Episode

The fastest path to more power: How advanced conductors could unlock grid capacity without new transmission

Podcast
Interchange Recharged
Published
Sep 15, 2026
Duration seconds
2792
Processing state
not_requested
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Markdown
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Summary

The pressure on the power system is no longer theoretical. AI, data centers, electrification, and new industrial load are arriving faster than utilities can build generation and transmission through conventional timelines. One of the least glamorous but potentially most consequential answers to that problem is how to get more capacity out of the wires already in the ground and hanging overhead.  Host Sylvia Leyva Martinez is joined by JD Sitton and Theodore Paradise of CTC Global to examine why advanced conductors are moving from a niche grid technology to a mainstream tool for utilities under pressure to deliver speed, affordability, and reliability at the same time. They explain how replacing traditional steel-core conductors with carbon-core alternatives can sharply reduce sag, increase thermal performance, and in many cases double capacity on existing rights-of-way without rebuilding towers or waiting a decade for a new line. The conversation explores why that matters now. As Theodore argues, the grid was already under strain before AI accelerated the problem, with aging generation, load growth from electrification, and mounting congestion already testing the system. What changes in this moment is the pace. A reconductoring project can be completed in roughly 18 months, compared with five to seven years for a rebuild and 10 to 15 years for a new parallel line. JD and Theodore make the case that this speed advantage is not just about meeting data-center demand. It is also about cutting costs, easing permitting friction, reducing community opposition to new infrastructure, and improving safety by lowering the risk of heat-driven sag and vegetation contact.  Crucially, the episode asks what reliability should mean in a grid era defined by bigger load swings,…