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The SARS-CoV-2 pandemic has created a great demand for a better understanding of the spread of viruses in indoor environments. A novel measurement system consisting of one portable aerosol-emitting mannequin (emitter) and a number of portable aerosol-absorbing mannequins (recipients) was developed that can measure the spread of aerosols and droplets that potentially contain infectious viruses. The emission of the virus from a human is simulated by using tracer particles solved in water. The recipients inhale the aerosols and droplets and quantify the level of solved tracer particles in their artificial lungs simultaneously over time. The mobile system can be arranged in a large variety of spreading scenarios in indoor environments and allows for quantification of the infection probability due to airborne virus spreading. This study shows the accuracy of the new measurement system and its ability to compare aerosol reduction measures such as regular ventilation or the use of a room air purifier.  相似文献   
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Computer vision algorithms for inspection or pick-and-place operations often depend on spatially uniform illumination of a workplace. This necessitates expensive lighting fixtures. To discount effects of uneven illumination we designed and tested a neural network that can adaptively control light sensitivity at the photosensor level. Our neural network architecture consists of multiple layers with hexagonally arranged nodes. All nodes have partially overlapping receptive fields of different spatial frequencies. Feedforward connections are excitatory while feedback pathways subserve lateral inhibition. The outputs of these nodes are combined so as to maximize the signal-to-noise ratio while constantly resetting thresholds to maintain high sensitivity. Our connectionist architecture can account for many characteristics attributed to the lightness constancy phenomenon observed in biological systems. The results suggest that our module maintains high sensitivity over the whole domain of intensities without interfering with transmission of visual information embedded in spatial discontinuities of intensity.  相似文献   
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This paper deals with the parallel execution of algorithms with global and/or irregular data dependencies on a regularly and locally connected processor array. The associated communication problems are solved by the use of a two-dimensional sorting algorithm. The proposed architecture, which is based on a two-dimensional sorting network, offers a high degree of flexibility and allows an efficient mapping of many irregularly structured algorithms. In this architecture a one-dimensional processor array performs all required control and arithmetic operations, whereas the sorter solves complex data transfer problems. The storage capability of the sorting network is also used as memory for data elements. The algorithms for sparse matrix computations, fast Fourier transformation and for the convex hull problem, which are mapped onto this architecture, as well as the simulation of a shared-memory computer show that the utilization of the most complex components, the processors, is O(1).  相似文献   
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The Shuttle Radar Topography Mission distinguished itself as the first near-global spaceborne mission to demonstrate direct sensitivity to vertical vegetation structure. Whether this sensitivity is viewed as exploitable signal or unwanted bias, a great deal of interest exists in retrieving vegetation canopy height information from the SRTM data. This study presents a comprehensive application-specific assessment of SRTM data quality, focusing on the characterization and mitigation of two primary sources of relative vertical error: uncompensated Shuttle mast motion and random phase noise. The assessment spans four test sites located in the upper Midwestern United States and examines the dependence of data quality on both frequency, i.e., C-band vs. X-band, and the number of acquired datatakes. The results indicate that the quality of SRTM data may be higher than previously thought. Novel mitigation strategies include a knowledge-based approach to sample averaging, which has the potential to reduce phase noise error by 43 to 80%. The strategies presented here are being implemented as part of an ongoing effort to produce regional- to continental-scale estimates of vegetation canopy height within the conterminous U.S.  相似文献   
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Exploiting synergies afforded by a host of recently available national-scale data sets derived from interferometric synthetic aperture radar (InSAR) and passive optical remote sensing, this paper describes the development of a novel empirical approach for the provision of regional- to continental-scale estimates of vegetation canopy height. Supported by data from the 2000 Shuttle Radar Topography Mission (SRTM), the National Elevation Dataset (NED), the LANDFIRE project, and the National Land Cover Database (NLCD) 2001, this paper describes a data fusion and modeling strategy for developing the first-ever high-resolution map of canopy height for the conterminous U.S. The approach was tested as part of a prototype study spanning some 62,000 km2 in central Utah (NLCD mapping zone 16). A mapping strategy based on object-oriented image analysis and tree-based regression techniques is employed. Empirical model development is driven by a database of height metrics obtained from an extensive field plot network administered by the USDA Forest Service-Forest Inventory and Analysis (FIA) program. Based on data from 508 FIA field plots, an average absolute height error of 2.1 m (r = 0.88) was achieved for the prototype mapping zone.  相似文献   
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Zusammenfassung Mittels verschiedener Untersuchungen wurden Aussagen über das Migrationsverhalten von Acetaldehyd aus Polyethylenterephthalat (PET) getroffen. Die Analyse des Acetaldehyds erfolgte durch Kopfraum-Gaschromatographie mit Flammenionisationsdetektion. Die Bestimmung des Restgehaltes an Acetaldehyd in neuen PET-Flaschen ergab Werte um 6,3 mg/kg, woraus sich eine maximal mögliche Migratmenge von etwa 200 (g/L errechnen läßt. Migrationsstudien bei verschiedenen Temperaturen zeigten die für das Verpakkungssystem typischen Zeitverläufe. Die Diffusion des Acetaldehyds aus dem Kunststoff erreichte bei einer Inkubationstemperatur von 40 °C nach ca. 4 Tagen ein konstantes Niveau, welches ca. 10% des ermittelten Restgehaltes an Acetaldehyd beträgt. Bei einer Temperaturerhöhung um 20 °C kam es zu einer Erhöhung dieses Niveaus auf das 5fache. Die Versuchsergebnisse der Bestimmung des Acetaldehyds in Getränken zeigte, daß in der Praxis nur mit einer geringen Migration zu rechnen ist, die bei den kohlensäurehaltigen Erfrischungsgetränken wegen des intensiven Eigengeschmacks ohne Belang ist. Eine Geschmacksbeeinträchtigung könnte sich höchstens bei Mineral- und Sodawässern ergeben, wenn diese längerfristig, wie sich aus den Migrationsstudien ableiten läßt, Temperaturen um 40 °C ausgesetzt werden.
Study of the migration of acetaldehyde from PET bottles into soft drinks containing carbonic acid
Summary The migration of acetaldehyde from polyethyleneterephthalate (PET) under various conditions was analysed by headspace gas chromatography and flame ionisation detection. The residual amounts of new PET bottles were about 6.3 mg/kg with a migration value of 200 g/1. On studying the migration at different temperatures and times, behaviour curves characteristic of packing materials made from plastics are obtaind. The amount of acetaldehyde diffusing from PET at a temperature of 40° C reached a constant level after 4 days which was about 10% of the residual value of acetaldehyde. On increasing the temperature by 20° C, this level was raised up to 50%. The results of the analysis of acetaldehyde in soft drinks containing carbonic acid show that the migration in fact is not sufficiently high to influence the taste of these soft drinks. A negative effect on the taste may be recognized with mineral waters and soda when they are exposed to higher temperatures (e.g. 40° C or more) over a longer period of time.
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