Connected Autonomous Electric Vehicles as Enablers for Low-Carbon Future

Connected Autonomous Electric Vehicles as Enablers for Low-Carbon Future
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Publisher :
Total Pages : 0
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ISBN-10 : OCLC:1392061379
ISBN-13 :
Rating : 4/5 (79 Downloads)

Synopsis Connected Autonomous Electric Vehicles as Enablers for Low-Carbon Future by : Binod Vaidya

Transportation is the main cause of various harmful gases being released into the atmosphere. Due to dependency on fossil fuels, conventional internal-combustion engine vehicles cause major impacts on air pollution and climate change. Achieving greenhouse gas (GHG) reduction targets requires electrification of transportation at the larger scale. Zero-emission vehicles are developing rapidly with consequences for energy use and GHG emissions, and their penetration is rising throughout the world. Such vehicles are widely considered as a promising solution for GHG reduction and a key to low-carbon mobility future. Recent trend in transportation system is a rapid shift toward connected autonomous vehicles. Connected autonomous electric vehicle (CAEV) will play a vital role in emerging revolution in sustainable low-carbon mobility. They can result in major reductions in GHG emissions and be at the forefront of rapid transformation in transportation. CAEVs have great potential to operate with higher vehicle efficiency, if they are charged using renewable energy sources that will significantly reduce emissions and dependency on fossil fuels. This book chapter is intended not only to provide understanding of potential environmental implications of CAEV technologies by reviewing the existing studies and research works but also to discuss environmental impacts including GHG emissions and improvement of vehicle efficiency.

Research Trends and Challenges in Smart Grids

Research Trends and Challenges in Smart Grids
Author :
Publisher : BoD – Books on Demand
Total Pages : 172
Release :
ISBN-10 : 9781789238914
ISBN-13 : 1789238919
Rating : 4/5 (14 Downloads)

Synopsis Research Trends and Challenges in Smart Grids by : Alfredo Vaccaro

This book introduces the most promising enabling technologies and methodologies for smart grids. It not only focuses on technological breakthroughs and roadmaps in implementing these technologies, but also presents the much-needed sharing of best practices, demonstrating the potential role of smart grid functions in improving the technical, economic, and environmental performance of modern power distribution systems. This can be achieved by allowing for massive pervasion of dispersed generating units, increasing the hosting capacity of renewable power generators, reducing active power losses and atmospheric emissions, and improving system flexibility.

Connected and Autonomous Vehicles in Smart Cities

Connected and Autonomous Vehicles in Smart Cities
Author :
Publisher : CRC Press
Total Pages : 599
Release :
ISBN-10 : 9781000259254
ISBN-13 : 1000259250
Rating : 4/5 (54 Downloads)

Synopsis Connected and Autonomous Vehicles in Smart Cities by : Hussein T. Mouftah

This book presents a comprehensive coverage of the five fundamental yet intertwined pillars paving the road towards the future of connected autonomous electric vehicles and smart cities. The connectivity pillar covers all the latest advancements and various technologies on vehicle-to-everything (V2X) communications/networking and vehicular cloud computing, with special emphasis on their role towards vehicle autonomy and smart cities applications. On the other hand, the autonomy track focuses on the different efforts to improve vehicle spatiotemporal perception of its surroundings using multiple sensors and different perception technologies. Since most of CAVs are expected to run on electric power, studies on their electrification technologies, satisfaction of their charging demands, interactions with the grid, and the reliance of these components on their connectivity and autonomy, is the third pillar that this book covers. On the smart services side, the book highlights the game-changing roles CAV will play in future mobility services and intelligent transportation systems. The book also details the ground-breaking directions exploiting CAVs in broad spectrum of smart cities applications. Example of such revolutionary applications are autonomous mobility on-demand services with integration to public transit, smart homes, and buildings. The fifth and final pillar involves the illustration of security mechanisms, innovative business models, market opportunities, and societal/economic impacts resulting from the soon-to-be-deployed CAVs. This book contains an archival collection of top quality, cutting-edge and multidisciplinary research on connected autonomous electric vehicles and smart cities. The book is an authoritative reference for smart city decision makers, automotive manufacturers, utility operators, smart-mobility service providers, telecom operators, communications engineers, power engineers, vehicle charging providers, university professors, researchers, and students who would like to learn more about the advances in CAEVs connectivity, autonomy, electrification, security, and integration into smart cities and intelligent transportation systems.

Autonomous, Connected, Electric and Shared Vehicles

Autonomous, Connected, Electric and Shared Vehicles
Author :
Publisher : SAE International
Total Pages : 213
Release :
ISBN-10 : 9781468603484
ISBN-13 : 1468603485
Rating : 4/5 (84 Downloads)

Synopsis Autonomous, Connected, Electric and Shared Vehicles by : UMAR ZAKIR ABDUL HAMID

We are at the beginning of the next major disruptive cycle caused by computing. In transportation, the term Autonomous, Connected, Electric, and Shared (ACES) has been coined to represent the enormous innovations enabled by underlying electronics technology. The benefits of ACES vehicles range from improved safety, reduced congestion, and lower stress for car occupants to social inclusion, lower emissions, and better road utilization due to optimal integration of private and public transport. ACES is creating a new automotive and industrial ecosystem that will disrupt not only the technical development of transportation but also the management and supply chain of the industry. Disruptions caused by ACES are prompted by not only technology but also by a shift from a traditional to a software-based mindset, embodied by the arrival of a new generation of automotive industry workforce. In Autonomous, Connected, Electric and Shared Vehicles: Disrupting the Automotive and Mobility Sectors, Umar Zakir Abdul Hamid provides an overview of ACES technology for cross-disciplinary audiences, including researchers, academics, and automotive professionals. Hamid bridges the gap among the book’s varied audiences, exploring the development and deployment of ACES vehicles and the disruptions, challenges, and potential benefits of this new technology. Topics covered include: • Recent trends and progress stimulating ACES growth and development • ACES vehicle overview • Automotive and mobility industry disruptions caused by ACES • Challenges of ACES implementation • Potential benefits of the ACES ecosystem While market introduction of ACES vehicles that are fully automated and capable of unsupervised driving in an unstructured environment is still a long-term goal, the future of mobility will be ACES, and the transportation industry must prepare for this transition. Autonomous, Connected, Electric and Shared Vehicles is a necessary resource for anyone interested in the successful and reliable implementation of ACES. “ACES are destined to be a game changers on the roads, altering the face of mobility.” Daniel Watzenig, Professor Graz University of Technology, Austria

Recent Trends in Artificial Intelligence and IoT

Recent Trends in Artificial Intelligence and IoT
Author :
Publisher : Springer Nature
Total Pages : 340
Release :
ISBN-10 : 9783031373039
ISBN-13 : 3031373030
Rating : 4/5 (39 Downloads)

Synopsis Recent Trends in Artificial Intelligence and IoT by : Rajesh Kumar Tiwari

This book constitutes selected papers presented at the First International Conference on Artificial Intelligence and Internet of Things, ICAII 2022, held in Jamshedpur, India. ICAII 2022 has been postponed to April 2023. The 23 papers were thoroughly reviewed and selected from the 86 submissions. They are arranged in topical sections on artificial Intelligence, and Internet of Things.

Projects as the Enablers of Ecosystem's Emergence

Projects as the Enablers of Ecosystem's Emergence
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Publisher :
Total Pages : 0
Release :
ISBN-10 : OCLC:1106557394
ISBN-13 :
Rating : 4/5 (94 Downloads)

Synopsis Projects as the Enablers of Ecosystem's Emergence by : Giulia Marcocchia

The thesis deals with the relevant forms of management of innovation projects with a strong systemic, disruptive and digital component, which contribute to the structuring of an ecosystem. Indeed, these types of innovation are becoming more and more numerous given the growing connection of objects / services / companies / public authorities and the resulting new cross-business opportunities.The insights provided by existing literature enable managers to perform strategic decision making when rules of the game are set among known actors, but not when the actors and the environment are progressively defined. Nowadays, managers from private and public institutions need to get aligned with variable internal, external conditions, time perspectives, and ill-defined demand system; they miss guidance on how proceeding with it. The research questions emerging from empirical and theoretical investigations are the following: 1. How can an ecosystem project be managed? Is there a specific pattern, and which are the variables of project steering? 2.Which are the most strategically performing steering processes for the selection of innovation projects related to ecosystem structuring? Which are the organizational variables and the mediating variables toward eco-systemic structuring? 3. Which are the more adequate management artefacts to support the exploration process in a context of ecosystem project?In order to study the dynamics at work, and to instrumentalise their management, the research work focuses on the case of connected mobility, observed through the participation in three projects, according to the uses defined by the impetus of OEMs, and under the initiatives of users (autonomous vehicle, connected, electric, shared). The projects chosen concern the diffusion of the fast charging infrastructure of the electric vehicle, the creation of a prototype marketplace for the data collected by the vehicles, and the development of services enabled by the autonomous vehicle. All of them constitute a terrain particularly disrupted by the trend of connection, forcing a reconfiguration of actors, their partnership policies, their business model (ex: Uber, Google Car ...). Hence the current need to update existing tools and theories in innovation management. The analysis of the data collected provides elements to answer the research questions. Following the identification of management challenges specific to systemic and disruptive innovation projects, we have developed a framework of analysis and action integrating the three underlying theoretical logic (platform leadership / systemic innovation, disruptive innovation / design driven innovation, digital business model). We have identified and characterized a project typology, the Proto-ecosystem project, which enables stakeholders to create the knowledge, skills and connections that contribute to the structuring of an ecosystem. We have identified the typical process by stage finalized to the alignment of the partners of the observed projects and the more efficient artifacts in this alignment process. We have indicated the limitations of this research and the possible future evolutions.

FUTURE OF TRANSPORT

FUTURE OF TRANSPORT
Author :
Publisher :
Total Pages : 206
Release :
ISBN-10 :
ISBN-13 :
Rating : 4/5 ( Downloads)

Synopsis FUTURE OF TRANSPORT by : DAVID SANDUA

Imagine a world where vehicles drive themselves, roads are free of congestion, and air quality has improved dramatically. This book takes you on a fascinating journey into the future of transportation, exploring how autonomous vehicles and sustainable mobility are transforming our lives and our planet. Discover how technology is revolutionizing the transportation industry, from cars that communicate with each other to take more efficient routes to solutions that reduce our dependence on fossil fuels. But it's not all plain sailing; the book also addresses the ethical and social challenges that arise with these advances, such as security, data privacy and the impact on employment. As we move into this new era, it is crucial that we consider both the opportunities and the risks. This book is a call to action to innovate and collaborate in creating a safer, more efficient and sustainable transportation system for all.

Automated and Connected Vehicle Implications and Analysis

Automated and Connected Vehicle Implications and Analysis
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Publisher :
Total Pages : 13
Release :
ISBN-10 : OCLC:1157345446
ISBN-13 :
Rating : 4/5 (46 Downloads)

Synopsis Automated and Connected Vehicle Implications and Analysis by : David L. Block

Automated and connected vehicles (ACV) and, in particular, autonomous vehicles have captured the interest of the public, industry and transportation authorities. ACVs can significantly reduce accidents, fuel consumption, pollution and the costs of congestion which in turn will offer a fundamental change to the future U.S. transportation network. The objective of this project was to evaluate ACV technologies, activities, laws and policies that are now in place or proposed and to assess future ACV usage. The assessment also evaluates the highest level of automated vehicles called autonomous or self-driving vehicles and includes how electric vehicles (EVs) will participate in the future ACV transportation system. The results show that the three areas of largest activities are: (1) Autonomous vehicle development and demonstration, (2) Connected vehicle and their application to safety improvements, and (3) The interaction between autonomous and electric vehicles. The future dollar value in ACV technologies is huge with multi-billion dollar investments being made by auto manufacturers, ride sharing companies and technological innovators all seeking to establish their positions. Due to the electro-mechanical nature of the ACV technology, electric propulsion will likely dominate future transportation. This is due to regulatory reasons (no urban emissions) and other attributes of EVs (having fewer moving parts, reduced maintenance, and capability to be configured to drive, steer, brake and recharge by wire).

Planning for Autonomy and Electrification in Future Transportation Systems

Planning for Autonomy and Electrification in Future Transportation Systems
Author :
Publisher :
Total Pages : 0
Release :
ISBN-10 : 9798438755135
ISBN-13 :
Rating : 4/5 (35 Downloads)

Synopsis Planning for Autonomy and Electrification in Future Transportation Systems by : Harprinderjot Singh

Autonomous vehicles (AVs) and electric vehicles (EVs) will improve safety, mobility, roadway capacity and provide efficient driving, efficient use of travel time, and reduced emissions. However, these technologies affect vehicle miles traveled (VMT), travel time, ownership cost, and electric grid network. Shared mobility systems can ameliorate the high price of these technologies. However, the shared mobility system poses additional problems such as users' waiting time, inconvenience, and increased VMT. Further, the impact of these emerging technologies varies on different groups of users (different values of travel time (VOTT). Another hurdle to the adoption of EVs is the limited range and scarcity of charging infrastructure. A well-established network of charging infrastructure, especially the direct current fast chargers (DCFC), can alleviate this challenge. However, the widespread adoption of EVs and the growing network of DCFC stations will increase the electric energy demand affecting the electric grid stability, demand-supply imbalance, overloading, and degradation of the electric grid components. Distributed energy resources (DER) such as solar panels and energy storage systems (ESS) can support the EV demand and reduce the load on the electric grid. This study develops modeling frameworks for the optimal adoption of AVs and EVs, considering their effect on transportation systems, the environment, and the electric grid network. Further, it suggests different scenarios that would promote the adoption of these technologies and provide a sustainable and resilient system. This study proposes a multi-objective mathematical model to estimate the optimal fleet configuration in a system of private manual-driven vehicles (PMVs), private AVs (PAVs), and shared AVs (SAVs) while minimizing the purchase and operating costs, time (travel and waiting time), and emission production. SAVs can be the optimal solution with the efficient use of travel time or the purchase price below a certain relative threshold. PAVs can be the optimal solution only if the onboard amenities are improved, lifetime mileage is increased, AV technology is installed in luxurious cars, and adopted by people with high VOTT. The framework is extended to consider different combinations of EVs, AVs, and conventional human-driven vehicles in a private and shared mobility system. The metaheuristics based on genetic and simulated annealing algorithms are developed to solve the large-scale NP-hard nonlinear optimization problem. The model is implemented for the network of Ann Arbor, Michigan. The results suggest that EVs are optimal for the system due to low operating costs and zero tailpipe emissions. Shared autonomous electric vehicles (SAEVs) are the best option for users with low VOTT. Private autonomous electric vehicles (PAEVs) would favor the system if the travel time savings are at least 20% or the price of AV technology is less than one-third of the vehicle price. The study then investigates the optimum investment technology to support the rising energy demand at the DCFC stations and reduce the load on the electric grid network. The different investments include purchasing and installing various ESS (new batteries (NB), second-life batteries (SLB), flywheels), solar panels, electric grid upgrades, and the cost of buying/selling electricity from/to the electric grid. The model is implemented for the DCFC stations supporting the future needs of EV charging demand for urban trips in the major cities of Michigan in 2030. The combination of SLBs and solar panels provides maximum benefits. The total annual and electricity savings are $25,000-$165,000 and $40,000-$300,000 per city.

Racing Toward Zero

Racing Toward Zero
Author :
Publisher : SAE International
Total Pages : 301
Release :
ISBN-10 : 9781468601473
ISBN-13 : 1468601474
Rating : 4/5 (73 Downloads)

Synopsis Racing Toward Zero by : Kelly Senecal

In Racing Toward Zero, the authors explore the issues inherent in developing sustainable transportation. They review the types of propulsion systems and vehicle options, discuss low-carbon fuels and alternative energy sources, and examine the role of regulation in curbing emissions. All technologies have an impact on the environment, from internal combustion engine vehicles to battery electric vehicles, fuel cell electric vehicles, and hybrids-there is no silver bullet. The battery electric vehicle may seem the obvious path to a sustainable, carbon-free transportation future, but it's not the only, nor necessarily the best, path forward. The vast majority of vehicles today use the internal combustion engine (ICE), and this is unlikely to change anytime soon. Improving the ICE and its fuels-entering a new ICE age-must be a main route on the road to zero emissions. How do we go green? The future requires a balanced approach to transportation. It's not a matter of choosing between combustion or electrification; it's combustion and electrification. As the authors say, "The future is eclectic." By harnessing the best qualities of both technologies, we will be in the best position to address our transportation future as quickly as possible. (ISBN:9781468601466 ISBN:9781468601473 ISBN:9781468602005 DOI:10.4271/9781468601473)