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Book
Going Global : Expanding Offshore Wind to Emerging Markets.
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Year: 2019 Publisher: Washington, D.C. : The World Bank,

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Abstract

For many years, offshore wind was the expensive cousin of onshore wind with generation costs in the range of USD 150 to USD 200 per megawatt hour (MWh). This changed dramatically between 2016 and 2017 when a series of competitive tenders in Europe witnessed strike prices fall below USD 100/MWh, culminating in projects that bid into merchant markets with no subsidy at all. Prices have continued to drop thanks to technological improvements, economies of scale, maturation of supply chains, better procurement strategies, and the efforts of large and sophisticated project developers, including several from the utility and oil and gas sectors. However, to date the offshore wind industry has remained largely confined to Europe and China. As prices continue to drop, offshore wind is increasingly gaining traction in emerging markets. Projections suggest that offshore wind will add between 7 to 11 gigawatts (GW) per year from 2019 to 2024, reaching between 15 to 21 GW/year from 2025 to 2030. While much of the growth is expected in Europe, China, and new Organization for Economic Co-operation and Development (OECD) markets including Japan, South Korea, and the United States, there is ample potential for developing countries to ride on this momentum and ramp up their local offshore markets. This report presents eight case studies on the technical potential for offshore wind in Brazil, India, Morocco, the Philippines, South Africa, Sri Lanka, Turkey, and Vietnam (here, technical potential is calculated on the basis of wind speed and water depth). Considering offshore areas within 200 kilometers (km) of the coast, 3 these eight countries have a total technical potential of approximately 3.1 terawatts, including 1,016 GW of fixed capacity and 2,066 GW of floating capacity.


Book
A Retrospective Analysis of the Role of Isolated and Mini Grids in Power System Development.
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Year: 2017 Publisher: Washington, D.C. : The World Bank,

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This report provides the first historic overview of power system development focused on its evolution from distributed systems to centralized grid systems. It tracks the early development of power systems in several (now) middle- and high-income economies to inform the current drive to deploy new systems and achieve universal access to electricity services. We find that history can provide certain insights to a set of questions faced by today's energy policy makers. Our review is non-comprehensive, but will hopefully provide fodder for future, more detailed historical research, and shed some light on the complex and fascinating role of mini- or isolated grids in power system development globally. The development of power systems began in several regions of the world in the second half of the 19th century, marking the start of a new era, characterized by disruptive innovation, rapid development and opportunity. Today, electric power systems constitute a fundamental pillar of modern societies and electricity is increasingly recognized as a crucial prerequisite for the achievement of socio-economic prosperity. The development of power systems was affected by multiple factors, some systemically endogenous, such as technical advancements, innovation, entrepreneurial drive and decisions, and some exogenous, such as economic principles, legislative constraints and support, institutional structures, historical contingencies and geographical aspects (Hughes 1983). While numerous paths have been followed over the years there was a common igniting point; small isolated power systems and mini-grids. As technologies improved, demand increased and the policy and regulatory regimes stabilized, larger generators could be built (taking advantage of economies of scale) and electricity could be transmitted over longer distances. These factors resulted in the emergence of centralized utilities (either privately or publicly owned). Typically, mini-grids either became integrated with one another forming the nucleus of a larger centralized system or were absorbed by a larger grid system as it expanded.


Book
Reuse and Recycling : Environmental Sustainability of Lithium-Ion Battery Energy Storage Systems.
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Year: 2020 Publisher: Washington, D.C. : The World Bank,

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The call for urgent action to address climate change and develop more sustainable modes of energy delivery is generally recognized. It is also apparent that batteries, both in the transportation and the power sectors, need to play a predominant role if the global community is to limit global warming to two degrees Celsius. Simply put, nations' efforts will focus largely on electrifying transportation systems to be supported by power systems that deliver low carbon energy, using a range of renewable technologies. Stationary batteries will play a critical role in not only providing direct energy services, but also in acting as backup providers when renewable resources are only able to provide intermittent services, dependent on local climatic and other circumstances. The objective of this report is to provide an overview of the state of affairs with regards to reuse and recycling of lithium-ion or Li-ion batteries, in order to assess if and to what extent developing countries can and should play a larger role in this burgeoning area.

Keywords

Energy --- Recycling --- Renewable Energy


Book
Mini Grids for Timely and Low-Cost Electrification in Ghana : Exploring Regulatory and Business Models for Electrifying the Lake Volta Region.
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Year: 2017 Publisher: Washington, D.C. : The World Bank,

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Ghana has been remarkably successful in extending its national grid into the rural areas. According to its Ministry of Power, about 83.4 percent of communities with more than 500 people have access to grid electricity. The main remaining frontier is to bring electricity to communities living on islands in Lake Volta and in isolated lakeside locations. The summary of this report first highlights some areas where clear recommendations have emerged, and then presents areas where choices are to be made between options with different advantages and disadvantages. The purpose of this assignment is to explore the most feasible business models for mini and micro grids for Ghana's island and lake-side communities, together with a pragmatic policy and regulatory regime that will reinforce the development of such systems. The remainder of the report is arranged as follows: 1) Chapter 1 does the Analysis and discussion of the various options for business models of mini grids; (ii) Chapter 2 is about Analysis and discussion of the costs of mini grid delivery, tariff calculations and financing options; (iii) Chapter 3 discusses on the Review and proposals for required policy, legislation, regulations, permits, and institutional arrangements; and (iv) Chapter 4 concludes with Review and recommendations for necessary technical assistance to implement the delivery of mini grids.


Book
Mini Grids in Bangladesh : A Case Study of an Incipient Market.
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Year: 2017 Publisher: Washington, D.C. : The World Bank,

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The study's objective is to understand what regulatory settings governments may adopt to scale up electrification through private development of mini grids, drawing on the experience of these six jurisdictions; provide technical assistance to four countries that want to further develop their mini grids framework; and disseminate findings and recommendations globally to inform successful mini grids regulation. The study focuses on mini grids defined as small, privately-owned and operated systems with generation of up to 10 megawatts (MW) capacity and a network that distributes power to several customers. The study includes small mini grids of less than 1 kilowatt (kW) capacity, also known as 'micro' or 'pico' grids. The six case studies are intended to be synthesized in one report. The report is to provide a cross-country comparison of these topics: it examines side by side how each of the countries studied have responded to a specific regulatory question, and presents a decision-tree approach to developing regulatory frameworks for mini grids. This case study is based on in-depth interviews with a number of key stakeholders in Bangladesh, conducted during and after a research trip in August 2017. Several experts in the Bangladesh context and mini grids more broadly reviewed this case study for accuracy and clarity, and their have incorporated their comments while retaining a neutral fact-based position. The Government aims to provide electricity to all by 2021 through grid extension, mini grids and stand-alone systems. The Power Sector Master Plan (PSMP) 2010 sets out to accommodate the Government's vision by 2021.The Government recognizes that public sector investment alone will not be sufficient to achieve its target and wants to mobilize resources from the private sector. The Government seeks to catalyze and promote private sector participation in renewable energy projects through Infrastructure Development Company Limited (IDCOL), a fully government-owned financial institution.IDCOL works alongside the Ministry of Power, Energy, and Mineral Resources (MPEMR) to identify areas where grid expansion is unlikely in the foreseeable future, and to entice private mini grid developers. Mini-grid operators are occupying a small but growing space in Bangladesh, with seven mini-grids connecting around 2,243 households in rural areas. IDCOL has approved 18 mini grid systems and plans to install 50 by 2018.


Book
Mini Grids in Kenya : A Case Study of a Market at a Turning Point.
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Year: 2017 Publisher: Washington, D.C. : The World Bank,

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The Global Facility on Mini Grids of the Energy Sector Management Assistance Program (ESMAP) hired Castalia to study the regulation of mini grids in six jurisdictions in Sub-Saharan Africa and Asia (Kenya, Tanzania, and Nigeria; and Bangladesh, Cambodia, and the state of Uttar Pradesh in India). The study's objective is to understand what regulatory settings governments may adopt to scale up electrification through private development of mini grids, drawing on the experience of these six jurisdictions; provide technical assistance to four countries that want to further develop their mini grids framework; and disseminate findings and recommendations globally to inform successful mini grids regulation. The study focuses on mini grids defined as small, privately-owned and operated systems with generation of up to 10 megawatts (MW) capacity and a network that distributes power to several customers. The study includes small mini grids of less than 1 kilowatt (kW) capacity, also known as 'micro' or 'pico' grids. The six case studies are intended to be combined in one report. The report is to provide a cross-country comparison of these topics: it examines side by side how each of the countries studied have responded to a specific regulatory question, and presents a decision-tree approach to developing regulatory frameworks for mini grids. This case study is based on in-depth interviews with a number of key stakeholders in Kenya, conducted during and after a research trip in September 2017. The supplemented the insights gained from these interviews with extensive background research. Several experts in the Kenya context and mini grids more broadly reviewed this case study for accuracy and clarity, and we have incorporated their comments while retaining a neutral fact-based position.


Book
Using Forecasting Systems to Reduce Cost and Improve Dispatch of Variable Renewable Energy
Author:
Year: 2019 Publisher: Washington, D.C. : The World Bank,

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This technical guide is the fourth in a series of four technical guides on variable renewable energy (VRE) grid integration produced by the Energy Sector Management Assistance Program (ESMAP) of the World Bank and the Global Sustainable Electricity Partnership (GSEP). It provides guidance on the role and benefits of forecasting as a cost-effective operational solution to manage the uncertainty of VRE generation and facilitate the integration of larger shares of these resources in the energy mix. The guide focuses primarily on the types of forecasting methods and how physical and statistical models are used for developing short- to long-term forecasts. Technological advances in weather forecasting, together with better data on historical performance of renewable energy, allow significantly improved forecasting accuracy of VRE generation, which results in more efficient utilization. Examples from developing countries illustrate how the approach to forecasting varies depending on the country's electricity market structure and requirements.

Keywords

Wind Energy


Book
Coal Plant Repurposing for Ageing Coal Fleets in Developing Countries.
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Year: 2021 Publisher: Washington, D.C. : The World Bank,

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Coal plants worldwide are grappling with low-capacity utilization levels and environmental issues; and have not only become unprofitable to utilities, but also uneconomical to customers. Developed countries with significant coal capacities such as Australia, Canada, Germany, the United Kingdom (UK), and the United States (US), are taking different approaches to wean away from coal. One such approach includes retiring and repurposing coal plants for various productive end uses, including solar plants, wind plants, data centers, and energy storage. Developing countries may gain much from the experience of their developed counterparts. Against this backdrop, the authors briefly examine the power situation in three developing countries, namely, South Africa, Chile, and India, based on their economic prowess within respective regions, predominance of coal in economic activities, and vulnerability to climate change, which make an interesting case for an analysis of repurposing coal plants in developing countries. This study presents the concepts and components of a cost-benefit analysis needed for a coal plant repurposing project.


Book
Mini Grids in Cambodia : A Case Study of a Success Story.
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Year: 2017 Publisher: Washington, D.C. : The World Bank,

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The Global Facility on Mini Grids of the Energy Sector Management Assistance Program (ESMAP) hired Castalia to study the regulation of mini grids in six jurisdictions in Sub-Saharan Africa and Asia (Kenya, Tanzania, and Nigeria; and Bangladesh, Cambodia, and the state of Uttar Pradesh in India). The study's objective is to understand what regulatory settings governments may adopt to scale up electrification through private development of mini grids, drawing on the experience of these six jurisdictions; provide technical assistance to four countries that want to further develop their mini grids framework; and disseminate findings and recommendations globally to inform successful mini grids regulation. The study focuses on mini grids defined as small, privately-owned and operated systems with generation of up to 10 megawatts (MW) capacity and a network that distributes power to several customers. The study includes small mini grids of less than 1 kilowatt (kW) capacity, also known as 'micro' or 'pico' grids. The six case studies are intended to be combined in one report. The report is to provide a cross-country comparison of these topics: it examines side by side how each of the countries studied have responded to a specific regulatory question, and presents a decision-tree approach to developing regulatory frameworks for mini grids. This case study is based on in-depth interviews with a number of key stakeholders in Cambodia, conducted during and after a research trip in August 2017. We supplemented the insights gained from these interviews with extensive background research. Several experts in the Cambodia context and mini grids more broadly reviewed this case study for accuracy and clarity, and we have incorporated their comments while retaining a neutral fact-based position.


Book
Compensation Devices to Support Grid Integration of Variable Renewable Energy
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Year: 2019 Publisher: Washington, D.C. : The World Bank,

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This technical guide is the second in a series of four technical guides on variable renewable energy (VRE) grid integration produced by the Energy Sector Management Assistance Program (ESMAP) of the World Bank and the Global Sustainable Electricity Partnership (GSEP). It focuses on the main functionalities, differences and benefits of various compensation devices that can be employed to increase system transfer capacity, system stability, power quality and flexibility to cope with increasing penetrations of renewables in the system. The applications of FACTS devices are associated with four essential technical enhancements of system capacity, system reliability, power quality and system controllability. The application of the FACTS devices for these enhancements would depend on the system needs which would be identified and recommended through the power system studies during the interconnection process. Power system studies are further elaborated in "STUDIES FOR GRID CONNECTION OF VARIABLE RENEWABLE ENERGY GENERATION PLANTS - Technical Guide 3".

Keywords

Power Generation

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