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551.
The 8-bit voltage mode subrange A/D converter described in this paper operates in a mid-input signal frequency range of up
to 20 MHz and requires at least an order of magnitude lower die area (0.06 mm2) than other A/D converters with a similar resolution. Moreover, it dissipates only 4.5 mW power and is supported by a calibration
logic that is general enough to be used by several other measurement and instrumentation applications that require a real
time adjustment of the amplitude and the level of their differential signals. This voltage mode subrange A/D converter architecture
is actually an asynchronous two-step A/D converter that is based on a novel integer division operation. The current mode implementation
of such an integer divider has already been employed by the authors in an innovative low area/power binary tree A/D conversion
architecture. The voltage mode implementation of the integer divider allows the realization of the higher speed and lower
power/area subrange A/D converter that is presented in this article. 相似文献
552.
553.
Burchett J Shankar M Hamza AB Guenther BD Pitsianis N Brady DJ 《Applied optics》2006,45(13):3031-3037
We use pyroelectric detectors that are differential in nature to detect motion in humans by their heat emissions. Coded Fresnel lens arrays create boundaries that help to localize humans in space as well as to classify the nature of their motion. We design and implement a low-cost biometric tracking system by using off-the-shelf components. We demonstrate two classification methods by using data gathered from sensor clusters of dual-element pyroelectric detectors with coded Fresnel lens arrays. We propose two algorithms for person identification, a more generalized spectral clustering method and a more rigorous example that uses principal component regression to perform a blind classification. 相似文献
554.
Nikos Passas Sarantis Paskalis Alexandros Kaloxylos Faouzi Bader Renato Narcisi Evangelos Tsontsis Adil S. Jahan Hamid Aghvami Mirtín O'Droma Ivan Ganchev 《Wireless Communications and Mobile Computing》2006,6(4):523-540
‘Always Best Connected’ (ABC) is considered one of the main requirements for next generation networks. The ABC concept allows a person to have access to applications using the devices and network technologies that best suits his or her needs or profile at any time. Clearly, this requires the combination of a set of existing and new technologies, at all levels of the protocol stack, into one integrated system. In this paper, a considerable set of the technologies, that are expected to play a key role towards the ABC vision, are presented. Starting from a reference architecture, the paper describes the required enhancements at certain levels of a traditional protocol stack, as well as technologies for mobility and end‐to‐end Quality of Service (QoS) support. The paper concludes with a case study that reveals the advantages of the ABC concept. This article replaces a previously published version (Wireless Communications and Mobile Computing; 5 (2): 175‐191. [DOI: 10.1002/wcm.207]). Retraction notice DOI: 10.1002/wcm.426 . Copyright © 2006 John Wiley & Sons, Ltd. 相似文献
555.
Kevin Barker Nikos Chrisochoides Jeffrey Dobbelaere Dmian Nave Keshav Pingali 《Concurrency and Computation》2002,14(2):77-101
In this paper, we present the Data Movement and Control Substrate (DMCS), a library which implements low‐latency one‐sided communication primitives for use in parallel adaptive and irregular applications. DMCS is built on top of low‐level, vendor‐specific communication subsystems such as LAPI (Low‐level Application Programme Interface) for IBM SP machines, as well as on widely available message‐passing libraries like MPI for clusters of workstations and PCs. DMCS adds a small overhead to the communication operations provided by the lower communication system. In return, DMCS provides a flexible and easy to understand application program interface for one‐sided communication operations. Furthermore, DMCS is designed so that it can be easily ported and maintained by non‐experts. Copyright © 2002 John Wiley & Sons, Ltd. 相似文献