We present a measurement method for obtaining three-dimensional (3-D) images of the thoracic and abdominal body surface during respiration. This method generates a color pattern composed of R, G, and B cosine stripe patterns to obtain a single image-based 3-D measurement. The 3-D wavelet transform is adopted to extract wrapped phases from a stripe image sequence to improve the accuracy of the wrapped phase extraction. Then, a two-frequency temporal phase unwrapping formula is proposed and extended to a multifrequency formula according to the geometric relationship between the wrapped and the unwrapped phase curves, which enhances its anti-interference performance and calculation speed. Simulations and body measurements reveal that the proposed method can effectively measure the 3-D body surface during respiration. By using multiple characteristic parameters, this method overcomes the limitation of only using feature points to represent respiratory movement on the thoracic and abdominal body surface. This method has important applications for tracking respiratory motion during clinical radiotherapy.
Three-dimensional (3D) vision measurement technology based on encoding structured light plays an important role and has become the main development trend in the field of 3D non-contact measurement. However, how to synthetically improve measurement speed, accuracy and sampling density is still a difficult problem. Thus in the present work, a novel 3D measurement method based on temporal encoding structured light by combining trapezoidal phase-shifting pattern and cyclic code pattern is proposed. Due to trapezoidal phase-shifting has the advantages of high sampling density and high-speed, the proposed method can maintain these advantages by using cyclic code to expand the range of trapezoidal phase-shifting. In addition, the correction scheme is designed to solve the problem of cycle dislocation. Finally, simulation experimental platform is built with 3ds max and MATLAB. Experimental analyses and results show that, the maximal error is less than 3 mm in the range from 400 mm to 1100 mm, cycle dislocation correction has a good effect.
In this paper, structured light three-dimensional measurement technology was used to reconstruct the porcelain shape, and further more the porcelain color was reconstructed. So the accurate reconstruction of the shape and color of porcelain was realized. Our shape measurement installation drawing is given. Because the porcelain surface is color complex and highly reflective, the binary Gray code encoding is used to reduce the influence of the porcelain surface. The color camera was employed to obtain the color of the porcelain surface. Then, the comprehensive reconstruction of the shape and color was realized in Java3D runtime environment. In the reconstruction process, the space point by point coloration method is proposed and achieved. Our coloration method ensures the pixel corresponding accuracy in both of shape and color aspects. The porcelain surface shape and color reconstruction experimental results completed by proposed method and our installation, show that: the depth range is 860 ∼ 980mm, the relative error of the shape measurement is less than 0.1%, the reconstructed color of the porcelain surface is real, refined and subtle, and has the same visual effect as the measured surface.
Sensitivity field in electrical resistance tomography system is affected by the distribution of multiphase medium, and
the data of sensitivity distribution which are obtained by theoretical calculation can be used as prior experimental
knowledge for image reconstruction, so it is necessary to analyze the distribution of the sensitivity field to decrease error
of soft field and improve the quality of the image reconstruction. In this paper at the basis of analyzing the principle of
electrical resistance tomography system, the mathematical model of sensitivity field is built by utilizing finite element
method. Through study field with disperse phase, the factors affecting the distribution of the sensitivity field and rules
are analyzed, the calculation of sensitivity distribution and visualized simulation are achieved The experiments show that
the finite element model is right, the sensitivity field proposed is in accordance with the practice and the computation
velocity is about 10seconds, which provides the basis for related image reconstruction algorithms.
KEYWORDS: Process modeling, Data modeling, Logic, Databases, Control systems, Process control, Computer networks, Computer architecture, Standards development, System integration
As computer network is developed rapidly and in the situation of the appearance of distribution specialty in enterprise
application, traditional workflow engine have some deficiencies, such as complex structure, bad stability, poor
portability, little reusability and difficult maintenance. In this paper, in order to improve the stability, scalability and
flexibility of workflow management system, a four-layer architecture structure of workflow engine based on SOA is put
forward according to the XPDL standard of Workflow Management Coalition, the route control mechanism in control
model is accomplished and the scheduling strategy of cyclic routing and acyclic routing is designed, and the workflow
engine which adopts the technology such as XML, JSP, EJB and so on is implemented.
This paper describes a tomographic method is based on 8-electrode capacitance sensor. It discusses the application
of finite element method in electrical capacitance tomography, and a finite element model of 8-electrode
capacitance sensor is established. Capacitance sensitivity distributions can be analyzed with this method and
optimal sensor design can also be done with it. A novel image reconstruction algorithm based on genetic algorithm
is presented to improve quality of image reconstruction and calculating accuracy of concentration, satisfactory
images can be reconstructed by using the capacitance sensitivity distributions of optimally designed system as a
priori information. It provides powerful support for further application research.
The principle of electrical capacitance tomography (ECT) is introduced and the simulation based on the finite element method (FEM) about the sensitivity distribution of 12-electrode capacitance transducers for oil and water two-phase flow system is discussed. The optimal function is presented based on sensitivity distribution which plays an important role in image reconstruction. The influence which the structural parameters of transducers impose on the performance of ECT is studied and the parameter optimizing is achieved by employment orthogonal design method combined with FEM.
An algorithm of compound adaptive digital watermarking was presented, which can embed robust watermark and fragile watermark in one image simultaneously. This paper realized and verified two embedding tactics, course of inbedding, draw tactics, draw course is of watermark. The result of validate indicated that the embedding algorithm of compound watermark scarified less robust watermark as a cost, which achieved the dual-protection function for the primordial images.
Knowledge base system is one of the most future branches for artificial intelligence facing with practical application. But the reasoning process of system is invisible, not visual and users cannot intervene the reasoning process, therefore for users the system is only a black box. This condition causes many users to take a suspicious attitude to the conclusions analyzing and drawing from the system, that means even though the system has the explanation function, but it is still not far enough. If we adopt graph or image technique to display this reasoning procedure interactively and dynamically which can make this procedure be visual, users can intervene the reasoning procedure which can greatly reduce users’ gain giving, and at the same time it can provide a given method for integrity check to knowledge of the knowledge base. Therefore, we can say that reasoning visualization of knowledge base system has a further meaning than general visualization. In this paper the visual problem of reasoning process for knowledge base system on the basis of the formalized analysis for ICON system, Icon operation, syntax and semanteme of the statement is presented, a reasoning model of knowledge base system that has a visual characteristics is established, the model is used to do an integrity check in practical expert system and knowledge base, better effect is got.
KEYWORDS: Telecommunications, Computing systems, Control systems, Inspection, Data modeling, Data acquisition, Data communications, Pollution control, Chemical species, Computer architecture
Expert system development tool ESDT-HKD is a general-purpose language for knowledge engineering. Rule plus frame plus black board is used as knowledge structure of the system. It is a perfect system implemented on personal computer. There is particular knowledge structure, and generating and running environment for users. As a tool of expert system assistant design, ESDT-HKD many original aspects such as citation of explanation framework, opened rule describing language PBRL, dynamic query of black board, maintenance of knowledge base, two-double scheduling of task and so on with which the system has the complete function. This article introduces scheduling and reasoning of ESDT-HKD system tasks during consultation in details.
A new image reconstruction algorithm based on the genetic algorithms is proposed for two-component flow electrical capacitance system in this paper. Two times reconstructions are performed in once tomography, the first step is reconstructing the image of fewer pixel blocks and the second step is reconstructing image using genetic algorithm with the result of the first step is used in population initialization in order to improve the speed and accuracy of genetic tomography. With this method, cross-section image of two-component flow can be reconstructed with better quality and better accuracy in component concentration than SIRT algorithm.
This paper describes a new method of the optimal design of electrical capacitance sensor, which is based on genetic algorithm, and a modified BP algorithm of image reconstruction for electrical capacitance tomography system. In the optimal design of sensor, the evenness of sensitivity distribution, the ratio of maximum capacitance to minimum capacitance and the ratio of full-pipe capacitance to empty-pipe capacitance are considered. In image reconstruction we use the curve of components ratio and threshold valve of pixel gray to improve the performance of BP algorithm. Better quality and accuracy is obtained in experiment.
In this paper a software method for electrical capacitance sensor design of electrical capacitance tomography system is presented by using finite element analysis techniques. Electrical capacitance sensor theory model is established, and capacitance sensitivity field distribution and structure parameters of the sensor to measurement effect are analyzed by the method. The optimized design and simulation of electrical capacitance sensor is based on the method, and performances of electrical capacitance sensor are improved
clearly.
Expert system development tool ESDT-HKD is a general-purpose language for knowledge engineering. Rule plus frame plus black board is used as knowledge structure of the system. It is a perfect system implemented on personal computer. There is particular knowledge structure, and generating and running environment for users. As a tool of expert system assistant design, ESDT-HKD many original aspects such as citation of explanation framework, opened rule describing language PBRL, dynamic query of black board, maintenance of
knowledge base, two-double scheduling of task and so on with which system has the complete function. This article introduces scheduling and reasoning of ESDT-HKD system tasks during consultation in details.
In this paper a software method for electrical capacitance sensor design of electrical capacitance tomography system is presented by using finite element analysis techniques. Electrical capacitance sensor theory model is established, and capacitance sensitivity field distribution and structure parameters of the sensor to measurement effect are analyzed by the method. The optimized design and simulation of electrical capacitance sensor is based on the method, and performances of electrical capacitance sensor are improved clearly, satisfactory images can be reconstructed by using the capacitance sensitivity distributions as a priori information. It provides powerful support for further application research.
This paper describes a tomographic method is based on 8- electrode capacitance sensor. It discusses the application if finite element method in electrical capacitance tomography, and a finite element model of 8-electrode capacitance sensor is established. Capacitance sensitivity distributions can be analyzed with this method. Satisfactory images can be reconstructed by using the capacitance sensitivity distributions as a priori information. It provides powerful support for further application research.
In this paper, we analyze the situation of electronic commerce security and introduce the role of CA, then we describe the structure and function of CA. At last, we introduce the encryption algorithm. This CA can ensure security in the network transaction.
Expert system development tool ESDT-HKD is a general-purpose language for knowledge engineering. Rule plus frame plus black board is used as knowledge structure of the system. It is a perfect system implemented on personal computer. There is particular knowledge structure, and generating and running environment for users. This article introduces the system architecture, knowledge structure and implementation.
Expert system development tool ESDT-HKD is a general-purpose language for knowledge engineering. Rule plus frame plus black board is used as knowledge structure of the system. It is a perfect system implemented on personal computer. There is particular knowledge structure, and generating and running environment for users. This article introduces the system architecture, knowledge structure and implementation.
KEYWORDS: Telecommunications, Computer security, Network security, Data communications, Solid state lighting, Information security, Mathematics, Internet, Control systems, Databases
In this paper, we introduce the situation of electronic commercial security, then we analyze the working process and security for SSL protocol. At last, we propose a secure electronic commerce communication system based on CA. The system provide secure services such as encryption, integer, peer authentication and non-repudiation for application layer communication software of browser clients' and web server. The system can implement automatic allocation and united management of key through setting up the CA in the network.
Based on the prime factors of multi-windows such as the shape, size, position, color, content and icons applied, the visualized user interface specification language (VUISL) is designed. The visualized user interface software generator (VUISG) is developed by YACC and C language. Thus the needed interface software can be generated automatically, whose universality and visualized ability are high.
At first, this paper introduces the structure of the design- image capturing system using the single-stripe pattern. At second, its operating principle is introduced, its mathematical model is established and the calibrating method for it is put forward. At last, its prototype is produced and calibrated.
At first, this paper introduces the principle of our section outline sensor using the single-stripe pattern. At second, the measurement error of our sensor is analyzed: the error factors causing the measurement error of our sensor are found out; the mathematical expressions of the measurements are deduced. At third, the measures to reduce the measurement error and the design rules of our sensor are given. At last, a design example is given.
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