Distributed generation refers to a variety of technologies that generate electricity at or near where it will be used, such as solar panels and combined heat and power. Distributed generation may serve a single structure, such as a home or business, or it may be part of a microgrid (a smaller grid that is also tied into the larger electricity delivery system), such as at a major industrial facility, a military base, or a large college campus. When connected to the electric utility’s lower voltage distribution lines, distributed generation can help support delivery of clean, reliable power to additional customers and reduce electricity losses along transmission and distribution lines.
About Distributed Generation
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In the residential sector, common distributed generation systems include:
Generating technologies. For example, federal loan guarantees can turn nuclear power from a high cost technology to a relatively low cost option.! The natural gas-fired combined cycle power plant, the most commonly built type of large natural gas plant, is a competitive generating technology under a wide variety of assumptions for fuel. On-site Power and the New Energy Mix are going to be key parts of the content at POWERGEN International happening December 8-10 in Orlando. The 8-MW Marina CHP generation facility provides.
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In the commercial and industrial sectors, distributed generation can include resources such as:
Distributed Generation in the United States
The United States has more than 12 million distributed generation units, which is about one-sixth of the capacity of the nation’s existing centralized power plants.[1] Use of distributed generation has increased for a variety of reasons, including:
Distributed generation systems are subject to a different mix of local, state, and federal policies, regulations, and markets compared with centralized generation. What were the key discoveries that generated the scientific revolution book. As policies and incentives vary widely from one place to another, the financial attractiveness of a distributed generation project also varies.
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As electric utilities integrate information and communications technologies to modernize electricity delivery systems, there may be opportunities to reliably and cost-effectively increase the use of distributed generation.
![]() Environmental Impacts of Distributed Generation
Distributed generation can benefit the environment if its use reduces the amount of electricity that must be generated at centralized power plants, in turn can reduce the environmental impacts of centralized generation. Specifically:
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However, distributed generation can also lead to negative environmental impacts:
Distributed energy technologies may cause some negative environmental issues at the end of their useful life when they are replaced or removed.
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[1] Distributed generation estimated at about 200 gigawatts in a 2007 study by the Federal Energy Regulatory Commission (FERC). The total nameplate capacity of U.S. centralized power plants was more than 1,100 gigawatts as of 2012, according to the U.S. Energy Information Administration.
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