Computational imaging opens up new ideas for complex system imaging solutions from the level of information generation and transmission. Based on the modeling of super-resolution technology, computational power is introduced into the traditional imaging in order to break through the limitations of this kind of photoelectric information processing. And the available configurations from single sensor to composite sensor are explored, and the global optimization and the system complex structure that control methods are fully used to solve the adaptive design problems of the composite linear compensation multi configuration systems. And the criteria group have shown the significant improvement of system resolution, which can be used as an important basis for engineering application.
The continuous zoom multi configuration method is developed, and the correlative model is established, which overcomes the limitations of traditional methods, and realizes the expected system evaluation criteria,such as MTF, REA, RMS, etc..through the balance between value function, optimization algorithm and model parameterization
Based on the research on the on-line construction of dynamic control system in intelligent manufacturing, the theory, function and model of intelligent design and intelligent manufacturing (IDIM)are established. Explore and improve in engineering practice have been corrected. And many effective solutions have been achieved.
Taking the spacing between elements as the initial quantity and the motion form of elements as the free quantity, the distribution of optical focal length and the motion form of elements are obtained by calculating the equations. The global method is used to solve the problem of high ratio multiconfiguration system, and the results have been used in engineering practice.
Based on Gaussian optical system theory and vector method, an unobstructed off axis zoom system in terahertz band is designed. The field angle of view of the system is 3 ° × 3°~0.6° × 0.6 °, the MTF of the system at 10 LP / mm ≥ 0.4. By using the designer search and intelligent algorithm automatically to find the optimal solutions, two different methods have compared, and achieved the two design results. These have been seen that because the reflective zoom system is different from the relatively mature transmission continuous zoom systems fully, that these limitations in increasing the field of view and the energy utilization of the detection surface have been solved. Therefore, there are still much more space for research and improvement in engineering application.
Improving system resolution is an important aspect of developing complex sensors. The theory and method of improving the resolution of imaging system are introduced from the perspective of theory and technology. The high-resolution reconstruction method based on Fresnel field is studied. Then, the multi-resolution method and the computationally efficient algorithms are adopted. The simulation results show that the system can meet the application requirements of MTF and other related indicators.
The continuous zoom multi configuration method is developed, and the correlative model is established, which overcomes the limitations of traditional methods, and realizes the expected system evaluation criteria,such as MTF, REA, RMS, etc..through the balance between value function, optimization algorithm and model parameterization.
With an interval which between the elements as the initial amount, the form of motion of the elements is used as the free amount, and the distribution of the optical focal length and the form of the element motion can be obtained by calculating the equation sets. With the global method, the desired results have been achieved.
In intelligent manufacturing system, a systematic method of constructing stereo vision using neural network is proposed, and the operation and control mechanism in practical operation is put forward. In particular, the concept of calculation process is established. And this method overcomes the complexity of a large number of calculations. And it has significant advantages in the system scientifically, the operation speed and the operability.
Multidisciplinary design optimization (MDO), as an advanced and effective theory and method to solve the design problems of many complex products and systems, has attracted more and more attention. Based on the analysis of product design activities, the effective theory and engineering practice of complex systems are discussed.
Multiple configurations system and its influence and control on aberration are the basis for the design of such systems and have practical value in engineering. The principle, modeling and error analysis are analyzed. Based on the system configuration of the compound zoom system, moreover, this paper advances the algorithm analysis. With an interval which between the elements as the initial amount, the form of motion of the elements is used as the free amount, and the distribution of the optical focal length and the form of the element motion can be obtained by calculating the equation sets. Compared with the traditional method, the global synthesis can significantly improve the design in effect and efficiency.
The key to improve the capability of photoelectric detection and countermeasure system is to improve the detection ability of the system. System resolution, detection distance, detection range, response time, system signal-to-noise ratio are important criteria, and system optics is the core of its engineering implementation. From the global perspective, the adaptive algorithm establishes a new theory which superior to the traditional method, and solves the problem of freely determining the core optical solution, and opens up a new field for the development of accurate detection system.
The theory of compound zoom system and its influence and control on aberration are the basis for the design of such systems and have practical value in engineering. The principle, modeling and error analysis are analyed. Based on the system configuration of the compound zoom system, moreover, this paper advances the algorithm analysis.
The theory of compound zoom system and its influence and control on aberration are the basis for the design of such systems and have practical value in engineering. The principle, modeling and error analysis are analyed. Based on the system configuration of the compound zoom system, moreover, this paper advances the algorithm analysis.
The key to improve the capability of photoelectric detection and countermeasure system is to improve the detection ability of the system. System resolution, detection distance, detection range, response time, system signal-to-noise ratio are important criteria, and system optics is the core of its engineering implementation. From the global perspective, the adaptive algorithm establishes a new theory which superior to the traditional method, and solves the problem of freely determining the core optical solution, and opens up a new field for the development of accurate detection system.
An adaptive equivalent focal length optimization algorithm is proposed. With a complete 4π stereo angle wide field of view, this kind of imaging distortion correction simulation system is established, and the multi-level effectiveness strategy is developed. And the simulation results based on this algorithm are given in many environments.
The key to improve the capability of photoelectric detection and countermeasure system is to improve the detection ability of the system. System resolution, detection distance, detection range, response time, system signal-to-noise ratio are important criteria, and system optics is the core of its engineering implementation. From the global perspective, the adaptive algorithm establishes a new theory which superior to the traditional method, and solves the problem of freely determining the core optical solution, and opens up a new field for the development of accurate detection system.
An adaptive equivalent focal length optimization algorithm is proposed. With a complete 4π stereo angle wide field of view, this kind of imaging distortion correction simulation system is established, and the multi-level effectiveness strategy is developed. And the simulation results based on this algorithm are given in many environments.
Sensor system optimization is an important issue in the development of new systems. In order to improve the resolution of the imaging system and reach the theoretical limit, from the perspective of theory and engineering, an adaptive equivalent focal length optimization algorithm is proposed. With a complete 4π stereo angle wide field of view, this kind of imaging distortion correction simulation system is established, and the multi-level effectiveness strategy is developed. And the simulation results based on this algorithm are given in many environments..
Multiple configurations system and its influence and control on aberration are the basis for the design of such systems and have practical value in engineering. The principle, modeling and error analysis are analyzed. Based on the system configuration of the compound zoom system, moreover, this paper advances the algorithm analysis. With an interval which between the elements as the initial amount, the form of motion of the elements is used as the free amount, and the distribution of the optical focal length and the form of the element motion can be obtained by calculating the equation sets. Compared with the traditional method, the global synthesis can significantly improve the design in effect and efficiency.
KEYWORDS: Imaging systems, Control systems, Super resolution, Data processing, Composites, Complex adaptive systems, Multidimensional signal processing, Video, Imaging technologies, Tissues
The key to improve the capability of photoelectric detection and countermeasure system is to improve the detection ability of the system. System resolution, detection distance, detection range, response time, system signal-to-noise ratio are important criteria, and system optics is the core of its engineering implementation. From the global perspective, the adaptive algorithm establishes a new theory which superior to the traditional method, and solves the problem of freely determining the core optical solution, and opens up a new field for the development of accurate detection system.
On the design methods and traditional micro system structures in multiple configurations, there are some certain limitations. In order to resolve the problems of the conventional multiple structures present in the system, new sensors and components are applied in the development of the design method and system configuration. Micro lens, as a kind of typical components, are developing the methodology in research advanced multiple configuration systems. The effect of system evaluated criterion that Modulation Transfer Function (Modulation Transfer Function, the MTF), Energy concentration (Radial Energy Analysis, REA), diffusion (Spot Diagram, RMS) can support our issue qualitatively. Results showed that can not only change systems weight, size and structural stability, but also increase freedom in these kinds design. While improving the implementation of existing multiple path configuration from traditional complex.
Base on computational imaging, a new imaging system is proposed by making full use of global optimization, system reconstruction and control mechanism in practical operation. The theory and engineering method of space-time adaptive imaging are established, which overcome the shortcomings of complex traditional system structure and control factors, and large amount of computation and so on. In the design and implementation of the core optical system, the scientific nature of the standard group, the running speed and the maneuverability of the technology are effectively considered. It promotes a new type of large field of view, super resolution imaging technology, especially wide area applications. The physical and mathematical models are used, as well as the reconstruction algorithm is improved. The experimental system is established, and the simulation results support our theoretical prediction. This technology has potential value in brand fields.
Space-time adaptive methods, and their expansion of the aspects of application and operation platform, are extending from the traditional space-time system design to the structured devices, augmented reality, virtual reality, artificial intelligence and open Internet and so on,based on the holographic beam tracing technology, the core technology system on real scene was built, which can not only provide realistic reappearance effect, but also confirmed a practical application.
A method of continuous zoom multiple configuration, with a micro lens array and core optics is attempt to establish model by novel principle on resonance energy transfer and high accuracy localization, by which the system resolution can be improved with a level of a few nanometers. A comparative study on traditional vs modern methods can demonstrate.
The purpose is to create a universal solution for complex structures in this field. Based on the idea of computational imaging, a new imaging system is proposed, which makes full use of global optimization, system reconstruction and control mechanism in actual operation. It overcomes the shortcomings of traditional system construction and control factors, such as complex relationship, large amount of calculation and so on. In the design and implementation of the core optical system, and the scientific of the criterion group, the speed of operation and the operability of the technology are also considered effectively. The results support our theoretical predictions.
The basic theory of the spatial light modulator and the algorithm based on space-time adaptive system is discussed deeply which used to the core of the photoelectric system configuration by which key components applied to solve the control function. This paper discusses the hardware system. Usually, an SLM modulates the intensity of the light beam. However, it is also possible to produce devices that modulate the phase of the beam or both the intensity and the phase simultaneously. Besides, the discuss includes the control on the SLM for spatial information of the amplitude, phase, frequency, polarization, and the intensity of energy research. A typical model is used to illustrate the feasibility, and the criteria is developed.
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