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August 1, 2019IEEE Transactions on Industrial Informatics81 citationsOpen Access

A Dynamic Analysis of Energy Storage With Renewable and Diesel Generation Using Volterra Equations

DSDenis SidorovIMIldar MuftahovNTNikita Tomin

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Abstract

Energy storage systems will play a key role in the power system of the 21st century considering the large penetrations of variable renewable energy, growth in transport electrification, and decentralization of heating loads. Therefore, reliable real-time methods to optimize energy storage, demand response, and generation are vital for power system operations. This article presents a concise review of battery energy storage and an example of battery modeling for renewable energy applications and details an adaptive approach to solve this load leveling problem with storage. A dynamic evolutionary model based on the first-kind Volterra integral equation is used in both cases. A direct regularized numerical method is employed to find the least-cost dispatch of the battery in terms of the integral equation solution. Validation on real data shows that the proposed evolutionary Volterra model effectively generalizes a conventional discrete integral model taking into account both the state of health and the availability of generation/storage.

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Sidorov et al. (2019) studied this question.

synapsesocial.com/papers/6a1ff0ae7110a651dc04bc07https://doi.org/10.1109/tii.2019.2932453
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