Last week, Hurricane Ida knocked out all 8 transmission lines into New Orleans. In Baton Rouge, it took out our communications along with our electricity — with the exception of those who had Verizon. Although most of Baton Rouge is getting back online, New Orleans as well as smaller towns and cities still don’t have power.
Someone shared an article by Canary Media with me, and after reading it, I fully agree. We need microgrids here in Louisiana, yet our leaders don’t seem to want them. Advocates have been trying for years to make our local grid resilient, but oddly, our leaders don’t seem to want that. Why?
This isn’t the first time I’ve seen governments (local, state, etc.) purposely refuse to do things that benefit everyone. It’s like they want us to have messed up grids so that we suffer during disasters. The article cited another article by Canary Media that showed the outcome following local authorities’ repeated dismissals of proposals to invest in decentralized and resilient grid upgrades.
In 2016, a New Orleans-based nonprofit, Alliance for Affordable Energy, had a great alternative to Entergy New Orleans’ plan to build a new natural-gas-fired power plant. That idea was to build clean electricity resilience from the ground up — an integrated resilience plan that challenged Entergy New Orleans to try to find an alternative to a central power plant. The plant would be subject to known vulnerabilities — such as the impact of a category 4 hurricane.
The Alliance for Affordable Energy called for pursuing distributed microgrids. The article aptly described these as self-powered islands of solar power, batteries, and backup generation that could provide electricity during grid outages. If only we had these during Ida. Executive director Logan Atkinson Burke shared how this was frustrating. “Had we taken the time and initiative to plan for distributed generation, distributed solar-plus-storage, and more energy efficiency, people would be more prepared to shelter safely and comfortably,” Burke said. “We’ve been advocating for microgrids to be built within the city for years for precisely this reason.”
Here’s Why Entergy Doesn’t Want Distributed Energy
The problem is Entergy’s long-standing opposition to distributed energy. The utility has consistently opposed including local renewable energy and energy storage in its own plans. Utilities also get an incentive when they convince regulators to approve large power plants instead of enabling customer-sited distributed energy such as rooftop solar. The article pointed out that vertically integrated utilities such as Entergy are paid a guaranteed rate of return on capital investments, including power plants. Self-supplied customer energy reduces the revenue and profits Entergy and other utilities earn from selling electricity.
It’s all about money, profits, and greed. They make more money from weakening our defenses against disasters such as Ida than they would from strengthening them. And we, the people, end up paying the price. And our government readily caters to this greed. Not just Louisiana’s — this trend is seen elsewhere as well.
Car dealerships in Connecticut, for example, lobby legislatures to prevent Tesla and Rivian from coming to their state and opening a sales center. This hurts the economy, but they do it anyway. It’s all about greed, money, and profits.
National Grid Renewables has broken ground on its 100 MW Apple River Solar Project in Polk County, Wisconsin.
The Wisconsin solar farm, which will use US-made First Solar Series 6 Plus bifacial modules, will be constructed by The Boldt Company, creating 150 construction and service jobs. Apple River Solar will generate over $36 million in direct economic benefits over its first 20 years.
Once it comes online in late 2025, Apple River Solar will supply clean energy to Xcel Energy, which serves customers throughout the Upper Midwest. According to National Grid Renewables, the solar farm will generate enough energy to power around 26,000 homes annually. It will also offset about 129,900 metric tons of carbon dioxide emissions each year – equivalent to taking 30,900 cars off the road.
“We are excited to see this project begin as it underscores our dedication to delivering clean, reliable and affordable energy to our customers,” said Karl Hoesly, President, Xcel Energy-Wisconsin and Michigan. “This project is an important step in those goals while bringing significant economic benefits to Polk County and the local townships.”
Electrekreported in February that Xcel Energy, Minnesota’s largest utility, expects to cut more than 80% – and possibly up to 88% – of its emissions by 2030, putting it on track to hit Minnesota’s goal of net zero by 2040. It also says it’s on track to achieve its clean energy goals for all the Upper Midwest states it serves – Minnesota, Wisconsin, North Dakota, South Dakota, and Michigan.
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Tesla has announced that it will finally deliver 500 kW charging as it is about to install its long-awaited V4 Supercharger cabinets.
The rollout of Supercharger V4 has been a strange one, to say the least.
Tesla has been deploying the new charging stations for two years and calling them “Supercharger V4”, but it has only been deploying the charging stalls.
Supercharger stations are made of two main parts: the stalls, which are where the charging cable is located, and the cabinets, which are generally located further back and include all the power electronics.
For all these new “Supercharger V4”, Tesla was actually using Supercharger V3 cabinets. This has been limiting the power output of the charging stations to 250 kW – although
Today, Tesla officially announced its “V4 Cabinet”, which the automaker claims will enable of “delivering up to 500kW for cars and 1.2MW for Semi.”
Here are the main features of the V4 Cabinet as per Tesla:
Faster charging: Supports 400V-1000V vehicle architectures, including 30% faster charging for Cybertruck. S3XY vehicles enjoy 250kW charge rates they already experience on V3 Cabinet — charging up to 200 miles in 15 minutes.
Faster deployments: V4 Cabinet powers 8 posts, 2X the stalls per cabinet. Lower footprint and complexity = more sites coming online faster.
Next-generation hardware: Cutting-edge power electronics designed to be the most reliable on the planet, with 3X power density enabling higher throughput with lower costs.
Tesla reports that its first sites with the new V4 Cabinets are going into permitting now. The company expects its first sites to open next year.
We recently reported about Tesla’s new Oasis Supercharger project, which includes larger solar arrays and battery packs to operate the charging station mostly off-grid.
Early in the deployment of the Supercharger network, Tesla promised to add solar arrays and batteries to all Supercharger stations, and Musk even said that most stations would be able to operate off-grid.
While Tesla did add solar and batteries to a few stations, the vast majority of them don’t have their own power system or have only minimal solar canopies.
Back in 2016, I asked Musk about this, and he said that it would now happen as Tesla had the “pieces now in place” with Supercharger V3, Powerpack V2, and SolarCity:
It took about 8 years, but it sounds like the pieces are now getting actually in place with Supercharger V4, Megapacks, and this new Oasis project.
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Hyundai has a new secret weapon it’s about ready to unleash. To revamp the brand in China and counter BYD’s surge, Hyundai is launching a new AI-powered EV next year. The new model will be Hyundai’s first dedicated electric car for the world’s largest EV market.
With the help of Haomo, a Chinese autonomous startup, Hyundai will launch its first EV equipped with generative AI. It will also be its first model designed specifically for China.
A Hyundai Motor official said (via The Korea Herald) the company is “working to load the software” onto the new EV model, “which will be released in the Chinese market next year.” The spokesperson added, “The level of autonomous driving is somewhere between 2 and 2.5.”
In comparison, Tesla’s Autopilot is considered a level 2 advanced driver assistance system (ADAS) on the SAE scale (0 to 5), meaning it offers limited hands-free features.
With Autopilot, you still have to keep your eyes on the road and hands on the steering wheel, or the system will notify you and eventually disengage.
Haomo’s system, DriveGPT, unveiled last spring, takes inspiration from the OpenAI’s popular ChatGPT.
The system can continuously update in real-time to optimize decision-making by absorbing traffic data patterns. According to Haomo, DriveGPT is used in around 20 models as it looks to play a bigger role in China.
Hyundai hopes new AI-powered EV boosts sales in China
Electric vehicle sales continue surging in China. According to Rho Motion, China set another EV sales record last month with 1.2 million units sold, up 50% from October 2023.
Over 8.4 million EVs were sold in China in the first ten months of 2024, a notable 38% increase from last year.
BYD continues to dominate its home market. According to Autovista24, BYD accounted for 32.9% of all PHEV and EV (NEV) sales in China through September, with over half of the top 20 best-selling EV models.
Tesla was second with a 6.5% share of the market, but keep in mind these numbers only include plug-in models (PHEV).
Like most foreign automakers, Hyundai is struggling to keep up with the influx of low-cost electric models in China. Beijing Hyundai’s sales have been slipping since 2017. Through September, Korean automaker’s share of the Chinese market fell to just 1.2%.
According to local reports, Hyundai is partnering with other local tech companies like Thundersoft, a smart cockpit provider, and others in China to power up its next-gen EVs
With its first AI-powered EV launching next year, Hyundai hopes to turn things around in the region quickly. The new model will be one of five to launch in China through 2026.
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