Saturday, 29 June 2019

Battery energy storage system market in APAC to grow at the highest CAGR

The battery energy storage systems are primarily used to reduce peak demand charges; integrate renewable source, regulate voltage, and frequency; and provide backup power supply. The battery energy storage system market was valued at USD 1.45 Billion in 2017 and is expected to reach USD 8.54 Billion by 2023, at a CAGR of 33.9% between 2018 and 2023.  The base year considered for the study is 2017, and the forecast period is between 2018 and 2023. The major factors driving the growth of the battery energy storage system market include the increasing demand for grid-connected solutions, high demand for the lithium-ion technology in the renewable energy industry, and declining prices of lithium-ion batteries.

The objective of the report is to provide a detailed analysis of the battery energy storage system market segmented on the basis of element, battery type, ownership, connection type, application, and geography. It also provides detailed information on the major factors influencing the growth of the battery energy storage system market.

APAC comprises China, Japan, India, South Korea, and the Rest of APAC (RoAPAC). APAC is gradually becoming a hub for the battery energy storage system industry. The demand for battery energy storage systems from China, India, and Japan is gradually increasing. The electricity demand in China is on rise due to the rapid population growth in the country. To fulfill the increasing demand from this population, the state-owned State Grid Corporation of China, the world’s largest utility, has deployed battery energy storage systems to provide ancillary services throughout its grid.

The major players operating in the battery energy storage system market are ABB (Switzerland), LG Chem (South Korea), NEC (Japan), Panasonic (Japan), Samsung SDI (South Korea), AEG Power Solutions (Netherlands), General Electric (US), Hitachi (Japan), Siemens (Germany), and Tesla (US).
The lithium-ion batteries have a long lifespan of 5–15 years, and up to 98% efficiency (i.e., only 2% of electrical charge is lost during use). The lithium-ion batteries have very high energy and power densities, which leads to lower weight with low standby losses, and high life expectancy. Lithium-ion batteries continue to hold a large size of the battery energy storage system market owing to its features such as high energy density, self-discharge capability, low maintenance requirement, less weight, and high life expectancy.

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