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基于Centripetal Catmull-Rom曲线的经食道超声心动图左心室分割方法 被引量:7
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作者 纪祥虎 高思聪 +1 位作者 黄志标 付忠良 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2016年第5期84-90,共7页
针对2维超声心动图像噪声大且难于分割的特点,提出基于Centripetal Catmull-Rom曲线的多尺度活动形状模型的左心室分割方法。该算法在金字塔上层提取2维轮廓法线向量特征并采用马氏距离寻找新的特征点位置;在图像金字塔底层快速提取特... 针对2维超声心动图像噪声大且难于分割的特点,提出基于Centripetal Catmull-Rom曲线的多尺度活动形状模型的左心室分割方法。该算法在金字塔上层提取2维轮廓法线向量特征并采用马氏距离寻找新的特征点位置;在图像金字塔底层快速提取特征点周围的Log-Gabor特征并使用Gentle Ada Boost训练分类器,选择置信度水平最高的点作为新的特征点位置。实验证明,这种方法较之传统活动形状模型分割更为精确且分割结果交互方便,有利于对结果的再编辑。 展开更多
关键词 经食道超声心动图 左心室分割 活动形状模型 LOG-GABOR CENTRIPETAL Catmull-Rom曲线
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Acceleration sensing based on piezoresistive effect of carbon nanotube films 被引量:1
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作者 韦逢艳 《Journal of Chongqing University》 CAS 2006年第3期157-160,共4页
Based on piezoresistive effect, the acceleration sensitivity of multi-walled canbon nanotube (MWNT) films was investigated. A three-point bending technique was presented to measure the piezoresistivity, which used a b... Based on piezoresistive effect, the acceleration sensitivity of multi-walled canbon nanotube (MWNT) films was investigated. A three-point bending technique was presented to measure the piezoresistivity, which used a bending stress applied to the samples while making MWNT films wheeling with a rotational machine. The experimental results showed that the fractional increase in resistance increases linearly versus the increase of centripetal acceleration, and there is a linear relationship between the acceleration and the strain. These shed light on using carbon nanotube films as acceleration sensors for many potential applications. 展开更多
关键词 carbon nanotubes centripetal acceleration STRAIN SENSOR
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A METHOD OF SHAPE ENCODING AND RETRIEVAL 被引量:1
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作者 Huang Xianglin Song Lei Shen Lansun(Signal and Information Processing Lab, Beijing Polytechnic University, Beijing 100022) 《Journal of Electronics(China)》 2002年第3期302-306,共5页
A method of shape encoding and retrieval is proposed in this letter, which uses centripetal code to encode shape and extracts shape's convex for retrieval. For the rotation invariance and translation invariance of... A method of shape encoding and retrieval is proposed in this letter, which uses centripetal code to encode shape and extracts shape's convex for retrieval. For the rotation invariance and translation invariance of the centripetal code and the normalization of convex,the proposed retrieval method is similarity transform resistant, Experimental results confirm this capability. 展开更多
关键词 Shape retrieval Shape encoding Centripetal code Similarity transform QBE(Query By Example)
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Magnetic Inertial Confinement Fusion(MICF)
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作者 MIAO Feng ZHENG Xianjun +3 位作者 DENG Baiquan LIU Wei OU Wei HUANG Yi 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第11期1055-1063,共9页
t Based on the similarity in models of the early Sun and the 3-D common focal region of the micro-pinch in X-pinch experiments, a novel hybrid fusion configuration by continuous focusing of multiple Z-pinched plasma b... t Based on the similarity in models of the early Sun and the 3-D common focal region of the micro-pinch in X-pinch experiments, a novel hybrid fusion configuration by continuous focusing of multiple Z-pinched plasma beams on spatially symmetric plasma is proposed. By replacing gravity with Lorentz force with subsequent centripetal spherical pinch, the beam- target fusion reactivity is enhanced in a quasi-spherical converging region, thus achieving MICF. An assessment, presented here, suggests that a practical fusion power source could be achieved using deuterium alone. Plasma instabilities can be suppressed by fast rotation resulting from an asymmetric tangential torsion in the spherical focal region of this configuration. Mathematical equivalence with the Sun allows the development of appropriate equations for the focal region of MICF, which are solved numerically to provide density, temperature and pressure distributions that produce net fusion energy output. An analysis of MICF physics and a preliminary experimental demonstration of a single beam are also carried out. 展开更多
关键词 MICF centripetal spherical pinch beam-target enhancement
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Cosmic Power Generation and Gravity
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作者 Greg Poole 《Journal of High Energy Physics, Gravitation and Cosmology》 2019年第3期920-927,共8页
By modeling the Sun as an electrical dynamo, the speed and frequency of the Sun’s electromagnetic field is determined. The results confirm the approximate radius of the Sun’s inner core 1,220,000 meters and gravity ... By modeling the Sun as an electrical dynamo, the speed and frequency of the Sun’s electromagnetic field is determined. The results confirm the approximate radius of the Sun’s inner core 1,220,000 meters and gravity at its surface, 274 m/s2. The Sun’s rotating electromagnetic field radiates to Pluto and beyond. Like gravity, the near magnetic field of a sphere weakens with the inverse square of the distance. The Sun is a constant speed and constant acceleration machine. Like a set speed Ferris wheel, the orbital speed of planets is faster nearer to the Sun and reduces as the distance increases. The Standard Gravitation Parameter (m3/s2) is analogous to accelerating cubic volume (m3/s2) of the solar system. The planets are being pushed away by a centrifugal force from the constant acceleration of the Sun’s magnetic field, while at the same time being pulled in by the force of the Sun’s centripetal acceleration. Planetary orbits are the result of this balancing of forces. Gravity is a centripetal acceleration derived from a rotating electromagnetic field. Gravity is derived from an electromagnetic field which means it is not a force. There are only three forces in the universe: electromagnetic, strong nuclear and weak nuclear. 展开更多
关键词 CENTRIPETAL Acceleration GRAVITY (g) ORBITAL Velocity DYNAMO Standard GRAVITATIONAL Parameter
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Energy Electromagnetic Force Equivalence, <i>E = F<sub>e</sub>x r</i>
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作者 Greg Poole 《Journal of High Energy Physics, Gravitation and Cosmology》 2019年第4期1057-1062,共6页
By combing the mass energy equivalence formula, E=mc2, with the speed of light and gravity formula, , a new equation for energy is derived. The Energy Electromagnetic Force Equivalence is used to explain the rotationa... By combing the mass energy equivalence formula, E=mc2, with the speed of light and gravity formula, , a new equation for energy is derived. The Energy Electromagnetic Force Equivalence is used to explain the rotational torque of the stars, planets, and galaxy. A greater understanding of the universe is achieved with a simple mathematical expression. Nuclear energy from the Sun is converted to an electrical force which pervades the universe and gives the bodies within it, rotational motion. It is a macro equation for action at a distance. The equation suggests that nuclear energy and electromagnetic force is one of the most basic equations of the universe. It is proposed that there is only one all-encompassing force of the universe, the electromagnetic force. 展开更多
关键词 c2 CENTRIPETAL Acceleration ENERGY Force Mass ENERGY EQUIVALENCE Light
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Calculating Newton’s Gravity (Big G) from Coulomb, Lorentz and Centripetal Force
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作者 Greg Poole 《Journal of High Energy Physics, Gravitation and Cosmology》 2019年第3期623-628,共6页
The velocity of the Earth around the Sun and its corresponding mass are used in a standard centripetal force equation to match what Isaac Newton calculated with the Universal Law of Gravitation in 1687. Electromagneti... The velocity of the Earth around the Sun and its corresponding mass are used in a standard centripetal force equation to match what Isaac Newton calculated with the Universal Law of Gravitation in 1687. Electromagnetic calculations are used to prove that electromagnetic forces are an insignificant contributor to the centripetal force or gravity, but do provide the bending force for the planets to maintain a circular orbit around the Sun. It is thus proven using classical physics that the force of gravity is a simple centripetal force with a very small electromagnetic force contribution. 展开更多
关键词 GRAVITY BIG G COULOMB LAW LORENTZ LAW CENTRIPETAL Force
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Electro Dynamo Theory of Gravity (g)
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作者 Greg Poole 《Journal of High Energy Physics, Gravitation and Cosmology》 2019年第3期773-789,共17页
In this paper, flux transfer events from the Sun to the Earth are represented as an electrical frequency. The Earth’s inner core is modeled as a motor armature and the mechanical speed is calculated from the frequenc... In this paper, flux transfer events from the Sun to the Earth are represented as an electrical frequency. The Earth’s inner core is modeled as a motor armature and the mechanical speed is calculated from the frequency of flux transfer events. The speed of the inner core creates a centripetal acceleration at the center of the Earth that is much higher than ever thought possible. The synchronous speed is the speed of the electromagnetic field that orbits or rotates around the Earth. All electrical machines have a rotating electromagnetic field that establishes the synchronous speed. Gravity is a centripetal acceleration derived from the synchronous speed of the electromagnetic field. The mechanical speed is somewhat less based on slip, which ranges from 1% to 10% for the electrical machine we call Earth. Flux transfer event from the Sun to the Earth is what powers the machine. By adjusting for the altitude distance, from the inner core to the surface of the Earth, a value of 9.806 m/s2 is calculated. The very nature of gravity has been discovered and explained using electrical equations and classical physics. There are only three forces of nature: electromagnetic, strong nuclear and weak nuclear. 展开更多
关键词 CENTRIPETAL ACCELERATION DYNAMO Flux Transfer Event GRAVITY (g) GYROSCOPE SYNCHRONOUS Speed
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Theory of Electromagnetism and Gravity —Modeling Earth as a Rotating Solenoid Coil
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作者 Greg Poole 《Journal of High Energy Physics, Gravitation and Cosmology》 2017年第4期663-692,共30页
Presented in this manuscript are conventional electrical engineering tools to model the earth as a rotating electrical machine. Calculations using known parameters of the earth and measured field data has resulted in ... Presented in this manuscript are conventional electrical engineering tools to model the earth as a rotating electrical machine. Calculations using known parameters of the earth and measured field data has resulted in new understanding of the earth’s electrical system and gyroscopic rotation. The material makeup of the inner earth is better understood based on derived permeability and permittivity constants. The planet has been modeled as simple coils and then as a parallel impedance circuit which has led to fundamental insight into planetary speed control and RLC combination for Schumann Resonance of 7.83 Hz. Torque and Voltage Constants and the inverse Speed Constant are calculated using three methods and all compare favorably with Newton’s Gravitational Constant. A helical resonator is referenced and Schumann’s Resonant ideal frequency is calculated and compared with others idealism. A new theory of gravity based on particle velocity selector at the poles is postulated. Two equations are presented as the needed links between Faraday’s electromagnetism and Newtonian physics. Acceleration and Deceleration of earth is explained as a centripetal governor. A new equation for planetary attraction and the attraction of atomic matter is theorized. Rotation of the earth’s electrical coil is explained in terms of the Richardson effect. Electric power transfer from the sun to the planets is proposed via Flux Transfer Events. The impact of this evolving science of electromagnetic modeling of planets will be magnified as the theory is proven, and found to be useful for future generations of engineers and scientists who seek to discover our world and other planets. 展开更多
关键词 Ampere Biot-Savart CENTRIPETAL Acceleration CENTRIPETAL GOVERNOR Dynamo EARTH Einstein-de Haas Effect Electric Field Electromagnetism Flux Transfer Events GOVERNOR Control GRAVITY Gravitational CONSTANT Helical Resonator Lenz Law Lorentz Lightning Magnetic Field Motor CONSTANT Parallel Impedance Planet SPEED Control Schumann Resonance Richardson Effect Solenoid SPEED CONSTANT Solar Power System Torque CONSTANT Velocity Selector Voltage CONSTANT
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A New View of the Dynamics of Particle Structure
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作者 Yiquan Jiang 《Journal of Applied Mathematics and Physics》 2022年第8期2561-2573,共13页
The new view denies the existence of fundamental particles in matter, and instead states that any particle and matter is a dynamic superposition of three natural elements, motion, force, and emptiness. This paper prop... The new view denies the existence of fundamental particles in matter, and instead states that any particle and matter is a dynamic superposition of three natural elements, motion, force, and emptiness. This paper proposes a new theory of the structure of matter and the unification of the four forces. A correct understanding of the logic of material structure will enable atomic energy and nuclear physics to generate new manufacturing ideas. The dissertation expounds the natural distribution of dynamics and forces in space and the new deterministic theory of dynamic relationship. This theory solves problems such as the unity of the four forces and the dynamic laws of the material structure. In practical applications, it can provide new theoretical guidance for industrial manufacturing such as nuclear energy, fusion engineering, new energy, new materials, battery energy storage, new-generation reactors, etc., and then adopt effective means in line with the laws of natural power to make the substances needed by human beings. The supply of resources and energy is perfectly satisfied. Applying this theoretical model of material structure to all aspects of the manufacturing industry will surely open up a new era of material civilization for human beings. 展开更多
关键词 Nuclear Energy Nuclear Fusion Material Structure Logic EMPTINESS Centrifugal Motion Centripetal Force Distribution of Motion and Force and Space Human Sensory Limit
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Computer-added design of the flow part geometry of the centripetal turbine of combined internal combustion engine
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作者 V.A.Lashko A.V.Passar 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2000年第S1期45-47,共3页
关键词 Computer-added design of the flow part geometry of the centripetal turbine of combined internal combustion engine
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Alleviating limit cycling in training GANs with an optimization technique 被引量:1
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作者 Keke Li Liping Tang Xinmin Yang 《Science China Mathematics》 SCIE CSCD 2024年第6期1287-1316,共30页
In this paper,we undertake further investigation to alleviate the issue of limit cycling behavior in training generative adversarial networks(GANs)through the proposed predictive centripetal acceleration algorithm(PCA... In this paper,we undertake further investigation to alleviate the issue of limit cycling behavior in training generative adversarial networks(GANs)through the proposed predictive centripetal acceleration algorithm(PCAA).Specifically,we first derive the upper and lower complexity bounds of PCAA for a general bilinear game,with the last-iterate convergence rate notably improving upon previous results.Then,we combine PCAA with the adaptive moment estimation algorithm(Adam)to propose PCAA-Adam,for practical training of GANs to enhance their generalization capability.Finally,we validate the effectiveness of the proposed algorithm through experiments conducted on bilinear games,multivariate Gaussian distributions,and the CelebA dataset,respectively. 展开更多
关键词 GANs general bilinear game predictive centripetal acceleration algorithm lower and upper complexity bounds PCAA-Adam
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Resulting of pedigree and topology of centripetal spatial schema in Chinese traditional cities
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作者 Wei Jia Lijun Wang Hong Heng Chong 《Frontiers of Architectural Research》 CSCD 2023年第4期664-682,共19页
Chinese Traditional Maps and Local Chronicles serve as significant sources for investigating the urban history of ancient Chinese cities.These documents prioritize the abstract representation of topological relationsh... Chinese Traditional Maps and Local Chronicles serve as significant sources for investigating the urban history of ancient Chinese cities.These documents prioritize the abstract representation of topological relationships over precise numerical values and geometric shapes.This is consistent with the traditional Chinese city image and spatial schema emphasizing“harmony between man and nature”.Most Chinese Traditional Maps reflect a centripetal spatial schema,wherein the core area is located at the center,and other locations are positioned hierarchically about the center.Based on this data,this research aims to categorize and examine the development and evolution of the centripetal spatial schema in ancient Chinese cities by constructing a pedigree of types.The authors identify three types and summarize their causes,calculate the topological features,and reveal their correlations with the type of pedigree.This study reveals that cities with different centripetal forms exhibit regular differences in the accessibility,centrality,and functional attributes of central nodes,as well as the proportion of nodes with different attributes in the city.Overall,the conclusion aims to deepen people’s understanding of traditional Chinese spatial concepts at the macro-urban level,particularly in the context of China’s current urban renewal wave.Additionally,it provides practical references for inheriting and applying Chinese traditional construction wisdom. 展开更多
关键词 Traditional cities Ancient map CENTRIPETAL Pedigree of types Topological characteristic
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Compressor and Turbine Multidisciplinary Design for Highly Efficient Micro-gas Turbine 被引量:2
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作者 BARSI Dario PERRONE ANDrea +4 位作者 QU Yonglei RATTO Luca RICCI Gianluca SERGEEV Vitaliy ZUNINO Pietro 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第3期259-269,共11页
Multidisciplinary design optimization (MDO) is widely employed to enhance turbomachinery compo- nents efficiency. The aim of this work is to describe a complete tool for the aero-mechanical design of a radial in- fl... Multidisciplinary design optimization (MDO) is widely employed to enhance turbomachinery compo- nents efficiency. The aim of this work is to describe a complete tool for the aero-mechanical design of a radial in- flow turbine and a centrifugal compressor. The high rotational speed of such machines and the high exhaust gas temperature (only for the turbine) expose blades to really high stresses and therefore the aerodynamics design has to be coupled with the mechanical one through an integrated procedure. The described approach employs a fuUy 3D Reynolds Averaged Navier-Stokes (RANS) solver for the aerodynamics and an open source Finite Element Analysis (FEA) solver for the mechanical integrity assessment. Due to the high computational cost of both these two solvers, a meta model, such as an artificial neural network (ANN), is used to speed up the optimization design process. The interaction between two codes, the mesh genera- tion and the post processing of the results are achieved via in-house developed scripting modules. The obtained results are widely presented and discussed. 展开更多
关键词 Micro-gas turbine Multidisciplinary Optimization Centrifugal Compressor Centripetal Turbine
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Symmetric Surface Momentum and Centripetal Force for a Particle on a Curved Surface
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作者 M. S. Shikakhwa 《Communications in Theoretical Physics》 SCIE CAS CSCD 2018年第9期263-267,共5页
The Hermitian surface momentum operator for a particle confined to a 2D curved surface spanned by orthogonal coordinates and embedded in 3D space is expressed as a symmetric expression in derivatives with respect to t... The Hermitian surface momentum operator for a particle confined to a 2D curved surface spanned by orthogonal coordinates and embedded in 3D space is expressed as a symmetric expression in derivatives with respect to the surface coordinates and so is manifestly along the surface. This is an alternative form to the one reported in the literature and usually named geometric momentum, which has a term proportional to the mean curvature along the direction normal to the surface, and so"apparently"not along the surface. The symmetric form of the momentum is the sum of two symmetric Hermitian operators along the two orthogonal directions defined by the surface coordinates.The centripetal force operator for a particle on the surface of a cylinder and a sphere is calculated by taking the time derivative of the momentum and is seen to be a symmetrization of the well-known classical expressions. 展开更多
关键词 quantum mechanics on a curved surface geometric momentum quantum centripetal force
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