SoftBank’s First Bet In Energy Storage Is A Startup That Stacks Concrete Blocks

on August 15, 2019
Quartz

SoftBank’s Vision Fund is investing $110 million in the Swiss startup Energy Vault, which stores energy in stacked concrete blocks. Quartz was the first to report on the startup when it came out of stealth mode last year.

Two things make this investment unprecedented. First, it’s an unusually large sum for a company that hasn’t even existed for two years or built a full-scale prototype. Second, by making an energy storage bet, the $100 billion SoftBank Vision Fund—which has invested in startups like Uber, Slack, WeWork, and Paytm—is signaling to the wider market that this area of technology is ripe for large investments.

So far, most investments in energy storage have gone to companies building lithium-ion batteries. They’re an attractive bet, because carmakers are willing to pay a premium for batteries that will help electric cars compete with their gas-powered cousins.

But the technology to store electricity doesn’t need to be as powerful as lithium-ion batteries. While companies like Tesla and Sonnen sell lithium-ion batteries for homes and, in larger packages, for the grid, Energy Vault’s bet is that its technology will prove to be cheaper. That’s because it uses low cost materials: cement and sand to make blocks, cranes to lift and drop the blocks, and reversible motors to convert electricity into potential energy and vice versa.

Energy Vault was founded in 2017, and it built its first energy-storage prototype in only nine months with less than $2 million. Now Akshay Naheta, a managing partner of SoftBank’s Vision Fund, believes the startup is ready for an injection of a large sum to deploy its technology around the world.

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Fractal Energy Storage ConsultantsSoftBank’s First Bet In Energy Storage Is A Startup That Stacks Concrete Blocks

Getting To 100% Renewables Requires Cheap Energy Storage. But How Cheap?

on August 12, 2019
Vox

One of the most heated and interesting debates in the energy world today has to do with how far the US can get on carbon-free renewable energy alone.

One faction believes that renewables can supply 100 percent of US energy, with sufficient help from cheap energy storage and savvy management of demand.

Another faction believes that renewables will ultimately fall short and need assistance from nuclear power and natural gas or biomass with carbon capture and storage.

This war is largely being waged behind the scenes in competing academic papers, but it is highly relevant to current events as a whole host of states and cities are passing laws targeting “100 percent clean energy.” Some, like Hawaii, specifically target 100 percent renewables. Some, like Washington state, target 100 percent “clean,” allowing room for non-renewable sources.

Which target is more realistic and prudent? Just how far can renewables get?

At the heart of the debate is the simple fact that the two biggest sources of renewable energy — wind and solar power — are “variable.” They come and go with the weather and time of day. They are not “dispatchable,” which means they cannot be turned on and off, or up and down, according to the grid’s needs. They don’t adjust to the grid; the grid adjusts to them.

That means a grid with lots of renewables needs lots of flexibility, lots of different ways of smoothing and balancing out the fluctuations in wind and solar. When people predict that renewables will fall short of 100 percent, what they are predicting is that we won’t be able to find enough flexibility to accommodate them (at least not fast enough). They will require “firming” by dispatchable, nonrenewable sources.

There are many sources of grid flexibility, but the one that seems to have the most potential and is laden with the highest hopes is energy storage. To a first approximation, the question of whether renewables will be able to get to 100 percent reduces to the question of whether storage will get cheap enough. With cheap-enough storage, we can add a ton of it to the grid and absorb just about any fluctuations.

But how cheap is cheap enough?

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Fractal Energy Storage ConsultantsGetting To 100% Renewables Requires Cheap Energy Storage. But How Cheap?

Texas Confirms Public Power’s Energy Storage Rights

on August 12, 2019
PV-Magazine

Texas is a unique place. Within a land that celebrates great individualism, they came together to build a multi-billion dollar power grid that now allows free market capitalism to batter down the price of electricity. An interesting mix of socialism and capitalism.

In a few weeks, municipal utilities and electric cooperatives in the state of Texas will have legal confirmation on their right to own energy storage facilities that sell energy or ancillary services, while not having to register as an energy generator. Current policy in the state, Sec. 35.152, defines energy storage as a generation asset, which requires owners to register as power generators.

The act, 86(R) SB 1012, adds the below language to the above Sec.35.152:

(d) Subsection (b) does not require a municipally owned utility or an electric cooperative that owns or operates electric energy storage equipment or facilities described by Subsection (a) to register as a power generation company under Section 39.351(a).

The amendment is applicable on September 1, 2019.

In Texas’ ERCOT region (which covers 90% of the electricity demand in the state), the investor-owned companies that own the power lines aren’t allowed to own generation assets, and electricity users can contract directly with generators. However, per Texas expert Joshua Rhodes, municipality owned electric utilities and energy cooperatives are allowed to own generation assets if they choose to, and some in fact do. Which means this legislation merely reminds, and codifies what was already known.

This is a reminder of how the State of Florida and residential solar lease companies also didn’t change the law in 2018 when state regulators ruled that Sunrun’s 20-year solar equipment lease not a retail sale of electricity.

Very recently, the first co-op owned energy storage project was begun, with Pedernales Electric Cooperative (PEC) signing a deal with Aggreko for a 2.25 MW/4.5 MWh battery. The system will provide grid services, as well time-shifting solar from a nearby facility.

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Fractal Energy Storage ConsultantsTexas Confirms Public Power’s Energy Storage Rights

Is Your Customer Considering Battery Storage? Answer These 4 Questions For Them

on August 12, 2019
Solar-Power-World

As solar power becomes increasingly popular, more homeowners are exploring how they can store more of the energy their solar panels generate with battery storage. In fact, the U.S. was the second biggest energy storage market last year and residential homes played a large role.

Dan Glaser, a senior sales engineer for Panasonic, says that a desire by homeowners to be more self-sufficient is driving the demand for energy storage.

“Some of the interest is from homeowners who want access to backup power during grid outages,” he says. “In other cases, people are interested in strategically using stored power, especially if they live in areas where they can’t put it back on the grid.”

An energy storage system, which is an on-site unit for storing energy generated by your solar panels, makes this possible. Glaser says that asking these key questions before you buy ensures you find the right system for your home and budget.

What components do you need for a proper battery storage system?

A standard battery storage system (also referred to as energy storage or solar storage systems) comprises batteries for storing the power and at least one inverter for converting the energy into a usable form. In some instances, there’s also a software component for monitoring energy usage remotely. Glaser notes that you can purchase one unit that includes all these components, often in conjunction with your solar panel purchase. Or you can buy a standalone system to retrofit an existing photovoltaic (PV) setup.

Whichever you decide, Glaser says this is not a DIY project. “The technology is complex enough that you want a professional installer who is familiar with how it works, and aware of local codes and regulations.”

AC or DC battery storage?

These terms — alternating current (AC) and direct current (DC) — refer to the direction the power flows. Solar panels produce DC electricity and that’s what most batteries store. However, your house and most of the appliances in it require AC power.

The system that works best for your home depends on whether you already have an existing solar power system. While an AC-coupled system requires two inverters and is often less efficient, if you have a pre-existing solar setup, then it’s the only option available.

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Fractal Energy Storage ConsultantsIs Your Customer Considering Battery Storage? Answer These 4 Questions For Them

Private Transmission Firm Sees $35B Energy Storage Potential In India

on August 8, 2019
oilprice-logo

One of the largest private Indian power transmission firms, Sterlite Power Grid Ventures Ltd, expects energy storage to open up US$35 billion worth of investment opportunities in India over the next ten years as India aims to boost its renewable capacity installations, Sterlite’s CEO Pratik Agarwal told Bloomberg in an interview published on Wednesday.

According to Agarwal, India’s central and state authorities are expected to launch tenders for energy storage capacity for several GW of capacity as soon as next year.

India has set a target to install 175 GW of renewable energy capacity by 2022, including 100 GW of solar capacity, 60 GW wind, 10 GW bio-power, and 5 GW from small hydro-power.

Earlier this year, a senior government official said that India was targeting an additional 500 GW of renewable energy for its grid by 2030, as it aims to cut dependence on coal and clean up the air.

Coal, however, will ‘still be king’ in India even in 2040, according to the BP Energy Outlook – 2019. India’s renewable energy consumption will surge by 2040, mostly thanks to the power sector and driven largely by increases in solar capacity.

“Yet despite this growth in renewables, coal continues to dominate India’s power generation mix, accounting for 80% of output by 2040,” BP says.

By 2040, coal will still represent 58 percent of India’s power generation mix.

Yet, India’s energy storage is set to grow together with renewable capacity in order to ensure integration with the grid.

Related: Oil Prices Slide On Surprise Crude Build

A recent report from India’s Central Electricity Authority forecasts that India will have 34 GW/136 GWh of battery energy storage installed by 2029-2030.

India will be one of the energy storage installation hotspots globally over the next two decades, the latest report on new energies by BloombergNEF (BNEF) showed last month.

Geographically, South Korea is the current market leader, but it will soon cede the crown to China and the United States, which will be the two major energy storage markets two decades from now. India, Germany, Latin America, Southeast Asia, France, Australia, and the UK will be the other major energy storage installation hotspots, according to BNEF.

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Fractal Energy Storage ConsultantsPrivate Transmission Firm Sees $35B Energy Storage Potential In India

How Much Energy Storage Costs Must Fall To Reach Renewable Energy’s Full Potential

on August 8, 2019

The cost of energy storage will be critical in determining how much renewable energy can contribute to the decarbonization of electricity. But how far must energy storage costs fall? In a study published August 7 in the journal Joule, MIT researchers answer this question. They quantify cost targets for storage technologies to enable solar and wind energy with storage to reach competitiveness with other on-demand energy sources. They also examine what kinds of batteries and other technologies might reach these targets.

“One of the core sources of uncertainty in the debate about how much renewable energy can contribute to the deep decarbonization of electricity is the question of how much energy storage can be improved” says senior author Jessika Trancik, an associate professor of energy studies at the Massachusetts Institute of Technology. “Different assumptions about the cost of energy storage underlie significant disagreements between a number of assessments, but little was known about what costs would actually be competitive and how these costs compare to the storage technologies currently being developed. So, we decided to address this issue head on.”

“Quantifying cost targets for energy storage required a new piece of insight,” Trancik says, ‘about how patterns of the renewable energy supply, and fluctuations in this supply, compare to electricity demand profiles. Large but infrequent solar and wind shortage events are critical in determining how much storage is needed for renewables to reliably meet demand, and it’s important to understand the characteristics of these events.”

In the paper, Trancik and her colleagues estimated the costs of using storage together with wind and solar energy to supply various output profiles reliably over twenty years. They then estimated cost targets for energy storage that would enable plants to reach cost-competitiveness with traditional electricity sources. They also evaluated current and future energy storage technologies against the estimated cost target.

The researchers’ model optimizes storage costs by using whatever combination of storage and solar and wind gives the lowest electricity cost. This often means oversizing solar and wind capacity relative to an intended output, to decrease the amount of storage needed.

The analysis also explored the characteristics that distinguish various storage options. Some technologies are more suited to inexpensively storing large quantities of energies but outputting it slowly, at lower power, while others can cost-effectively store smaller amounts that can be quickly discharged at high power. So the model needed to capture these differences, Trancik says.

The research found that technologies with energy storage capacity costs below $20/kWh could enable cost-competitive baseload power that is available all of the time over a twenty-year period, though this target varies with the target output profile and location. They found that electricity costs respond more to costs of storage energy capacity than power capacity.

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Fractal Energy Storage ConsultantsHow Much Energy Storage Costs Must Fall To Reach Renewable Energy’s Full Potential

Hawaii, Massachusetts Shine In Energy Storage Rankings

on August 8, 2019
PV-Magazine

California casts a long shadow over the solar and energy storage markets in the rest of the United States. The Golden State’s wide lead in policy and deployment proves true the maxim that as California goes, so goes the nation – usually five to ten years later.

But while California is the largest residential battery market and has the most watts of energy storage overall, this is in part due to its large size and 40 million residents. When adjusted for this, the state is not the only leading battery market, as it has been joined by the chain of islands in the Pacific that became the 50th state in 1959: Hawaii.

According to the latest rankings released by the Smart Electric Power Alliance (SEPA), three of the island state’s four utilities were all among the top 10 in the nation for per-capita energy storage installations in 2018.

Solar + batteries lead the way in Kaua’i

Leading the list by a long shot is Kaua’i Island Utility Cooperative (KIUC), where large solar and battery storage are expected to allow the utility to source more than 50% of its power from renewable energy sources this year. Mostly due to the installation of the AES Lāwaʻi plant Kaua’i put on more than 3kW of battery storage per customer last year, giving it a total of 5,036 watts per customer.

KIUC notes that this system and the Tesla solar + storage plant installed in 2017 allow it to meet 40% of evening demand with solar. It also helped KIUC restore power when large conventional generation went down through an electrical fault a few weeks ago.

Incidentally, this also puts KIUC second in total volume of energy storage deployed in 2018. This figure is particularly remarkable when you consider that Kaua’i only has 72,000 residents, and that is has more energy storage deployed than utilities that serve millions of customers.

Kauai’s per-capita figure is more than double its nearest competitor, the municipal utility for the village of Minster in Ohio. However, two of the three utilities of the Hawaiian Electric Industries also reached the top 10 for annual per-capita deployment, with Hawaiian Electric Light Company putting on 95 watts per customer and Hawaiian Electric Company installing 76 watts.

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Fractal Energy Storage ConsultantsHawaii, Massachusetts Shine In Energy Storage Rankings

NYPA Approves 20-MW Battery Energy Storage Project

on August 6, 2019
Electric-Light-and-Power

CHATEAUGAY, N.Y. (AP) — A massive battery storage project is in the works in northern New York.

The $30 million project is designed to help support renewable energy mandates recently signed into law by Democratic Gov. Andrew Cuomo under the Climate Leadership and Community Protection Act. The law sets a goal of zero carbon emissions from the electricity sector by 2040.

The 20-megawatt project in the Franklin County town of Chateaugay will include a one-hour lithium-ion battery system to absorb excess generation for later use.

The New York Power Authority’s Board of Trustees approved $23.8 million for the project at its July 30 meeting. The board awarded the project’s contract to O’Connell Electric Company of Victor in Ontario County.

Construction is expected to start in October, with operation anticipated by June 2020.

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Fractal Energy Storage ConsultantsNYPA Approves 20-MW Battery Energy Storage Project

Energy storage systems Market to hit $500 billion by 2025: Global Market Insights, Inc.

on August 6, 2019

Germany energy storage systems market is anticipated to witness growth over 3% by 2025. Increasing dependency on renewable energy sources in line with the introduction of RE targets will drive the business growth. For instance, Government of Germany has set the goal to meet 65% of its electricity consumption from renewable energy by 2030.

Japan energy storage systems market is set to exceed USD 65 billion by 2025. Widespread implementation of smart grid technologies along with the decentralization of the grid at local and regional level will drive the business growth. Surging demand for integration of solar PV plants with ESS to reduce the electricity bills and minimize the carbon emission will further enhance the business landscape.

ESS market from renewable capacity firming application will grow over 10% by 2025. Control of the ramp rate, maintenance of the variable intermittent power output of renewable technologies and output smoothening are some of the key features which will positively influencing the demand for energy storage systems over the forecast timeframe.

Global Energy Storage Systems Market is set to register USD 500 billion by 2025, as reported in the latest study by Global Market Insights, Inc. Rising consumer awareness toward energy efficiency coupled with shifting trends toward renewable energy utilization will drive the energy storage systems market size. For instance, as per the International Energy Agency, share of renewables in electricity generation is anticipated to reach 40% by 2040. In addition, increasing demand for continuous power supply and effective load management will positively influence the product demand.

Browse key industry insights spread across 490 pages with 674 market data tables & 59 figures & charts from the report, “Energy Storage Systems Market By Technology (Pumped Hydro, Electro-Chemical {Lithium Ion Battery, Sodium Sulphur Battery, Lead Acid Battery, Flow Battery, Others}, Electro-Mechanical {Flywheel, Compressed Air Energy Storage}, Thermal {Water, Molten Salt, Phase Change Material, Others}), By Application (Electric Energy Time Shift, Electric Supply Capacity, Black Start, Renewables Capacity Firming, Frequency Regulation, Other), Industry Analysis Report, Regional Outlook (U.S., Canada, Germany, UK, France, Italy, Spain, Russia, China, Japan, India, South Korea, Australia, Saudi Arabia, UAE, South Africa, Brazil, Argentina, Mexico) Application Potential, Competitive Market Share & Forecast, 2019 – 2025” in detail along with the table of contents:

https://www.gminsights.com/industry-analysis/energy-storage-systems-market

ESS market will witness growth on account of declining storage costs along with growing consumer awareness toward adoption of clean energy technologies. Policymakers across the globe have introduced financial incentives to promote the utilization of renewable energy which has positively influenced the price of storage systems. For instance, in 2017, the Government of Italy announced 50% tax deduction for the installation of residential energy storage systems. Ongoing research and development to improve the energy density and cycle life of storage technologies will further enhance the product penetration.

Electro-chemical energy storage systems market is set to witness strong growth on account of their ability to offer high energy density and temperature stability during operation. Lithium Ion, Lead Acid, Flow batteries and Sodium Sulphur are some of the most prominent electro-chemical technologies deployed for stationary storage. Cost effectiveness, high power conversion and safe operation are some of the eminent features favoring the product deployment. In addition, technological advancement in system design to enhance the battery performance will further boost the product demand over the forecast timeline.

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Fractal Energy Storage ConsultantsEnergy storage systems Market to hit $500 billion by 2025: Global Market Insights, Inc.

How Nevada Is Leading the Renewable Energy and Battery Storage Charge

on August 6, 2019
Power-Magazine

Renewable energy and battery storage are hot topics in the U.S. today. Lawmakers throughout the country debated various new energy policies during the 2019 legislative session. Nevada is among the states leading the way forward. Several new laws were passed in the state that will affect power companies and consumers for years to come.

Curt Ledford, a Nevada-based attorney who is a partner with Davison Van Cleve PC, was a guest on The POWER Podcast. Ledford’s practice is focused on utility, administrative, corporate, cooperative, and regulatory law, as well as general matters affecting energy developments, generation facilities, renewable energy, and Nevada’s utilities.

On the podcast, Ledford touched on several legal and legislative developments that occurred recently. Among the topics were changes to Nevada’s fundamental utility ratemaking structure and changes to the state’s open access for large customers. He also elaborated on an update to the state’s renewable portfolio standard, which requires 50% of Nevada’s energy to come from renewable sources by 2030.

In December, the Nevada Public Utilities Commission approved NV Energy’s proposal for the state’s largest-ever solar energy investment, six new solar energy resources totaling more than 1,000 MW, as well as 100 MW of battery storage capacity. Ledford talked about the company’s commitment to double its renewable energy by 2023.

Many of the topics provide examples for other states and utilities to emulate. Hear the entire interview on The POWER Podcast.

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Fractal Energy Storage ConsultantsHow Nevada Is Leading the Renewable Energy and Battery Storage Charge