Auswahl der wissenschaftlichen Literatur zum Thema „Image transmission“

Geben Sie eine Quelle nach APA, MLA, Chicago, Harvard und anderen Zitierweisen an

Wählen Sie eine Art der Quelle aus:

Machen Sie sich mit den Listen der aktuellen Artikel, Bücher, Dissertationen, Berichten und anderer wissenschaftlichen Quellen zum Thema "Image transmission" bekannt.

Neben jedem Werk im Literaturverzeichnis ist die Option "Zur Bibliographie hinzufügen" verfügbar. Nutzen Sie sie, wird Ihre bibliographische Angabe des gewählten Werkes nach der nötigen Zitierweise (APA, MLA, Harvard, Chicago, Vancouver usw.) automatisch gestaltet.

Sie können auch den vollen Text der wissenschaftlichen Publikation im PDF-Format herunterladen und eine Online-Annotation der Arbeit lesen, wenn die relevanten Parameter in den Metadaten verfügbar sind.

Zeitschriftenartikel zum Thema "Image transmission"

1

Sun, Ke Mei. „Wireless Image Transmission System“. Applied Mechanics and Materials 336-338 (Juli 2013): 1661–64. http://dx.doi.org/10.4028/www.scientific.net/amm.336-338.1661.

Der volle Inhalt der Quelle
Annotation:
A wireless image transmission system is proposed, which in order to offset the disadvantages of wire video monitor laying points hard, and disadvantages of wire video monitor implementing hard in bad circumstance. The core of the system is TI series of C5000 high speed DSP processor and radio frequency wireless communication chip. Through DSP transplantation of JPEG compression algorithm, complete image collection and image compression through DSP, use wireless receiving and sending module to complete wireless images data transmission. Use wireless receiving and sending module instead of emitter and network as image data transmission device, low cost, not required network fee, system can real-time complete terminal images collection and show. It can apply community guard and video monitor of deploying points urgently in the electric power system, factory, bank and other important department, which dont require higher performance.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

García, J. A., Rosa Rodriguez-Sánchez und J. Fdez-Valdivia. „Sustainable image transmission“. Journal of Visual Communication and Image Representation 23, Nr. 1 (Januar 2012): 134–42. http://dx.doi.org/10.1016/j.jvcir.2011.09.004.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

Wei Gong, K. R. Rao und M. T. Manry. „Progressive image transmission“. IEEE Transactions on Circuits and Systems for Video Technology 3, Nr. 5 (1993): 380–83. http://dx.doi.org/10.1109/76.246089.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

Nivedita, S. Angelin, und Dr T. Priyaradhikadevi. „Image Realization Steganography by Secure Key Transmission“. International Journal of Trend in Scientific Research and Development Volume-2, Issue-2 (28.02.2018): 1460–64. http://dx.doi.org/10.31142/ijtsrd9654.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

Chen, Yuanming, Xiaobin Hong, Bin Cui und Rongfa Peng. „Implementation of an Efficient Image Transmission Algorithm for Unmanned Surface Vehicles Based on Semantic Communication“. Journal of Marine Science and Engineering 11, Nr. 12 (30.11.2023): 2280. http://dx.doi.org/10.3390/jmse11122280.

Der volle Inhalt der Quelle
Annotation:
With the increasingly maturing technology of unmanned surface vehicles (USVs), their applications are becoming more and more widespread. In order to meet operational requirements in complex scenarios, the real-time interaction and linkage of a large amount of information is required between USVs, between USVs and mother ships, and between USVs and shore-based monitoring systems. Visual images are the main perceptual information gathered from USVs, and their efficient transmission and recognition directly affect the real-time performance of information exchange. However, poor maritime communication signals, strong channel interference, and low bandwidth pose great challenges to efficient image transmission. Traditional image transmission methods have difficulty meeting the real-time and image quality requirements of visual image transmissions from USVs. Therefore, this paper proposes an efficient method for visual image transmission from USVs based on semantic communication. A self-encoder network for semantic encoding which compresses the image into low-dimensional latent semantics through the encoding end, thereby preserving semantic information while greatly reducing the amount of data transmitted, is designed. On the other hand, a generative adversarial network is designed for semantic decoding. The decoding end decodes and reconstructs high-quality images from the semantic information transmitted through the channel, thereby improving the efficiency of image transmission. The experimental results show that the performance of the algorithm is significantly superior to traditional image transmission methods, achieving the best image quality while transmitting the minimum amount of data. Compared with the typical BPG algorithm, when the compression ratio of the proposed algorithm is 51.6% of that of the BPG algorithm, the PSNR and SSIM values are 7.6% and 5.7% higher than the BPG algorithm, respectively. And the average total time of the proposed algorithm is only 59.4% of that of the BPG algorithm.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

Yang, Ying, Xingchuang Xiong, Zilong Liu, Shangzhong Jin und Juan Wang. „High-Performance Encryption Algorithms for Dynamic Images Transmission“. Electronics 13, Nr. 1 (28.12.2023): 131. http://dx.doi.org/10.3390/electronics13010131.

Der volle Inhalt der Quelle
Annotation:
With the proliferation of the internet, the issue of image tampering has escalated, necessitating robust image encryption schemes. Despite the multitude of proposed image encryption algorithms, challenges such as slow computational speed, weak security, and suboptimal visibility persist. This study addresses these challenges by introducing a high-performance encryption algorithm tailored for dynamic images—QEDI (Quick Encryption Algorithm for Dynamic Images). QEDI leverages elliptic curve-based asymmetric encryption algorithms and hash algorithms. The process involves using a hash algorithm to calculate the hash of the dynamic image slated for encryption, employing the elliptic curve algorithm to generate public and private keys, and utilizing the asymmetric encryption algorithm to process the image hash, resulting in a signature ciphertext. This ciphertext is embedded into the dynamic image, completing the encryption process. To enhance the execution speed without compromising the image quality and visibility, the bit depth of the dynamic image is reduced before hash calculation, and custom information fields are encapsulated to embed the signature ciphertext into the dynamic image. Experimental evaluations, conducted within a dynamic image generation system, encompassed assessments of security, encryption algorithm execution time, and image quality. The results indicate that utilizing QEDI for dynamic image encryption yields better security compared to EDI (Encryption Algorithm for Dynamic Images). QEDI exhibits minimal impact on image quality, with a noteworthy 69.77% reduction in execution time compared to EDI. Furthermore, when compared to existing algorithms employing image conversion for encryption, QEDI-encrypted images demonstrate enhanced visibility, better image quality, and expedited encryption speed.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Adeyinka, Michael. „Telepathological (Image Transmission) Configuration“. Journal of Telemedicine and Telecare 2, Nr. 1_suppl (Juni 1996): 21–24. http://dx.doi.org/10.1177/1357633x9600201s07.

Der volle Inhalt der Quelle
Annotation:
The Laboratory for Biomedical Informatics (LBMI) has developed a digital microscope control module incorporated into an image analysis system. This is now equipped with an ISDN switch box for linking up with a remote computer-based station for delivering histopathological services. The FRAME, client/server integrated software, was developed to initiate the communication link, adjust the microscope settings, acquire and transmit images. This LBMI telepathology initiative employs simple solutions to arrive at the point of prototyping and demonstrating the state of the art on the one hand and encountering the prevailing problems in order to deliberate on possible remedies on the other.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

CHANG, CHING-YUN, und IUON-CHANG LIN. „AN EFFICIENT PROGRESSIVE IMAGE TRANSMISSION SCHEME FOR CHINESE CALLIGRAPHY“. International Journal of Pattern Recognition and Artificial Intelligence 20, Nr. 07 (November 2006): 1077–92. http://dx.doi.org/10.1142/s0218001406005083.

Der volle Inhalt der Quelle
Annotation:
We invented a progressive image transmission scheme that is used for transmitting Chinese calligraphy. The scheme employs the property of simple colors of calligraphy images to design a method of transmitting images phase by phase. Overall, our scheme can achieve the following two goals. One is compressing the image data to reduce the transmission time while the other is gaining less response time by using progressive image transmission. Furthermore, the recovered image still maintains the colors of the seals with high image quality.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Shi, Qi, Daheng Wang, Wen Chen, Jinpei Yu, Weiting Zhou, Jun Zou und Guangzu Liu. „Research on Spaceborne Target Detection Based on Yolov5 and Image Compression“. Future Internet 15, Nr. 3 (19.03.2023): 114. http://dx.doi.org/10.3390/fi15030114.

Der volle Inhalt der Quelle
Annotation:
Satellite image compression technology plays an important role in the development of space science. As optical sensors on satellites become more sophisticated, high-resolution and high-fidelity satellite images will occupy more storage. This raises the required transmission bandwidth and transmission rate in the satellite–ground data transmission system. In order to reduce the pressure from image transmission on the data transmission system, a spaceborne target detection system based on Yolov5 and a satellite image compression transmission system is proposed in this paper. It can reduce the pressure on the data transmission system by detecting the object of interest and deciding whether to transmit. An improved Yolov5 network is proposed to detect the small target on the high-resolution satellite image. Simulation results show that the improved Yolov5 network proposed in this paper can detect specific targets in real satellite images, including aircraft, ships, etc. At the same time, image compression has little effect on target detection, so detection complexity can be effectively reduced and detection speed can be improved by detecting the compressed images.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Castro, Francesco, Donato Impedovo und Giuseppe Pirlo. „A Medical Image Encryption Scheme for Secure Fingerprint-Based Authenticated Transmission“. Applied Sciences 13, Nr. 10 (16.05.2023): 6099. http://dx.doi.org/10.3390/app13106099.

Der volle Inhalt der Quelle
Annotation:
Secure transmission of medical images and medical data is essential in healthcare systems, both in telemedicine and AI approaches. The compromise of images and medical data could affect patient privacy and the accuracy of diagnosis. Digital watermarking embeds medical images into a non-significant image before transmission to ensure visual security. However, it is vulnerable to white-box attacks because the embedded medical image can be extracted by an attacker that knows the system’s operation and does not ensure the authenticity of image transmission. A visually secure image encryption scheme for secure fingerprint-based authenticated transmission has been proposed to solve the above issues. The proposed scheme embeds the encrypted medical image, the encrypted physician’s fingerprint, and the patient health record (EHR) into a non-significant image to ensure integrity, authenticity, and confidentiality during the medical image and medical data transmission. A chaotic encryption algorithm based on a permutation key has been used to encrypt the medical image and fingerprint feature vector. A hybrid asymmetric cryptography scheme based on Elliptic Curve Cryptography (ECC) and AES has been implemented to protect the permutation key. Simulations and comparative analysis show that the proposed scheme achieves higher visual security of the encrypted image and higher medical image reconstruction quality than other secure image encryption approaches.
APA, Harvard, Vancouver, ISO und andere Zitierweisen

Dissertationen zum Thema "Image transmission"

1

Wang, Limin. „Progressive image transmission“. Thesis, University of Ottawa (Canada), 1988. http://hdl.handle.net/10393/5394.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

Salous, Mounther N. H. „Context-based image transmission“. Thesis, University of Birmingham, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.368121.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

Nelson, Christopher. „Contour encoded compression and transmission /“. Diss., CLICK HERE for online access, 2006. http://contentdm.lib.byu.edu/ETD/image/etd1613.pdf.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

Lim, Seng. „Image compression scheme for network transmission“. Thesis, Monterey, Calif. : Springfield, Va. : Naval Postgraduate School ; Available from National Technical Information Service, 1995. http://handle.dtic.mil/100.2/ADA294959.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

Chippendale, Paul. „Image transmission over time varying channels“. Thesis, Lancaster University, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.266669.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

Lee, Bu-Sung. „Image transmission over the Cambridge Ring“. Thesis, Loughborough University, 1986. https://dspace.lboro.ac.uk/2134/32908.

Der volle Inhalt der Quelle
Annotation:
Local Area Networks (LAN) are destined to play a rapidly increasing part in the transmission and distribution of a wide range of information, and this thesis describes the study of the problems concerning the transmission of coloured images over a particu1ar network, the Cambridge Ring. A colour image station has been developed for the use on the Cambridge Ring. It provides two main services: a high resolution freeze frame transmission and a medium resolution slow-scan image transmission.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Iyengar, Giridharan. „Algorithms and architectures for progressive image transmission“. Thesis, University of Ottawa (Canada), 1993. http://hdl.handle.net/10393/6747.

Der volle Inhalt der Quelle
Annotation:
Transmission of images over low speed, low bandwidth channels has several applications. Examples include transmission of remote sensing images, scanning of vast global databases and facsimile transmission of printed material. In progressive image transmission, a low resolution image is first transmitted with as few bits as possible. The resolution of the transmitted image is then improved interactively upon viewer's request. Eventually, an exact copy of the original image is reconstructed. In this thesis, image coding techniques and parallel architectures are first reviewed followed by a review of progressive image transmission techniques. A software toolkit for progressive image transmission is then presented. This tool is user-friendly and permits rapid development of new algorithms and fast evaluations of different approaches for progressive image transmission. Unlike conventional techniques, it offers a convenient platform for performing both objective and subjective evaluations with ease. Two algorithms for progressive image transmission are then detailed. The first algorithm follows the coefficient scanning methodology. The second algorithm uses an iterative residual error feedback technique. An architecture which implements these algorithms in real-time is then presented. The software tool is used as the platform with which the comparative analysis between different algorithms are performed. Simulation results are reported for the proposed algorithms in terms of Peak Signal to Noise Ratio (PSNR). Simulation results indicate that the proposed algorithms perform better than JPEG-DCT in terms of subjective and objective quality. However, Gabor decomposition is computationally expensive and hence requires special purpose architectures for real-time implementation. The proposed architecture achieves a high efficiency of parallelism (99%) and implements the two algorithms for progressive image transmission in real-time. The architecture is simple and modular and hence can be easily implemented in VLSI as a codec.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

Caron, Steven. „Progressive image transmission by segmentation-based coding“. Thesis, University of Ottawa (Canada), 1996. http://hdl.handle.net/10393/9933.

Der volle Inhalt der Quelle
Annotation:
Progressive image transmission, where an image builds up gradually, is gaining popularity in image database browsing applications. In these applications, a user might have to reject a large number of unwanted images before selecting the desired one. In such a case, the time required to identify the image contents becomes very important. In this thesis, we present a novel progressive image transmission technique based on a representation by segmentation. The technique preserves edges at low bit rates and is biased toward fast identification. An image is segmented into regions having constant intensity by applying a morphological operator: the watershed. The segmented image is gradually simplified using a graph. The simplifications are transmitted in the reverse order. At the decoder, the image is dynamically divided into an increasing number of regions as the transmission progresses. A subjective experiment was designed, and the recognition times of images transmitted with the proposed algorithm were compared with the recognition times of the same images transmitted with JPEG. The proposed method was found to result in faster recognition of image contents for almost all the images. Some work on the objective evaluation of coarse images is also presented.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Khire, Sourabh Mohan. „Time-sensitive communication of digital images, with applications in telepathology“. Thesis, Atlanta, Ga. : Georgia Institute of Technology, 2009. http://hdl.handle.net/1853/29761.

Der volle Inhalt der Quelle
Annotation:
Thesis (M. S.)--Electrical and Computer Engineering, Georgia Institute of Technology, 2010.
Committee Chair: Jayant, Nikil; Committee Member: Anderson, David; Committee Member: Lee, Chin-Hui. Part of the SMARTech Electronic Thesis and Dissertation Collection.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Wu, Zhi Qing. „Developing image enhancement and image transmission techniques for an Internet-oriented medical image processing system“. Thesis, University of South Wales, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.411625.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen

Bücher zum Thema "Image transmission"

1

Salous, Mounther N. H. Context-based image transmission. Birmingham: University of Birmingham, 1999.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

inc, International Resource Development, Hrsg. Image processing & transmission for personal computers. Norwalk, Conn., U.S.A. (6 Prowitt St., Norwalk 06855): International Resources Development Inc., 1985.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

P, Zege Ė. Image transfer through a scattering medium. Berlin: Springer-Verlag, 1991.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

C, Jorge E. Rodríguez. El espacio audiovisual en la sociedad de la imagen. Santafé de Bogotá [Colombia]: Acotv, 1993.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

P, Zege Ė. Perenos izobrazhenii͡a︡ v rasseivai͡u︡shcheĭ srede. Minsk: "Nauka i tekhnika", 1985.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

inc, International Resource Development, Hrsg. Facsimile & PC-based image transmission markets, U.S. New Canaan, Conn., U.S.A. (P.O. Box 1716, New Canaan 06840): International Resource Development, 1990.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Reimer, Ludwig. Transmission electron microscopy: Physics of image formation. 5. Aufl. New York, NY: Springer, 2008.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

Birgit, Mersmann, und Schneider Alexandra, Hrsg. Transmission image: Visual translation and cultural agency. Newcastle: Cambridge Scholars, 2009.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Birgit, Mersmann, und Schneider Alexandra, Hrsg. Transmission image: Visual translation and cultural agency. Newcastle: Cambridge Scholars, 2009.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Nordic Conference on Digital Transfer of Images (1994 Espoo, Finland). Nordic Conference on Digital Transfer of Images: Proceedings of a conference organised by NORDINFO, held at VTT, Technical Research Centre, Espoo, Finland, 10-11 November 1994. Esbo: NORDINFO, 1995.

Den vollen Inhalt der Quelle finden
APA, Harvard, Vancouver, ISO und andere Zitierweisen

Buchteile zum Thema "Image transmission"

1

Weik, Martin H. „image transmission“. In Computer Science and Communications Dictionary, 753. Boston, MA: Springer US, 2000. http://dx.doi.org/10.1007/1-4020-0613-6_8668.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

Williams, David B., und C. Barry Carter. „Image Simulation“. In Transmission Electron Microscopy, 533–48. Boston, MA: Springer US, 2009. http://dx.doi.org/10.1007/978-0-387-76501-3_30.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

Williams, David B., und C. Barry Carter. „Image Simulation“. In Transmission Electron Microscopy, 483–98. Boston, MA: Springer US, 1996. http://dx.doi.org/10.1007/978-1-4757-2519-3_29.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

Zeng, Gengsheng Lawrence. „Transmission and Emission Tomography“. In Medical Image Reconstruction, 67–85. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-05368-9_4.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

Arora, Parul, Shriya Khare, Nehal Joshi und Bhaskar Chopra. „Secure Image Transmission Using Nested Images“. In Computational Intelligence for Information Retrieval, 15–34. Boca Raton: CRC Press, 2021. http://dx.doi.org/10.1201/9781003134138-2.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

Wu, Feng, Chong Luo und Hancheng Lu. „Line-based Uncoded Image Transmission“. In Uncoded Multimedia Transmission, 71–86. Boca Raton: CRC Press, 2021. http://dx.doi.org/10.1201/9781003118688-7.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Zhang, David, Xiaobo Li und Zhiyong Liu. „Image Restoration from Internet Transmission Corruption“. In Data Management and Internet Computing for Image/Pattern Analysis, 317–29. Boston, MA: Springer US, 2001. http://dx.doi.org/10.1007/978-1-4615-1527-2_15.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

Blaivas, Michael. „Ultrasound Image Transmission via Camera Phones“. In Teleradiology, 89–100. Berlin, Heidelberg: Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-78871-3_9.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Komandur, Dheeraj, Yash Shekhadar, Hrishikesh Mahajan und Shebin Silvister. „Secure Image Transmission Using Style Transfer“. In Lecture Notes in Electrical Engineering, 691–97. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-3690-5_63.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Natterer, F. „Image Reconstruction in Transmission Ultrasound Tomography“. In Acoustical Imaging, 245–53. Dordrecht: Springer Netherlands, 2004. http://dx.doi.org/10.1007/978-1-4020-2402-3_32.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen

Konferenzberichte zum Thema "Image transmission"

1

Blaine, G. James, Rexford L. Hill, Allen P. Rueter, Evren Senol und James W. Studt. „Image Transmission Studies“. In Medical Imaging II, herausgegeben von Roger H. Schneider und Samuel J. Dwyer III. SPIE, 1988. http://dx.doi.org/10.1117/12.968735.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

N, Shahanaz, und Greeshma R. „Secret Image Transmission Through Mosaic Image“. In Fourth International Conference on Computer Networks & Communications. Academy & Industry Research Collaboration Center (AIRCC), 2017. http://dx.doi.org/10.5121/csit.2017.70503.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

Mocenter, Michael M. „Laptop image transmission equipment“. In San Diego, '91, San Diego, CA, herausgegeben von Thomas W. Augustyn und Paul A. Henkel. SPIE, 1991. http://dx.doi.org/10.1117/12.48704.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

Ryan, John P., und Beacher Pearce. „Image Transmission Over Fiber“. In OE/FIBERS '89, herausgegeben von Joseph Garodnick, Lynn D. Hutcheson und David A. Kahn. SPIE, 1990. http://dx.doi.org/10.1117/12.963445.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

Nebaba, Stepan, und Alexander Pak. „Patterns detection in diffraction images of transmission electron microscopy“. In International Conference "Computing for Physics and Technology - CPT2020". Bryansk State Technical University, 2020. http://dx.doi.org/10.30987/conferencearticle_5fce2770518c26.23795065.

Der volle Inhalt der Quelle
Annotation:
Specialized software that supports existing approaches to processing images of the crystal structure of materials for analyzing transmission electron microscopy images have a lot of different digital image processing methods, but major part of it are weakly automated. In some tasks automated algorithms of image processing have been developed, e.g. in task of estimation of the width of a layer of material from a raster image. The paper considers the problem of automated processing of diffraction images obtained by transmission electron microscopy. A number of modifications, such as Watershed algorithm, binarization and Fast Fourier Transform, are proposed for existing image processing algorithms. These modifications can help automate the processing of the diffraction pattern of a material sample from an image of transmission electron microscopy. The given examples of image processing of particular cases of diffraction patterns have shown the prospects for the development of algorithm based on combination of the proposed modifications of considered algorithms. Adaptive binarization with Watershed segmentation would be useful in automated distance estimation in transmission electron microscopy images.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

Calvo, M. L., M. Chevalier und E. Guibelalde. „Image Transmission In A Fibroscope: Image Quality Criterion“. In Cambridge Symposium-Fiber/LASE '86, herausgegeben von Abraham Katzir. SPIE, 1987. http://dx.doi.org/10.1117/12.937378.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Mort, Michael S., und Robert J. Fontana. „Reversible image compression suitable for interactive image transmission“. In Medical Imaging '90, Newport Beach, 4-9 Feb 90, herausgegeben von Murray H. Loew. SPIE, 1990. http://dx.doi.org/10.1117/12.18936.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

Yelleswarapu, Chandra S., und D. V. G. L. N. Rao. „Image Processing using Nonlinear Transmission“. In Frontiers in Optics. Washington, D.C.: OSA, 2006. http://dx.doi.org/10.1364/fio.2006.jsua52.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Danskin, John M., Geoffrey M. Davis und Xiyong Song. „Fast lossy Internet image transmission“. In the third ACM international conference. New York, New York, USA: ACM Press, 1995. http://dx.doi.org/10.1145/217279.215287.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Tang Jiayue und Zhang Zongcheng. „Fast Internet wavelet image transmission“. In Proceedings of APCC/OECC'99 - 5th Asia Pacific Conference on Communications/4th Optoelectronics and Communications Conference. IEEE, 1999. http://dx.doi.org/10.1109/apcc.1999.820407.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen

Berichte der Organisationen zum Thema "Image transmission"

1

Pennycook, S. J., und A. R. Lupini. Image Resolution in Scanning Transmission Electron Microscopy. Office of Scientific and Technical Information (OSTI), Juni 2008. http://dx.doi.org/10.2172/939888.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
2

Tai, Anthony M. Parallel Image Transmission through a Single Optical Fiber. Fort Belvoir, VA: Defense Technical Information Center, Januar 1986. http://dx.doi.org/10.21236/ada163809.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
3

Riskin, Eve A., und Richard Ladner. Wavelet and Vector Quantization Image Compression for Noisy Channel Transmission. Fort Belvoir, VA: Defense Technical Information Center, Januar 2000. http://dx.doi.org/10.21236/ada379065.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
4

Chen, Zhigang. Light Control and Image Transmission Through Photonic Lattices with Engineered Coupling. Fort Belvoir, VA: Defense Technical Information Center, Mai 2015. http://dx.doi.org/10.21236/ad1013289.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
5

Bloomfield, R. A., und G. R. Dobson. Image-Data Transmission Demonstration over the Tracking and Data Relay Satellite System. Fort Belvoir, VA: Defense Technical Information Center, August 1998. http://dx.doi.org/10.21236/ada352534.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
6

Bolgert, Peter J. A Comparison of Image Quality Evaluation Techniques for Transmission X-Ray Microscopy. Office of Scientific and Technical Information (OSTI), August 2012. http://dx.doi.org/10.2172/1049731.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
7

Rane, Shantanu D., Jeremiah Remus und Guillermo Sapiro. Wavelet-Domain Reconstruction of Lost Blocks in Wireless Image Transmission and Packet-Switched Networks. Fort Belvoir, VA: Defense Technical Information Center, Januar 2005. http://dx.doi.org/10.21236/ada437341.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
8

Chen, Zhigang. Equipment for Nonlinear Photonics Research - Light Control and Image Transmission in Specially-Designed Photonic. Fort Belvoir, VA: Defense Technical Information Center, März 2014. http://dx.doi.org/10.21236/ada598473.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
9

Mahalingam, Krishnamurthy. Collaborative Research and Development. Delivery Order 0006: Transmission Electron Microscope Image Modeling and Semiconductor Heterointerface Characterization. Fort Belvoir, VA: Defense Technical Information Center, September 2006. http://dx.doi.org/10.21236/ada463820.

Der volle Inhalt der Quelle
APA, Harvard, Vancouver, ISO und andere Zitierweisen
10

Falconer, David G. L51774 Remote Sensing of Hazardous Ground Movement about Buried Gas Transmission Lines. Chantilly, Virginia: Pipeline Research Council International, Inc. (PRCI), August 1997. http://dx.doi.org/10.55274/r0011973.

Der volle Inhalt der Quelle
Annotation:
Reviews the available sensors for monitoring hazardous ground movement. Our review was limited to airborne and spaceborne sensors for access, performance, and productivity considerations. It was observed that certain ground movement is comparatively localized, e.g., earthquake faulting, while other activity may extend for thousands of kilometers, e.g., frost heave. Accordingly, we have considered two operating modes for the sensor-platform system, namely, site-by-site and continuous corridor. To determine the suitability of the candidate sensors for pipeline monitoring, we have assessed the expected performance, operational aspects, and cost of each sensor-platform combination as a function of operating mode. Finally, we have developed a business model for (1) operation of the recommended sensor systems by fee-for-service contractors; (2) analysis of the collected data by image-analysis specialists; and (3) use of the survey products by pipeline engineers.
APA, Harvard, Vancouver, ISO und andere Zitierweisen
Wir bieten Rabatte auf alle Premium-Pläne für Autoren, deren Werke in thematische Literatursammlungen aufgenommen wurden. Kontaktieren Sie uns, um einen einzigartigen Promo-Code zu erhalten!

Zur Bibliographie