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Book
Advanced CMOS Integrated Circuit Design and Application
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Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

The recent development of various application systems and platforms, such as 5G, B5G, 6G, and IoT, is based on the advancement of CMOS integrated circuit (IC) technology that enables them to implement high-performance chipsets. In addition to development in the traditional fields of analog and digital integrated circuits, the development of CMOS IC design and application in high-power and high-frequency operations, which was previously thought to be possible only with compound semiconductor technology, is a core technology that drives rapid industrial development. This book aims to highlight advances in all aspects of CMOS integrated circuit design and applications without discriminating between different operating frequencies, output powers, and the analog/digital domains. Specific topics in the book include: Next-generation CMOS circuit design and application; CMOS RF/microwave/millimeter-wave/terahertz-wave integrated circuits and systems; CMOS integrated circuits specially used for wireless or wired systems and applications such as converters, sensors, interfaces, frequency synthesizers/generators/rectifiers, and so on; Algorithm and signal-processing methods to improve the performance of CMOS circuits and systems.

Keywords

Technology: general issues --- History of engineering & technology --- spin memristor --- mask operation --- memristor switch --- memristor crossbar --- image processing --- CMOS --- voltage-controlled oscillator --- switched-biasing --- flicker noise --- phase noise --- current source --- figure-of-merit --- pixel-level ADC --- current-input ADC --- readout circuit --- microbolometer --- high SNR --- wide dynamic range --- current-reuse --- injection-locked frequency divider --- radar sensor --- wideband --- RF receiver --- blocker --- second-order intermodulation (IM2) --- orthogonal frequency division modulation (OFDM) --- MedRadio --- medical implanted communication service (MICS) --- biomedical device --- biosensors --- LC-VCO --- current-shaping --- 90 nm --- current tail --- varactor --- LC tank --- on-wafer --- vibration energy harvester --- power management circuit --- CMOS rectifier --- dynamic threshold cancellation technique --- high power conversion efficiency --- CMOS circuit --- analog system --- signal processing --- learning algorithm --- artificial neural network --- freeware --- open science --- analog microelectronics design --- long channel transistors --- short channel transistors --- integrated circuit design --- CMOS design --- VLSI --- higher education --- educational innovation --- integrated circuit layout --- complex thinking --- CMOS detector --- concurrent-mode --- differential detector IC --- imaging SNR --- integrated folded-dipole antenna --- sub-terahertz imaging --- voltage responsivity


Book
Advanced CMOS Integrated Circuit Design and Application
Authors: ---
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

The recent development of various application systems and platforms, such as 5G, B5G, 6G, and IoT, is based on the advancement of CMOS integrated circuit (IC) technology that enables them to implement high-performance chipsets. In addition to development in the traditional fields of analog and digital integrated circuits, the development of CMOS IC design and application in high-power and high-frequency operations, which was previously thought to be possible only with compound semiconductor technology, is a core technology that drives rapid industrial development. This book aims to highlight advances in all aspects of CMOS integrated circuit design and applications without discriminating between different operating frequencies, output powers, and the analog/digital domains. Specific topics in the book include: Next-generation CMOS circuit design and application; CMOS RF/microwave/millimeter-wave/terahertz-wave integrated circuits and systems; CMOS integrated circuits specially used for wireless or wired systems and applications such as converters, sensors, interfaces, frequency synthesizers/generators/rectifiers, and so on; Algorithm and signal-processing methods to improve the performance of CMOS circuits and systems.


Book
Advanced CMOS Integrated Circuit Design and Application
Authors: ---
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Bookmark

Abstract

The recent development of various application systems and platforms, such as 5G, B5G, 6G, and IoT, is based on the advancement of CMOS integrated circuit (IC) technology that enables them to implement high-performance chipsets. In addition to development in the traditional fields of analog and digital integrated circuits, the development of CMOS IC design and application in high-power and high-frequency operations, which was previously thought to be possible only with compound semiconductor technology, is a core technology that drives rapid industrial development. This book aims to highlight advances in all aspects of CMOS integrated circuit design and applications without discriminating between different operating frequencies, output powers, and the analog/digital domains. Specific topics in the book include: Next-generation CMOS circuit design and application; CMOS RF/microwave/millimeter-wave/terahertz-wave integrated circuits and systems; CMOS integrated circuits specially used for wireless or wired systems and applications such as converters, sensors, interfaces, frequency synthesizers/generators/rectifiers, and so on; Algorithm and signal-processing methods to improve the performance of CMOS circuits and systems.

Keywords

Technology: general issues --- History of engineering & technology --- spin memristor --- mask operation --- memristor switch --- memristor crossbar --- image processing --- CMOS --- voltage-controlled oscillator --- switched-biasing --- flicker noise --- phase noise --- current source --- figure-of-merit --- pixel-level ADC --- current-input ADC --- readout circuit --- microbolometer --- high SNR --- wide dynamic range --- current-reuse --- injection-locked frequency divider --- radar sensor --- wideband --- RF receiver --- blocker --- second-order intermodulation (IM2) --- orthogonal frequency division modulation (OFDM) --- MedRadio --- medical implanted communication service (MICS) --- biomedical device --- biosensors --- LC-VCO --- current-shaping --- 90 nm --- current tail --- varactor --- LC tank --- on-wafer --- vibration energy harvester --- power management circuit --- CMOS rectifier --- dynamic threshold cancellation technique --- high power conversion efficiency --- CMOS circuit --- analog system --- signal processing --- learning algorithm --- artificial neural network --- freeware --- open science --- analog microelectronics design --- long channel transistors --- short channel transistors --- integrated circuit design --- CMOS design --- VLSI --- higher education --- educational innovation --- integrated circuit layout --- complex thinking --- CMOS detector --- concurrent-mode --- differential detector IC --- imaging SNR --- integrated folded-dipole antenna --- sub-terahertz imaging --- voltage responsivity --- spin memristor --- mask operation --- memristor switch --- memristor crossbar --- image processing --- CMOS --- voltage-controlled oscillator --- switched-biasing --- flicker noise --- phase noise --- current source --- figure-of-merit --- pixel-level ADC --- current-input ADC --- readout circuit --- microbolometer --- high SNR --- wide dynamic range --- current-reuse --- injection-locked frequency divider --- radar sensor --- wideband --- RF receiver --- blocker --- second-order intermodulation (IM2) --- orthogonal frequency division modulation (OFDM) --- MedRadio --- medical implanted communication service (MICS) --- biomedical device --- biosensors --- LC-VCO --- current-shaping --- 90 nm --- current tail --- varactor --- LC tank --- on-wafer --- vibration energy harvester --- power management circuit --- CMOS rectifier --- dynamic threshold cancellation technique --- high power conversion efficiency --- CMOS circuit --- analog system --- signal processing --- learning algorithm --- artificial neural network --- freeware --- open science --- analog microelectronics design --- long channel transistors --- short channel transistors --- integrated circuit design --- CMOS design --- VLSI --- higher education --- educational innovation --- integrated circuit layout --- complex thinking --- CMOS detector --- concurrent-mode --- differential detector IC --- imaging SNR --- integrated folded-dipole antenna --- sub-terahertz imaging --- voltage responsivity


Book
Advances in Automated Driving Systems
Authors: --- --- ---
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Electrification, automation of vehicle control, digitalization and new mobility are the mega-trends in automotive engineering, and they are strongly connected. While many demonstrations for highly automated vehicles have been made worldwide, many challenges remain in bringing automated vehicles to the market for private and commercial use. The main challenges are as follows: reliable machine perception; accepted standards for vehicle-type approval and homologation; verification and validation of the functional safety, especially at SAE level 3+ systems; legal and ethical implications; acceptance of vehicle automation by occupants and society; interaction between automated and human-controlled vehicles in mixed traffic; human–machine interaction and usability; manipulation, misuse and cyber-security; the system costs of hard- and software and development efforts. This Special Issue was prepared in the years 2021 and 2022 and includes 15 papers with original research related to recent advances in the aforementioned challenges. The topics of this Special Issue cover: Machine perception for SAE L3+ driving automation; Trajectory planning and decision-making in complex traffic situations; X-by-Wire system components; Verification and validation of SAE L3+ systems; Misuse, manipulation and cybersecurity; Human–machine interactions, driver monitoring and driver-intention recognition; Road infrastructure measures for the introduction of SAE L3+ systems; Solutions for interactions between human- and machine-controlled vehicles in mixed traffic.

Keywords

Technology: general issues --- History of engineering & technology --- automated driving --- scenario-based testing --- software framework --- traffic signs --- ADAS --- traffic sign recognition system --- cooperative perception --- ITS --- digital twin --- sensor fusion --- edge cloud --- autonomous drifting --- model predictive control (MPC) --- successive linearization --- adaptive control --- vehicle motion control --- varying road surfaces --- vehicle dynamics --- Mask R-CNN --- transfer learning --- inverse gamma correction --- illumination --- instance segmentation --- pedestrian custom dataset --- deep learning --- wheel loaders --- throttle prediction --- state prediction --- automation --- safety validation --- automated driving systems --- decomposition --- modular safety approval --- modular testing --- fault tree analysis --- adaptive cruise control --- informed machine learning --- physics-guided reinforcement learning --- safety --- autonomous vehicles --- autonomous conflict management --- UTM --- UAV --- UGV --- U-Space --- framework development --- lane detection --- simulation and modelling --- multi-layer perceptron --- convolutional neural network --- driver drowsiness --- ECG signal --- heart rate variability --- wavelet scalogram --- automated driving (AD) --- driving simulator --- expression of trust --- acceptance --- simulator case study --- NASA TLX --- advanced driver assistant systems (ADAS) --- system usability scale --- driving school --- virtual validation --- ground truth --- reference measurement --- calibration method --- simulation --- traffic evaluation --- simulation and modeling --- connected and automated vehicle --- driver assistance system --- virtual test and validation --- radar sensor --- physical perception model --- virtual sensor model --- automated driving --- scenario-based testing --- software framework --- traffic signs --- ADAS --- traffic sign recognition system --- cooperative perception --- ITS --- digital twin --- sensor fusion --- edge cloud --- autonomous drifting --- model predictive control (MPC) --- successive linearization --- adaptive control --- vehicle motion control --- varying road surfaces --- vehicle dynamics --- Mask R-CNN --- transfer learning --- inverse gamma correction --- illumination --- instance segmentation --- pedestrian custom dataset --- deep learning --- wheel loaders --- throttle prediction --- state prediction --- automation --- safety validation --- automated driving systems --- decomposition --- modular safety approval --- modular testing --- fault tree analysis --- adaptive cruise control --- informed machine learning --- physics-guided reinforcement learning --- safety --- autonomous vehicles --- autonomous conflict management --- UTM --- UAV --- UGV --- U-Space --- framework development --- lane detection --- simulation and modelling --- multi-layer perceptron --- convolutional neural network --- driver drowsiness --- ECG signal --- heart rate variability --- wavelet scalogram --- automated driving (AD) --- driving simulator --- expression of trust --- acceptance --- simulator case study --- NASA TLX --- advanced driver assistant systems (ADAS) --- system usability scale --- driving school --- virtual validation --- ground truth --- reference measurement --- calibration method --- simulation --- traffic evaluation --- simulation and modeling --- connected and automated vehicle --- driver assistance system --- virtual test and validation --- radar sensor --- physical perception model --- virtual sensor model


Book
Advanced Sensors for Real-Time Monitoring Applications
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

It is impossible to imagine the modern world without sensors, or without real-time information about almost everything—from local temperature to material composition and health parameters. We sense, measure, and process data and act accordingly all the time. In fact, real-time monitoring and information is key to a successful business, an assistant in life-saving decisions that healthcare professionals make, and a tool in research that could revolutionize the future. To ensure that sensors address the rapidly developing needs of various areas of our lives and activities, scientists, researchers, manufacturers, and end-users have established an efficient dialogue so that the newest technological achievements in all aspects of real-time sensing can be implemented for the benefit of the wider community. This book documents some of the results of such a dialogue and reports on advances in sensors and sensor systems for existing and emerging real-time monitoring applications.

Keywords

History of engineering & technology --- IR-UWB radar sensor --- movement disorder --- hyperactivity --- actigraphy --- fertilizer --- phosphorus element --- laser-induced breakdown spectroscopy --- chemometrics --- high temperature pipe --- pipe wall thinning --- flow accelerated corrosion --- freeze-drying process diagnosis --- ultrasonic transducer (UT) --- freezing/drying point --- drying period --- electrostatic sensor --- digital approach --- rotational speed --- correlation algorithm --- underground structure safety --- train tracking --- incursion detection --- ultra-weak FBG --- distributed vibration --- dynamic measurement --- turbidity --- low-cost --- continuous water quality monitor --- water --- particle detection --- sensitivity --- resonance --- amorphous core --- signal extraction --- support vector regression --- grid method --- genetic algorithm --- particle swarm optimization --- least squares --- railway crossing --- condition monitoring --- condition indicator --- correlation analysis --- weather impact --- numerical verification --- smartphone colorimetrics --- lateral flow assay quantification --- color space --- image correction --- food contaminant screening --- allergens --- background correction --- point of site analyses --- soil salinity --- soil water content --- FDR sensor --- soil pore water electrical conductivity --- sensor calibration and validation --- real time monitoring --- diesel engine --- condition recognition --- CNN --- LSTM --- adaptive dropout --- parallel position --- bridge structure --- temperature --- vibrating wire strain sensor --- traveling wave ultrasonic motor --- pre-pressure --- contact state --- power dissipation --- optimization criterion --- wheel-rail impact --- train hunting --- railway track maintenance --- highly nonlinear solitary waves --- nondestructive evaluation --- wireless sensing --- Bluetooth technology --- water quality --- real-time monitoring --- multisensor system --- molecularly imprinted polymers --- functionalised coating --- microwave spectroscopy --- body condition score --- 3D surface roughness parameters --- rotary parlor --- 3D camera --- regression analysis --- satellite compass --- accuracy --- spectrum analysis --- Fourier transform --- IR-UWB radar sensor --- movement disorder --- hyperactivity --- actigraphy --- fertilizer --- phosphorus element --- laser-induced breakdown spectroscopy --- chemometrics --- high temperature pipe --- pipe wall thinning --- flow accelerated corrosion --- freeze-drying process diagnosis --- ultrasonic transducer (UT) --- freezing/drying point --- drying period --- electrostatic sensor --- digital approach --- rotational speed --- correlation algorithm --- underground structure safety --- train tracking --- incursion detection --- ultra-weak FBG --- distributed vibration --- dynamic measurement --- turbidity --- low-cost --- continuous water quality monitor --- water --- particle detection --- sensitivity --- resonance --- amorphous core --- signal extraction --- support vector regression --- grid method --- genetic algorithm --- particle swarm optimization --- least squares --- railway crossing --- condition monitoring --- condition indicator --- correlation analysis --- weather impact --- numerical verification --- smartphone colorimetrics --- lateral flow assay quantification --- color space --- image correction --- food contaminant screening --- allergens --- background correction --- point of site analyses --- soil salinity --- soil water content --- FDR sensor --- soil pore water electrical conductivity --- sensor calibration and validation --- real time monitoring --- diesel engine --- condition recognition --- CNN --- LSTM --- adaptive dropout --- parallel position --- bridge structure --- temperature --- vibrating wire strain sensor --- traveling wave ultrasonic motor --- pre-pressure --- contact state --- power dissipation --- optimization criterion --- wheel-rail impact --- train hunting --- railway track maintenance --- highly nonlinear solitary waves --- nondestructive evaluation --- wireless sensing --- Bluetooth technology --- water quality --- real-time monitoring --- multisensor system --- molecularly imprinted polymers --- functionalised coating --- microwave spectroscopy --- body condition score --- 3D surface roughness parameters --- rotary parlor --- 3D camera --- regression analysis --- satellite compass --- accuracy --- spectrum analysis --- Fourier transform


Book
Advanced Sensors for Real-Time Monitoring Applications
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

Loading...
Export citation

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Bookmark

Abstract

It is impossible to imagine the modern world without sensors, or without real-time information about almost everything—from local temperature to material composition and health parameters. We sense, measure, and process data and act accordingly all the time. In fact, real-time monitoring and information is key to a successful business, an assistant in life-saving decisions that healthcare professionals make, and a tool in research that could revolutionize the future. To ensure that sensors address the rapidly developing needs of various areas of our lives and activities, scientists, researchers, manufacturers, and end-users have established an efficient dialogue so that the newest technological achievements in all aspects of real-time sensing can be implemented for the benefit of the wider community. This book documents some of the results of such a dialogue and reports on advances in sensors and sensor systems for existing and emerging real-time monitoring applications.

Keywords

History of engineering & technology --- IR-UWB radar sensor --- movement disorder --- hyperactivity --- actigraphy --- fertilizer --- phosphorus element --- laser-induced breakdown spectroscopy --- chemometrics --- high temperature pipe --- pipe wall thinning --- flow accelerated corrosion --- freeze-drying process diagnosis --- ultrasonic transducer (UT) --- freezing/drying point --- drying period --- electrostatic sensor --- digital approach --- rotational speed --- correlation algorithm --- underground structure safety --- train tracking --- incursion detection --- ultra-weak FBG --- distributed vibration --- dynamic measurement --- turbidity --- low-cost --- continuous water quality monitor --- water --- particle detection --- sensitivity --- resonance --- amorphous core --- signal extraction --- support vector regression --- grid method --- genetic algorithm --- particle swarm optimization --- least squares --- railway crossing --- condition monitoring --- condition indicator --- correlation analysis --- weather impact --- numerical verification --- smartphone colorimetrics --- lateral flow assay quantification --- color space --- image correction --- food contaminant screening --- allergens --- background correction --- point of site analyses --- soil salinity --- soil water content --- FDR sensor --- soil pore water electrical conductivity --- sensor calibration and validation --- real time monitoring --- diesel engine --- condition recognition --- CNN --- LSTM --- adaptive dropout --- parallel position --- bridge structure --- temperature --- vibrating wire strain sensor --- traveling wave ultrasonic motor --- pre-pressure --- contact state --- power dissipation --- optimization criterion --- wheel-rail impact --- train hunting --- railway track maintenance --- highly nonlinear solitary waves --- nondestructive evaluation --- wireless sensing --- Bluetooth technology --- water quality --- real-time monitoring --- multisensor system --- molecularly imprinted polymers --- functionalised coating --- microwave spectroscopy --- body condition score --- 3D surface roughness parameters --- rotary parlor --- 3D camera --- regression analysis --- satellite compass --- accuracy --- spectrum analysis --- Fourier transform


Book
Advanced Sensors for Real-Time Monitoring Applications
Authors: ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

Loading...
Export citation

Choose an application

Bookmark

Abstract

It is impossible to imagine the modern world without sensors, or without real-time information about almost everything—from local temperature to material composition and health parameters. We sense, measure, and process data and act accordingly all the time. In fact, real-time monitoring and information is key to a successful business, an assistant in life-saving decisions that healthcare professionals make, and a tool in research that could revolutionize the future. To ensure that sensors address the rapidly developing needs of various areas of our lives and activities, scientists, researchers, manufacturers, and end-users have established an efficient dialogue so that the newest technological achievements in all aspects of real-time sensing can be implemented for the benefit of the wider community. This book documents some of the results of such a dialogue and reports on advances in sensors and sensor systems for existing and emerging real-time monitoring applications.

Keywords

IR-UWB radar sensor --- movement disorder --- hyperactivity --- actigraphy --- fertilizer --- phosphorus element --- laser-induced breakdown spectroscopy --- chemometrics --- high temperature pipe --- pipe wall thinning --- flow accelerated corrosion --- freeze-drying process diagnosis --- ultrasonic transducer (UT) --- freezing/drying point --- drying period --- electrostatic sensor --- digital approach --- rotational speed --- correlation algorithm --- underground structure safety --- train tracking --- incursion detection --- ultra-weak FBG --- distributed vibration --- dynamic measurement --- turbidity --- low-cost --- continuous water quality monitor --- water --- particle detection --- sensitivity --- resonance --- amorphous core --- signal extraction --- support vector regression --- grid method --- genetic algorithm --- particle swarm optimization --- least squares --- railway crossing --- condition monitoring --- condition indicator --- correlation analysis --- weather impact --- numerical verification --- smartphone colorimetrics --- lateral flow assay quantification --- color space --- image correction --- food contaminant screening --- allergens --- background correction --- point of site analyses --- soil salinity --- soil water content --- FDR sensor --- soil pore water electrical conductivity --- sensor calibration and validation --- real time monitoring --- diesel engine --- condition recognition --- CNN --- LSTM --- adaptive dropout --- parallel position --- bridge structure --- temperature --- vibrating wire strain sensor --- traveling wave ultrasonic motor --- pre-pressure --- contact state --- power dissipation --- optimization criterion --- wheel-rail impact --- train hunting --- railway track maintenance --- highly nonlinear solitary waves --- nondestructive evaluation --- wireless sensing --- Bluetooth technology --- water quality --- real-time monitoring --- multisensor system --- molecularly imprinted polymers --- functionalised coating --- microwave spectroscopy --- body condition score --- 3D surface roughness parameters --- rotary parlor --- 3D camera --- regression analysis --- satellite compass --- accuracy --- spectrum analysis --- Fourier transform


Book
Advances in Automated Driving Systems
Authors: --- --- ---
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Electrification, automation of vehicle control, digitalization and new mobility are the mega-trends in automotive engineering, and they are strongly connected. While many demonstrations for highly automated vehicles have been made worldwide, many challenges remain in bringing automated vehicles to the market for private and commercial use. The main challenges are as follows: reliable machine perception; accepted standards for vehicle-type approval and homologation; verification and validation of the functional safety, especially at SAE level 3+ systems; legal and ethical implications; acceptance of vehicle automation by occupants and society; interaction between automated and human-controlled vehicles in mixed traffic; human–machine interaction and usability; manipulation, misuse and cyber-security; the system costs of hard- and software and development efforts. This Special Issue was prepared in the years 2021 and 2022 and includes 15 papers with original research related to recent advances in the aforementioned challenges. The topics of this Special Issue cover: Machine perception for SAE L3+ driving automation; Trajectory planning and decision-making in complex traffic situations; X-by-Wire system components; Verification and validation of SAE L3+ systems; Misuse, manipulation and cybersecurity; Human–machine interactions, driver monitoring and driver-intention recognition; Road infrastructure measures for the introduction of SAE L3+ systems; Solutions for interactions between human- and machine-controlled vehicles in mixed traffic.

Keywords

automated driving --- scenario-based testing --- software framework --- traffic signs --- ADAS --- traffic sign recognition system --- cooperative perception --- ITS --- digital twin --- sensor fusion --- edge cloud --- autonomous drifting --- model predictive control (MPC) --- successive linearization --- adaptive control --- vehicle motion control --- varying road surfaces --- vehicle dynamics --- Mask R-CNN --- transfer learning --- inverse gamma correction --- illumination --- instance segmentation --- pedestrian custom dataset --- deep learning --- wheel loaders --- throttle prediction --- state prediction --- automation --- safety validation --- automated driving systems --- decomposition --- modular safety approval --- modular testing --- fault tree analysis --- adaptive cruise control --- informed machine learning --- physics-guided reinforcement learning --- safety --- autonomous vehicles --- autonomous conflict management --- UTM --- UAV --- UGV --- U-Space --- framework development --- lane detection --- simulation and modelling --- multi-layer perceptron --- convolutional neural network --- driver drowsiness --- ECG signal --- heart rate variability --- wavelet scalogram --- automated driving (AD) --- driving simulator --- expression of trust --- acceptance --- simulator case study --- NASA TLX --- advanced driver assistant systems (ADAS) --- system usability scale --- driving school --- virtual validation --- ground truth --- reference measurement --- calibration method --- simulation --- traffic evaluation --- simulation and modeling --- connected and automated vehicle --- driver assistance system --- virtual test and validation --- radar sensor --- physical perception model --- virtual sensor model --- n/a

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