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A high-definition spatially resolved metabolomics method to illuminate the metabolic specificity and interconnection across mouse brain
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作者 Meng Yu Yanhe Zhou +9 位作者 Guanlin Xiao Xinyi Jiang Xiangyi Wang Tong Li Jianpeng Huang Jiamin Gao Junwen Shi Xiuli Gao Zeper Abliz Jiuming He 《Chinese Chemical Letters》 2026年第1期527-532,共6页
The brain's functions are governed by molecular metabolic networks.However,due to the sophisticated spatial organization and diverse activities of the brain,characterizing both the minute and large-scale metabolic... The brain's functions are governed by molecular metabolic networks.However,due to the sophisticated spatial organization and diverse activities of the brain,characterizing both the minute and large-scale metabolic activity across the entire brain and its numerous micro-regions remains incredibly challenging.Here,we offer a high-definition spatially resolved metabolomics technique to better understand the metabolic specialization and interconnection throughout the mouse brain using improved ambient mass spectrometry imaging.This method allows for the simultaneous mapping of thousands of metabolites at a 30 μm spatial resolution across the mouse brain,ranging from structural lipids to functional neurotransmitters.This approach effectively reveals the distribution patterns of delicate microregions and their distinctive metabolic characteristics.Using an integrated database,we annotated 259 metabolites,demonstrating that the metabolome and metabolic pathways are unique to each brain microregion.The distribution of metabolites,closely linked to functionally connected brain regions and their interactions,offers profound insights into the complexity of chemical processes and their roles in brain function.An initial dataset for future metabolomics research might be obtained from the high-definition mouse brain's spatial metabolome atlas. 展开更多
关键词 AFADESI-MSI Spatially resolved metabolomics Metabolic specificity and interconnection Mouse brain
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Atomistic Insights into Aluminium-Boron Nitride Nanolayered Interconnects for High-Performance VLSI Systems
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作者 Mallikarjun P.Y. Rame Gowda D.N. +4 位作者 Trisha J.K. Varshini M. Poornesha S.Shetty Mandar Jatkar Arpan Shah 《Computers, Materials & Continua》 2026年第3期641-655,共15页
As circuit feature sizes approach the nanoscale,traditional Copper(Cu)interconnects face significant hurdles posed by rising resistance-capacitance(RC)delay,electromigration,and high power dissipation.These limitation... As circuit feature sizes approach the nanoscale,traditional Copper(Cu)interconnects face significant hurdles posed by rising resistance-capacitance(RC)delay,electromigration,and high power dissipation.These limitations impose constraints on the scalability and reliability of future semiconductor technologies.Our paper describes the new Vertical multilayer Aluminium Boron Nitride Nanoribbon(AlBN)interconnect structure,integrated with Density functional theory(DFT)using first-principles calculations.This study explores AlBN-based nanostructures with doping of 1Cu,2Cu,1Fe(Iron),and 2Fe for the application of Very Large Scale Integration(VLSI)interconnects.The AlBN structure utilized the advantages of vertical multilayer interconnects to both reduce the RC delay while enhancing signal integrity.Key parameters like Fermi energy,bandgap,binding energy,conduction channels,quantum resistance,and RC delay were analyzed.Through modeling and large-scale simulation,the structural,electronic,and stability attributes of the AlBN interconnects are analyzed,and the results illustrate considerable improvements in signal propagation against Cu interconnect structures.These findings confirm the tunable,high-performance nature of AlBN-2Fe,making it a promising candidate for future high-speed,low-power VLSI interconnect technologies.We demonstrated an advanced energy-efficient interconnect that can be easily scaled for future nanoscale VLSI circuit design and gives rise to a next generation of viable interconnect technology for high-capacity,high-speed,reliable semiconductor technology. 展开更多
关键词 Dielectric materials AlBN interconnects RC delay reduction nanoscale electronics semiconductor technology signal integrity
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DSP-free coherent receivers in frequency-synchronous optical networks for next-generation data center interconnects 被引量:1
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作者 Lei Liu Feng Liu +2 位作者 Cheng Peng Bo Xue William Shieh 《Advanced Photonics Nexus》 2025年第3期141-148,共8页
Propelled by the rise of artificial intelligence,cloud services,and data center applications,next-generation,low-power,local-oscillator-less,digital signal processing(DSP)-free,and short-reach coherent optical communi... Propelled by the rise of artificial intelligence,cloud services,and data center applications,next-generation,low-power,local-oscillator-less,digital signal processing(DSP)-free,and short-reach coherent optical communication has evolved into an increasingly prominent area of research in recent years.Here,we demonstrate DSP-free coherent optical transmission by analog signal processing in frequency synchronous optical network(FSON)architecture,which supports polarization multiplexing and higher-order modulation formats.The FSON architecture that allows the numerous laser sources of optical transceivers within a data center can be quasi-synchronized by means of a tree-distributed homology architecture.In conjunction with our proposed pilot-tone assisted Costas loop for an analog coherent receiver,we achieve a record dual-polarization 224-Gb/s 16-QAM 5-km mismatch transmission with reset-free carrier phase recovery in the optical domain.Our proposed DSP-free analog coherent detection system based on the FSON makes it a promising solution for next-generation,low-power,and high-capacity coherent data center interconnects. 展开更多
关键词 digital signal processing-free data center interconnect frequency synchronous optical network analog signal processing
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Call for Papers─Feature Topic Vol.23,No.8,2026 Industrial Intelligence and Secure Interconnection
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《China Communications》 2025年第11期I0002-I0002,共1页
Industrial intelligence and secure interconnection serve as the foundational platform and critical information infrastructure for new industrialization,carrying significant strategic importance.They not only function ... Industrial intelligence and secure interconnection serve as the foundational platform and critical information infrastructure for new industrialization,carrying significant strategic importance.They not only function as the core engine driving the transformation and upgrading of the manufacturing sector and ensuring stable socioeconomic operation but are also vital to enhancing national technological competitiveness and safeguarding industrial security. 展开更多
关键词 manufacturing sector industrial intelligence industrial intelligence secure interconnection new industrialization enhancing national technological competitiveness critical information infrastructure foundational platform secure interconnection
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When Communication Networks Meet Federated Learning for Intelligence Interconnecting:A Comprehensive Survey and Future Perspective
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作者 Sha Zongxuan Huo Ru +3 位作者 Sun Chuang Wang Shuo Huang Tao F.Richard Yu 《China Communications》 2025年第7期74-94,共21页
With the rapid development of network technologies,a large number of deployed edge devices and information systems generate massive amounts of data which provide good support for the advancement of data-driven intelli... With the rapid development of network technologies,a large number of deployed edge devices and information systems generate massive amounts of data which provide good support for the advancement of data-driven intelligent models.However,these data often contain sensitive information of users.Federated learning(FL),as a privacy preservation machine learning setting,allows users to obtain a well-trained model without sending the privacy-sensitive local data to the central server.Despite the promising prospect of FL,several significant research challenges need to be addressed before widespread deployment,including network resource allocation,model security,model convergence,etc.In this paper,we first provide a brief survey on some of these works that have been done on FL and discuss the motivations of the Communication Networks(CNs)and FL to mutually enable each other.We analyze the support of network technologies for FL,which requires frequent communication and emphasizes security,as well as the studies on the intelligence of many network scenarios and the improvement of network performance and security by the methods based on FL.At last,some challenges and broader perspectives are explored. 展开更多
关键词 communication networks federated learning intelligence interconnecting machine learning privacy preservation
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Anchoring sulfur migration to mitigate Kirkendall voids in nano-twinned copper interconnections for robust and reliable packaging
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作者 Zicheng Sa Shang Wang +6 位作者 He Zhang Jiayun Feng Haozhe Li Jingxuan Ma Xudong Liu Qing Sun Yanhong Tian 《Journal of Materials Science & Technology》 2025年第27期106-119,共14页
Nano-twinned copper(nt-Cu),with a preferred orientation,is highly promising as interconnect materials in high-density advanced packaging due to its considerable mechanical strength,excellent electrical conductivity,an... Nano-twinned copper(nt-Cu),with a preferred orientation,is highly promising as interconnect materials in high-density advanced packaging due to its considerable mechanical strength,excellent electrical conductivity,and resistance to thermal migration.However,its application is impeded by sulfur-containing byproducts from the electroplating process,exacerbating the formation of Kirkendall voids within solder joints during thermal aging.Herein,through the incorporation of Zinc(Zn)into the nt-Cu layer,we develop a nt-Cu/Zn composite structure.Our findings provide the first definitive confirmation of the mechanism by which sulfur atoms migrate to the Cu_(3)Sn/nt-Cu interface through interstitial diffusion,thereby reducing the activation energy for vacancy formation.We further demonstrate that Zn effectively an-choring sulfur atoms,forming ZnS within the nt-Cu layer during heat treatment,which increases the vacancy formation energy and inhibits the development of Kirkendall voids.Remarkably,no Kirkendall voids are observed in the modified interconnects even after prolonged aging at 150℃ for 1000 h.The nt-Cu/Zn composite metallization layers significantly decrease the growth rate of interfacial intermetallic compounds by 33.6% and enhance the shear strength of solder interconnections to 228.9%.This research underscores the potential of nt-Cu in advanced electronic packaging,offering new pathways for improving the power density and reliability of electronic devices. 展开更多
关键词 Nano-twinned copper Electroplating interconnections Kirkendall voids Advanced packaging
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Schemes comparation of layered and continuous solution mining in bedded salt formations by horizontal interconnected wells
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作者 Hao Zhang Guimin Zhang +3 位作者 Kai Liu Xinghui Fu Yinping Li Yuxuan Liu 《International Journal of Mining Science and Technology》 2025年第12期2213-2229,共17页
Salt deposits in China predominantly originate from lake deposits,characterized by thin salt beds interspersed with numerous interlayers,collectively termed bedded salt formations.Historically,the solution mining prac... Salt deposits in China predominantly originate from lake deposits,characterized by thin salt beds interspersed with numerous interlayers,collectively termed bedded salt formations.Historically,the solution mining practices have adopted the layered solution mining approach,inspired by coal mining techniques.However,this approach fails to account for the unique challenges of salt solution mining.Practical implementation is inefficient,costs escalate post-construction,and cavern geometry is constrained by salt beds thickness.Additionally,resource loss in abandoned beds and stability risks in adjacent mining zones remain unresolved.This study investigates mining scheme selection for low-grade salt deposits in Huai'an Salt Basin,introducing a continuous solution mining method that traverses multiple interlayers.Through comprehensive analysis of plastic deformation in caverns and surrounding rock,volume shrinkage rates,and economic costs comparing continuous and layered solution mining approaches,the results demonstrate that:(1)In the layered solution mining with horizontal interconnected wells scheme,plastic deformation zones propagate unevenly,posing interlayer connectivity risks.Concurrently,roof subsidence and floor heave destabilize the structure;(2)the continuous solution mining with horizontal interconnected wells scheme reduces plastic deformation zones to 3.4%of cavern volume,with volumetric shrinkage below 17%,markedly improving stability;(3)Economically,the continuous solution mining scheme generates caverns 2.43 times larger than the layered solution mining,slashing unit volume costs to 41.1%while enhancing resource recovery and long-term viability.The continuous method demonstrates distinct economic advantages and achieves higher resource utilization efficiency in solution mining compared to layered mining.Furthermore,its superior cavern stability presents strong potential for large-scale implementation. 展开更多
关键词 Salt mine Layered solution mining Continuous solution mining Horizontal interconnected well Stability
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3D laser structuring of supermetalphobic microstructures inside elastomer for multilayer high-density interconnect soft electronics
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作者 Chengjun Zhang Qing Yang +5 位作者 Haoyu Li Zexiang Luo Yu Lu Jialiang Zhang Cheng Li Feng Chen 《International Journal of Extreme Manufacturing》 2025年第3期337-348,共12页
High-density interconnect(HDI)soft electronics that can integrate multiple individual functions into one miniaturized monolithic system is promising for applications related to smart healthcare,soft robotics,and human... High-density interconnect(HDI)soft electronics that can integrate multiple individual functions into one miniaturized monolithic system is promising for applications related to smart healthcare,soft robotics,and human-machine interactions.However,despite the recent advances,the development of three-dimensional(3D)soft electronics with both high resolution and high integration is still challenging because of the lack of efficient manufacturing methods to guarantee interlayer alignment of the high-density vias and reliable interlayer electrical conductivity.Here,an advanced 3D laser printing pathway,based on femtosecond laser direct writing(FLDW),is demonstrated for preparing liquid metal(LM)-based any layer HDI soft electronics.FLDW technology,with the characteristics of high spatial resolution and high precision,allows the maskless fabrication of high-resolution embedded LM microchannels and high-density vertical interconnect accesses for 3D integrated circuits.High-aspect-ratio blind/through LM microstructures are formed inside the elastomer due to the supermetalphobicity induced during laser ablation.The LM-based HDI circuit featuring high resolution(~1.5μm)and high integration(10-layer electrical interconnection)is achieved for customized soft electronics,including various customized multilayer passive electric components,soft multilayer circuit,and cross-scale multimode sensors.The 3D laser printing method provides a versatile approach for developing chip-level soft electronics. 展开更多
关键词 3D soft electronics liquid metal high-density interconnection femtosecond laser direct writing supermetalphobicity
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Machine learning facilitates the development of interconnecting layers for perovskite/silicon heterojunction tandem solar cells with proof-of-concept efficiency>38%
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作者 Xuejiao Wang Guanlan Chen +12 位作者 Ying Liu Guangyi Wang Wei Han Jin Wang Pengfei Liu Jilei Wang Shaojuan Bao Bo Yu Ying Liu Xinliang Chen Shengzhi Xu Ying Zhao Xiaodan Zhang 《Journal of Semiconductors》 2025年第11期77-86,共10页
As the development of single-junction solar cells reaches a bottleneck,tandem solar cells have emerged as a critical pathway to further enhance power conversion efficiency.Among them,monolithic perovskite/silicon hete... As the development of single-junction solar cells reaches a bottleneck,tandem solar cells have emerged as a critical pathway to further enhance power conversion efficiency.Among them,monolithic perovskite/silicon heterojunction tandem solar cells are currently the fastest-growing technology,achieving the highest efficiencies at relatively low costs.The intercon-necting layer,which connects the two sub-cells,plays a crucial role in tandem cell performance.It collects electrons and holes from the respective sub-cells and facilitates recombination and tunneling at the interface.Therefore,the properties of the inter-connecting layer are pivotal to the overall device performance.In this work,we applied statistical analysis and machine learn-ing algorithms to systematically analyze the interconnecting layer.A comprehensive dataset on interconnecting layer parame-ters was established,and predictive modeling was performed using Lasso linear regression,random forest,and multilayer per-ceptron(a type of neural network).The analysis revealed key feature importance for experimental parameters,providing valu-able insights into the application of interconnecting layers in perovskite/silicon heterojunction tandem solar cells.The final opti-mized interconnecting layer can achieve a proof-of-concept efficiency of 38.17%,providing guidance and direction for the devel-opment of monolithic perovskite/silicon tandem solar cells. 展开更多
关键词 perovskite/silicon heterojunction tandem solar cells interconnecting layer machine learning
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Fortifying Renewable-Dominant Hybrid Microgrids:A Bi-Directional Converter Based Interconnection Planning Approach
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作者 Zipeng Liang C.Y.Chung +3 位作者 Qin Wang Haoyong Chen Haosen Yang Chenye Wu 《Engineering》 2025年第8期130-143,共14页
Interconnection planning involving bi-directional converters(BdCs)is crucial for enhancing the reliability and robustness of hybrid alternating current(AC)/direct current(DC)microgrid clusters with high penetrations o... Interconnection planning involving bi-directional converters(BdCs)is crucial for enhancing the reliability and robustness of hybrid alternating current(AC)/direct current(DC)microgrid clusters with high penetrations of renewable energy resources(RESs).However,challenges such as the non-convex nature of BdC efficiency and renewable energy uncertainty complicate the planning process.To address these issues,this paper proposes a tri-level BdC-based planning framework that incorporates dynamic BdC efficiency and a data-correlated uncertainty set(DcUS)derived from historical data patterns.The proposed framework employs a least-squares approximation to linearize BdC efficiency and constructs the DcUS to balance computational efficiency and solution robustness.Additionally,a fully parallel column and constraint generation algorithm is developed to solve the model efficiently.Numerical simulations on a practical hybrid AC/DC microgrid system demonstrate that the proposed method reduces interconnection costs by up to 21.8%compared to conventional uncertainty sets while ensuring robust operation under all considered scenarios.These results highlight the computational efficiency,robustness,and practicality of the proposed approach,making it a promising solution for modern power systems. 展开更多
关键词 Hybrid alternating current/direct current microgrid interconnection planning Bi-directional converter Solar power uncertainty
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Enhanced interconnection and damping assignment passivity-based control for PM synchronous motors
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作者 Mohamed Azzi Lotfi Baghli +2 位作者 Ehsan Jamshidpour Phatiphat Thounthong Noureddine Takorabet 《Global Energy Interconnection》 2025年第4期657-667,共11页
Permanent Magnet Synchronous Motors(PMSMs)are widely employed in high-performance drive applications due to their superior efficiency and dynamic capabilities.However,their control remains challenging owing to nonline... Permanent Magnet Synchronous Motors(PMSMs)are widely employed in high-performance drive applications due to their superior efficiency and dynamic capabilities.However,their control remains challenging owing to nonlinear dynamics,parameter variations,and unmeasurable external disturbances,particularly load torquefluctuations.This study proposes an enhanced Interconnection and Damp-ing Assignment Passivity-Based Control(IDA-PBC)scheme,formulated within the port-controlled Hamiltonian(PCH)framework,to address these limitations.A nonlinear disturbance observer is embedded to estimate and compensate,in real time,for lumped mis-matched disturbances arising from parameter uncertainties and external loads.Additionally,aflatness-based control strategy is employed to generate the desired current references within the nonlinear drive system,ensuring accurate tracking of time-varying speed commands.This integrated approach preserves the system’s energy-based structure,enabling systematic stability analysis while enhancing robustness.The proposed control architecture also maintains low complexity with a limited number of tunable parameters,facilitating practical implementation.Simulation and experimental results under various operating conditions demonstrate the effectiveness and robustness of the proposed method.Comparative analysis with conventional proportional-integral(PI)control and standard IDA-PBC strategies confirms its capability to handle disturbances and maintain dynamic performance. 展开更多
关键词 Hamiltonian energy control interconnection and damping assignment passivity-based control IDA-PBC Motor drives Permanent-magnet synchronous machine(PMSM) Speed control
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Design and conductivity optimization of La_(0.3)Sr_(0.7)TiO_(3)/L_(a0.8)Sr_(0.2)MnO_(3) bi-layer structures as tubular segmented-in-series solid oxide fuel cell interconnect
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作者 Rui Shi Yan'an Li +5 位作者 Jiutao Gao Ziyang Chen Xin Zhang Shanlin Zhang Zaheer Ud Din Babar Chengxin Li 《Journal of Rare Earths》 2025年第9期1920-1928,共9页
This study focused on meeting the stringent stability requirements of tubular segmented-in-series solid oxide fuel cells(SOFCs) in reducing and oxidizing atmospheres.To address this challenge,a bi-layer perovskite cer... This study focused on meeting the stringent stability requirements of tubular segmented-in-series solid oxide fuel cells(SOFCs) in reducing and oxidizing atmospheres.To address this challenge,a bi-layer perovskite ceramic interconnect was designed by controlling the oxygen partial pressure,because of the strong correlation between the conductivity of strontium-doped lanthanum titanate(LST) and the oxygen partial pressure.The LST powder was prepared using solid-phase and sol-gel methods,and their influence on particle size and sintering behavior was compared.LST/lanthanum strontium manganite(LSM) bi-layer ceramic interconnects with varying thicknesses were fabricated through screen printing and co-sintering.The results demonstrate favorable interfacial bonding and excellent chemical compatibility between the ceramic layers.The conductivity of the bi-layer interconnect exhibits a temperature-dependent behavior,peaking at 550℃.Simulation calculations and research findings validate that the co nductivity of the bi-layer interconnect is determined by the thickness of the LSM layer and the oxygen partial pressure at the interconnect interface.Optimal conductivity is achieved with a bilayer interconnect consisting of approximately 15 μm of LST and 4 μm of LSM.This can be attributed to the efficient regulation of oxygen partial pressure at the interface,effectively mitigating LSM decomposition caused by low oxygen partial pressure and the subsequent reduction in conductivity.These results provide valuable fundamental data and methodology for the development of high-performance interconnects for tubular segmented-in-series SOFCs. 展开更多
关键词 Tubular SOFCs interconnects BI-LAYER La_(0.3)Sr_(0.7)TiO_(3)/L_(a0.8)Sr_(0.2)MnO_(3) Electrical conductivity Rareearths
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多网融合下都市圈轨道交通清分方法改进研究
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作者 朱炜 张炜晗 +2 位作者 郁叶萍 费佳莹 商泰峰 《铁道运输与经济》 北大核心 2026年第2期42-48,118,共8页
在我国都市圈快速发展及轨道交通多网融合的背景下,各大城市积极推进多制式轨道交通系统的协同运营管理,传统城市轨道交通客流清分方法在新网络条件下面临诸多挑战。首先梳理了当前我国都市圈轨道交通发展趋势与客流清分现状,系统分析... 在我国都市圈快速发展及轨道交通多网融合的背景下,各大城市积极推进多制式轨道交通系统的协同运营管理,传统城市轨道交通客流清分方法在新网络条件下面临诸多挑战。首先梳理了当前我国都市圈轨道交通发展趋势与客流清分现状,系统分析了多网融合条件下不同换乘模式与票价方案对乘客出行选择的影响,以及对现有客流清分模型适用性的冲击,明确了模式与方案的适配关系。在此基础上,结合都市圈轨道交通多网融合建设目标,重点揭示现有清分模型在“无感换乘”与“差异化票价”组合场景中的局限性,并针对性提出了未来模型的改进方向。研究成果可为多网融合背景下轨道交通系统的运营调度与收益分配提供理论支撑,推动多制式轨道交通系统安全高效运行。 展开更多
关键词 都市圈轨道交通 多网融合 互联互通 票价方案 清分方法
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过程与结构视角下北疆民族互嵌格局演进研究
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作者 罗意 陈小妮 《西北民族大学学报(哲学社会科学版)》 北大核心 2026年第1期56-65,共10页
清代中期以来,在国家边疆治理与边疆开发建设进程中,各族人口分阶段、持续向北疆迁移汇聚,造就了牧业带、农业带、城镇带“三带并存”的人文生态景观,并推动这一格局逐步向“三带合一”“三带交融”演进。北疆各民族率先完成空间与经济... 清代中期以来,在国家边疆治理与边疆开发建设进程中,各族人口分阶段、持续向北疆迁移汇聚,造就了牧业带、农业带、城镇带“三带并存”的人文生态景观,并推动这一格局逐步向“三带合一”“三带交融”演进。北疆各民族率先完成空间与经济方面的嵌入,以此为基础,联动推进文化、社会、心理等方面的嵌入发展,各方面的嵌入互为条件、相互支撑,持续推动各民族“全方位”嵌入不断深化。文章提出民族互嵌研究需同时重视过程视角与结构视角的分析,更要明确国家在场在民族互嵌格局演进中的关键作用。 展开更多
关键词 过程与结构视角 民族互嵌 北疆
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国际南北运输走廊建设:进展、机遇与挑战 被引量:1
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作者 周明 孙晨馨 《俄罗斯学刊》 2026年第1期66-100,共35页
国际南北运输走廊的建设过程大体经历了20世纪90年代至2002年俄罗斯主导推动的奠定期、2002—2022年各方缓慢推进期以及2022年以来俄罗斯大力推进的快速发展期。国际南北运输走廊参与国通过制度层面的协调、建设、完善与相关基础设施的... 国际南北运输走廊的建设过程大体经历了20世纪90年代至2002年俄罗斯主导推动的奠定期、2002—2022年各方缓慢推进期以及2022年以来俄罗斯大力推进的快速发展期。国际南北运输走廊参与国通过制度层面的协调、建设、完善与相关基础设施的改善升级来推动走廊的建设发展。国际南北运输走廊主要参与国综合实力的增强、突破地缘封锁与外部制裁压力的决心以及欧亚区域贸易的活跃繁荣与“全球南方”的崛起,为走廊由沉寂到加速建设提供了发展机遇。然而,当前国际南北运输走廊的建设和运营仍面临着区域治理不畅以及大国地缘政治斗争和话语权争夺加剧等挑战。展望未来,国际南北运输走廊建设的推进,仍需克服多重现实障碍,包括多边机制协调效率不足、基础设施互联互通水平不高,以及地缘政治环境中大国战略博弈所带来的不确定性等。 展开更多
关键词 “全球南方” 欧亚合作 大国博弈 互联互通 国际南北运输走廊
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邱健行教授脾胃-肝中运调和学术思想辨证机要
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作者 魏东 孙正平 邱健行 《中西医结合肝病杂志》 2026年第1期77-79,共3页
“脾胃-肝相关互连”是邱健行教授学术思想的重要内容。邱健行教授临证脾胃肝胆疾病50余年,在调肝治脾方面积累了丰富的临床经验,并形成了独具岭南特色的学术思想。邱健行教授认为人身气机平衡在于中运调和,和之关键在于脾胃-肝,脾、胃... “脾胃-肝相关互连”是邱健行教授学术思想的重要内容。邱健行教授临证脾胃肝胆疾病50余年,在调肝治脾方面积累了丰富的临床经验,并形成了独具岭南特色的学术思想。邱健行教授认为人身气机平衡在于中运调和,和之关键在于脾胃-肝,脾、胃、肝在人体位居中间,承启上下,是运转气机的重要中枢。治疗上健脾不离疏肝,调肝不忘护脾,以疏肝通降治法,对急慢性胃炎、肠炎、肝硬化、上消化道出血等用药独具岭南特色。本文对邱健行教授“脾胃-肝中运调和”学术思想及岭南经验用药进行了系统总结。 展开更多
关键词 脾胃-肝相关互连 中运调和 岭南
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电动静液压式互联馈能悬架参数优化与特性分析
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作者 寇发荣 韩楚寰 +2 位作者 刘朋涛 李强强 宋阳阳 《噪声与振动控制》 北大核心 2026年第1期184-190,233,共8页
为提高不同工况下车辆的减振性能,同时回收由路面不平引起的车辆振动能量,提出一种适应不同工况的电动静液压互联式馈能悬架系统。在分析互联悬架结构的基础上建立其数学模型,改变悬架输入参数,通过仿真分析4种工况下互联悬架的阻尼力... 为提高不同工况下车辆的减振性能,同时回收由路面不平引起的车辆振动能量,提出一种适应不同工况的电动静液压互联式馈能悬架系统。在分析互联悬架结构的基础上建立其数学模型,改变悬架输入参数,通过仿真分析4种工况下互联悬架的阻尼力特性与馈能特性。对比液压内部参数对互联悬架特性的影响,优化主要参数,在保证悬架阻尼力特性的前提下,使馈能功率最大化。在蛇形和凸块路面条件下进一步验证了该互联悬架抗侧倾和抗俯仰性能。结果表明:不同工况下互联悬架阻尼力特性一致且馈能特性相近,阻尼力及平均馈能功率随路面输入频率和振幅的增加而增加;优化主要参数后馈能特性明显提升;与安装传统悬架相比,安装该系统的车辆拥有更优异的平顺性和操稳性。 展开更多
关键词 振动与波 电液互联 能量回收 数学建模 参数优化
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考虑负荷低碳响应能力的多区互联电力系统低碳经济调度模型
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作者 魏震波 金文杰 +3 位作者 臧天磊 郑蕉雨 罗辰昊 张鑫媛 《中国电力》 北大核心 2026年第3期1-13,共13页
针对现有需求响应能力仅局限于电力负荷,其到碳排表征仍存中间变量且一致性效果差,造成用户侧降碳作用未能完全发现,因此提出一种考虑负荷低碳响应能力的多区互联电力系统低碳经济调度。首先,建立用户侧低碳能用引导信号用于量化用户侧... 针对现有需求响应能力仅局限于电力负荷,其到碳排表征仍存中间变量且一致性效果差,造成用户侧降碳作用未能完全发现,因此提出一种考虑负荷低碳响应能力的多区互联电力系统低碳经济调度。首先,建立用户侧低碳能用引导信号用于量化用户侧低碳调节作用。然后,面向多区互联系统,构建计及负荷低碳响应能力的双层优化模型。其中,上层为基于纳什谈判理论的多区系统合作博弈模型,旨在保障各区主体收益独立基础上实现系统风光消纳整体平衡;下层为以耦合碳排放因子为低碳引导的用户侧低碳需求响应模型,旨在促进区域内源荷间低碳互动能力。最后,通过能碳贡献因子实现不同主体的利益公平分配,进而保障市场环境下的所建模型公平合理性。算例结果表明:较传统基于电力需求响应驱动的多区互联系统低碳经济调度方法,所提模型能进一步挖掘用户侧低碳潜力,有效降低系统碳排放量,同时可一定程度上降低系统运行成本,且保证各主体利益分配的合理性。 展开更多
关键词 碳排放流理论 边际碳排放因子 多区互联系统 纳什议价 用户侧储能
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基于P2H-氢储-氢气管网协同的互联电氢综合能源系统多时间尺度动态优化调度
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作者 孙亮 王奕霏 +2 位作者 党翠 李卓骏 刘佳奥 《电气工程学报》 北大核心 2026年第1期94-107,共14页
针对可再生能源高比例渗透下多区域综合能源互联系统(Multi-region integrated energy interconnection system,MRIEIS)所面临的消纳与经济性挑战,构建了一个包含电、氢、热、冷多能流的多时间尺度优化调度模型。该模型以系统日总运行... 针对可再生能源高比例渗透下多区域综合能源互联系统(Multi-region integrated energy interconnection system,MRIEIS)所面临的消纳与经济性挑战,构建了一个包含电、氢、热、冷多能流的多时间尺度优化调度模型。该模型以系统日总运行成本最低为目标,建立动态多能流枢纽深度集成了电转氢(Power to hydrogen,P2H)、储氢罐、氢气管网以及燃气轮机(GT)掺氢等动态调度关键技术。通过日前、日内、实时三阶段滚动优化对系统进行精细化调度。算例分析基于一个包含居民、工业和混合型区域的典型场景,结果表明,该模型能够有效实现系统经济性与环保性的统一,总运行成本控制在56.48万元,同时系统总可再生能源利用率高达98.53%。氢能作为灵活的能量载体,其时空价值得到了充分发挥。掺氢策略有效刺激了氢能消耗,形成了“制-储-输-用”的闭环,为构建以新能源为主体的新型电力系统提供了可行的技术路径和调度策略参考。 展开更多
关键词 多区域互联系统 掺氢比动态优化 氢气管网 多时间尺度
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Web 3.0时代平台互联互通的偏差及其因应之策
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作者 叶明 姚莹 《南京邮电大学学报(社会科学版)》 2026年第1期72-83,共12页
平台互联互通是Web 3.0时代的应有之义,然而其尚存在封闭式竞争行为屡禁不止,歧视性互联互通愈显,互联互通的范围层次有待提升等多重偏差。仔细审视背后的诱因,可以归结为平台互联互通嵌含利益冲突,存在规范与技术罅漏及运动式监管的局... 平台互联互通是Web 3.0时代的应有之义,然而其尚存在封闭式竞争行为屡禁不止,歧视性互联互通愈显,互联互通的范围层次有待提升等多重偏差。仔细审视背后的诱因,可以归结为平台互联互通嵌含利益冲突,存在规范与技术罅漏及运动式监管的局限。有鉴于此,应革新互联互通的推行理念,由强制互联变为顺“市”而为,同时廓清平衡数据开放与数据隐私保护的思路,以纾解利益冲突。在规范和技术方面,需要体系化完善数据要素制度规范、强化技术支撑从而消除推行隐忧。此外,还应破除运动式监管模式的窠臼,构建平台互联互通的常态化监管机制。 展开更多
关键词 Web 3.0 平台 平台治理 平台互联互通 数据 数据监管 数据要素制度
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