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No one https://helm-engine.org/tag/energy-consumption rejected infrastructure. “And then we live with low utilization and inefficiencies.” Build capability, not just capacity. New products and technologies are abundant.
These tools forecast demand, optimize resource utilization, and enhance grid efficiency. The R&D program focuses on communications and cybersecurity architectures, protocols, technologies and testing. Our work accelerates adoption of end-to-end systems that protect and manage the grid; unlock new business models, policies, and regulatory frameworks; and coalesce the energy community around a common vision of the grid and its needs.
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- Utilities must now serve rapid load growth, withstand escalating weather and wildfire risk, and do so while keeping electricity affordable.
- NLR examines how these resources can support grid reliability and become key players in orchestrating a more resilient grid.
- Increase transmission and distribution capacity.
- Designing regulatory frameworks that reward performance.
- For decades, the traditional response to demand growth has been to build more.
During SEPA’s Bridging Innovation Workshop at DTECH 2026, we brought together utilities and their technology providers to help answer that question through best practices and actionable insights. Increase transmission and distribution capacity. For decades, the traditional response to demand growth has been to build more. Utilities must build a future-ready grid, but doing so represents a meaningful shift for an industry historically built around long-term forecasts and incremental change. Transmission and distribution investments now represent the largest and fastest-growing share of utility expenditures.
Meet the editor: Bethany Bashioum joins Factor This Power Engineering
Grid Controls and Communications programs are focused on advancing system modeling and planning, improving situational awareness and supporting grid operations, and developing technologies for secure operations of the power systems. NLR studies contingency planning strategies to mitigate the impact of extreme events on grid operations. NLR develops advanced planning tools that model infrastructure systems across various spatial and temporal scales.
Designing regulatory frameworks that reward performance. Integrating data into a shared view. Aligning planning with operations. The next phase is not simply enrolling more devices.
- “And then we live with low utilization and inefficiencies.”
- The approach freed up more than 80 MW of capacity for 2026 and could make hundreds more megawatts available by 2029, without waiting years for traditional grid upgrades.
- And that shift – from building more to operating smarter – will define the future of the electric grid.
- Aligning planning with operations.
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- These tools forecast demand, optimize resource utilization, and enhance grid efficiency.
NLR explores the changing landscape of maintaining stability with more inverter-connected resources and fewer synchronous machines. The power grid faces myriad challenges, from severe weather to unexpected system failures. NLR examines how these resources can support grid reliability and become key players in orchestrating a more resilient grid. Explore how NLR uses Sienna on GitHub to revolutionize power grid management.
Not surprisingly, retail electricity prices increased roughly 23% nationwide between 2019 and 2024, according to a recent study from LBNL. Utilities must https://cognixpulse.com/articles/strategies-to-combat-global-warming/ now serve rapid load growth, withstand escalating weather and wildfire risk, and do so while keeping electricity affordable. Concurrently, load growth is front and center in major news outlets, regulatory proceedings, and throughout the industry. Climate risk is intensifying and the consequences of power outages are becoming more visible, more costly, and more disruptive.
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Addresses utility digitization, transmission and distribution system coordination, and mitigation of risks to grid stability and reliability through advanced analytics, including artificial intelligence, and systems engineering tool development. The Nation’s electric grid is a lifeline infrastructure, and the security of American’s lives are dependent on the safe and reliable delivery of electricity, but the future grid will be increasingly exposed to high-impact threats. On this episode of the This Week in Cleantech podcast, Tim McDonnell of Semafor discusses how solar has overtaken coal as China’s top power source for the first time, after a massive buildout. By bringing asset data, vegetation intelligence, weather analytics, and protection settings into a single operational view, utilities can make faster and more defensible decisions when conditions escalate. APS now operates more than 200 MW of aggregated capacity across more than 100,000 devices — thermostats, batteries, and EVs. If smarter utilization of existing capacity can delay capital investment, even temporarily, what does that mean for affordability?
At that scale, the portfolio can provide grid services that are comparable to a peaker power plant, except it is distributed and customer-owned. Improving grid utilization can help put https://geoniti.com/articles/strategies-for-carbon-capture-from-atmosphere/ downward pressure on rates. Participants did not frame the idea as opposition to infrastructure. “Do we really need to build the substation this year, or can we buy time by coordinating flexibility? The approach freed up more than 80 MW of capacity for 2026 and could make hundreds more megawatts available by 2029, without waiting years for traditional grid upgrades. Policy is driving, but grid operators need time to build the confidence and execute on all of this reliably.”
