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Effects of Deep Reductions in Energy Storage Costs on Highly Reliable Wind and Solar Electricity Systems

机译:深度减少在高度可靠的风电系统上储能成本的影响

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摘要

We use 36 years (1980–2015) of hourly weather data over the contiguous United States (CONUS) to assess the impact of low-cost energy storage on highly reliable electricity systems that use only variable renewable energy (VRE; wind and solar photovoltaics). Even assuming perfect transmission of wind and solar generation aggregated over CONUS, energy storage costs would need to decrease several hundred-fold from current costs (to ∼$1/kWh) in fully VRE electricity systems to yield highly reliable electricity without extensive curtailment of VRE generation. The role of energy storage changes from high-cost storage competing with curtailment to fill short-term gaps between VRE generation and hourly demand to near-free storage serving as seasonal storage for VRE resources. Energy storage faces “double penalties” in VRE/storage systems: with increasing capacity, (1) the additional storage is used less frequently and (2) hourly electricity costs would become less volatile, thus reducing price arbitrage opportunities for the additional storage.
机译:我们使用36岁(1980-2015)的每小时天气数据在连续的美国(圆锥)上,评估低成本的能量存储对仅使用可变可再生能源的高可靠性电力系统的影响(VRE;风和太阳能光伏) 。甚至假设通过康群的风和太阳能产生的完美传输,能量存储成本需要从完全VE电力系统中从当前成本(到〜1 /千瓦时)减少几百倍,以产生高度可靠的电力,而无需广泛地削减VRE生成。能量存储的作用变化从缩减的高成本存储竞争,以填补VRE生成和每小时需求之间的短期间隙,以便为VRE资源为季节性存储而填补免费存储。 VRE /存储系统中的能量存储面向“双重惩罚”:随着容量的增加,(1)额外的存储器较少使用,(2)小时电力成本会变得不那么稳定,从而减少额外存储的价格套利机会。

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