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Flow and heat transfer characteristics of regenerative cooling parallel channel
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作者 JU Yinchao LIU Xiaoyong +1 位作者 XU Guoqiang DONG Bensi 《推进技术》 北大核心 2025年第1期163-171,共9页
Due to the complex high-temperature characteristics of hydrocarbon fuel,the research on the long-term working process of parallel channel structure under variable working conditions,especially under high heat-mass rat... Due to the complex high-temperature characteristics of hydrocarbon fuel,the research on the long-term working process of parallel channel structure under variable working conditions,especially under high heat-mass ratio,has not been systematically carried out.In this paper,the heat transfer and flow characteristics of related high temperature fuels are studied by using typical engine parallel channel structure.Through numeri⁃cal simulation and systematic experimental verification,the flow and heat transfer characteristics of parallel chan⁃nels under typical working conditions are obtained,and the effectiveness of high-precision calculation method is preliminarily established.It is known that the stable time required for hot start of regenerative cooling engine is about 50 s,and the flow resistance of parallel channel structure first increases and then decreases with the in⁃crease of equivalence ratio(The following equivalence ratio is expressed byΦ),and there is a flow resistance peak in the range ofΦ=0.5~0.8.This is mainly caused by the coupling effect of high temperature physical proper⁃ties,flow rate and pressure of fuel in parallel channels.At the same time,the cooling and heat transfer character⁃istics of parallel channels under some conditions of high heat-mass ratio are obtained,and the main factors affect⁃ing the heat transfer of parallel channels such as improving surface roughness and strengthening heat transfer are mastered.In the experiment,whenΦis less than 0.9,the phenomenon of local heat transfer enhancement and deterioration can be obviously observed,and the temperature rise of local structures exceeds 200℃,which is the risk of structural damage.Therefore,the reliability of long-term parallel channel structure under the condition of high heat-mass ratio should be fully considered in structural design. 展开更多
关键词 Regenerative cooling Heat transfer Flow resistance ENGINE Parallel channel
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An optimal design of the liquid-cooling plate channel in a power battery based on response surface methodology
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作者 Jinbo Zheng Jibin Jiang +2 位作者 Xiwei Yu Bingjun Yan Guofu Lian 《中国科学技术大学学报》 北大核心 2025年第2期52-65,51,I0002,共16页
The work takes a new liquid-cooling plate in a power battery with pin fins inside the channel as the object.A mathematical model is established via the central composite design of the response surface to study the rel... The work takes a new liquid-cooling plate in a power battery with pin fins inside the channel as the object.A mathematical model is established via the central composite design of the response surface to study the relationships among the length,width,height,and spacing of pin fins;the maximum temperature and temperature difference of the battery module;and the pressure drop of the liquid-cooling plate.Model accuracy is verified via variance analysis.The new liquid-cooling plate enables the power battery to work within an optimal temperature range.Appropriately increasing the length,width,and height and reducing the spacing of pin fins could reduce the temperature of the power battery module and improve the temperature uniformity.However,the pressure drop of the liquid-cooling plate increases.The structural parameters of the pin fins are optimized to minimize the maximum temperature and the temperature difference of the battery module as well as the pressure drop of the liquid-cooling plate.The errors between the values predicted and actual by the simulation test are 0.58%,4%,and 0.48%,respectively,which further verifies the model accuracy.The results reveal the influence of the structural parameters of the pin fins inside the liquid-cooling plate on its heat dissipation performance and pressure drop characteristics.A theoretical basis is provided for the design of liquid-cooling plates in power batteries and the optimization of structural parameters. 展开更多
关键词 response surface methodology power battery cooling channel optimal design
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Flatness detection method of splicing detector based on channel spectral dispersion
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作者 ZHAO Hong-chao ZHANG Xiao-qian AN Qi-chang 《中国光学(中英文)》 北大核心 2025年第4期889-898,共10页
For segmented detectors,surface flatness is critical as it directly influences both energy resolution and image clarity.Additionally,the limited adjustment range of the segmented detectors necessitates precise benchma... For segmented detectors,surface flatness is critical as it directly influences both energy resolution and image clarity.Additionally,the limited adjustment range of the segmented detectors necessitates precise benchmark construction.This paper proposes an architecture for detecting detector flatness based on channel spectral dispersion.By measuring the dispersion fringes for coplanar adjustment,the final adjustment residual is improved to better than 300 nm.This result validates the feasibility of the proposed technology and provides significant technical support for the development of next-generation large-aperture sky survey equipment. 展开更多
关键词 large aperture telescope segmented detector surface wavefront detection channel spectral dispersion
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ChannelLink:基于链下状态通道的跨片状态迁移协议
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作者 贾林鹏 孙毅 《软件学报》 北大核心 2025年第3期1327-1354,共28页
跨片状态迁移协议是保证跨片交易处理原子性的基础,其效率高低将直接影响分片系统性能.现有协议处理过程可以分为源分片状态迁出、片间状态传输和目的分片状态迁入这3个阶段,各阶段依次执行、紧密绑定.利用链下状态通道灵活度高、即时... 跨片状态迁移协议是保证跨片交易处理原子性的基础,其效率高低将直接影响分片系统性能.现有协议处理过程可以分为源分片状态迁出、片间状态传输和目的分片状态迁入这3个阶段,各阶段依次执行、紧密绑定.利用链下状态通道灵活度高、即时确认的特点,提出了ChannelLink跨片状态迁移协议,将现有协议中紧密耦合的三阶段处理过程解耦,有效降低了跨片交易平均开销,提升了状态迁移效率.基于此,设计了一种低开销链下通道路由算法.该算法基于状态迁移交易与链下通道拓扑等特征,通过改进遗传算法,求解最优状态路由方案,兼顾迁移效率的同时,降低了用户跨片状态迁移开销.最后,实现了ChannelLink协议原型系统,并基于比特币交易以及闪电网络状态信息构造数据集进行实验验证.实验结果表明,该协议在16个分片、跨片交易比例为5.21%的场景下,分片系统吞吐量提升7.04%,交易确认延迟降低52.51%,跨片状态迁移开销下降45.44%以上,并且随着分片数量与跨片交易比例的上升,该协议的性能优势逐步扩大. 展开更多
关键词 区块链 分片 状态迁移 状态通道 路由算法
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Mechanical properties and microstructure of as-cast AA 7050 processed by equal channel angular pressing combined with inter-pass aging treatment
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作者 LI Jian HE Tao +2 位作者 DU Xiang-yang JIA Dong-sheng VERESCHAKA Alexy 《Journal of Central South University》 2025年第5期1678-1696,共19页
In this study,the interaction between deformation and precipitates during multiple equal channel angular pressing(ECAP)deformations and inter-pass aging combination and its effect on the mechanical properties of 7050 ... In this study,the interaction between deformation and precipitates during multiple equal channel angular pressing(ECAP)deformations and inter-pass aging combination and its effect on the mechanical properties of 7050 aluminum alloy are studied.The result show that ECAP induces numerous substructures and dislocations,effectively promoting the precipitation of theηʹphase exhibiting a bimodal structure during inter-pass aging.Following inter-pass aging and subsequent ECAP,the decrease in grain size(4.8μm)is together with the increase in dislocation density(1.24×10^(15) m^(−2))due to the pinning effect of the precipitated phase.Simultaneously,the dislocation motion causes the second phase particles to become even finer and more diffuse.The synergistic effects of precipitation strengthening,fine grain strengthening,and dislocation strengthening collectively enhance the high strength of aluminum alloys,with ultimate tensile strength and yield strength reaching approximately 610 and 565 MPa,respectively.Meanwhile,ductility remains largely unchanged,primarily due to coordinated grain boundary sliding and the uniform and fine dispersion of second phase particles. 展开更多
关键词 equal channel angular pressing 7050 aluminum alloys inter-pass aging mechanical properties PRECIPITATES dislocation
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Hypersonic glide vehicle trajectory prediction based on frequency enhanced channel attention and light sampling-oriented MLP network
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作者 Yuepeng Cai Xuebin Zhuang 《Defence Technology(防务技术)》 2025年第4期199-212,共14页
Hypersonic Glide Vehicles(HGVs)are advanced aircraft that can achieve extremely high speeds(generally over 5 Mach)and maneuverability within the Earth's atmosphere.HGV trajectory prediction is crucial for effectiv... Hypersonic Glide Vehicles(HGVs)are advanced aircraft that can achieve extremely high speeds(generally over 5 Mach)and maneuverability within the Earth's atmosphere.HGV trajectory prediction is crucial for effective defense planning and interception strategies.In recent years,HGV trajectory prediction methods based on deep learning have the great potential to significantly enhance prediction accuracy and efficiency.However,it's still challenging to strike a balance between improving prediction performance and reducing computation costs of the deep learning trajectory prediction models.To solve this problem,we propose a new deep learning framework(FECA-LSMN)for efficient HGV trajectory prediction.The model first uses a Frequency Enhanced Channel Attention(FECA)module to facilitate the fusion of different HGV trajectory features,and then subsequently employs a Light Sampling-oriented Multi-Layer Perceptron Network(LSMN)based on simple MLP-based structures to extract long/shortterm HGV trajectory features for accurate trajectory prediction.Also,we employ a new data normalization method called reversible instance normalization(RevIN)to enhance the prediction accuracy and training stability of the network.Compared to other popular trajectory prediction models based on LSTM,GRU and Transformer,our FECA-LSMN model achieves leading or comparable performance in terms of RMSE,MAE and MAPE metrics while demonstrating notably faster computation time.The ablation experiments show that the incorporation of the FECA module significantly improves the prediction performance of the network.The RevIN data normalization technique outperforms traditional min-max normalization as well. 展开更多
关键词 Hypersonic glide vehicle Trajectory prediction Frequency enhanced channel attention Light sampling-oriented MLP network
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Deep residual systolic network for massive MIMO channel estimation by joint training strategies of mixed-SNR and mixed-scenarios
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作者 SUN Meng JING Qingfeng ZHONG Weizhi 《Journal of Systems Engineering and Electronics》 2025年第4期903-913,共11页
The fifth-generation (5G) communication requires a highly accurate estimation of the channel state information (CSI)to take advantage of the massive multiple-input multiple-output(MIMO) system. However, traditional ch... The fifth-generation (5G) communication requires a highly accurate estimation of the channel state information (CSI)to take advantage of the massive multiple-input multiple-output(MIMO) system. However, traditional channel estimation methods do not always yield reliable estimates. The methodology of this paper consists of deep residual shrinkage network (DRSN)neural network-based method that is used to solve this problem.Thus, the channel estimation approach, based on DRSN with its learning ability of noise-containing data, is first introduced. Then,the DRSN is used to train the noise reduction process based on the results of the least square (LS) channel estimation while applying the pilot frequency subcarriers, where the initially estimated subcarrier channel matrix is considered as a three-dimensional tensor of the DRSN input. Afterward, a mixed signal to noise ratio (SNR) training data strategy is proposed based on the learning ability of DRSN under different SNRs. Moreover, a joint mixed scenario training strategy is carried out to test the multi scenarios robustness of DRSN. As for the findings, the numerical results indicate that the DRSN method outperforms the spatial-frequency-temporal convolutional neural networks (SF-CNN)with similar computational complexity and achieves better advantages in the full SNR range than the minimum mean squared error (MMSE) estimator with a limited dataset. Moreover, the DRSN approach shows robustness in different propagation environments. 展开更多
关键词 massive multiple-input multiple-output(MIMO) channel estimation deep residual shrinkage network(DRSN) deep convolutional neural network(CNN).
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Ultrahigh strength and improved electrical conductivity in an aging strengthened copper alloy processed by combination of equal channel angular pressing and thermomechanical treatment 被引量:2
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作者 WANG Xu LI Zhou +1 位作者 MENG Xiang-peng XIAO Zhu 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1823-1837,共15页
In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and proper... In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and properties of the alloy were investigated in detail.The results showed that the samples deformed by the combination of cryogenic equal channel angular pressing(ECAP)and rolling had good comprehensive properties after aging at 400℃.The tensile strength of the peak-aged and over-aged samples was 1120 MPa and 940 MPa,with their corresponding electrical conductivity of 14.7%IACS and 22.1%IACS,respectively.ECAP and cryogenic rolling introduced high density dislocations,leading to the inhibition of the softening effects and refinement of the grains.After a long time aging at 400℃,the alloy exhibited ultra-high strength with obvious increasing electrical conductivity.The high strength was attributed to the synergistic effect of work hardening,grain refinement strengthening and precipitation strengthening.The precipitation of a large amount of Ti atoms from the matrix led to the high electrical conductivity of the over-aged sample. 展开更多
关键词 Cu-Ti alloy equal channel angular pressing ROLLING aging treatment high strength
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Optimization of Channel Structure of Alkaline Water Electrolyzer by Using an Expanded Mesh as a Bipolar Plate 被引量:1
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作者 Hai-Yan Xiong Zhen-Xiao Zhu +3 位作者 Xin Gao Chen-Ming Fan Hui-Bao Luan Bing Li 《电化学(中英文)》 CAS 北大核心 2024年第9期25-38,共14页
Alkaline water electrolysis(AWE)is the most mature technology for hydrogen production by water electrolysis.Alkaline water electrolyzer consists of multiple electrolysis cells,and a single cell consists of a diaphragm... Alkaline water electrolysis(AWE)is the most mature technology for hydrogen production by water electrolysis.Alkaline water electrolyzer consists of multiple electrolysis cells,and a single cell consists of a diaphragm,electrodes,bipolar plates and end plates,etc.The existing industrial bipolar plate channel is concave-convex structure,which is manufactured by complicated and high-cost mold punching.This structure still results in uneven electrolyte flow and low current density in the electrolytic cell,further increasing in energy consumption and cost of AWE.Thereby,in this article,the electrochemical and flow model is firstly constructed,based on the existing industrial concave and convex flow channel structure of bipolar plate,to study the current density,electrolyte flow and bubble distribution in the electrolysis cell.The reliability of the model was verified by comparison with experimental data in literature.Among which,the electrochemical current density affects the bubble yield,on the other hand,the generated bubbles cover the electrode surface,affecting the active specific surface area and ohmic resistance,which in turn affects the electrochemical reaction.The result indicates that the flow velocity near the bottom of the concave ball approaches zero,while the flow velocity on the convex ball surface is significantly higher.Additionally,vortices are observed within the flow channel structure,leading to an uneven distribution of electrolyte.Next,modelling is used to optimize the bipolar plate structure of AWE by simulating the electrochemistry and fluid flow performances of four kinds of structures,namely,concave and convex,rhombus,wedge and expanded mesh,in the bipolar plate of alkaline water electrolyzer.The results show that the expanded mesh channel structure has the largest current density of 3330 A/m^(2)and electrolyte flow velocity of 0.507 m/s in the electrolytic cell.Under the same current density,the electrolytic cell with the expanded mesh runner structure has the smallest potential and energy consumption.This work provides a useful guide for the comprehensive understanding and optimization of channel structures,and a theoretical basis for the design of large-scale electrolyzer. 展开更多
关键词 Alkaline water electrolyzer Expanded mesh channel structure Numerical simulation
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Numerical simulation on magnetohydrodynamic power generation channel of scramjet
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作者 LING Wenhui WU Shaoxun +2 位作者 ZHANG Yining LIU Chenyuan MENG Hao 《推进技术》 EI CAS CSCD 北大核心 2024年第11期255-268,共14页
The reverse magnetohydrodynamic(MHD)energy bypass technology is a promising energy redis⁃tribution technology in the scramjet system,in augmented with a power generation equipment to supply the neces⁃sary long-distanc... The reverse magnetohydrodynamic(MHD)energy bypass technology is a promising energy redis⁃tribution technology in the scramjet system,in augmented with a power generation equipment to supply the neces⁃sary long-distance flight airframe power.In this paper,a computational model of the scramjet magnetohydrody⁃namic channel is developed and verified by using the commercial software Fluent.It is found that when the mag⁃netic induction intensity is 1,2,3,4 T,the power generation efficiency is 22.5%,22.3%,22.0%,21.5%,and decreases with the increase of the magnetic induction intensity,and the enthalpy extraction rate is 0.026%,0.1%,0.21%,0.34%,and increases with the increase of the magnetic induction intensity.The deceleration ef⁃fect of electromagnetic action on the airflow in the power channel increases with the increase of magnetic induc⁃tion intensity.The stronger the magnetic field intensity,the more obvious the decreasing effect of fluid Mach num⁃ber in the channel.The power generation efficiency decreases as the magnetic induction intensity increases and the enthalpy extraction rate is reversed.As the local currents gathering at inlet and outlet of the power generation area,total temperature and enthalpy along the flow direction do not vary linearly,and there are maximum and minimum values at inlet and outlet.Increasing the number of electrodes can effectively regulate the percentage of Joule heat dissipation,which can improve the power generation efficiency. 展开更多
关键词 SCRAMJET MAGNETOHYDRODYNAMICS Power generation channel Ionized seeds Numerical simulation
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Application of novel super-exponential iteration algorithm in underwater acoustic channel
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作者 NING Xiaoling FU Bing +3 位作者 ZHANG Linsen QIU Jiahao ZHU Lei FENG Chengxu 《Journal of Systems Engineering and Electronics》 SCIE CSCD 2024年第5期1122-1131,共10页
A novel variable step-size modified super-exponential iteration(MSEI)decision feedback blind equalization(DFE)algorithm with second-order digital phase-locked loop is put forward to improve the convergence performance... A novel variable step-size modified super-exponential iteration(MSEI)decision feedback blind equalization(DFE)algorithm with second-order digital phase-locked loop is put forward to improve the convergence performance of super-exponential iteration DFE algorithm.Based on the MSEI-DFE algorithm,it is first proposed to develop an error function as an improvement to the error function of MSEI,which effectively achieves faster convergence speed of the algorithm.Subsequently,a hyperbolic tangent function variable step-size algorithm is developed considering the high variation rate of the hyperbolic tangent function around zero,so as to further improve the convergence speed of the algorithm.In the end,a second-order digital phase-locked loop is introduced into the decision feedback equalizer to track and compensate for the phase rotation of equalizer input signals.For the multipath underwater acoustic channel with mixed phase and phase rotation,quadrature phase shift keying(QPSK)and 16 quadrature amplitude modulation(16QAM)modulated signals are used in the computer simulation of the algorithm in terms of convergence and carrier recovery performance.The results show that the proposed algorithm can considerably improve convergence speed and steady-state error,make effective compensation for phase rotation,and efficiently facilitate carrier recovery. 展开更多
关键词 super-exponential decision feedback variable stepsize phase rotation digital phase-locked loop underwater acoustic channel
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Channel estimation in integrated radar and communication systems with power amplifier distortion
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作者 LIU Yan YI Jianxin +2 位作者 WAN Xianrong RAO Yunhua HAO Caiyong 《Journal of Systems Engineering and Electronics》 SCIE CSCD 2024年第5期1098-1108,共11页
To reduce the negative impact of the power amplifier(PA)nonlinear distortion caused by the orthogonal frequency division multiplexing(OFDM)waveform with high peak-to-average power ratio(PAPR)in integrated radar and co... To reduce the negative impact of the power amplifier(PA)nonlinear distortion caused by the orthogonal frequency division multiplexing(OFDM)waveform with high peak-to-average power ratio(PAPR)in integrated radar and communication(RadCom)systems is studied,the channel estimation in passive sensing scenarios.Adaptive channel estimation methods are proposed based on different pilot patterns,considering nonlinear distortion and channel sparsity.The proposed methods achieve sparse channel results by manipulating the least squares(LS)frequency-domain channel estimation results to preserve the most significant taps.The decision-aided method is used to optimize the sparse channel results to reduce the effect of nonlinear distortion.Numerical results show that the channel estimation performance of the proposed methods is better than that of the conventional methods under different pilot patterns.In addition,the bit error rate performance in communication and passive radar detection performance show that the proposed methods have good comprehensive performance. 展开更多
关键词 channel estimation integrated radar and communication(RadCom) passive sensing nonlinear distortion power amplifier(PA) pilot pattern
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结合通道剪枝和通道注意力的轻量型车辆点云补全网络 被引量:1
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作者 杨晓文 冯泊栋 +3 位作者 韩慧妍 况立群 韩燮 何黎刚 《计算机工程与应用》 北大核心 2025年第1期232-242,共11页
针对现有的点云补全网络多关注于补全的精度而忽视补全效率问题,提出了一种轻量型点云补全网络来准确、高效地修复自动驾驶中的不完整车辆点云。为了提高网络推理效率,采用一种高效的一次性通道剪枝技术提高网络的补全效率;在特征提取阶... 针对现有的点云补全网络多关注于补全的精度而忽视补全效率问题,提出了一种轻量型点云补全网络来准确、高效地修复自动驾驶中的不完整车辆点云。为了提高网络推理效率,采用一种高效的一次性通道剪枝技术提高网络的补全效率;在特征提取阶段,网络加入通道注意力模块,将加权特征与全局特征拼接,通过两层多维特征信息提取,得到最终的特征向量;将特征向量传入双解码器结构中,分别通过全连接层和多层感知机生成稠密的粗糙点云和输入点云偏差值;将粗糙点云与输入点云偏差值相加得到最终的精细化完整点云。在PCN数据集和KITTI数据集上进行实验,实验结果表明在补全缺失车辆信息的实时性上有着显著的提升,并且在补全精度上也有不错的表现。 展开更多
关键词 点云补全 通道剪枝 通道注意力 轻量型 深度学习
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长江中下游弯曲河道治理研究进展 被引量:1
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作者 渠庚 陈栋 +1 位作者 姚仕明 王洪杨 《长江科学院院报》 北大核心 2025年第1期20-27,共8页
弯曲型河道作为一种重要的河流形态,在长江中下游广泛存在,弯曲河道演变复杂,其治理一直是水利、交通等部门关注的热点和难点。在总结三峡水库建库前后长江中下游弯曲河道演变规律、弯曲河道整治理论与治理技术等成果的基础上,提出长江... 弯曲型河道作为一种重要的河流形态,在长江中下游广泛存在,弯曲河道演变复杂,其治理一直是水利、交通等部门关注的热点和难点。在总结三峡水库建库前后长江中下游弯曲河道演变规律、弯曲河道整治理论与治理技术等成果的基础上,提出长江中下游弯曲河道治理应基于河势演变规律和趋势,稳定有利河势、改善不利河势;探讨了未来长江中下游弯曲河道治理的方向,包括少沙背景下弯曲河道长期演化趋向及多目标治理需求,近岸河床长期冲刷下崩岸风险与河道监测预警,防洪-通航等协同综合治理技术及整治新材料应用。 展开更多
关键词 弯曲型 河道演变 多目标 治理技术 长江中下游
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水声OTFS通信系统的研究现状、挑战与趋势 被引量:1
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作者 廖勇 刘爽 汪浩 《电讯技术》 北大核心 2025年第2期165-176,共12页
水声通信作为海洋信息传输的核心技术,广泛应用于海洋探测、海事监管及海底工程等领域。然而,水声信道因双重色散特性而极具挑战性,对系统设计构成重大障碍。尽管正交频分复用(Orthogonal Frequency Division Multiplexing, OFDM)技术... 水声通信作为海洋信息传输的核心技术,广泛应用于海洋探测、海事监管及海底工程等领域。然而,水声信道因双重色散特性而极具挑战性,对系统设计构成重大障碍。尽管正交频分复用(Orthogonal Frequency Division Multiplexing, OFDM)技术已在水声通信中得到广泛应用,但其性能仍受限于信道状态估计的准确性。正交时频空(Orthogonal Time Frequency Space, OTFS)调制技术通过将数据转换到时延-多普勒域内传输,能够有效地应对水声信道中的多径效应和多普勒频移,提高通信系统的性能和可靠性。综述了OTFS在水声通信中的关键处理技术,涵盖信道估计、信道均衡及多址接入技术三个核心方面,并从天线拓展、机器学习融合及同步创新等方面探讨了未来发展趋势,同时详细分析了复杂信道环境下的信号检测、计算复杂度与实时性平衡、参数估计准确性及水下环境对数据可靠性的影响面临的技术挑战。 展开更多
关键词 水声通信 正交时频空(OTFS) 信道估计 信道均衡 多址接入
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基于改进K-means算法的室内可见光通信O-OFDM系统信道均衡技术 被引量:1
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作者 贾科军 连江龙 +1 位作者 张常瑞 蔺莹 《电讯技术》 北大核心 2025年第1期96-102,共7页
在室内可见光通信中符号间干扰和噪声会严重影响系统性能,K均值(K-means)均衡方法可以抑制光无线信道的影响,但其复杂度较高,且在聚类边界处易出现误判。提出了改进聚类中心点的K-means(Improved Center K-means,IC-Kmeans)算法,通过随... 在室内可见光通信中符号间干扰和噪声会严重影响系统性能,K均值(K-means)均衡方法可以抑制光无线信道的影响,但其复杂度较高,且在聚类边界处易出现误判。提出了改进聚类中心点的K-means(Improved Center K-means,IC-Kmeans)算法,通过随机生成足够长的训练序列,然后将训练序列每一簇的均值作为K-means聚类中心,避免了传统K-means反复迭代寻找聚类中心。进一步,提出了基于神经网络的IC-Kmeans(Neural Network Based IC-Kmeans,NNIC-Kmeans)算法,使用反向传播神经网络将接收端二维数据映射至三维空间,以增加不同簇之间混合数据的距离,提高了分类准确性。蒙特卡罗误码率仿真表明,IC-Kmeans均衡和传统K-means算法的误码率性能相当,但可以显著降低复杂度,特别是在信噪比较小时。同时,在室内多径信道模型下,与IC-Kmeans和传统Kmeans均衡相比,NNIC-Kmeans均衡的光正交频分复用系统误码率性能最好。 展开更多
关键词 可见光通信 光正交频分复用 多径信道 信道均衡 K-means算法 反向传播神经网络
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制造商过度自信下考虑权力结构的双渠道绿色供应链动态决策 被引量:4
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作者 贡文伟 夏萌 +1 位作者 丁凡 孙立成 《计算机集成制造系统》 北大核心 2025年第2期661-673,共13页
为探究制造商过度自信行为特征和权力结构差异对双渠道绿色供应链成员动态决策的影响,构建制造商主导、零售商主导和双方权力对等3种情况下的微分博弈模型,求解并对比分析各情形下的供应链成员均衡决策和利润。研究表明,当市场环境较差... 为探究制造商过度自信行为特征和权力结构差异对双渠道绿色供应链成员动态决策的影响,构建制造商主导、零售商主导和双方权力对等3种情况下的微分博弈模型,求解并对比分析各情形下的供应链成员均衡决策和利润。研究表明,当市场环境较差时,产品绿色度、销售价格、制造商利润及供应链总利润会随制造商过度自信程度的提高而增加,零售商利润则随之下降,而当市场环境较好时,上述情况均相反;制造商占主导地位会促使自身做出更大的绿色研发努力;供应链成员利润均在自身占主导地位时最高,而供应链总利润在双方权力对等时最高,在零售商主导时最低;制造商的过度自信对自身利润和供应链总利润的影响程度与渠道成员间的权力大小有关。 展开更多
关键词 过度自信 权力结构 双渠道绿色供应链 微分博弈
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富水粉细砂层联络通道顶管法施工地表沉降分析 被引量:3
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作者 李晓龙 栗鹏超 +3 位作者 刘小锋 孙立军 郭长龙 何况 《郑州大学学报(工学版)》 CAS 北大核心 2025年第1期67-74,共8页
为研究富水粉细砂层地铁联络通道顶管法施工对地表沉降的影响,对郑州地铁12号线08工区埋深15 m、长7.5 m的联络通道在顶管法施工过程中的地表沉降进行了监测,并结合“地层-主隧道-内支撑-联络通道”体系三维数值模型,深入分析了顶管掘... 为研究富水粉细砂层地铁联络通道顶管法施工对地表沉降的影响,对郑州地铁12号线08工区埋深15 m、长7.5 m的联络通道在顶管法施工过程中的地表沉降进行了监测,并结合“地层-主隧道-内支撑-联络通道”体系三维数值模型,深入分析了顶管掘进过程中地表沉降的时空演化规律。结果表明:地表沉降量随着顶管机的推进逐渐增大,顶推到位后达到最大沉降值,其中台车就位、始发破洞及接收破洞阶段产生的沉降增量明显大于其他开挖阶段,设备拆除后,受卸载作用影响,地层产生一定量回弹,沉降值减小;地表沉降曲面呈漏斗状,沿联络通道中心线方向左右对称,沿垂直于中心线方向不对称,最大沉降值位于纵向距离联络通道中心靠近始发端3 m处;联络通道顶管法施工对地表横向影响范围更大,地表沉降集中发生区域近似椭圆形,其长轴垂直于联络通道中心线。 展开更多
关键词 联络通道 顶管法 数值模拟 现场监测 地表沉降
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明渠交汇口水动力及掺混特性研究进展 被引量:1
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作者 曾诚 周婧 +4 位作者 李凯 付毅成 周婕 蔡雷 王玲玲 《水利水电科技进展》 北大核心 2025年第1期10-17,共8页
针对明渠交汇区域内水流结构的复杂情况,从明渠交汇口汇流比、交汇角度、床面高差和其他影响因素的角度,综述了明渠交汇口分离区、剪切层、二次环流等很多特有的水动力及掺混特性的研究进展,梳理了物理模型试验、数值模拟研究和实地观... 针对明渠交汇区域内水流结构的复杂情况,从明渠交汇口汇流比、交汇角度、床面高差和其他影响因素的角度,综述了明渠交汇口分离区、剪切层、二次环流等很多特有的水动力及掺混特性的研究进展,梳理了物理模型试验、数值模拟研究和实地观测成果,总结了水动力及掺混特性的研究现状。基于目前存在的主要问题,未来应重点研究人工智能算法的应用,植被、密度差、潜流带对掺混特性的影响以及挟沙水流交汇问题中的冲刷淤积影响。 展开更多
关键词 明渠交汇口 水动力 掺混 影响因素
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GNSS接收机多通道确定性压缩PMF-FFT捕获方法 被引量:1
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作者 张琦 张文俊 +3 位作者 陈劼 张风源 王进 张小贝 《中国惯性技术学报》 北大核心 2025年第2期124-132,共9页
针对目前全球导航卫星系统(GNSS)接收机在快速捕获过程中消耗大量硬件资源的问题,提出了一种基于确定性压缩感知的多通道部分匹配滤波-快速傅里叶变换(PMF-FFT)捕获方法。首先利用沃尔什-阿达马矩阵对多通道PMF-FFT的本地伪码矩阵进行... 针对目前全球导航卫星系统(GNSS)接收机在快速捕获过程中消耗大量硬件资源的问题,提出了一种基于确定性压缩感知的多通道部分匹配滤波-快速傅里叶变换(PMF-FFT)捕获方法。首先利用沃尔什-阿达马矩阵对多通道PMF-FFT的本地伪码矩阵进行确定性压缩,并将压缩后的伪码矩阵按照PMF-FFT方法进行粗捕获,然后对粗捕获相位区间进行精捕获搜索,最后推导出所提方法的理论分析模型,并通过蒙特卡洛仿真进行验证。理论分析和仿真测试结果表明,在捕获性能相同的情况下,所提方法较二维捕获算法和PMF-FFT算法在硬件资源消耗上分别减少了70.33%和41.67%以上。 展开更多
关键词 全球导航卫星系统 多通道PMF-FFT 压缩感知 信号捕获
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