Smart Energy in Mozambique


Book Description

Countries around the world are undergoing a paradigm shift in energy supply from centralised, fossil-fuelled supply systems to a decentralised, intelligently networked and climate-friendly form of energy supply. Countries in the Global South are playing a key role in this development. There, innovative, decentralised supply systems are already being used intensively in order to connect more people to a reliable and modern system of power supply. Using Mozambique as an example, this study shows how a smartly networked energy supply system grows from the bottom up. It focuses particularly on possible supply strategies and technologies as well as on the political and economic drivers of and barriers to smart power supply. This is the basis for strategies designed to achieve important global development goals—especially in the areas of energy, the climate, health and poverty reduction.




Smart Energy in Mozambique


Book Description




Smart Renewable Energy System for the Island of Mozambique. Current Situation and Possibilities for the Future


Book Description

Project Report from the year 2019 in the subject Energy Sciences, grade: 85, University College London (Institute for Environmental Design), course: Sustainable urbanism, language: English, abstract: This report shall provide a clear insight & analysis of the current energy system and energy use and demand of the Island of Mozambique. It also provides an energy model of the existing energy system and a simulation model or scenario for a potential future smart renewable energy system for the island. The aim of this report is to identify a possible smart energy system for the island that will otherwise improve the overall energy demand and consumption for the island in a sustainable manner. This report shall also provide ways in which the system can be implemented, through a combination of policies and incentives existing or non-existing.




The Energy Year Mozambique 2020


Book Description

“Following the discovery of natural resources, Mozambique has a unique opportunity to achieve its objectives that focus on social development and infrastructure development, as well as to overcome its dependence on foreign donor aid.” Estêvão Pale, CEO and Chairman, ENH The Energy Year Mozambique 2020 arrives at a crucial moment. With the country’s energy industry stimulated by the signing of a USD 20-billion FID for the Mozambique LNG project, the recent acquisition of 3D PSDM seismic data, preparations for a sixth bidding round and governmental approval of key power projects, Mozambique is on the verge of an energy revolution that will foster economic and social sustainability. “Considering the resource base of the country in areas 1 and 4, we do expect to see additional FIDs.” Carlos Zacarias, President of the National Petroleum Institute (INP) The Energy Year Mozambique 2020 also highlights the key role of Electricidade de Moçambique (EDM) in strengthening domestic and regional electricity supply under the nationwide ProEnergia initiative. Produced in partnership with ENH and INP, this third edition of The Energy Year's (formerly TOGY) Mozambique series provides insight to investors and companies looking at strategic opportunities in the country as it gears up ahead of first gas production in 2022.







The Deployment of Prepaid Electricity Meters in Sub-Saharan Africa


Book Description

This book provides a novel and holistic perspective on the deployment of prepaid electricity meter technology among energy impoverished (vulnerable) households based in developing or under-developed communities of Sub-Saharan Africa. It explores and reviews the nexus between the technology and socio-economic development, technology acceptance and rejection in low-income households, and ultimately proposes a contextual model to avert or assuage energy poverty in the region using the technology. Science is applied as a convenient, valid, and reliable model to generate bespoke, contextual, and relevant knowledge for policy makers on the development of prepaid meter market in the region. The knowledge shared contributes to extant discourse and debates around the effectiveness of the technology within indigent household settings. The book is intended for energy/electricity utilities, prepaid electricity businesses, policy developers, and other interested parties whose work is related to prepaid electricity meters.




Electric Vehicle Integration in a Smart Microgrid Environment


Book Description

Electric Vehicle Integration in a Smart Microgrid Environment The growing demand for energy in today’s world, especially in the Middle East and Southeast Asia, has been met with massive exploitation of fossil fuels, resulting in an increase in environmental pollutants. In order to mitigate the issues arising from conventional internal combustion engine-powered vehicles, there has been a considerable acceleration in the adoption of electric vehicles (EVs). Research has shown that the impact of fossil fuel use in transportation and surging demand in power owing to the growing EV charging infrastructure can potentially be minimalized by smart microgrids. As EVs find wider acceptance with major advancements in high efficiency drivetrain and vehicle design, it has become clear that there is a need for a system-level understanding of energy storage and management in a microgrid environment. Practical issues, such as fleet management, coordinated operation, repurposing of batteries, and environmental impact of recycling and disposal, need to be carefully studied in the context of an ageing grid infrastructure. This book explores such a perspective with contributions from leading experts on planning, analysis, optimization, and management of electrified transportation and the transportation infrastructure. The primary purpose of this book is to capture state-of-the-art development in smart microgrid management with EV integration and their applications. It also aims to identify potential research directions and technologies that will facilitate insight generation in various domains, from smart homes to smart cities, and within industry, business, and consumer applications. We expect the book to serve as a reference for a larger audience, including power system architects, practitioners, developers, new researchers, and graduate-level students, especially for emerging clean energy and transportation electrification sectors in the Middle East and Southeast Asia.




Innovations and Challenges of the Energy Transition in Smart City Districts


Book Description

Das Energiekonzept und die Beschlüsse der Bundesregierung zur Energiewende sind wichtige Weichenstellungen für die Gestaltung des zukünftigen Energiesystems. So soll u. a. die Energieeffizienz in dem Maße gesteigert werden, dass bis zum Jahr 2050 nur noch die Hälfte des Primärenergieverbrauchs im Vergleich zum Jahr 2008 benötigt wird. In Deutschland leben rund 75 % der Menschen in Städten. Daher sind Städte und Agglomerationen besondere Lebens-, Wirtschafts- und Kulturräume. Als solche verlangen sie nach einem zukunftsfähigen Energiesystem und müssen in hohem Maße energieeffizient ausgestaltet sein. Besonders relevant für die Steigerung der Energieeffizienz ist der Gebäudesektor: In den Wohn- und Nichtwohngebäuden bundesweit entstehen rund 35 % des Endenergieverbrauchs, etwa drei Viertel davon in Form von Wärme. Die von der Bundesregierung beschlossene Energiewende, also der Umbau der deutschen Energieversorgung auf Basis hoher Effizienz und mit weitgehender Nutzung erneuerbarer Energien, kann deshalb nur gelingen, wenn diese Wende nicht nur im Strom-, sondern auch im Wärmemarkt umgesetzt wird (sogenannte "Wärmewende"). Mit Blick auf das energie- und klimapolitische Ziel eines nahezu klimaneutralen Gebäudebestands bis zum Jahr 2050 sind neben einer gesteigerten Energieeffizienz die erneuerbaren Energien in weit größerem Maße in den Wärmesektor zu integrieren. Städte und Agglomerationen bieten aufgrund der großen Hebelwirkung die Möglichkeit, technologische und gesellschaftliche Innovationen ungleich schneller und wirksamer in die Praxis umzusetzen und damit die energiepolitischen Ziele der Bundesregierung zu erfüllen.