Abstract Vehicular CrowdSensing (VCS) network is one of the key scenarios for future 6G ubiquitous artificial intelligence. In a VCS network, vehicles are recruited for collecting urban data and performing deep model inference. Due to the limited computing power of vehicles, we deploy a device-edge co-inference paradigm to improve the inference efficiency in the VCS network. Specifically, the vehicular device and the edge server keep a part of the deep model separately, but work together to perform the inference through sharing intermediate results. Although vehicles keep the raw data locally, privacy issues still exist once attackers obtain the shared intermediate results and recover the raw data in some way. In this paper, we validate the...
Vehicular Cloud Computing (VCC) plays a critical role in data generation where a large number of veh...
The Internet of Vehicles (IoV) is a promising branch of the Internet of Things. IoV simulates a larg...
With the emergence of smart cities, Internet of Things (IoT) devices as well as deep learning techno...
In the context of evolving smart cities and autonomous transportation systems, Vehicular Ad-hoc Netw...
In the face of a massive number of vehicular users, a data collection paradigm based on vehicular cr...
Technological advancements in vehicular transportation systems have led to the growth of novel parad...
Technological advancements in vehicular transportation systems have led to the growth of novel parad...
Vehicular crowd sensing is a promising approach to address the problem of traffic data collection by...
Collaborative inference has been a promising solution to enable resource-constrained edge devices to...
With the advent of Internet of things (IoT) and cloud computing technologies, we are in the era of a...
Vehicular Social Networks (VSNs) is an emerging communication paradigm, derived by merging the conce...
In this paper, we propose a trust-based vehicular platoon crowdsensing scheme, named TripSense, in V...
In this paper, we propose a trust-based vehicular platoon crowdsensing scheme, named TripSense, in V...
Autonomous Vehicles (AVs) are equipped with several sensors which produce various forms of data, suc...
thesisMany networked users and devices are interested in participating in distributed sensing and da...
Vehicular Cloud Computing (VCC) plays a critical role in data generation where a large number of veh...
The Internet of Vehicles (IoV) is a promising branch of the Internet of Things. IoV simulates a larg...
With the emergence of smart cities, Internet of Things (IoT) devices as well as deep learning techno...
In the context of evolving smart cities and autonomous transportation systems, Vehicular Ad-hoc Netw...
In the face of a massive number of vehicular users, a data collection paradigm based on vehicular cr...
Technological advancements in vehicular transportation systems have led to the growth of novel parad...
Technological advancements in vehicular transportation systems have led to the growth of novel parad...
Vehicular crowd sensing is a promising approach to address the problem of traffic data collection by...
Collaborative inference has been a promising solution to enable resource-constrained edge devices to...
With the advent of Internet of things (IoT) and cloud computing technologies, we are in the era of a...
Vehicular Social Networks (VSNs) is an emerging communication paradigm, derived by merging the conce...
In this paper, we propose a trust-based vehicular platoon crowdsensing scheme, named TripSense, in V...
In this paper, we propose a trust-based vehicular platoon crowdsensing scheme, named TripSense, in V...
Autonomous Vehicles (AVs) are equipped with several sensors which produce various forms of data, suc...
thesisMany networked users and devices are interested in participating in distributed sensing and da...
Vehicular Cloud Computing (VCC) plays a critical role in data generation where a large number of veh...
The Internet of Vehicles (IoV) is a promising branch of the Internet of Things. IoV simulates a larg...
With the emergence of smart cities, Internet of Things (IoT) devices as well as deep learning techno...