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Synergistic performance and yield improvement of embedded RRAM product through process optimization in 40 nm CMOS platform
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作者 Zhenchao Sui Yanqing Wu +1 位作者 Zhichao Lv Xing Zhang 《Journal of Semiconductors》 2026年第3期65-71,共7页
To address the challenges of complexity,power consumption,and cost constraints in traditional display driver integrated circuits(DDICs)caused by external NOR Flash and SRAM,this work proposes an embedded resistive ran... To address the challenges of complexity,power consumption,and cost constraints in traditional display driver integrated circuits(DDICs)caused by external NOR Flash and SRAM,this work proposes an embedded resistive random-access memory(RRAM)integration solution based on a 40 nm high-voltage CMOS logic platform.Targeting the yield fluctuations and stability challenges during RRAM mass production,systematic process optimizations are implemented to achieve synergistic improvements in RRAM performance and yield.Through modifications to the film sputtering and pre-deposition treatment,the withinwafer resistance uniformity(RSU)of the oxygen-deficient layer(ODL)thin film is improved from 11%to 8%,while inter-wafer process stability variation reduces from 23%to below 6%.Consequently,the yield of 8 Mb RRAM embedded mass production products increases from 87%to 98.5%.In terms of device performance,the RRAM demonstrates a fast 4.8 ns read speed,exceptional read disturb immunity of 3×10^(8) cycles at 95℃,10^(3) write/erase endurance cycles for the 1 Mb cells,and data retention of 12.5 years at 125℃.Post high-temperature operating life(HTOL)testing exhibits stable high/low resistance window.This study provides process optimization strategies and a reliability assurance framework for the mass production of highly integrated,low-power embedded RRAM display driver IC. 展开更多
关键词 embedded RRAM 40 nm CMOS display driver IC process uniformity optimization yield improvement
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A Novel Route to the Large-Scale Utilization of Industrial CO_(2) as a Stable Liquid Fertilizer to Increase Crop Yields and Improve the Soil
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作者 Bao-Chang Sun Meng-Tong Mi +7 位作者 Sheng-Yi Wang Xiao-Juan Wang Xiao-Ling Song Guang-Wen Chu Xue-Kuan Li Dong Huang Dan Wang Jian-Feng Chen 《Engineering》 2025年第5期12-15,共4页
1.The key to achieving China’s dual carbon goals As pointed out in the CO_(2) Emissions in 2023 report released by the International Energy Agency,global carbon dioxide(CO_(2))emis-sions reached 37.4 billion tonnes i... 1.The key to achieving China’s dual carbon goals As pointed out in the CO_(2) Emissions in 2023 report released by the International Energy Agency,global carbon dioxide(CO_(2))emis-sions reached 37.4 billion tonnes in 2023[1],setting a new record high.The increase in CO_(2) emissions has exacerbated global warm-ing and led to a series of global climate problems.China is a major emitter of CO_(2). 展开更多
关键词 FERTILIZER global warming carbon dioxide dual carbon goals crop yields climate problems carbon goals soil improvement
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Optimization design of launch window for large-scale constellation using improved genetic algorithm
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作者 LIU Yue HOU Xiangzhen +3 位作者 CAI Xi LI Minghu CHANG Xinya WANG Miao 《先进小卫星技术(中英文)》 2025年第4期23-32,共10页
The research on optimization methods for constellation launch deployment strategies focused on the consideration of mission interval time constraints at the launch site.Firstly,a dynamic modeling of the constellation ... The research on optimization methods for constellation launch deployment strategies focused on the consideration of mission interval time constraints at the launch site.Firstly,a dynamic modeling of the constellation deployment process was established,and the relationship between the deployment window and the phase difference of the orbit insertion point,as well as the cost of phase adjustment after orbit insertion,was derived.Then,the combination of the constellation deployment position sequence was treated as a parameter,together with the sequence of satellite deployment intervals,as optimization variables,simplifying a highdimensional search problem within a wide range of dates to a finite-dimensional integer programming problem.An improved genetic algorithm with local search on deployment dates was introduced to optimize the launch deployment strategy.With the new description of the optimization variables,the total number of elements in the solution space was reduced by N orders of magnitude.Numerical simulation confirms that the proposed optimization method accelerates the convergence speed from hours to minutes. 展开更多
关键词 deployment strategy optimization launching schedule constraints improved genetic algorithm large-scale constellation
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Spatial Differences in Soil Improvement Effect and Panax ginseng Yield:A Case Study of Yanbian Chaoxianzu(Korean)Autonomous Prefecture
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作者 Ziqi XIANG Sihai ZHANG +3 位作者 Lin DAI Qiang YE Yujiao ZHANG Yingying WANG 《Agricultural Biotechnology》 2025年第2期38-43,共6页
[Objectives]Farmland ginseng cultivation,as a sustainable alternative to traditional forest-clearing ginseng planting,requires systematic evaluation of soil optimization strategies.This study aimed to quantify the lin... [Objectives]Farmland ginseng cultivation,as a sustainable alternative to traditional forest-clearing ginseng planting,requires systematic evaluation of soil optimization strategies.This study aimed to quantify the linkage between soil improvement outcomes and ginseng(Panax ginseng)yield across five regions in Yanbian Korean Autonomous Prefecture.[Methods]Soil improvement trials were conducted using farmland soils,with forest soils as the baseline.Soil nutrient contents were measured via soil agrochemical analysis method using a continuous flow analyzer.Statistical approaches,including significance tests,correlation analysis,and regression analysis,were applied to identify key factors influencing yield.[Results]Ginseng yield exhibited a significant positive correlation with organic matter content and available phosphorus,but a negative correlation with electrical conductivity,ammonium nitrogen,and available potassium.Wangqing and Liucai regions achieved post-improvement yields equivalent to 94%and 88%of forest soil yields,respectively,demonstrating the highest soil similarity to forest ecosystems.[Conclusions]Region-specific soil improvement protocols in Wangqing and Liucai show high replicability and efficacy.These strategies can serve as benchmarks for sustainable farmland ginseng cultivation,minimizing ecological disruption while maintaining productivity. 展开更多
关键词 Farmland ginseng cultivation Soil improvement Soil nutrients yield Correlation analysis
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Improvements of Fiber Yield and Fiber Fineness by Expressing the iaaM Gene in Cotton Seed Coat 被引量:3
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作者 PEI Yan ZHENG Xue-ian +2 位作者 ZHANG Mi ZENG Qi-wei HOU Lei 《棉花学报》 CSCD 北大核心 2008年第S1期44-44,共1页
Cotton,the most important natural fiber crop in the world,is a mainstay in China's economy.However,for over two decades,cotton yields both in China and U.S.have been at a plateau.One reason for this plateau is the... Cotton,the most important natural fiber crop in the world,is a mainstay in China's economy.However,for over two decades,cotton yields both in China and U.S.have been at a plateau.One reason for this plateau is the limitation of current cotton germplasm.Cotton fibers are single cells re"sulting from elongated cells of the ovule epidermis.IAA regulates both plant growth and differentia-tion,and it has important roles in cotton fiber develop ment.To evaluate plant hormone biosynthetic genes for genetic engineering to mo dify cotton fiber,iaaM,a auxin biosynthetic gene,was linked to two ovule-specific(Ag15 and Lefsm1). 展开更多
关键词 FBP improvements of Fiber yield and Fiber Fineness by Expressing the iaaM Gene in Cotton Seed Coat
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High-efciency improved symmetric successive over-relaxation preconditioned conjugate gradient method for solving large-scale finite element linear equations 被引量:1
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作者 李根 唐春安 李连崇 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第10期1225-1236,共12页
Fast solving large-scale linear equations in the finite element analysis is a classical subject in computational mechanics. It is a key technique in computer aided engineering (CAE) and computer aided manufacturing ... Fast solving large-scale linear equations in the finite element analysis is a classical subject in computational mechanics. It is a key technique in computer aided engineering (CAE) and computer aided manufacturing (CAM). This paper presents a high-efficiency improved symmetric successive over-relaxation (ISSOR) preconditioned conjugate gradient (PCG) method, which maintains lelism consistent with the original form. Ideally, the by 50% as compared with the original algorithm. the convergence and inherent paralcomputation can It is suitable for be reduced nearly high-performance computing with its inherent basic high-efficiency operations. By comparing with the numerical results, it is shown that the proposed method has the best performance. 展开更多
关键词 improved preconditioned conjugate gradient (PCG) method conjugate gradient method large-scale linear equation finite element method
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Research and Application of Assessment of Wind Energy in Large-Scale Wind Power Bases
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作者 Ling Yuan Ling Bai +4 位作者 Jianke Li Peng Chen Haichuan Long Xia Ruan Qi Luo 《Journal of Environmental & Earth Sciences》 2025年第2期117-128,共12页
Improving the accuracy of the evaluation of the performance of wind farms in large wind power bases located in complex terrain under the actual atmosphere is crucial to the sustainable development of wind power.To thi... Improving the accuracy of the evaluation of the performance of wind farms in large wind power bases located in complex terrain under the actual atmosphere is crucial to the sustainable development of wind power.To this end,this study combined the Weather Research and Forecasting(WRF)model with the Wind Farm Parameterization(WFP)method to investigate the wake characteristics and operational performance of large onshore wind farms in the complex terrain of Jiuquan City,Gansu Province,China.The research results showed that after verification,the systematic error of the WRF simulations was less than 3%.The WRF model and the WFP scheme simulated a significant warming phenomenon within the wind power base area,while a cooling effect was observed outside.The analysis of the wake effects indicated that the impact of PhaseⅠconstruction on PhaseⅡconstruction of the wind power base was minimal.During the operation of the entire wind power base,the wind speed within the wind farm decreased by approximately 10%,and the influence range of the predominant wind direction extended over a hundred kilometers downwind.The research conclusions provide a powerful scientific basis for optimizing design and operation,improving efficiency,minimizing the negative impacts on adjacent wind turbines,and ensuring the sustainable development of wind energy through dynamic planning and scientific assessment. 展开更多
关键词 large-scale Wind Power Base Mesoscale Simulation Risk Assessment Performance Evaluation and improvement
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Selection criteria of MPOB-Angola germplasm collection for yield improvement of the oil palm
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作者 A.Norziha Z.Zamri +2 位作者 Y.Zulkifli A.M.Fadila M.Marhalil 《Oil Crop Science》 CSCD 2024年第1期20-28,共9页
Oil palm germplasm collected from Angola,Africa in 1991 were subjected to genetic variability potential studies.The collection was planted in the form of open-pollinated families as trials at the Malaysian Palm Oil Bo... Oil palm germplasm collected from Angola,Africa in 1991 were subjected to genetic variability potential studies.The collection was planted in the form of open-pollinated families as trials at the Malaysian Palm Oil Board(MPOB)Kluang Research Station,Johor,Malaysia,in 1994.Dura palms from 52 families and tenera palms from 44 families of MPOB-Angola were evaluated for their bunch yield and bunch quality components.The objectives of this study were to determine the genetic variability among the families and performance of MPOB-Angola germplasm for yield improvement.The analysis of variance(ANOVA)revealed highly significant differences between the dura and tenera families for most of the traits,suggesting the presence of high genetic variability,which is essential for breeding programmes.Among the duras,family AGO 02.02 displayed the best yield performance,with a high fresh fruit bunch,oil yield and total economic product at 240.40,29.46 and 37.93 kg palm^(-1)year^(-1),respectively.As for the teneras,family AGO 03.04 recorded the highest FFB yield and oil yield at 249.25 and 45.22 kg palm^(-1)year^(-1),respectively.Besides that,several families with big fruit sizes or producing a mean fruit weight of 14-17 g were also identified.Both dura and tenera from AGO 01.01 recorded the highest oil to bunch(O/B)of 17.76%and 28.65%,respectively.These findings will facilitate the selection of palms from the MPOB-Angola germplasm for future breeding programmes. 展开更多
关键词 Oil palm GERMPLASM Genetic variability HERITABILITY yield improvement
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Actuality and Improvement Measures of Mediumand Low-yielding Farmland in Liaoning Province
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作者 Song Dan 《Meteorological and Environmental Research》 CAS 2015年第10期30-33,共4页
In order to improve the quality of cultivated land in Liaoning Province in the light of local conditions, medium- and low-yielding farmland in Liaoning Province are divided into various zones according to characterist... In order to improve the quality of cultivated land in Liaoning Province in the light of local conditions, medium- and low-yielding farmland in Liaoning Province are divided into various zones according to characteristics of the terrain, and the practical and feasible improvement measures are put forward based on the current situation and main existing problems in the medium- and low-yielding farmland in different areas, 展开更多
关键词 Medium- and low-yielding farmland Current situation improvement measures China
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The rational design of multiple molecular module-based assemblies for simultaneously improving rice yield and grain quality 被引量:6
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作者 Kun Wu Xiaopeng Xu +5 位作者 Nan Zhong Haixiang Huang Jianping Yu Yafeng Ye Yuejin Wu Xiangdong Fu 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2018年第6期337-341,共5页
Rice is one of the most important staple food for over half of the world's population,and a substantial increase in productivity and quality of rice grain will be required to feed a growing human population.Grain siz... Rice is one of the most important staple food for over half of the world's population,and a substantial increase in productivity and quality of rice grain will be required to feed a growing human population.Grain size and shape are the two important components contributing to grain yield and quality,because they impact both yield potential and end-use quality. 展开更多
关键词 The rational design of multiple molecular module-based assemblies for simultaneously improving rice yield and grain quality RIL length NIP
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An improved yield criterion characterizing the anisotropic and tension-compression asymmetric behavior of magnesium alloy 被引量:2
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作者 Zhigang Li Haifeng Yang +1 位作者 Jianguang Liu Fu Liu 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第2期612-628,共17页
A novel yield criterion based on CPB06 considering anisotropic and tension-compression asymmetric behaviors of magnesium alloys was derived and proposed(called M_CPB06).This yield criterion can simultaneously predict ... A novel yield criterion based on CPB06 considering anisotropic and tension-compression asymmetric behaviors of magnesium alloys was derived and proposed(called M_CPB06).This yield criterion can simultaneously predict the yield stresses and the Lankford ratios at different angles(if any)under uniaxial tension,compression,equal-biaxial and equal-compression conditions.Then,in order to further describe the anisotropic strain-hardening characteristics of magnesium alloy,the proposed M_CPB06 criterion was further evolved to the M_CPB06ev model by expressing the parameters of the M_CPB06 model as functions of the plastic strain.As the model was developed,the stresses and Lankford ratios of AZ31B and ZK61M magnesium alloys at different angles under tensile,compressive and through-thickness compressive conditions were used to calibrate the M_CPB06/M_CPB06ev and the existing CPB06ex2 model.Calibration results reveal that compared with the CPB06ex2 yield criterion with equal quantity of coefficients,the M_CPB06 criterion exhibits certain advancement,and meanwhile the M_CPB06ev model can relatively accurately predict the change of the yield locus with increase of the plastic strain.Finally,the M_CPB06ev model was developed through UMAT in LS-DYNA.Finite element simulations using the subroutine were conducted on the specimens of different angles to the rolling direction under tension and compression.Simulation results were highly consistent with the experimental results,demonstrating a good reliability and accuracy of the developed subroutine. 展开更多
关键词 Magnesium alloy ANISOTROPY Tension-compression asymmetry improved yield criterion UMAT
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Effects of Microbial Fertilizers on Soil Improvement and Wheat Growth Characteristics in Saline-alkali Land 被引量:2
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作者 Gen SONG Ziru LI +12 位作者 Baohai ZHANG Zhenhua JIA Jirong CUI Dingxin GUO Lili HAN Yanhong WU Jianlong FENG Yan GAO Mingying LIU Chunguang SONG Guojia JI Changsong WANG Zhiwei ZHANG 《Agricultural Biotechnology》 2024年第4期76-81,共6页
[Objectives]This study was conducted to further enrich the research on saline-alkali land improvement,and explore the effects of biological bacterial fertilizers containing Bacillus subtilis and Bacillus velezensis HM... [Objectives]This study was conducted to further enrich the research on saline-alkali land improvement,and explore the effects of biological bacterial fertilizers containing Bacillus subtilis and Bacillus velezensis HM-3 in saline-alkali land improvement and crop growth promotion.[Methods]Wheat was planted in saline-alkali land in Huanghua City,Hebei Province,and a mixed application experiment was carried out using biological agents from Hemiao Biotechnology Co.,Ltd.[Results]Compared with the field of control check(CK),water-soluble salts and pH value in the experimental fields decreased,and living bacteria count in the soil increased.Meanwhile,the economic characters of wheat in the experimental fields showed excellent performance,with yields increasing by 39.09%and 27.49%compared with the CK.It could be seen that the application of biological bacterial fertilizers achieved obvious effects of improving saline-alkali soil and increasing wheat yield.[Conclusions]In this study,the effects of biological bacterial fertilizers on saline-alkali land and wheat growth characters were clarified,providing some technical support and theoretical guidance for wheat planting in Huanghua saline-alkali land. 展开更多
关键词 Saline-alkali land Soil improvement WHEAT yield
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Artificial-intelligent-powered safety and efficiency improvement for controlling and scheduling in integrated railway systems 被引量:2
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作者 Jun Liu Gehui Liu +1 位作者 Yu Wang Wanqiu Zhang 《High-Speed Railway》 2024年第3期172-179,共8页
The multi-mode integrated railway system,anchored by the high-speed railway,caters to the diverse travel requirements both within and between cities,offering safe,comfortable,punctual,and eco-friendly transportation s... The multi-mode integrated railway system,anchored by the high-speed railway,caters to the diverse travel requirements both within and between cities,offering safe,comfortable,punctual,and eco-friendly transportation services.With the expansion of the railway networks,enhancing the efficiency and safety of the comprehensive system has become a crucial issue in the advanced development of railway transportation.In light of the prevailing application of artificial intelligence technologies within railway systems,this study leverages large model technology characterized by robust learning capabilities,efficient associative abilities,and linkage analysis to propose an Artificial-intelligent(AI)-powered railway control and dispatching system.This system is elaborately designed with four core functions,including global optimum unattended dispatching,synergetic transportation in multiple modes,high-speed automatic control,and precise maintenance decision and execution.The deployment pathway and essential tasks of the system are further delineated,alongside the challenges and obstacles encountered.The AI-powered system promises a significant enhancement in the operational efficiency and safety of the composite railway system,ensuring a more effective alignment between transportation services and passenger demands. 展开更多
关键词 High-speed railway Multi-mode railway system Artificial intelligence large-scale mode system framework Safety and efficiency improvement
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Assessing cutter-rock interaction during TBM tunnelling in granite:Large-scale standing rotary cutting tests and 3D DEM simulations 被引量:1
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作者 Xin Huang Miaoyuan Tang +4 位作者 Shuaifeng Wang Yixin Zhai Qianwei Zhuang Chi Zhang Qinghua Lei 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第9期3595-3615,共21页
The widespread utilisation of tunnel boring machines(TBMs)in underground construction engineering requires a detailed investigation of the cutter-rock interaction.In this paper,we conduct a series of largescale standi... The widespread utilisation of tunnel boring machines(TBMs)in underground construction engineering requires a detailed investigation of the cutter-rock interaction.In this paper,we conduct a series of largescale standing rotary cutting tests on granite in conjunction with high-fidelity numerical simulations based on a particle-type discrete element method(DEM)to explore the effects of key cutting parameters on the TBM cutter performance and the distribution of cutter-rock contact stresses.The assessment results of cutter performance obtained from the cutting tests and numerical simulations reveal similar dependencies on the key cutting parameters.More specifically,the normal and rolling forces exhibit a positive correlation with penetration but are slightly influenced by the cutting radius.In contrast,the side force decreases as the cutting radius increases.Additionally,the side force shows a positive relationship with the penetration for smaller cutting radii but tends to become negative as the cutting radius increases.The cutter's relative effectiveness in rock breaking is significantly impacted by the penetration but shows little dependency on the cutting radius.Consequently,an optimal penetration is identified,leading to a low boreability index and specific energy.A combined Hertz-Weibull function is developed to fit the cutter-rock contact stress distribution obtained in DEM simulations,whereby an improved CSM(Colorado School of Mines)model is proposed by replacing the original monotonic cutting force distribution with this combined Hertz-Weibull model.The proposed model outperforms the original CSM model as demonstrated by a comparison of the estimated cutting forces with those from the tests/simulations.The findings from this work that advance our understanding of TBM cutter performance have important implications for improving the efficiency and reliability of TBM tunnelling in granite. 展开更多
关键词 large-scale standing rotary cutting test Discrete element method(DEM)simulation Cutter-rock interaction improved CSM(Colorado School of Mines) model Cutting force
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A semantic vector map-based approach for aircraft positioning in GNSS/GPS denied large-scale environment
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作者 Chenguang Ouyang Suxing Hu +6 位作者 Fengqi Long Shuai Shi Zhichao Yu Kaichun Zhao Zheng You Junyin Pi Bowen Xing 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期1-10,共10页
Accurate positioning is one of the essential requirements for numerous applications of remote sensing data,especially in the event of a noisy or unreliable satellite signal.Toward this end,we present a novel framework... Accurate positioning is one of the essential requirements for numerous applications of remote sensing data,especially in the event of a noisy or unreliable satellite signal.Toward this end,we present a novel framework for aircraft geo-localization in a large range that only requires a downward-facing monocular camera,an altimeter,a compass,and an open-source Vector Map(VMAP).The algorithm combines the matching and particle filter methods.Shape vector and correlation between two building contour vectors are defined,and a coarse-to-fine building vector matching(CFBVM)method is proposed in the matching stage,for which the original matching results are described by the Gaussian mixture model(GMM).Subsequently,an improved resampling strategy is designed to reduce computing expenses with a huge number of initial particles,and a credibility indicator is designed to avoid location mistakes in the particle filter stage.An experimental evaluation of the approach based on flight data is provided.On a flight at a height of 0.2 km over a flight distance of 2 km,the aircraft is geo-localized in a reference map of 11,025 km~2using 0.09 km~2aerial images without any prior information.The absolute localization error is less than 10 m. 展开更多
关键词 large-scale positioning Building vector matching improved particle filter GPS-Denied Vector map
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Yield Improvement and Advanced Defect Control——Driving Forces for Modeling of Bulk Crystal Growth
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作者 Georg Mueller Jochen Friedrich 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第Z1期200-207,共8页
Yield improvement and advanced defect control can be identified as the driving forces for modeling of industrial bulk crystal growth. Yield improvement is mainly achieved by upscaling of the whole crystal growth appar... Yield improvement and advanced defect control can be identified as the driving forces for modeling of industrial bulk crystal growth. Yield improvement is mainly achieved by upscaling of the whole crystal growth apparatus and increased processing windows with more tolerances for parameter variations. Advanced defect control means on one hand a reduction of the number of deficient crystal defects and on the other hand the formation of beneficial crystal defects with a uniform distribution and well defined concentrations in the whole crystal. This "defect engineering" relates to the whole crystal growth process as well as the following cooling and optional annealing processes, respectively. These topics were illustrated in the paper by examples of modeling and experimental results of bulk growth of silicon (Si), gallium arsenide (GaAs), indium phosphide (InP) and calcium fluoride (CaF2). These examples also involve the state of the art of modeling of the most important melt growth techniques, crystal pulling (Czochralski methods) and vertical gradient freeze (Bridgman-type methods). 展开更多
关键词 yield improvement advanced defect control crystal growth
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江西省水稻大面积单产提升面临的问题与对策
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作者 吴海燕 李庆 《中国稻米》 北大核心 2026年第2期1-6,11,共7页
江西是我国重要的水稻主产区之一,扎实推进江西水稻大面积单产提升,对保障国家粮食安全具有重要意义。近年,江西水稻单产虽稳步增长,但与全国平均水平相比仍有差距,在均衡增产、品种增产、技术增产及减灾增产等方面仍有较大潜力。推进... 江西是我国重要的水稻主产区之一,扎实推进江西水稻大面积单产提升,对保障国家粮食安全具有重要意义。近年,江西水稻单产虽稳步增长,但与全国平均水平相比仍有差距,在均衡增产、品种增产、技术增产及减灾增产等方面仍有较大潜力。推进江西水稻大面积单产提升,主要面临以下问题与挑战:一是品种选育创新能力不足,突破性大品种匮乏;二是土壤酸化与养分失衡问题突出,耕层质量亟待提升;三是高产技术集成度不高,推广应用存在区域不平衡现象;四是基层农技推广体系不健全,社会化服务能力存在短板;五是防灾减灾体系薄弱,风险保障机制尚不完善。为破解上述难题,促进江西水稻大面积单产提升,建议统筹以下路径协同发力:整合科技创新资源,聚力选育突破性品种;系统改良土壤质量,协同提升耕地基础地力;推动高产技术集成与标准化,因地制宜加速成果转化应用;创新农技推广模式,提升社会化服务效能;健全防灾减灾体系,增强风险综合应对能力。 展开更多
关键词 水稻 大面积单产提升 江西
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水稻合理密植增产增效栽培技术研究进展
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作者 傅友强 李逍遥 +9 位作者 黄章慧 陈小娟 张玉芬 朱菲菲 叶群欢 王昕钰 段松坡 尹媛红 梁开明 何秀英 《华南农业大学学报》 北大核心 2026年第2期187-195,共9页
合理密植是调节水稻有效穗数、大面积提升水稻单产简单、直接且有效的重要农艺措施。本文系统阐述了水稻合理密植的重要性和影响因素,指出了密植对病虫害和倒伏的影响,提出了以“密植减氮、节水控湿、一喷多促、减病抗倒和提质增效”为... 合理密植是调节水稻有效穗数、大面积提升水稻单产简单、直接且有效的重要农艺措施。本文系统阐述了水稻合理密植的重要性和影响因素,指出了密植对病虫害和倒伏的影响,提出了以“密植减氮、节水控湿、一喷多促、减病抗倒和提质增效”为主要研究内容的水稻合理密植增产增效栽培技术,总结了该技术的关键要点,探讨了发展方向,以期为大面积提升水稻单产提供理论依据和技术指导。 展开更多
关键词 水稻 大面积单产提升 密植减氮 节水控湿 一喷多促 减病抗倒 提质增效
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不同措施对土壤改良及小白菜促生作用的影响
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作者 韩小双 许士芳 +3 位作者 俞雪美 俞静 杨康 沈熠苗 《长江蔬菜》 2026年第2期73-77,共5页
为探究不同土壤处理措施对土壤改良及小白菜促生作用的影响,以小白菜夏龙18为试验材料,设置5种不同土壤处理措施,分别为施用枯草芽孢杆菌(T_(1))、氟啶胺(T_(2))、氰氨化钙(T_(3))、大蒜E素(T_(4))及常规生产(CK),研究不同处理措施对小... 为探究不同土壤处理措施对土壤改良及小白菜促生作用的影响,以小白菜夏龙18为试验材料,设置5种不同土壤处理措施,分别为施用枯草芽孢杆菌(T_(1))、氟啶胺(T_(2))、氰氨化钙(T_(3))、大蒜E素(T_(4))及常规生产(CK),研究不同处理措施对小白菜长势、产量及土壤性质的影响。结果表明,和常规生产(CK)相比,4种处理在提高小白菜长势、增加单株质量和产量上表现出不同程度的促进效果,其中枯草芽孢杆菌(T_(1))的增产效果最佳,增产率达18.0%,收益最高,达到958.56元/667 m^(2)。各处理对根肿病均具有一定防效,且土壤中芸薹根肿菌含量略低于常规生产(CK),其中氟啶胺(T_(2))的芸薹根肿菌含量最低。综合本试验结果,推荐施用枯草芽孢杆菌(T_(1))为较优土壤处理方式。 展开更多
关键词 土壤改良 小白菜 产量 效益
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土壤改良措施对玉米-大豆间作体系土壤结构、养分及作物产量的影响
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作者 李贺男 李锦朝 +7 位作者 付浩川 张浩磊 温家宣 庞津雯 方妍欣 董勤各 梁福琴 冯浩 《干旱地区农业研究》 北大核心 2026年第1期232-239,共8页
为解决黄土高原中低产田土壤结构差、肥力弱、作物产能低等问题,于2023年开展土壤改良田间试验,设传统施肥(CK)、γ-聚谷氨酸保水剂(P)、松土剂(S)、30%有机肥替代化肥(F)、30%有机肥替代化肥+γ-聚谷氨酸保水剂(FP)和30%有机肥替代化肥... 为解决黄土高原中低产田土壤结构差、肥力弱、作物产能低等问题,于2023年开展土壤改良田间试验,设传统施肥(CK)、γ-聚谷氨酸保水剂(P)、松土剂(S)、30%有机肥替代化肥(F)、30%有机肥替代化肥+γ-聚谷氨酸保水剂(FP)和30%有机肥替代化肥+松土剂(FS)共6个处理,研究不同改良措施对土壤结构、养分含量及玉米-大豆间作系统产量的影响。结果表明,与CK相比,各改良措施下土壤紧实度显著降低,降幅为15.90%~28.19%,玉米产量显著提高12.07%~30.73%。与CK相比,FS处理土壤容重显著降低7.01%,土壤团聚体平均重量直径(MWD)与几何平均直径(GMD)分别提高18.26%、21.96%,土壤有机质、全氮、有效磷含量分别显著增加44.70%、74.22%、100.95%,玉米的穗粒数、百粒重、产量分别提升16.11%、10.58%、30.73%。各改良措施对大豆产量和百粒重提升效果不显著。综上,30%有机肥替代+松土剂改良措施(FS)在改善土壤结构、土壤肥力和增加作物产量方面效果显著,推荐采用该方式来改善黄土高原区域旱地农业中低产田土壤质量,进而提高作物产量。 展开更多
关键词 土壤改良 土壤结构 土壤养分 玉米-大豆间作 产量 中低产田
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