This research article stands as a formidable response to the security vulnerabilities that loom over wireless sensor networks (WSNs). In a pioneering stride, the study introduces an advanced cryptographic framework de...
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Drowsiness during driving includes high risks for the driver, the co-passengers, and the other people on the road. Advance Driver Assistance systems (ADAS) have been proposed to reduce these risks. This work introduce...
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Enabling extreme edge processing functionalities will lead a breakthrough in the development of the next generation of Structural Health Monitoring (SHM) systems, thanks to the adoption of sensor–near data analtycs w...
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Volcano-structured double-gated field emitter arrays (VDG-FEAs) have realized both highly focusing electron beam and high emission current. The prototype image sensor using Spindt-type VDG-FEA has obtained a reproduce...
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advancedsensor fusion coupled with bionic metastructure has seen various applications due to its capability of maintaining system’s natural virgin state. This study aims to develop a bionic metastructure with rock m...
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Nowadays, technology has been developed to assist farmers in spraying pesticides. This research aims to design a low-cost drone that can spray pesticides on plants. The drone implemented is a type of hexacopter made o...
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The proceedings contain 231 papers. The topics discussed include: advanced noise-shaping SAR ADCs utilizing single-capacitor arbitrary-resolution DACs for miniaturized neural interfaces;low back muscle fatigue monitor...
ISBN:
(纸本)9798350300260
The proceedings contain 231 papers. The topics discussed include: advanced noise-shaping SAR ADCs utilizing single-capacitor arbitrary-resolution DACs for miniaturized neural interfaces;low back muscle fatigue monitoring using proprietary electrical impedance myography system;intra-body wireless power and data links for biomedical microsystems;plug and play prior regularized algorithm for acoustic resolution photoacoustic microscopy bioimaging system enhancement;self-powered piezoelectric biosensing harvester for intracardiac monitoring;from sensor to inference: end-to-end chip design for wearable and implantable biomedical applications;forehead BCG signal analysis: characterization and robust detection of heartbeats using cosine similarity and energy-based approach;considerations for intraoperative laser speckle contrast imaging for vessel flow visualization;and neural network-based low-frequency perception enhancement used in biomedical hearing applications.
SiO2 cladding YAG:Yb crystal core fiber fabricated by the modified rod-in- tube method was demonstrated as a remote sensor for partial discharge faults (PD). The spectra of the crystal fiber and PD fault standard sour...
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ISBN:
(纸本)9781510657090;9781510657083
SiO2 cladding YAG:Yb crystal core fiber fabricated by the modified rod-in- tube method was demonstrated as a remote sensor for partial discharge faults (PD). The spectra of the crystal fiber and PD fault standard source were measured. When the applied voltage of the PD source is 36 kV, the detection pulse intensity of the sensor decays exponentially with the change of the distance from the PD source to the sensing probe (SSD). Its decay trend in the range of 0-25 cm conforms to the Beer-Lambert law. When the fixed SSD is 7 cm and the applied voltage range of the PD source varies from 35 to 39 kV, the pulse frequency detected by the sensor has a good linear relationship with the applied voltage (R-2 = 0.99279). The experimental results indicate that the crystal optical fiber sensor can realize the remote sensing of PD monitoring.
Non-Dispersive Infrared (NDIR) is an optical, non-contact, multi-component measurement technology that can be used for online monitoring of gas components and contaminants in liquids. It offers advantages such as good...
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The growth of automotive industry not only focus on power efficiency and carbon emission reduction, it also has makes further progress in the areas of advanced driver assistance systems (ADAS) and autonomous driving (...
ISBN:
(纸本)9798350329575
The growth of automotive industry not only focus on power efficiency and carbon emission reduction, it also has makes further progress in the areas of advanced driver assistance systems (ADAS) and autonomous driving (AD) technologies. With the progressive technology breakthrough and heavily studies in these two areas, the demand for imaging cameras is steadily increasing to support applications such as lane detection, traffic sign detection, pedestrian/vehicle recognition and driver monitoring. Consequently, this drives higher demand for image sensor packages to meet stringent automotive reliability requirements. In the past, high reliability image sensor packages are typically with ceramic based packages, these tend to have considerably higher costs and longer development cycles than laminate-based packages which are normally used in high speed, RF or MEMS market segment. Therefore, it is important to ensure a high reliability for the laminate-based packages by studying the package design. This can be done by finite element analysis (FEA) which is a fast and cost-efficient method in analyzing the stress experienced by the package. This paper discusses the effects of different package designs on the package stress using the FEA simulation method.
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