<?xml version="1.0" encoding="UTF-8"?><oembed><type>video</type><version>1.0</version><html>&lt;iframe src=&quot;https://www.loom.com/embed/c20523e3ac9b42e19d1a614865ce3fea&quot; frameborder=&quot;0&quot; width=&quot;3342&quot; height=&quot;2506&quot; webkitallowfullscreen mozallowfullscreen allowfullscreen&gt;&lt;/iframe&gt;</html><height>2506</height><width>3342</width><provider_name>Loom</provider_name><provider_url>https://www.loom.com</provider_url><thumbnail_height>2506</thumbnail_height><thumbnail_width>3342</thumbnail_width><thumbnail_url>https://cdn.loom.com/sessions/thumbnails/c20523e3ac9b42e19d1a614865ce3fea-20b8adecdd8e35c2.gif</thumbnail_url><duration>437.015</duration><title>Designing a Bridging Microgrid for Cypress Ridge in EASI</title><description>This Loom demonstrates how to use EASY to design a bridging power microgrid for the Cypress Ridge development in Texas. The developer targets about 1 MW of grid capacity, but interconnection is expected to take 3 to 5 years, so EASY models a four-year bridge period with grid availability starting January 1 and a $100,000 cost of delay. The load profile is uploaded, the project keeps defaults while requiring at least 50% renewable fraction, and it uses the Entergy GS utility rate shown in the demo. Results show performance across the bridge and grid-connected phases, hardware-focused costs, projected payback in about 4.1 years, and related financial metrics and assumptions.</description></oembed>