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1,308 results for “Vehicle”
FIGURE 8. Homeryon armarium Galil, 2000 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 8. Homeryon armarium Galil, 2000, ovigerous female (cl 65.0 mm), JAMSTEC 081538, pleon, telson and uropods, in dorsal view.
FIGURE 20. Galilia petricola n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 20. Galilia petricola n. sp. A, holotype, male (23.8 × 25.2 mm), NSMT-Cr 22721; B, paratype, ovigerous female (22.2 × 25.0 mm), JAMSTEC 081532. A, chela and carpus of left cheliped, outer view; B, thoracic sternum, abdomen and telson, ventral view.
FIGURE 16. Eumunida nikko n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 16. Eumunida nikko n. sp., holotype, male (pcl 22.8 mm), NSMT-Cr 22720, left ambulatory legs in lateral view. A, second pereopod (setae omitted); B, same, dactylus and distal part of propodus, lateral view; C, third pereopod; D, fourth pereopod.
FIGURE 12 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 12. Michelopagurus limatulus (Henderson, 1888), female (sl 4.8 mm), JAMSTEC 081526, in aquarium.
FIGURE 3. Plesionika unicolor n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 3. Plesionika unicolor n. sp. A–H, holotype, ovigerous female (pcl 13.0 mm), NSMT-Cr 22719; I, juvenile (cl 5.7 mm), JAMSTEC 1100023729. A, anterior part of carapace and cephalic appendages, lateral view (antennal carpocerite missing); B, same, dorsal view; C, tergites of first and second abdominal somites, lateral view; D, right antenna, ventral view (setae and flagellum omitted); E, distal part of right antennal scale, ventral view; F, ischium of left third maxilliped, mesial view; G, dactylus and distal part of propodus of right third pereopod, lateral view; H, dactylus and propodus of right third pereopod, lateral view; I, telson, dorsal view. Scale bars: 2 mm for A–D; 1 mm for E–I.
FIGURE 11. Homeryon armarium Galil, 2000 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 11. Homeryon armarium Galil, 2000, ovigerous female (cl 65.0 mm), JAMSTEC 081538. A, left pereopods, outer view. A, first pereopod; B, second pereopod; C, third pereopod, D, fourth pereopod; E, chela and carpus of fifth pereopod. Scale bars: 5 mm.
FIGURE 2. Plesionika unicolor n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 2. Plesionika unicolor n. sp., holotype, ovigerous female (pcl 13.0 mm), NSMT-Cr 22719, entire animal in lateral view. Scale bar: 5 mm.
FIGURE 7. Homeryon armarium Galil, 2000 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 7. Homeryon armarium Galil, 2000, ovigerous female (cl 65.0 mm), JAMSTEC 081538. A, carapace and antennae, dorsal view; B, cephalothorax and appendages, ventral view.
FIGURE 15. Eumunida nikko n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 15. Eumunida nikko n. sp., holotype, male (pcl 22.8 mm), NSMT-Cr 22720, right cheliped. A, merus, dorsal view (setae omitted); B, same, ventral view; C, carpus, ventral view; D, carpus and chela, dorsal view; E, same, ventral view; F, close up of basal part of fingers, showing detail of ventral setal pad. Scale bars: 5 mm for A–E; 2 mm for F.
FIGURE 23 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 23. Cyrtomaia micronesica Richer de Forges & Ng, 2007, male (42.5 × 50.5 mm), JAMSTEC 081529-2. A, carapace and cephalic appendages, dorsal view; B, anterior part of carapace and cephalic appendages, dorsal view.
FIGURE 18. Galilia petricola n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 18. Galilia petricola n. sp., holotype, male (23.8 × 25.2 mm), NSMT-Cr 22721, entire animal in dorsal view (in preservative).
FIGURE 14. Eumunida nikko n in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 14. Eumunida nikko n. sp., holotype, male (pcl 22.8 mm), NSMT-Cr 22720. A, carapace and eyes, dorsal view; B, third and fourth thoracic sternites, ventral view (setae omitted); C, first and second abdominal somites, dorsal view; D, left antennal peduncle, lateral view; E, same, ventral view; F, merus of left third maxilliped, lateral view (setae omitted). Scale bars: 5 mm for A, C; 2 mm for B, D–F.
FIGURE 25 in Deep-Sea decapod crustaceans (Caridea, Polychelida, Anomura and Brachyura) collected from the Nikko Seamounts, Mariana Arc, using a remotely operated vehicle " Hyper-Dolphin "
FIGURE 25. Cyrtomaia micronesica Richer de Forges & Ng, 2007, left chela. A, male (42.5 × 50.5 mm), JAMSTEC 081529- 2; B, male (39.0 x 43.5 mm), JAMSTEC 081529-1.
Simulated SAR data of vehicles on a background
<p>The simulated data set is used as input to a convolutional neural network to train the classifier.</p>
Open urban mmWave radar and camera vehicle classification dataset for traffic monitoring
<h2><strong>Open urban mmWave radar and camera vehicle classification dataset for traffic monitoring</strong></h2><h3><strong>Description</strong></h3><p>The archive contains a dataset that can be used for multi-sensor-based vehicle detection/classification. Each part of the dataset is divided into four separate subfolders. All the footage was collected from different parts of Tallinn during the late winter and early spring. The dataset contains 8393 frames. Each frame comes with a corresponding annotation in XML and YOLO formats and a JSON file containing mmWave radar point cloud data. </p>
Dataset: "Auralization of Electric Vehicles for the Perceptual Evaluation of Acoustic Vehicle Alerting Systems"
<p>This repository contains audio examples and measurement data accompanying the paper: </p> <blockquote> <p>Müller L. & Kropp W. 2024. Auralization of electric vehicles for the perceptual evaluation of acoustic vehicle alerting systems. Acta Acustica, 8, 27. https://doi.org/10.1051/aacus/2024025</p> </blockquote> <p>The Matlab code for the corresponding auralization model can be found at: <a href="https://github.com/leonpaulmueller/evat" target="_blank" rel="noopener">https://github.com/leonpaulmueller/evat</a></p> <p> </p> <p><strong>Content</strong></p> <ul> <li><code>audio_examples.zip</code> <ul> <li>avas - Measured and synthesized AVAS source signals</li> <li>passby - Measured and auralized binaural EV passages at roadside observer position. The generated signals use the same vehicle velocity as the corresponding measurements.</li> <li>tire - Measured and synthesized tire/road noise source signals</li> </ul> </li> <li><code>measurements.zip</code> <ul> <li>ambience - binaural ambience measurements</li> <li>avas - AVAS source signal measurements</li> <li>passby - Binaural pass-by measurements, including velocity data and isolated AVAS and tire/road noise signals</li> <li>tires - tire/road noise measurements</li> </ul> </li> </ul> <p> </p> <p>For consistency with the paper, we use the following aliases for the three evaluated vehicles:</p> <ul> <li>Vehicle A: Tesla Model Y 2021</li> <li>Vehicle B: Volkswagen ID.3 Pro Performance 2021</li> <li>Vehicle C: Nissan Leaf 2018</li> </ul>
Autoconfig: Vehicle Routing Problem with Occasional Drivers
<p>Autoconfig: Vehicle Routing Problem with Occasional Drivers</p> <p>See https://github.com/rmartinsanta/ac-BMSSC for full details.</p> <div> <div> <div> </div> <div>Authors of the original paper:</div> <div>Raúl (Martín-Santamaría) </div> </div> </div> <div> <div> <div>Ana Dolores (López Sánchez) </div> </div> </div> <div> <div> <div>María Luisa (Delgado Jalón) </div> </div> </div> <div> <div>José Manuel (Colmenar Verdugo) </div> </div>
Acoustic parameters of Phyllodytes luteolus in conditions of low and high noise from vehicle traffic
<p>Acoustic communication in animals can be affected by multiple biotic (intra and interspecific) and abiotic (e.g., wind and rain) natural noises. In addition, human beings produce additional novel sources of noise, which can reduce or inhibit the reception of acoustic signals by conspecifics, leading to behavioral changes. In this study, we investigated whether sound of conspecifics and road noise additively affect the acoustic parameters of the advertisement call of males of a Yellow Heart-tongued Frog (<em>Phyllodytes luteolus</em>). We hypothesized that males that vocalize in larger choruses (many males) and in areas close to highways (anthropic noise) will increase their temporal and spectral acoustic parameters, respectively, to avoid acoustic signal masking. We recorded the vocalizations of 38 males in environments close (N=18) to and distant (N=20) from highways in different social contexts (many or few individuals in the chorus). Contrary to our expectation, the results indicated that individuals exposed to road noise had lower dominant frequency calls than those from natural areas, and that the density of males in the chorus had no influence on the acoustic parameters. Furthermore, we found a positive relationship between body size and intensity, indicating that larger individuals can emit calls that can reach greater distances. The advertisement call of <em>Phyllodytes luteolus</em> has a high dominant frequency, with little overlap with the frequency of anthropic noises (roads), which may explain its presence and reproductive success of this species in bromeliads from urbanized areas.</p>
A novel liquid cooling plate concept for thermal management of lithium-ion batteries in electric vehicles
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Calculation of the GHG emissions of a European research project on electrified vehicles
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.