline——一种容忍与检测DoS/DDoS攻击的被动方法(英文)
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作者 金舒 刘凤玉 许满武 《电力自动化设备》 EI CSCD 北大核心 2005年第6期7-13,共7页
提出一种检测DoS/DDoS攻击(拒绝服务攻击/分布式拒绝服务攻击)的“Baseline”服务体系结构,并实现了其中关键的“Shepherd”检测算法。该体系结构通过把服务及其质量是否受到影响的判断指标交由具体的通信进程来定义而具有较强的适应性... 提出一种检测DoS/DDoS攻击(拒绝服务攻击/分布式拒绝服务攻击)的“Baseline”服务体系结构,并实现了其中关键的“Shepherd”检测算法。该体系结构通过把服务及其质量是否受到影响的判断指标交由具体的通信进程来定义而具有较强的适应性,可以与各种现有入侵检测系统很好地结合且不给宿主系统增加过多的开销。同时相比其他DoS/DDoS检测方式,Baseline服务无须对Internet路由基础设施作出更改来提供支持,是一种十分可行的DoS/DDoS检测方案。在理想情况下,Baseline服务可以做到对DoSDDoS入侵零误报。 展开更多
关键词 baseline服务 可用性监视 DoS/DDoS攻击检测
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基于MAX+plusII 10.0 Baseline的数字电路设计
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作者 管立新 赖昭胜 《现代电子技术》 2003年第22期57-59,共3页
讨论 MAX+plus II10 .0 Baseline的功能和特点 ,提出以 VHDL 设计语言为手段、以 MAX+plus II10 .0Baseline为平台的数字电路的设计方法。
关键词 数字电路 MAX+plusⅡ10.0baseline VHDL CPLD FPGA
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基于Baseline SVD主动学习算法的推荐系统 被引量:3
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作者 季芸 胡雪蕾 《现代电子技术》 北大核心 2015年第12期8-11,共4页
推荐系统是一种解决信息过载的新型技术,为了解决推荐系统中新用户带来的冷启动问题,提出一种基于主动学习的推荐系统。主动学习方法能有效减少需要标记的样本数量,快速建立模型,在此选择将主动学习方法和Baseline SVD推荐算法结合起来... 推荐系统是一种解决信息过载的新型技术,为了解决推荐系统中新用户带来的冷启动问题,提出一种基于主动学习的推荐系统。主动学习方法能有效减少需要标记的样本数量,快速建立模型,在此选择将主动学习方法和Baseline SVD推荐算法结合起来,通过记录模型训练得到的预估评价的改变程度,认为改变最大的样例即是最具有信息量的样例,供新用户标记,并重新训练模型。通过与其他选择策略进行实验比较,证实了该方法确实有效解决了新用户带来的冷启动问题。 展开更多
关键词 推荐系统 主动学习 baseline SVD 样例选择
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GPS dynamic cycle slip detection and correction with baseline constraint 被引量:3
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作者 Liu Zhenkun Huang Shunji 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第1期60-64,共5页
When the cycle slips take place in the attitude determination of a moving platform, the precision of the attitude will be impaired badly. A method of cycle slip detection and correction is proposed, which is suitable ... When the cycle slips take place in the attitude determination of a moving platform, the precision of the attitude will be impaired badly. A method of cycle slip detection and correction is proposed, which is suitable to the dynamic measurement using GPS carrier phase: the cycle slips detection is first achieved by triple difference observables, then the cycle slips correction is performed with baseline length constraint. The simulation results show that the proposed method is effective to the dynamic cycle slips problem. 展开更多
关键词 dynamic cycle slip dectection triple difference observable baseline constraint attitude determination.
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Joint adaptive waveform and baseline range design for bistatic radar 被引量:2
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作者 王璐璐 王宏强 +1 位作者 程永强 秦玉亮 《Journal of Central South University》 SCIE EI CAS 2014年第6期2262-2272,共11页
The problems of joint adaptive waveform design and baseline range design for bistatic radar to maximize the practical radar resolution were considered.Distinguishing from the conventional ambiguity function(AF)-based ... The problems of joint adaptive waveform design and baseline range design for bistatic radar to maximize the practical radar resolution were considered.Distinguishing from the conventional ambiguity function(AF)-based resolution which is only related with the transmitted waveform and bistatic geometry and could be regarded as the potential resolution of a bistatic radar system,the practical resolution involves the effect of waveform,signal-to-noise ratio(SNR)as well as the measurement model.Thus,it is more practical and will have further significant application in target detection and tracking.The constraint optimization procedure of joint adaptive waveform design and baseline range design for maximizing the practical resolution of bistatic radar system under dynamic target scenario was devised.Simulation results show that the range and velocity resolution are enhanced according to the adaptive waveform and bistatic radar configuration. 展开更多
关键词 ambiguity function (AF) adaptive waveform design bistatic radar baseline range design RESOLUTION
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Time-varying baseline error correction method for ground-based micro-deformation monitoring radar
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作者 LEI Tianjie WANG Jiabao +4 位作者 HUANG Pingping TAN Weixian QI Yaolong XU Wei ZHAO Chun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2022年第4期938-950,共13页
In recent years, ground-based micro-deformation monitoring radar has attracted much attention due to its excellent monitoring capability. By controlling the repeated campaigns of the radar antenna on a fixed track, gr... In recent years, ground-based micro-deformation monitoring radar has attracted much attention due to its excellent monitoring capability. By controlling the repeated campaigns of the radar antenna on a fixed track, ground-based micro-deformation monitoring radar can accomplish repeat-pass interferometry without a space baseline and thus obtain highprecision deformation data of a large scene at one time. However, it is difficult to guarantee absolute stable installation position in every campaign. If the installation position is unstable, the stability of the radar track will be affected randomly, resulting in time-varying baseline error. In this study, a correction method for this error is developed by analyzing the error distribution law while the spatial baseline is unknown. In practice, the error data are first identified by frequency components, then the data of each one-dimensional array(in azimuth direction or range direction) are grouped based on numerical distribution period, and finally the error is corrected by the nonlinear model established with each group.This method is verified with measured data from a slope in southern China, and the results show that the method can effectively correct the time-varying baseline error caused by rail instability and effectively improve the monitoring data accuracy of groundbased micro-deformation radar in short term and long term. 展开更多
关键词 ground-based micro-deformation monitoring radar deformation monitoring time-varying baseline error compensation
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SBAS-InSAR技术监测青藏高原季节性冻土形变 被引量:126
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作者 李珊珊 李志伟 +2 位作者 胡俊 孙倩 俞晓莹 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2013年第5期1476-1486,共11页
冻土的冻结和融化的反复交替会造成地质环境与结构的破坏,从而导致房屋和道路等地面工程建筑物的地基破裂或者塌陷,还会引起山体滑坡、洪水暴发以及冰川移动等.因此,监测冻土形变对确保冻土区工程建筑的稳定性和安全性,同时保证冻土区... 冻土的冻结和融化的反复交替会造成地质环境与结构的破坏,从而导致房屋和道路等地面工程建筑物的地基破裂或者塌陷,还会引起山体滑坡、洪水暴发以及冰川移动等.因此,监测冻土形变对确保冻土区工程建筑的稳定性和安全性,同时保证冻土区社会经济可持续发展具有重要的意义.目前,在冻土监测方面并没有能大面积监测冻土形变时间演化情况的有效方法,本文提出将InSAR技术中的小基线集方法(SBAS-InSAR)应用于监测冻土来获取其形变时间序列中.考虑到冻土形变呈现明显的季节性特征,本文提出利用周期形变模型来代替传统SBAS方法中的线性形变模型,从而更好地分离出高程残差和大气误差.利用ENVISAT卫星获取的21景ASAR影像图作为实验数据,采用改进的SBAS技术成功获取了青藏高原从羊八井站至当雄站铁路段冻土区的地表形变时间序列图,揭示了该冻土区从2007年到2010年的季节性形变演化情况.通过与研究地区温度变化的联合分析,发现所得到的地表形变结果与冻土的物理变化规律非常吻合,证明了SBAS-InSAR技术在冻土形变监测中具有良好的发展应用前景. 展开更多
关键词 冻土 INSAR SBAS (Small baseline subset) 青藏高原 形变监测
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基于短基线集方法(SBAS-INSAR)技术的山区城市地面沉降监测研究——以攀枝花为例 被引量:21
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作者 孟庆凯 汪宝存 苗放 《科学技术与工程》 北大核心 2016年第13期12-17,共6页
基于合成孔径雷达干涉(interferometric synthetic aperture radar,INSAR)技术的山区城市地面沉降研究,因地形复杂、植被覆盖等因素开展较少。首次在攀枝花市,利用12景2009-2010ENVISAT ASAR数据,采用短基线集方法开展大范围、长时间监... 基于合成孔径雷达干涉(interferometric synthetic aperture radar,INSAR)技术的山区城市地面沉降研究,因地形复杂、植被覆盖等因素开展较少。首次在攀枝花市,利用12景2009-2010ENVISAT ASAR数据,采用短基线集方法开展大范围、长时间监测。结果表明,攀枝花市东区地面沉降较大,沉降的平均速率高达48 mm/年;西区沉降较小,沉降平均速率10 mm/年。推测原因多为城市化建设所致地面荷载;而市东北方向的露天矿区,因连续开采所致,不同时期同一地点的地表变化,导致高相干点在此区域分散稀疏,不能表明是否有沉降现象。 展开更多
关键词 地面沉降 短基线集(sinall baseline subset SBAS) 时序分析 攀枝花
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应用DSSAT模型预测宁夏春小麦产量演变趋势 被引量:16
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作者 杨勤 许吟隆 +2 位作者 林而达 熊伟 陈晓光 《干旱地区农业研究》 CSCD 北大核心 2009年第2期41-48,共8页
对DSSAT作物模型中的CERES-Wheat小麦模型,在排除虫害和病害影响条件下,以宁夏永宁站永良4号春小麦为样本进行品种参数调试及模拟验证,确定品种参数。宁夏平罗站同一品种15年生育期特征及潜在产量模拟验证结果表明,产量值、开花天数预... 对DSSAT作物模型中的CERES-Wheat小麦模型,在排除虫害和病害影响条件下,以宁夏永宁站永良4号春小麦为样本进行品种参数调试及模拟验证,确定品种参数。宁夏平罗站同一品种15年生育期特征及潜在产量模拟验证结果表明,产量值、开花天数预测结果较好,生理成熟天数模拟误差较大。宁夏黄河灌区25 km×25 km共计39个格点1961-1990年Baseline气候情景(无考虑温室气体效应)及构建的2011-2100年A2(CO2约1%的中高排放)、B2(CO2约0.5%的中低排放)气候情景潜在产量模拟对比结果表明,Baseline气候情景下39个格点的平均潜在产量6 428 kg/hm^2,A2情景下的2011-2040、2041-2070、2071-2100平均产量分别为6 235、5 869、5 211 kg/hm^2,与Baseline年相比均为减产趋势,分别减产为3%、8%、19%。B2情景下的2011-2040、2041-2070、2071-2100平均产量分别为6 2195、977、5721 kg/hm^2,与Baseline年相比均为减产趋势,分别减产3%、7%、11%。高排放的减产率比低排放要大。 展开更多
关键词 DSSAT作物模型 baseline气候情景 A2、B2气候情景 品种参数 潜在产量
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TOA positioning algorithm of LBL system for underwater target based on PSO 被引量:4
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作者 XING Yao WANG Jiongqi +3 位作者 HE Zhangming ZHOU Xuanying CHEN Yuyun PAN Xiaogang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2023年第5期1319-1332,共14页
For the underwater long baseline(LBL)positioning systems,the traditional distance intersection algorithm simplifies the sound speed to a constant,and calculates the underwa-ter target position parameters with a nonlin... For the underwater long baseline(LBL)positioning systems,the traditional distance intersection algorithm simplifies the sound speed to a constant,and calculates the underwa-ter target position parameters with a nonlinear iteration.However,due to the complex underwater environment,the sound speed changes with time and space,and then the acoustic propagation path is actually a curve,which inevitably causes some errors to the traditional distance intersection positioning algorithm.To reduce the position error caused by the uncertain underwater sound speed,a new time of arrival(TOA)intersection underwater positioning algorithm of LBL system is proposed.Firstly,combined with the vertical layered model of the underwater sound speed,an implicit positioning model of TOA intersection is constructed through the constant gradient acoustic ray tracing.And then an optimization function based on the overall TOA residual square sum is advanced to solve the position parameters for the underwater target.Moreover,the particle swarm optimization(PSO)algorithm is replaced with the tra-ditional nonlinear least square method to optimize the implicit positioning model of TOA intersection.Compared with the traditional distance intersection positioning model,the TOA intersec-tion positioning model is more suitable for the engineering practice and the optimization algorithm is more effective.Simulation results show that the proposed methods in this paper can effectively improve the positioning accuracy for the underwater target. 展开更多
关键词 long baseline(LBL)positioning system sound speed profile constant gradient acoustic ray tracing time of arrival(TOA)intersection model particle swarm optimization(PSO)
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High sidelobe effects on interferometric coherence for circular SAR imaging geometry 被引量:2
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作者 Leilei Kou Xiaoqing Wang +1 位作者 Maosheng Xiang Minhui Zhu 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2013年第1期76-83,共8页
The coherence is a measure for the accuracy of the interferometric phase, and the synthetic aperture radar (SAR) inter- ferometric coherence is affected by several sources of the decor- relation noise. For the circu... The coherence is a measure for the accuracy of the interferometric phase, and the synthetic aperture radar (SAR) inter- ferometric coherence is affected by several sources of the decor- relation noise. For the circular SAR (CSAR) imaging geometry, the system response function is in the form of the Bessel function which brings a high sidelobe, and the high sidelobe of CSAR will be an important factor influencing the interferometric coherence. The effect of the high sidelobe on the coherence is analyzed and deduced. Based on the interferometric characteristics of the slight difference in the viewing angles and the potential pixel off- set in the interferometric SAR (InSAR) images, a relation between the radar impulse response and the coherence loss function is derived. From the relational model, the coherence loss function due to the high sidelobe of CSAR is then deduced, and compared with that of the conventional SAR. It is shown that the high sidelobe of CSAR focusing signal will severely affect the baseline decorre- lation and coregistration decorrelation. Simulation results confirm the theoretical analysis and quantitatively show the baseline and coregistration decorrelation degradation due to the high sidelobes of CSAR. 展开更多
关键词 interferometric coherence circular SAR (CSAR) high sidelobe interferometric SAR (InSAR) baseline decorrelation coregistration decorrelation.
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InSAR measurements of surface deformation over permafrost on Fenghuoshan Mountains section,Qinghai-Tibet Plateau 被引量:1
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作者 YANG Honglei JIANG Qiao +2 位作者 HAN Jianfeng KANG Ki-Yeob PENG Junhuan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2021年第6期1284-1303,共20页
The permafrost development in the Qinghai-Tibet Engineering Corridor(QTEC)is affected by natural environment changes and human engineering activities.Human engineering activities may damage the permafrost growing envi... The permafrost development in the Qinghai-Tibet Engineering Corridor(QTEC)is affected by natural environment changes and human engineering activities.Human engineering activities may damage the permafrost growing environment,which in turn impact these engineering activities.Thus high spatial-temporal resolution monitoring over the QTEC in the permafrost region is very necessary.This paper presents a method for monitoring the frozen soil area using the intermittent coherencebased small baseline subset(ICSBAS).The method can improve the point density of the results and enhance the interpretability of deformation results by identifying the discontinuous coherent points according to the coherent value of time series.Using the periodic function that models the seasonal variation of permafrost,we separate the long wavelength atmospheric delay and establish an estimation model for the frozen soil deformation.Doing this can raise the monitoring accuracy and improve the understanding of the surface deformation of the frozen soil.In this study,we process 21 PALSAR data acquired by the Alos satellite with the proposed ICSBAS technique.The results show that the frozen soil far from the QTR in the study area experiences frost heave and thaw settlement(4.7 cm to8.4 cm)alternatively,while the maximum settlement along the QTR reaches 12 cm.The interferomatric syntnetic aperture radar(InSAR)-derived results are validated using the ground leveling data nearby the Beiluhe basin.The validation results show the InSAR results have good consistency with the leveling data in displacement rates as well as time series.We also find that the deformation in the permafrost area is correlated with temperature,human activities and topography.Based on the interfering degree of human engineering activities on the permafrost environment,we divide the QTEC along the Qinghai-Tibet Railway into engineering damage zone,transition zone and natural permafrost. 展开更多
关键词 PERMAFROST Qinghai-Tibet Plateau small baseline subset interferomatric syntnetic aperture radar(SBAS-In SAR) deformation model
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