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Infrared small target detection algorithm via partial sum of the tensor nuclear norm and direction residual weighting
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作者 SUN Bin XIA Xing-Ling +1 位作者 FU Rong-Guo SHI Liang 《红外与毫米波学报》 北大核心 2025年第2期277-288,共12页
Aiming at the problem that infrared small target detection faces low contrast between the background and the target and insufficient noise suppression ability under the complex cloud background,an infrared small targe... Aiming at the problem that infrared small target detection faces low contrast between the background and the target and insufficient noise suppression ability under the complex cloud background,an infrared small target detection method based on the tensor nuclear norm and direction residual weighting was proposed.Based on converting the infrared image into an infrared patch tensor model,from the perspective of the low-rank nature of the background tensor,and taking advantage of the difference in contrast between the background and the target in different directions,we designed a double-neighborhood local contrast based on direction residual weighting method(DNLCDRW)combined with the partial sum of tensor nuclear norm(PSTNN)to achieve effective background suppression and recovery of infrared small targets.Experiments show that the algorithm is effective in suppressing the background and improving the detection ability of the target. 展开更多
关键词 infrared small target detection infrared patch tensor model partial sum of the tensor nuclear norm direction residual weighting
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Direction finding for wideband signal and multi-target with interferometer
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作者 PENG Bo SUN Jikang LI Chao 《Journal of Systems Engineering and Electronics》 2025年第5期1132-1139,共8页
According to the measurement principle of the traditional interferometer,a narrowband signal model is established and used,however,for wideband signals or multiple signals,this model is invalid.For the problems of dir... According to the measurement principle of the traditional interferometer,a narrowband signal model is established and used,however,for wideband signals or multiple signals,this model is invalid.For the problems of direction finding with interferometer for wideband signals and multiple signals scene,a frequency domain phase interferometer is proposed and the concrete implementation scheme is given.The proposed method computes the phase difference in frequency domain,and finds multi-target results with judging the spectrum amplitude changing,and uses the frequency phase difference to compute the arrival angle.Theoretical analysis and simulation results show that the proposed method effectively solves the problem of the angle estimation with phase interferometer for wideband signals,and has good performance in multiple signals scene with nonoverlapping spectrum or partially overlapping.In addition,the wider the signal bandwidth,the better direction finding performance of this algorithm. 展开更多
关键词 phase interferometer wideband signal direction finding multi-signal direction finding frequency domain interferometer
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Effect of pulse current and its application direction on the size effect of nanocrystalline nickel foil
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作者 WANG Yi-yan LI Chao +2 位作者 CHEN Zi-shuai DU Jin-yang LI Feng 《Journal of Central South University》 2025年第7期2416-2431,共16页
In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ra... In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ratios(λ)were prepared using pulsed electrodeposition in this paper and unidirectional tensile experiments were carried out at room temperature with different currents and their applied directions.The experimental results show that the nanocrystalline Ni foil produces an obvious electroplasticity effect after applying the current field,and when 300<λ<1100,the current weakens the size effect of nanocrystalline Ni foils to a certain extent,and the angle between the current direction and the deformation direction also affects the mechanical response of nanocrystalline Ni foils,and when the angle between the current direction and the deformation direction is 0°,electroplasticity effect is the best,and the current has the most significant effect of abating the size effect of the material.The mechanism of unidirectional tensile deformation of nanocrystalline Ni foils under the effect of pulsed current was analyzed using TEM and TKD.It was found that the applied pulse current increased the activity of the nanocrystalline boundaries,promoted the movement of dislocations,and reduced the tendency of dislocation entanglement.The higher the peak current density and the smaller the angle between the direction of the current and the direction of deformation,the smaller the grain boundary orientation difference,the more dispersed the grain orientation,and the lower the density of geometrically necessary dislocations(GND)in the deformed nanocrystalline foil,the more significant the effect on material plasticity improvement. 展开更多
关键词 nanocrystalline Ni foil size effect electroplasticity effect current direction
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Observed-based adaptive neural tracking control for nonlinear systems with unknown control directions and input delay
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作者 DENG Yuxuan WANG Qingling 《Journal of Systems Engineering and Electronics》 2025年第1期269-279,共11页
Enhancing the stability and performance of practical control systems in the presence of nonlinearity,time delay,and uncertainty remains a significant challenge.Particularly,a class of strict-feedback nonlinear uncerta... Enhancing the stability and performance of practical control systems in the presence of nonlinearity,time delay,and uncertainty remains a significant challenge.Particularly,a class of strict-feedback nonlinear uncertain systems characterized by unknown control directions and time-varying input delay lacks comprehensive solutions.In this paper,we propose an observerbased adaptive tracking controller to address this gap.Neural networks are utilized to handle uncertainty,and a unique coordinate transformation is employed to untangle the coupling between input delay and unknown control directions.Subsequently,a new auxiliary signal counters the impact of time-varying input delay,while a Nussbaum function is introduced to solve the problem of unknown control directions.The leverage of an advanced dynamic surface control technique avoids the“complexity explosion”and reduces boundary layer errors.Synthesizing these techniques ensures that all the closed-loop signals are semi-globally uniformly ultimately bounded(SGUUB),and the tracking error converges to a small region around the origin by selecting suitable parameters.Simulation examples are provided to demonstrate the feasibility of the proposed approach. 展开更多
关键词 adaptive neural network dynamic surface control unknown control direction input delay
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Deep unfolded amplitude-phase error self-calibration network for DOA estimation
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作者 ZHU Hangui CHEN Xixi +1 位作者 MA Teng WANG Yongliang 《Journal of Systems Engineering and Electronics》 2025年第2期353-361,共9页
To tackle the challenges of intractable parameter tun-ing,significant computational expenditure and imprecise model-driven sparse-based direction of arrival(DOA)estimation with array error(AE),this paper proposes a de... To tackle the challenges of intractable parameter tun-ing,significant computational expenditure and imprecise model-driven sparse-based direction of arrival(DOA)estimation with array error(AE),this paper proposes a deep unfolded amplitude-phase error self-calibration network.Firstly,a sparse-based DOA model with an array convex error restriction is established,which gets resolved via an alternating iterative minimization(AIM)algo-rithm.The algorithm is then unrolled to a deep network known as AE-AIM Network(AE-AIM-Net),where all parameters are opti-mized through multi-task learning using the constructed com-plete dataset.The results of the simulation and theoretical analy-sis suggest that the proposed unfolded network achieves lower computational costs compared to typical sparse recovery meth-ods.Furthermore,it maintains excellent estimation performance even in the presence of array magnitude-phase errors. 展开更多
关键词 direction of arrival(DOA) sparse recovery alternat-ing iterative minimization(AIM) deep unfolding amplitude-phase error.
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DOA estimation based on sparse Bayesian learning under amplitude-phase error and position error
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作者 DONG Yijia XU Yuanyuan +1 位作者 LIU Shuai JIN Ming 《Journal of Systems Engineering and Electronics》 2025年第5期1122-1131,共10页
Most of the existing direction of arrival(DOA)estimation algorithms are applied under the assumption that the array manifold is ideal.In practical engineering applications,the existence of non-ideal conditions such as... Most of the existing direction of arrival(DOA)estimation algorithms are applied under the assumption that the array manifold is ideal.In practical engineering applications,the existence of non-ideal conditions such as mutual coupling between array elements,array amplitude and phase errors,and array element position errors leads to defects in the array manifold,which makes the performance of the algorithm decline rapidly or even fail.In order to solve the problem of DOA estimation in the presence of amplitude and phase errors and array element position errors,this paper introduces the first-order Taylor expansion equivalent model of the received signal under the uniform linear array from the Bayesian point of view.In the solution,the amplitude and phase error parameters and the array element position error parameters are regarded as random variables obeying the Gaussian distribution.At the same time,the expectation-maximization algorithm is used to update the probability distribution parameters,and then the two error parameters are solved alternately to obtain more accurate DOA estimation results.Finally,the effectiveness of the proposed algorithm is verified by simulation and experiment. 展开更多
关键词 direction of arrival estimation(DOA) amplitude and phase error array element position error sparse Bayesian
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Far-field calibration of automotive millimeter wave radar via near-field implementation
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作者 SUN Jinghu LIU Jiahuan +3 位作者 WEI Wenqiang YU Xianxiang CUI Guolong ZHANG Xiuyin 《Journal of Systems Engineering and Electronics》 2025年第3期694-700,共7页
To enhance direction of arrival(DOA)estimation accuracy,this paper proposes a low-cost method for calibrating farfield steering vectors of large aperture millimeter wave radar(mmWR).To this end,we first derive the ste... To enhance direction of arrival(DOA)estimation accuracy,this paper proposes a low-cost method for calibrating farfield steering vectors of large aperture millimeter wave radar(mmWR).To this end,we first derive the steering vectors with amplitude and phase errors,assuming that mmWR works in the time-sharing mode.Then,approximate relationship between the near-field calibration steering vector and the far-field calibration steering vector is analyzed,which is used to accomplish the mapping between the two of them.Finally,simulation results verify that the proposed method can effectively improve the angle measurement accuracy of mmWR with existing amplitude and phase errors. 展开更多
关键词 automotive millimeter wave radar far-field steering vector calibration near-field steering vector calibration direction of arrival(DOA)estimation low cost
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GNSS spoofing detection for single antenna receivers via CNR variation monitoring
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作者 LIAO Maoyou LYU Xu +1 位作者 MENG Ziyang YOU Zheng 《Journal of Systems Engineering and Electronics》 SCIE CSCD 2024年第5期1276-1286,共11页
In this paper,a method for spoofing detection based on the variation of the signal’s carrier-to-noise ratio(CNR)is proposed.This method leverages the directionality of the antenna to induce varying gain changes in th... In this paper,a method for spoofing detection based on the variation of the signal’s carrier-to-noise ratio(CNR)is proposed.This method leverages the directionality of the antenna to induce varying gain changes in the signals across different incident directions,resulting in distinct CNR variations for each signal.A model is developed to calculate the variation value of the signal CNR based on the antenna gain pattern.This model enables the differentiation of the variation values of the CNR for authentic satellite signals and spoofing signals,thereby facilitating spoofing detection.The proposed method is capable of detecting spoofing signals with power and CNR similar to those of authentic satellite signals.The accuracy of the signal CNR variation value calculation model and the effectiveness of the spoofing detection method are verified through a series of experiments.In addition,the proposed spoofing detection method works not only for a single spoofing source but also for distributed spoofing sources. 展开更多
关键词 spoofing detection global navigation satellite system(GNSS) variation of carrier-to-noise ratio(CNR) antenna directionality
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Numerical modelling for predicting corrosion initiation life of reinforced concrete square piles under reverse-seepage pressure 被引量:1
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作者 WANG Rong-bo WU Wen-bing +3 位作者 HE Si-hong XIAO Liang WEN Min-jie MEI Guo-xiong 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3596-3611,共16页
Square piles of reinforced concrete(RC)in marine environments are susceptible to chloride-inducedcorrosion.A novel reverse-seepage technique(RST)is applied to square piles to block the intrusion of chlorides.Thisresea... Square piles of reinforced concrete(RC)in marine environments are susceptible to chloride-inducedcorrosion.A novel reverse-seepage technique(RST)is applied to square piles to block the intrusion of chlorides.Thisresearch introduces a computational model designed to predict the lifespan of corrosion initiation in reinforced concretesquare piles when applied reverse-seepage pressure.The model considers the impacts of chloride binding and the tripletime-dependence property among the permeability,the corrected surface chloride concentration,and the diffusioncoefficient.The proposed numerical model is solved using the alternating direction implicit(ADI)approach,and itsaccuracy and reliability are evaluated by contrasting the computational outcomes with the analytical solution andexperimental results.Furthermore,the primary factors contributing to the corrosion of reinforced concrete square pilesare analyzed.The results indicate that applying RST can decrease the chloride penetration depth and prolong the lifespanof corrosion initiation in square piles.The water-cement ratio and reverse seepage pressure are the most influentialfactors.A water pressure of 0.4 MPa can double the life of concrete,and the durable life of concrete with a water-cementratio of 0.3 can reach 100 years. 展开更多
关键词 reverse-seepage technique chloride ion intrusion alternating direction implicit method reinforced concrete square pile corrosion initiation life
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The influences of canopy temperature measuring on the derived crop water stress index 被引量:1
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作者 WANG Hongxi LI Fei +4 位作者 SHEN Hongtao LI Mengyu YIN Gongchao FANG Qin SHAO Liwei 《中国生态农业学报(中英文)》 CAS CSCD 北大核心 2024年第9期1503-1519,共17页
Crop water stress index(CWSI)is widely used for efficient irrigation management.Precise canopy temperature(T_(c))measurement is necessary to derive a reliable CWSI.The objective of this research was to investigate the... Crop water stress index(CWSI)is widely used for efficient irrigation management.Precise canopy temperature(T_(c))measurement is necessary to derive a reliable CWSI.The objective of this research was to investigate the influences of atmospheric conditions,settled height,view angle of infrared thermography,and investigating time of temperature measuring on the performance of the CWSI.Three irrigation treatments were used to create different soil water conditions during the 2020-2021 and 2021-2022 winter wheat-growing seasons.The CWSI was calculated using the CWSI-E(an empirical approach)and CWSI-T(a theoretical approach)based on the T_(c).Weather conditions were recorded continuously throughout the experimental period.The results showed that atmospheric conditions influenced the estimation of the CWSI;when the vapor pressure deficit(VPD)was>2000 Pa,the estimated CWSI was related to soil water conditions.The height of the installed infrared thermograph influenced the T_(c)values,and the differences among the T_(c)values measured at height of 3,5,and 10 m was smaller in the afternoon than in the morning.However,the lens of the thermometer facing south recorded a higher T_(c)than those facing east or north,especially at a low height,indicating that the direction of the thermometer had a significant influence on T_(c).There was a large variation in CWSI derived at different times of the day,and the midday measurements(12:00-15:00)were the most reliable for estimating CWSI.Negative linear relationships were found between the transpiration rate and CWSI-E(R^(2)of 0.3646-0.5725)and CWSI-T(R^(2)of 0.5407-0.7213).The relations between fraction of available soil water(FASW)with CWSI-T was higher than that with CWSI-E,indicating CWSI-T was more accurate for predicting crop water status.In addition,The R^(2)between CWSI-T and FASW at 14:00 was higher than that at other times,indicating that 14:00 was the optimal time for using the CWSI for crop water status monitoring.Relative higher yield of winter wheat was obtained with average seasonal values of CWSI-E and CWSI-T around 0.23 and 0.25-0.26,respectively.The CWSI-E values were more easily influenced by meteorological factors and the timing of the measurements,and using the theoretical approach to derive the CWSI was recommended for precise irrigation water management. 展开更多
关键词 Canopy temperature Measuring time Measuring height and direction Crop water stress index
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基于子空间模型的稀疏贝叶斯DOA估计 被引量:1
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作者 窦慧晶 郭宏亮 +1 位作者 邢路阳 路瑶 《北京工业大学学报》 CAS CSCD 北大核心 2024年第12期1421-1427,共7页
为了提高相干信源条件下的离格波达方向(direction of arrival,DOA)估计精度,提出一种基于子空间模型的稀疏贝叶斯学习(sparse Bayesian learning,SBL)的DOA估计算法。该算法首先将子空间平滑(subspace smoothing,SS)技术与加权子空间拟... 为了提高相干信源条件下的离格波达方向(direction of arrival,DOA)估计精度,提出一种基于子空间模型的稀疏贝叶斯学习(sparse Bayesian learning,SBL)的DOA估计算法。该算法首先将子空间平滑(subspace smoothing,SS)技术与加权子空间拟合(weighted subspace fitting,WSF)技术结合,然后将此子空间模型应用于SBL算法,并将离散网格点视为动态参数,用期望最大化(expectation maximization,EM)算法迭代更新网格点位置。与传统稀疏恢复算法相比,该算法在估计误差及计算复杂度上均具有明显优势,并对信源数目的估计误差具有较强的鲁棒性。 展开更多
关键词 阵列信号处理 波达方向(direction of arrival DOA)估计 压缩感知 稀疏贝叶斯学习(sparse Bayesian learning SBL) 子空间 稀疏恢复
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DOA estimation of high-dimensional signals based on Krylov subspace and weighted l_(1)-norm
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作者 YANG Zeqi LIU Yiheng +4 位作者 ZHANG Hua MA Shuai CHANG Kai LIU Ning LYU Xiaode 《Journal of Systems Engineering and Electronics》 SCIE CSCD 2024年第3期532-540,F0002,共10页
With the extensive application of large-scale array antennas,the increasing number of array elements leads to the increasing dimension of received signals,making it difficult to meet the real-time requirement of direc... With the extensive application of large-scale array antennas,the increasing number of array elements leads to the increasing dimension of received signals,making it difficult to meet the real-time requirement of direction of arrival(DOA)estimation due to the computational complexity of algorithms.Traditional subspace algorithms require estimation of the covariance matrix,which has high computational complexity and is prone to producing spurious peaks.In order to reduce the computational complexity of DOA estimation algorithms and improve their estimation accuracy under large array elements,this paper proposes a DOA estimation method based on Krylov subspace and weighted l_(1)-norm.The method uses the multistage Wiener filter(MSWF)iteration to solve the basis of the Krylov subspace as an estimate of the signal subspace,further uses the measurement matrix to reduce the dimensionality of the signal subspace observation,constructs a weighted matrix,and combines the sparse reconstruction to establish a convex optimization function based on the residual sum of squares and weighted l_(1)-norm to solve the target DOA.Simulation results show that the proposed method has high resolution under large array conditions,effectively suppresses spurious peaks,reduces computational complexity,and has good robustness for low signal to noise ratio(SNR)environment. 展开更多
关键词 direction of arrival(DOA) compressed sensing(CS) Krylov subspace l_(1)-norm dimensionality reduction
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Underdetermined direction of arrival estimation with nonuniform linear motion sampling based on a small unmanned aerial vehicle platform
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作者 Xinwei Wang Xiaopeng Yan +2 位作者 Tai An Qile Chen Dingkun Huang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期352-363,共12页
Uniform linear array(ULA)radars are widely used in the collision-avoidance radar systems of small unmanned aerial vehicles(UAVs).In practice,a ULA's multi-target direction of arrival(DOA)estimation performance suf... Uniform linear array(ULA)radars are widely used in the collision-avoidance radar systems of small unmanned aerial vehicles(UAVs).In practice,a ULA's multi-target direction of arrival(DOA)estimation performance suffers from significant performance degradation owing to the limited number of physical elements.To improve the underdetermined DOA estimation performance of a ULA radar mounted on a small UAV platform,we propose a nonuniform linear motion sampling underdetermined DOA estimation method.Using the motion of the UAV platform,the echo signal is sampled at different positions.Then,according to the concept of difference co-array,a virtual ULA with multiple array elements and a large aperture is synthesized to increase the degrees of freedom(DOFs).Through position analysis of the original and motion arrays,we propose a nonuniform linear motion sampling method based on ULA for determining the optimal DOFs.Under the condition of no increase in the aperture of the physical array,the proposed method obtains a high DOF with fewer sampling runs and greatly improves the underdetermined DOA estimation performance of ULA.The results of numerical simulations conducted herein verify the superior performance of the proposed method. 展开更多
关键词 Unmanned aerial vehicle(UAV) Uniform linear array(ULA) Direction of arrival(DOA) Difference co-array Nonuniform linear motion sampling method
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Direction finding of bistatic MIMO radar in strong impulse noise
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作者 CHEN Menghan GAO Hongyuan +2 位作者 DU Yanan CHENG Jianhua ZHANG Yuze 《Journal of Systems Engineering and Electronics》 SCIE CSCD 2024年第4期888-898,共11页
For bistatic multiple-input multiple-output(MIMO)radar,this paper presents a robust and direction finding method in strong impulse noise environment.By means of a new lower order covariance,the method is effective in ... For bistatic multiple-input multiple-output(MIMO)radar,this paper presents a robust and direction finding method in strong impulse noise environment.By means of a new lower order covariance,the method is effective in suppressing impulse noise and achieving superior direction finding performance using the maximum likelihood(ML)estimation method.A quantum equilibrium optimizer algorithm(QEOA)is devised to resolve the corresponding objective function for efficient and accurate direc-tion finding.The results of simulation reveal the capability of the presented method in success rate and root mean square error over existing direction-finding methods in different application situations,e.g.,locating coherent signal sources with very few snapshots in strong impulse noise.Other than that,the Cramér-Rao bound(CRB)under impulse noise environment has been drawn to test the capability of the presented method. 展开更多
关键词 bistatic multiple-input multiple-output(MIMO)radar impulse noise direction finding lower order covariance quan-tum equilibrium optimizer algorithm(QEOA) maximum likeli-hood estimation method Cramér-Rao bound(CRB)
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通道幅相误差条件下的相干信源波达方向估计 被引量:3
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作者 李磊 李国林 《系统工程与电子技术》 EI CSCD 北大核心 2015年第10期2222-2227,共6页
针对通道幅相误差条件下的相干信源波达方向(direction of arrival,DOA)估计问题,提出一种基于互相关矢量的误差校正和解相干算法。首先对阵列的状态转换进行时延控制,使两个子阵的接收数据保持旋转不变特性。再利用阵列互相关矢量元素... 针对通道幅相误差条件下的相干信源波达方向(direction of arrival,DOA)估计问题,提出一种基于互相关矢量的误差校正和解相干算法。首先对阵列的状态转换进行时延控制,使两个子阵的接收数据保持旋转不变特性。再利用阵列互相关矢量元素的错位比值实现了误差系数估计,将误差校正后的互相关矢量重构为一个等效协方差矩阵即可实现解相干。进一步对不同时延可能导致的角度偏移进行了分析。仿真结果表明,该算法能够实现通道幅相误差的精确校正及解相干,且DOA估计性能接近于无幅相误差条件下的空间平滑类算法。 展开更多
关键词 波达方向 幅相误差 相干信源 互相关矢量 direction of ARRIVAL (DOA)
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一种基于压缩感知的高精度目标跟踪算法 被引量:3
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作者 常娟 申晓红 +1 位作者 钱伟 王领 《科学技术与工程》 北大核心 2019年第2期101-105,共5页
为解决传统单目标跟踪方法精度低、稳定性差的问题,通过压缩感知的方法研究了扩展卡尔曼滤波,提出了一种基于压缩感知的扩展卡尔曼滤波算法。该算法基于压缩感知理论、采用阵列进行视场范围内的位置跟踪,即多传感器单目标跟踪。结果表明... 为解决传统单目标跟踪方法精度低、稳定性差的问题,通过压缩感知的方法研究了扩展卡尔曼滤波,提出了一种基于压缩感知的扩展卡尔曼滤波算法。该算法基于压缩感知理论、采用阵列进行视场范围内的位置跟踪,即多传感器单目标跟踪。结果表明:在信噪比较低时该方法对目标跟踪的精度较高,对角度的估计使用的快拍数更少,降低了计算复杂度;并且所提算法在精确度和稳定性方面对目标的跟踪效果都要比传统算法好。 展开更多
关键词 目标跟踪 卡尔曼滤波 压缩感知 direction of arrival估计
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融合GASA的Snake模型碰撞检测算法 被引量:1
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作者 李照 靳雁霞 秦志鹏 《计算机工程与设计》 北大核心 2017年第5期1223-1228,共6页
针对现有碰撞检测算法难以解决变形体碰撞的实时性和逼真性问题,提出一种基于可变形物体的碰撞检测算法。利用Snake模型对FDH包围盒进行更新,由于传统Snake模型存在弱边缘易溢出的问题,结合模拟退火算法(GASA)的遗传思想对其进行优化。... 针对现有碰撞检测算法难以解决变形体碰撞的实时性和逼真性问题,提出一种基于可变形物体的碰撞检测算法。利用Snake模型对FDH包围盒进行更新,由于传统Snake模型存在弱边缘易溢出的问题,结合模拟退火算法(GASA)的遗传思想对其进行优化。实验结果表明,优化后的碰撞检测算法可快速准确得到碰撞物体的最佳轮廓曲线,弥补了遗传算法和模拟退火算存在的过早收敛和低收敛速度的问题,加快了包围盒的更新速度,提高了碰撞检测效率和逼真程度。 展开更多
关键词 碰撞检测 固定方向凸包(fixed direction hull FDH) 遗传算法 模拟退火 SNAKE模型
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内容自适应与DOI的场内去隔行研究 被引量:1
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作者 蔡学森 戴金波 《计算机工程与应用》 CSCD 北大核心 2009年第27期151-153,共3页
提出了基于内容自适应与Direction Oriented Interpolation(DOI)的视频场内去隔行。首先通过内容纹理分析将视频单场划分为边缘、平滑和纹理区域,然后对不同区域采用不同的场内去隔行算法,其中针对边缘重点区域采用DOI方法进行插值。DO... 提出了基于内容自适应与Direction Oriented Interpolation(DOI)的视频场内去隔行。首先通过内容纹理分析将视频单场划分为边缘、平滑和纹理区域,然后对不同区域采用不同的场内去隔行算法,其中针对边缘重点区域采用DOI方法进行插值。DOI方法为利用上部和下部空间方向矢量信息获得更准确的边缘空间方向,针对不同边缘方向具有自适应的搜索区域,并具有较大的灵活性和准确性。实验结果表明,该方法结果在图像主、客观质量上均优于线平均(Line Averaging,LA)、边缘线平均(Edge-based Line Averaging,ELA)、改进的边缘线平均(Modi fied Edge-based Line Averaging,M-ELA)和中值滤波等场内去隔行算法。 展开更多
关键词 去隔行 内容自适应 Direction ORIENTED Interpolation(DOI) 边缘线平均
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MUSIC算法结合小生境遗传算法的电磁矢量传感器波达方向估计 被引量:1
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作者 季飞 郑乐 文斐 《科学技术与工程》 2009年第14期4012-4016,4023,共6页
当最大似然估计法和MUSIC算法求解矢量传感器阵列问题时,存在多维谱峰搜索的困难。采用一种小生境遗传算法用于矢量传感器阵列的MUSIC算法的多谱峰搜索。通过实验仿真,验证了小生境算法的有效性。仿真结果表明,基于遗传算法的MUSIC算法... 当最大似然估计法和MUSIC算法求解矢量传感器阵列问题时,存在多维谱峰搜索的困难。采用一种小生境遗传算法用于矢量传感器阵列的MUSIC算法的多谱峰搜索。通过实验仿真,验证了小生境算法的有效性。仿真结果表明,基于遗传算法的MUSIC算法得到的角度估计均方根偏差性能比ESPRIT算法要差,而在均方根标准方差方面,基于遗传算法的MUSIC算法则比ESPRIT算法要好。 展开更多
关键词 DOA(E-D Direction ofArriral)估计 遗传算法 电磁矢量传感器 多信号分类算法(Multiple Signal Classification MUSIC)算法
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三轮汽车容易侧翻的结构原因与科学发展方向 被引量:2
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作者 杨九思 黎苏 陈保青 《拖拉机与农用运输车》 2010年第6期30-34,共5页
介绍了四轮汽车的侧翻阈值,并由此导出三轮汽车的阈值,进而比较三、四轮汽车的侧翻阈值和侧翻事故率的巨大差异,同时揭露三轮汽车容易侧翻的结构原因,最后提出我国三轮汽车存在的一些不符合科学发展观的问题及其有效的解决措施。
关键词 三轮汽车 侧翻阈值 结构 科学发展观 发展方向 Direction THREE 四轮汽车 解决措施 事故率 问题 导出 差异
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