Author: United States. Congress. Senate. Committee on Homeland Security and Governmental Affairs. Subcommittee on Oversight of Government Management, the Federal Workforce, and the District of Columbia
The Future of Power examines what it means to be forceful and effective in a world in which the traditional ideas of state power have been upended by technology, and rogue actors. Joseph S. Nye, Jr., a longtime analyst of power and a hands-on practitioner in government, delivers a new power narrative that considers the shifts, innovations, bold technologies, and new relationships that are defining the twenty-first century. He shows how power resources are adapting to the digital age and how smart power strategies must include more than a country's military strength. At the beginning of the twenty-first century, unsurpassed in military strength and ownership of world resources, the United States was indisputably the most powerful nation in the world. Today, China, Russia, India, and others are increasing their share of world power resources. Information once reserved for the government is now available for mass consumption. The Internet has literally put power at the fingertips of nonstate agents, allowing them to launch cyberattacks from their homes. The cyberage has created a new power frontier among states, ripe with opportunity for developing countries. To remain at the pinnacle of world power, the United States must adopt a strategy that designed for a global information age.
This book provides a general overview of virtual power plants (VPP) as a key technology in future energy communities and active distribution and transmission networks for managing distributed energy resources, providing local and global services, and facilitating market participation of small-scale managing distributed energy resources and prosumers. The book also aims at describing some practical solutions, business models, and novel architectures for the implementation of VPPs in the real world. Each chapter of the book begins with the fundamental structure of the problem required for a rudimentary understanding of the methods described. It provides a clear picture for practical implementation of VPP through novel technologies such as blockchain, digital twin, and distributed ledger technology. The book will help the electrical and power engineers, undergraduate, graduate students, research scholars, and utility engineers to understand the emerging solutions regarding the VPP concept lucidly.
This handbook analyzes and develops methods and models to optimize solutions for energy access (for industry and the general world population alike) in terms of reliability and sustainability. With a focus on improving the performance of energy systems, it brings together state-of-the-art research on reliability enhancement, intelligent development, simulation and optimization, as well as sustainable development of energy systems. It helps energy stakeholders and professionals learn the methodologies needed to improve the reliability of energy supply-and-demand systems, achieve more efficient long-term operations, deal with uncertainties in energy systems, and reduce energy emissions. Highlighting novel models and their applications from leading experts in this important area, this book will appeal to researchers, students, and engineers in the various domains of smart energy systems and encourage them to pursue research and development in this exciting and highly relevant field.
Present energy systems are undergoing a radical transformation, driven by the urgent need to address the climate change crisis. At the same time, we are witnessing the sharp growth of energy data and a revolution of advanced technologies, with artificial intelligence (AI) and Blockchain emerging as two of the most transformative technologies of our time. The convergence of these two technologies has the potential to create a paradigm shift in the energy sector, enabling the development of smart energy systems that are more resilient, efficient, and sustainable. This book situates itself at the forefront of this paradigm shift, providing a timely and comprehensive guide to AI and Blockchain technologies in the energy system. Moving from an introduction to the basic concepts of smart energy systems, this book proceeds to examine the key challenges facing the energy system, and how AI and Blockchain can be used to address these challenges. Research examples are presented to showcase the role and impact of these new technologies, while the latest developed testbeds are summarised and explained to help researchers accelerate their development of these technologies. This book is an indispensable guide to the current changes in the energy system, being of particular use to industry professionals, from researchers to management, looking to stay ahead of technological developments.
Reflecting the profound changes in international society in the past decade and the challenges that all Powers’ diplomacy and statecraft face, whether opposing or encouraging these changes, this fully revised and updated edition provides a unique multifaceted assessment by experts of the new international order. Built around the thesis that Great Power rivalry dominated after the end of the Cold War, it examines how this multi-polarity has become more extreme. The Handbook assesses the diplomacy and statecraft of individual powers in seven key sections: • The Context of Diplomacy • The Great Powers • Middle Powers • Developing Powers • International Organisations and Military Alliances • The International Economy • Issues of Conflict and Co-operation It shows how diplomacy and statecraft have transformed on issues such as the evolving "America First" strategy; the strengthening of the People’s Republic of China; the growth of non-state actors in foreign policy; the unravelling of international arms control agreements; the aggressive nature of Russian foreign policy; and the emergence of major armed conflicts and the rise of terrorism and armed insurgencies around the world. It will be of interest to government and non-governmental actors, established scholars and students in the fields of international relations, history, and military studies.
This monograph presents a wider spectrum of researches, developments, and case specific studies in the area of smart power systems and integration of renewable energy systems. The book will be for the benefit of a wider audience including researchers, postgraduate students, practicing engineers, academics, and regulatory policy makers. It covers a wide range of topics from fundamentals, and modelling and simulation aspects of traditional and smart power systems to grid integration of renewables; Micro Grids; challenges in planning and operation of a smart power system; risks, security, and stability in smart operation of a power system; and applied research in energy storage.
The government's first Cooperative Threat Reduction (CTR) programs were created in 1991 to eliminate the former Soviet Union's nuclear, chemical, and other weapons and prevent their proliferation. The programs have accomplished a great deal: deactivating thousands of nuclear warheads, neutralizing chemical weapons, converting weapons facilities for peaceful use, and redirecting the work of former weapons scientists and engineers, among other efforts. Originally designed to deal with immediate post-Cold War challenges, the programs must be expanded to other regions and fundamentally redesigned as an active tool of foreign policy that can address contemporary threats from groups that are that are agile, networked, and adaptable. As requested by Congress, Global Security Engagement proposes how this goal can best be achieved. To meet the magnitude of new security challenges, particularly at the nexus of weapons of mass destruction and terrorism, Global Security Engagement recommends a new, more flexible, and responsive model that will draw on a broader range of partners than current programs have. The White House, working across the Executive Branch and with Congress, must lead this effort.
This book identifies the challenges, solutions, and opportunities offered by smart energy grids (SEGs) with regard to the storage and regulation of diversified energy sources such as photovoltaic, wind, and ocean energy. It provides a detailed analysis of the stability and availability of renewable sources, and assesses relevant socioeconomic structures. The book also presents case studies to maximize readers’ understanding of energy grid management and optimization. Moreover, it offers guidelines on the design, implementation, and maintenance of the (SEG) for island countries.