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Archive for the ‘solar power’ category: Page 136

Mar 16, 2016

Using machine learning to rationally design future electronics materials

Posted by in categories: computing, information science, materials, particle physics, robotics/AI, singularity, solar power, sustainability

Even if we don’t create a true AI for a thousand years, these algorithms, pared with our exponentially increasing computing power, could have much of the same effect on our civilization as the more traditional, AI-centric type Singularity. Very, very soon.


A schematic diagram of machine learning for materials discovery (credit: Chiho Kim, Ramprasad Lab, UConn)

Replacing inefficient experimentation, UConn researchers have used machine learning to systematically scan millions of theoretical compounds for qualities that would make better materials for solar cells, fibers, and computer chips.

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Mar 15, 2016

U.S. set to smash solar power records this year

Posted by in categories: solar power, sustainability

The U.S. solar market is expected to grow 120% this year with 16GW of new solar power, more than double the record-breaking 7.3GW installed in 2015.

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Mar 14, 2016

Solar micro-grids launched in three remote villages

Posted by in categories: business, solar power, sustainability

The three solar micro-grids, with combined capacity of 35 kilowatts, were installed in the communities of Harkapur in Okhaldhunga district, and Kaduwa and Chyasmitar in Khotang District, as per a statement issued today. They will provide a 24-hour reliable electricity supply to around 540 people in 83 households and 25 local businesses.

“Nearly a quarter of Nepal’s population has no access to electricity and rely heavily instead on kerosene in particular. Since most of them live in remote areas, there is little possibility of connecting to the national power grid in the near future,” said Jiwan Acharya, senior energy specialist at the Asian Development Bank (ADB). “The solar micro-grids that we are piloting here provide a clean, cost-effective, local solution involving private sector that will change the lives of these communities and serve as a model for other far-flung villages.”

Electricity costs for households are forecast at $4 to $6 per month. Currently households relying on kerosene for lighting alone, can pay up to $10 a month. And by using solar power rather than fossil fuels, the project will avoid 41 tonnes of carbon dioxide emissions every year.

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Mar 12, 2016

Solar Plane Undertakes Test Flight Over Hawaii

Posted by in categories: solar power, sustainability, transportation

The future of aviation? A completely solar-powered plane is trying fly around the world. http://voc.tv/14JQHoo

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Mar 11, 2016

Solar energy rolls out like a carpet with groundbreaking Roll-Array photovoltaics

Posted by in categories: solar power, sustainability, transportation

The Roll-Array is easily towable by a standard 4×4 vehicle such as a Land Rover. When connected to the back of the car, the flexible solar panels are pulled out of a spool and create ground cover in a matter of minutes. On their website, Renovagen claims the panels will be able generate up to 100kWp – 10 times more power than other transportable solar panels on the market today.

solar power, solar energy, alternative energy, solar panels on a roll, rollable solar panels, Roll-array, rollarray, Renovagen, John Hingley, flexible solar panels, pv array, photovoltaic, photovoltaic panels, rolling solar panels

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Mar 9, 2016

GE wants to use CO2 pollution to make huge solar batteries

Posted by in categories: habitats, solar power, sustainability

Two big problems have been vexing environmental scientists for decades: How to store solar energy for later use, and what to do with CO2 that’s been captured and sequestered from coal plants? Scientists from General Electric (GE) could solve both those problems at once by using CO2 as a giant “battery” to hold excess energy. The idea is to use solar power from mirrors to heat salt with a concentrated mirror array like the one at the Ivanpah solar plant in California. Meanwhile, CO2 stored underground from, say, a coal plant is cooled to a solid dry ice state using excess grid power.

When extra electricity is needed at peak times, especially after the sun goes down, the heated salt can be tapped to warm up the solid CO2 to a “supercritical” state between a gas and solid. It’s then funneled into purpose built turbines (from GE, naturally) which can rapidly generate power. The final “sunrotor” design (a prototype is shown below) would be able to generate enough energy to power 100,000 homes, according to GE.

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Mar 8, 2016

Windows Could Soon Power the Entire Building

Posted by in categories: habitats, materials, particle physics, quantum physics, solar power, sustainability

Q-Dots windows to power homes and other buildings.


Researchers at the Los Alamos National Lab may have found a way to take quantum dots and put them in your ordinary windows to turn them into solar collectors.

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Mar 2, 2016

MIT creates solar cell from grass clippings

Posted by in categories: solar power, sustainability

A researcher at MIT has created solar panels from agricultural waste such as cut grass and dead leaves. In a few years, it’ll be possible to stir some grass clippings into a bag of cheap chemicals, paint the mixture on your roof, and immediately start producing electricity.

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Feb 29, 2016

IS hacks UK solar firm site in revenge

Posted by in categories: cybercrime/malcode, solar power

I always caution folks to never say “never” especially around hacking and worst case scenarios relating to security. Granted there is a balance around not going too overboard. However, when it comes to being risk adverse and determining how much risk your company can absorb must be a core piece of your assessment. And, an attack like the one by ISIS in this article can not be allowed.

https://lnkd.in/b-_mdNW


LONDON: ISIS terrorists hacked the website of a UK-based solar firm as revenge for the killing of one of their British Muslim members, a media report said on Sunday.

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Feb 26, 2016

Artificial control of exciplexes opens possibilities for new electronics

Posted by in categories: computing, electronics, materials, solar power, sustainability

Demonstrating a strategy that could form the basis for a new class of electronic devices with uniquely tunable properties, researchers at Kyushu University were able to widely vary the emission color and efficiency of organic light-emitting diodes based on exciplexes simply by changing the distance between key molecules in the devices by a few nanometers.

This new way to control electrical properties by slightly changing the device thickness instead of the materials could lead to new kinds of organic electronic devices with switching behavior or that reacts to external factors.

Organic such as OLEDs and organic solar cells use thin films of for the electrically active materials, making flexible and low-cost devices possible.

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