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Rhode Island's Renewable Energy Standard (RES), established in June 2004, requires the state's retail electricity providers -- including non-regulated power producers and distribution companies -- to supply 100% of their retail electricity sales from renewable resources by 2033.
Rhode Island has an ambitious statewide goal of 100% renewable electricity by 2033.
The power obtained at the receiving end of a transmission line is generally less than the sending end power due to losses in the line resistance. The ratio of receiving end power to the sending end power of a transmission line is known as the transmission efficiency of the line.
1-2% of energy is lost during the step-up transformer from when the electricity is generated to when it is transmitted. 1-2% of energy is lost during the step-down of the transform from the transmission line to distribution.
The U.S. Energy Information Administration (EIA) estimates that annual electricity transmission and distribution (T&D) losses averaged about 5% of the electricity transmitted and distributed in the United States in 2018 through 2022. EIA has estimates for total annual T&D losses in the State Electricity Profiles.
Typical voltages for long distance transmission are in the range of 155,000 to 765,000 volts in order to reduce line losses. A typical maximum transmission distance is about 300 miles (483 km).
The New England Clean Energy Connect (NECEC) is a proposed transmission line capable of delivering up to 1,200 megawatts (MW) of renewable energy from Quebec to New England.
Overhead AC transmission lines share one characteristic; they carry 3-phase current. The voltages vary ing to the particular grid system they belong to. Transmission voltages vary from 69 kv up to 765 kv.