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Nevada utility regulators cleared the way earlier this month for NV Energy to develop two performance-based credit programs for distributed energy resources that provide energy or capacity services during load flexibility events.

Under the Energy Grid Services and Capacity Grid Services riders, customer-sited resources would be eligible to receive payments for dispatched energy based on hourly market pricing in NV Energy territory and for load reduction based on an avoided cost of generation and transmission calculation, the Public Utilities Commission of Nevada said in an Aug. 11 order.

But by limiting participation of third-party resource aggregators, the commission “misses an opportunity to establish a broader market that could have expanded customer choice, encouraged innovation, and helped lower energy costs,” one of the intervenors in the proceeding said earlier this month.

Read more in Utility Dive here.

Californians could soon put solar panel kits on balconies and in backyards to lower their electric bills — without utility approval.

On Wednesday, state lawmakers passed the Plug and Play Solar Act (Senate Bill 868) to legalize balcony solar, a form of DIY clean energy that’s taken off in Germany. The bill, which garnered bipartisan support, now heads to the desk of Democratic Gov. Gavin Newsom. His office declined to say if he’ll sign or veto it within the 30-day deadline; if he does neither, it would still become law and take effect Jan. 1, 2027.

Read more in Canary Media here.

Researchers in the US have developed a new electric plasma heating method that could significantly speed up the production of cement and at the same time slash its reliance on fossil fuels.

The technique was developed by Qi Zheng, PhD, and Yi Cui, PhD, from Stanford University, along with Paulo Monteiro, PhD, a civil engineering researcher at UC Berkeley. It uses plasma heated above 4,352 degrees Fahrenheit (2,400 degrees Celsius) to directly heat the raw materials used to make cement.

Read more in Interesting Engineering here.

Across major farming regions, crop conditions are shifting quickly as rainfall and temperature patterns become more uneven. Too much rain is creating problems in some places, while others are dealing with persistent dryness.

>>>READ: Natural Biopesticides Could Help Farmers Avoid Residue Limits and Reduce Food Waste

One factor shaping that volatility is the strengthening El Niño, a periodic warming of the tropical Pacific that can alter weather patterns around the world. The World Meteorological Organization expects the current event to intensify through August-October, overlapping with important stages of crop development in several major producing regions.

The crop picture is already diverging sharply. Southern Brazil is dealing with excessive rainfall, while parts of India remain unusually dry.

Knowing El Niño is present still leaves the agricultural question unanswered: what does it mean for a wheat crop in Paraná or a maize field in northeast India at this point in the season? Answering that requires following the crop as conditions change.

July showed how quickly that picture can move. Canadian crops held up through hotter, drier weather, rain improved Argentina’s wheat outlook, and European corn deteriorated during flowering, all within a few weeks.

Weather and crop forecasting have always been closely linked. As weather patterns become more volatile, that relationship is getting tighter and faster. Increasingly, the challenge is knowing which indicator matters at a particular point in the season and what it is actually saying about the crop.

The Signal Changes as the Season Moves

Rainfall is an obvious place to start. It is also easy to misread in isolation. Which signal matters shifts as a crop moves through its own calendar, and the Canadian Prairies show why. 

The region dried out in July and soil moisture fell, yet crop conditions remained strong, helped by heavy rain in May and June that had already built moisture reserves. By late July, Reuters reported that Prairie crops were in their best mid-season condition in about a decade, based on EarthDaily’s analysis of satellite and agronomic data. A rainfall deficit in July carried a very different implication than it would have after a dry spring.

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As crops move through flowering and grain filling, when kernels are developing and gaining weight, temperature and short periods of moisture stress become more important. Later, excessive rainfall can raise disease pressure, delay fieldwork or affect grain quality even when vegetation still looks healthy.

Southern Brazil illustrates that last point. The region remained wet through July, with moisture increasing further in Paraná. For wheat, the question now is how long that pattern persists as the crop develops.

A national map showing where rainfall is above or below normal may tell us where to pay attention. Soil moisture, vegetation condition and crop stage help tell us whether the weather is beginning to matter.

In Western Australia, rainfall is beginning to resemble 2023, when yields were poor, although vegetation remains considerably stronger than it was at the same stage that year.

Crop Forecasting Is a Continuously Updated Process

Crop forecasting already draws on weather forecasts, field observations, crop models and official reporting. Satellite observations, automated analysis and increasingly capable AI systems are making it easier to update that picture between formal assessments, tracking rainfall, soil moisture and vegetation performance as conditions change.

Australia also showed how quickly the picture can reverse. In June, the country’s last remaining weak spot, northern New South Wales, was recovering quickly, with satellite measurements of vegetation greenness, commonly known as NDVI, pointing to a strong turnaround. By July, that favorable read had given way to a drier, more uncertain national outlook. 

>>>READ: End the Penalty on Prescribed Burns

U.S. spring wheat followed a similar back-and-forth: weaker satellite vegetation readings concentrated in eastern North Dakota in June gave way to a brief improvement, before weakening again in the same area by July. A seasonal outlook may remain valid through those changes. The crop picture underneath it keeps moving.

Scale is part of the challenge. During an event such as El Niño, several major producing regions can change at once. Automation can narrow the search to places where rainfall, moisture or vegetation signals have moved materially, leaving analysts to determine what those changes mean for the crop.

The Right Indicator at the Right Time

Agriculture already has enormous volumes of weather, satellite and crop data. The opportunity now is to connect the pieces that matter at the point when they matter most. Consider India. By early August, national monsoon rainfall was below its historical average, but regional conditions varied sharply. Central India was slightly above average while deficits were much deeper elsewhere.

For maize and soybeans in those drier regions, the national number only goes so far. What matters is whether the shortfall overlaps with the crop areas and development stages where another dry spell could begin to affect performance.

The task is to connect those signals quickly enough to keep pace with the crop. That has implications well beyond yield forecasting. Grain quality, harvest timing and regional availability can change before final production numbers do. Commodity buyers, feed markets, insurers and food-security planners are making decisions while the season is still unfolding. Earlier visibility gives them more room to respond.

That calls for a different approach to agricultural monitoring. Seasonal outlooks are the starting point. Farmers and agribusinesses need crop-condition information that can be updated as the season changes, while policymakers need monitoring systems that bring weather, satellite and field observations together quickly enough to support crop assessments, drought response and food-security planning. For agricultural technology, the priority should be making those signals consistent and usable across large areas, rather than simply adding more data.

El Niño can significantly reshape weather across major agricultural regions, but it rarely acts alone. The Indian Ocean Dipole, another ocean pattern that can shift rainfall across countries around the Indian Ocean, can reinforce or offset El Niño, as can shorter-term weather systems. That is why crop impacts have to be assessed through the conditions developing in each region rather than attributed to El Niño alone.

The next two months will make that especially important. WMO expects El Niño to strengthen through August-October, favoring drier conditions over the Indian subcontinent and southern and eastern Australia, with wetter conditions across parts of southeastern South America.

The global warning is already there. The job now is to see where those weather shifts begin to change crop performance, while there is still time to act.

Felippe Reis is a Crop Analyst at EarthDaily, where he supports crop condition monitoring, yield analysis, and market-relevant agricultural insights.

Europe’s devastating wildfires have brought to light the consequences of neglecting a sound wildfire prevention playbook. From the UK to France to Italy, Europe is in flames, having recorded one of its worst years on record amid rising temperatures and parched conditions.

>>>READ: We Know How to Reduce Wildfire Risk. Policy Is Standing in the Way 

A study published this month in the journal Global Change Biology found that if no action is taken to counter this threat, Europe could see a 39 percent increase in land burned by wildfires each year by the end of the century. 

The problem isn’t just limited to the Mediterranean region, a traditional “hotspot” for wildfire activity. Areas that historically weren’t considered vulnerable—such as the Alps in south-central Europe and the Northern and Atlantic regions—are emerging as future hotspots. In eastern parts of Belgium, a country unaccustomed to major fires, a fire broke out on August 14, shattering records to become the ‘fire of the century.’ It took a week for firefighters to contain the blaze.

Europe’s ongoing wildfires underscore the need for more effective prevention measures. Instead of reacting after a fire breaks out, public agencies and utility providers must detect dangerous fires before they ignite.

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This is where companies like Boston-based Overstory are trying to make a difference. 

Overstory’s unique proposition lies in its ability to assess wildfire risk before fires have a chance to spread. To do this, Overstory leverages its AI-powered platform to flag potentially hazardous vegetation like fall-in trees near critical infrastructure, such as power lines. High-risk areas are identified via a combination of satellite and aerial data, AI-based fuel detection models, and historical and local weather trends. This real-time data is relayed to utilities to ensure responsible parties can develop targeted prevention plans aimed at reducing the risk. For instance, a dangerous tree or patch of brush identified via satellite imagery is cleared before the vegetation poses a threat to the neighboring community, potentially saving utility companies millions in wildfire-related damages and vegetation management costs (the latter is typically a significant operating expense for utilities). 

Overstory serves six of the ten largest utility providers in North America, including Pacific Gas and Electric and AEP Texas. The company has raised $69 million to date, boosted by a highly successful Series B funding round in November 2025.

>>>READ: America’s Wildfire Economics Are Backward

Unless serious steps are taken to mitigate wildfire risks, Europe will continue to experience more frequent and intense wildfires. The continent is the fastest-warming on the planet—a combination of its geographic proximity to the Arctic, cleaner air that traps less light-reflecting aerosols, and receding snow cover that exposes more barren land and soil to the sun, among other factors. Europe’s unique summer from hell has shown that investment in innovative wildfire prevention will be key to containing and controlling future infernos—not just in Europe, but around the world.

An escalating trade war between the United States and Canada is once again threatening to ensnare the electric power sector at a time when consumers are already stretched thin.

Canada is expected to announce retaliatory tariffs on U.S. goods Tuesday after President Donald Trump’s 50% tariffs on about $20 billion in Canadian goods went into effect over the weekend, with threats of more on the way.

On Monday, Ontario Premier Doug Ford told the Associated Press that “everything is on the table,” including halting the province’s critical minerals and electricity exports entirely. The BBC reported Ford said he and Canadian Prime Minister Mark Carney discussed a 25% tariff on electricity to the U.S.

Read more in Utility Dive here.

The Department of Energy’s (DOE’s) National Reactor Innovation Center (NRIC) has selected 13 new projects across 12 companies for its Nuclear Energy Launch Pad initiative in a significant expansion of the DOE-authorization pathway that channels advanced reactor and fuel-cycle developers toward demonstration on federal and non-federal sites.

The selections—spanning microreactor developers, enrichment startups, fuel fabrication firms, and isotope producers—add the first major round since NRIC opened the program to broader industry applications in late April and set a July 8 deadline for its initial competitive round.

Read more in POWER Magazine here.

Smaller municipal utilities like Silicon Valley Power are getting squeezed by the artificial intelligence build-out. Although Silicon Valley Power is working on doubling its capacity, the utility can’t keep up with rising demand from its customers, such as Nvidia and Intel, that want more immediately.

“All the spare capacity we may have had in the past has all been spoken for,” said Nicolas Procos, the utility director at Silicon Valley Power. “So now you’re talking about building out the system, or coming up with those creative solutions.”

As one of those solutions, Silicon Valley Power recently enlisted a two-year-old start-up called Emerald AI. Using its proprietary software, Emerald helps data centers be more flexible in their power consumption based on input from utilities.

Read more in the New York Times here.

Microsoft and PowerHouse Hillwood Holding are in disputes over agreements laying out terms and requirements for serving their planned data centers in Wisconsin and Illinois, according to filings at the Federal Energy Regulatory Commission.

The disagreements come after FERC in mid-June found that grid operators’ rules for interconnecting large loads may be inadequate.

In its “show cause” orders issued to the grid operators, FERC detailed five issues it wants regional transmission organizations and independent system operators to address in their large load interconnection rules, including the prevention of cost shifts and transparency into transmission costs. Earlier this month, FERC extended the deadlines the RTOs and ISOs had for responding to the show cause orders until mid-November.

Read more in Utility Dive here.

The US state of Utah has signed an deal with clean energy company Deployable Energy Limited to explore one megawatt (1 MW) nuclear reactors small enough to fit inside a standard 20-foot (6-meter) shipping container.

The Houston-based firm signed the memorandum of understanding (MoU) with the Utah Office of Energy Development (OED) on Tuesday, August 18. They will now explore the feasibility of deploying Unity Nuclear Batteries across the state.

Under the non-binding agreement, Deployable Energy Limited and Utah officials will cooperate and share information. The two sides will further explore potential opportunities for research, testing, demonstration, and commercial deployment of the technology.

Read more in Interesting Engineering here.

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