Title :
Ultrafast Streaming Camera Platform for Scientific Applications
Author :
Caselle, Michele ; Chilingaryan, Suren ; Herth, Armin ; Kopmann, Andreas ; Stevanovic, Uros ; Vogelgesang, Matthias ; Balzer, Matthias ; Weber, Matthias
Author_Institution :
Inst. of Inst. for Data Process. & Electron., Karlsruhe Inst. of Technol., Karlsruhe, Germany
Abstract :
X-ray computer tomography is a powerful method for nondestructive investigations in many fields. Three-dimensional images of internal structure are reconstructed from a sequence of two-dimensional projections. The polychromatic high density photon flux of modern synchrotron light sources offer hard X-ray imaging with spatio-temporal resolution up to the micrometer and micrometers range. Existing indirect X-ray image detection systems can be adapted for fast image acquisition by high-speed visible-light cameras. In this paper, we present a platform for custom high-speed CMOS cameras with embedded field-programmable gate array (FPGA) processing. This modular system is characterized by a high-throughput PCI Express (PCIe) interface and efficient communication blocks. It has been used to develop a novel architecture for a self-event trigger that increases the effective image frame rate and reduces the amount of received data. Thanks to a low-noise design, high frame rates in the kilohertz range, and high-throughput data transfer, this camera is well suited for ultrafast synchrotron-based X-ray radiography and tomography. The camera setup is accomplished by high-throughput Linux drivers and a seamless integration in our GPU computing framework.
Keywords :
CMOS image sensors; X-ray microscopy; computerised tomography; field programmable gate arrays; graphics processing units; nondestructive testing; radiography; FPGA processing; GPU computing framework; field-programmable gate array; high-speed CMOS cameras; high-throughput Linux drivers; high-throughput PCI Express interface; nondestructive method; scientific applications; synchrotron light sources; ultrafast streaming camera platform; ultrafast synchrotron-based X-ray radiography; ultrafast synchrotron-based X-ray tomography; Bandwidth; CMOS integrated circuits; Cameras; Computer architecture; Field programmable gate arrays; Image sensors; X-ray imaging; CMOS-image sensor; FPGA real-time parallel data processing; high-speed imaging;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2013.2252528