Storlytics is a powerful software for modeling battery energy storage systems. It allows users to design, size, and optimize grid-tied battery systems by offering a user-friendly interface to deduce power and energy capacity requirements for different energy storage grid applications "use-cases". It also allows users to accurately model power flow, battery losses, round trip efficiency, and predict degradation curves of defined energy storage systems leveraging a wide variety of inverter and battery models. Storlytics can import user-defined and benchmark ESS profiles to deduce the actual performance of planned grid-tied and renewable energy projects.
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In this video we will discuss various Battery Energy Storage System (BESS) Augmentation types, and how you can leverage Storlytics to optimize your augmentation schedule. The video only delves into AC augmentation only and assumes that users have seen our previous videos for sizing BESS using Storlytics. If not, please do check out our earlier videos like this one • How to Model a Grid Tied Battery Proj...
Timestamps
0:00 - Overbuild or Augmentation?
1:24 - DC and AC augmentation
3:25 - Augmentation Project Intro
4:30 - Augmentation Phase Planning
6:28 - Final Project Schedule
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