Showing posts with label blackout. Show all posts
Showing posts with label blackout. Show all posts

Saturday, December 7, 2013

SolarCity Launches Energy Storage for Business Using Tesla Battery Packs

Can SolarCity do for energy storage 
what it has done for solar power?




SolarCity is getting into the commercial energy storage business by installing and financing batteries and smart software behind the meter.





That could be good news for manufacturers, retailers, and other businesses or schools which can gain more control over their electricity bill. It's not such good news for smaller competitors such as Stem, Solar Grid Storage, Silent Power or Demand Energy. It's also a crash course in grid edge reality as consumers take a more active role in their energy usage and continue to challenge the traditional utility-customer dynamic.

SolarCity has already made a foray into residential solar combined with energy storage -- now it expects to build and finance 30 to 50 commercial solar-battery systems next year.

We spoke with Eric Carlson, Senior Director of Grid Systems Integration, along with SolarCity's Jonathan Bass. The duo noted "the software legacy" of SolarCity being combined with what Bass called "the world's most advanced battery pack" from Tesla Motors.

As with most commercial storage applications, the system addresses demand charge management, reduces peak demand, and provides emergency backup power. Energy storage could potentially integrate with utility demand response programs, engage in permanent load shifting, and cope with EV charging demands.

Hurricane Sandy changed the public's perceptions about grid reliability and disaster readiness: building owners are much more willing to pay for crucial services in the event of a power failure. They want to be able to pump water up to gravity feed tanks and run a service elevator for a few hours. A 200-kilowatt/2-hour battery can do that.

The commercial systems from SolarCity are provided with no upfront cost through a ten-year service agreement, along with lower energy costs from day one, according to the firm.

The system requires no behavioral or operational changes by the business and can power "IT functions, security systems, cash registers and other critical business systems during power outages," according to a statement. All systems are tied to a central operations center.

Peter Rive, SolarCity's CTO and COO, said, “Utilities have altered their rate structures such that demand charges are rising faster than overall energy rates, and businesses are bearing the bulk of those increases.” The company claims that its system "automates the discharge of stored energy to optimize utility charge savings for customers."


The commercial lithium-ion battery systems are sized according to the customer's usage patterns, with the smallest modular unit at the size of "a small refrigerator." The system can be installed indoors or outdoors and ranges from tens of kilowatts to hundreds of kilowatts with a minimum of two hours of duration. Typically, the storage system is sized at about 30 percent the size of the solar installation.

SolarCity claims, "Some utilities are basing rates less on the overall amount of electricity consumed, and more on 'peak demand,' [which is] the maximum amount of electricity used at a specific point in time. Solar power can significantly offset the overall amount of electricity used by organizations, but if an organization’s 'peak' electricity demand is still high during the day -- in the late afternoon, for example -- the organization can be hit with high demand charges. SolarCity’s commercial storage system regulates the amount of electricity that organizations need from the grid during 'peak' periods, reducing exposure to exorbitant demand charges."



Tesla CTO and co-founder JB Straubel commented in a release, “The economics and scale that Tesla has achieved in the automotive market now make stationary energy storage more cost-effective and reliable than it has ever been in the past. We expect this market to grow very rapidly now that we have crossed this economic threshold.”

Energy storage of this nature works best in regions with high demand charges or complex rate structures. SolarCity's storage system, always in tandem with solar, will be offered in regions of California serviced by PG&E and SCE, areas of Massachusetts serviced by NSTAR, and areas of Connecticut served by Connecticut Light & Power.

SolarCity's announcement comes at a peculiar time for energy storage in the Golden State. While utility-scale solar is being looked at carefully in California because of a 50-megawatt mandate for SCE and a 1.3-gigawatt mandate in the state, it is also getting some pushback by the large investor-owned utilities (IOUs).

As Jeff St. John just reported, California's state regulators are looking to resolve a conflict between the state’s big three IOUs and commercial customers that want to add batteries to solar PV systems. It's a conflict holding back the progress of more than 300 solar-storage projects that would add up to 10 megawatts of capacity. The IOUs are looking to block solar-storage projects that seek to interconnect to the grid under the state’s net metering program.

St. John reports, "Since this spring, those utilities have been requiring any net-metered solar power projects that include batteries to go through a lengthy and expensive process to prove their batteries aren’t feeding stored grid power back to the utility, while getting credited for delivering green, solar-generated electrons."

The IOUs are making the case that consumer energy storage can game the system and threatens net energy metering (NEM).

St. John writes, "It’s too early to know whether the CPUC will side with solar and energy storage advocates on this issue. But [CPUC Commissioner] Peevey’s ACR lays out several points that seem to indicate that he’s not persuaded by the utility argument that storage-backed solar represents a threat to net metering, or that the additional steps utilities are requiring for these systems are reasonable."

It comes down to metering the storage devices appropriately. Carlson of SolarCity notes that under the current tariff, there is a specified way of metering systems when solar is deployed along with other devices. Different metering is required when there is a shared inverter as opposed to when there are two separate inverters. It appears to be a solvable engineering and regulatory problem.

In any case, California leads the nation in energy storage legislation, mandates and goals, while SolarCity and the other behind-the-meter storage vendors are testing the current limits of how energy storage can be deployed on the grid edge.


Source : GreenTech Media

Tuesday, December 3, 2013

JB Straubel | Energy@Stanford & SLAC 2013

Tesla Motors CTO JB Straubel gives a quick speech about Tesla to Standford students




After converting a Porsche 944 and other things, he met Elon Musk and they started Tesla back in 2004, in a garage ....








Presentation slides













Residential and Commercial Energy Storage solutions with SolarCity (back up units for blackouts only)



Power Electronics is KEY because they are used so much : convert PV, charge, discharge, store



"Battery Market growth will be extreme" (!)

Choosing the right batteries ...



Battery chemistry


SuperCharger Network



Energy Storage Unit on SuperCharger Location to smooth the peak load requested by a fast charge









Monday, November 4, 2013

Solar City - Tesla Battery Backup Update

After my posts last year, here is little update on the SolarCity / Tesla Solar ESS, which is really only a Backup System usable in case of blackout, still in test in California

Capacity : 10kWh
Price: 15,800 USD

Composed of a 10kWh pack of Tesla - Panasonic - cells and a Schneider Electric - Xantrex - Charger / Inverter




Wednesday, May 15, 2013

Fighting Blackouts: Japan Residential PV and Energy Storage Market Flourishing

San Diego, CA -- In the past, a PV system with battery storage was associated with the off-grid system — not connected to the utility grid. The battery stores the energy produced by the PV system and when the sun goes down, electricity is drawn from the battery. In Japan, the battery became attractive to store electricity from "the grid," to reduce electricity bills.

After the devastation of the Tsunami and nuclear meltdown in Mach 2011, Japan became painfully aware of the importance of both safety and maintaining a steady supply of electricity. The combination of a PV system and battery storage gives consumers the ability to produce, store and supply electricity throughout the day at their own home for power outages and emergencies. However, the system can bring economic benefits — electricity bill reduction — during normal days.

Like California, utilities in Japan offer Time-of Use (TOU) rates. How homeowners can reduce electricity bills can be illustrated by using Tokyo Electric Power Company’s (TEPCO) current (non-summer) TOU rates for all-electric homes with a PV system.

- Purchase and store electricity from the grid at off-peak hour (11 pm – 7 am) at ¥11.82/kWh [US $0.12]

- Sell PV-generated electricity to the utility at the FIT premium rate of ¥38.0/kWh [US $0.38]

- Use PV-generated electricity during day time, otherwise paying at ¥30.77 (10 am – 5 pm) [US $0.31] and use stored electricity between 7 and 10 am and between 5 and 11 pm, otherwise paying ¥25.2/kWh [US $0.25]




With the battery storage, PV homeowners can ultimately buy electricity at the lowest rate (¥11.82/kWh or $0.12/kWh) and sell at the highest price (¥38/kWh or $0.38/kWh).

The key domestic PV makers, Panasonic, Kyocera and Sharp, all now offer lithium-ion battery storage along with a PV home system to meet consumers’ demand. Their goal is to move beyond PV and expand into a total Home Energy Management System (HEMS3) arena.

Kyocera started offering PV plus lithium-ion battery storage to homeowners in early 2012 with a target of selling 10,000 units from April 2012 to March 2013. Panasonic also released home battery storage systems that can be connected to Sanyo’s (now Panasonic) HIT PV system. The battery has a capacity of 4.65 kWh and is priced at ¥1.218 million MSRP [US $11,984].

In April, Kyocera released the largest residential lithium-ion battery in Japan. The battery has the capacity of 14.4 kWh, which is priced at an MSRP of ¥4.45million [US $43,784]. This large capacity allows it to power a home refrigerator, TV, computers, lights and cell phone chargers for up to 24 hours.

Kyocera has teamed up with Rakuten, Inc., which operates the nation’s largest internet shopping site, to offer a PV system (poly-Si) and a lithium battery (7.2 kWh) set for homeowners at an affordable price. Rakuten provides options with different sizes of PV systems with the battery, and installed system price (after tax) varies from ¥2.94 million ($29,730) with a-2.28 kW system to ¥4.168 million ($42,153) with a 6.27-kW system. These systems are installed by one of the nation’s largest installers, Nippon Ecosystem, which is part of Itochu Corp.

Residential battery systems remain expensive to average homeowners. To solve this issue,One Energy Corp. has just begun the nation’s first residential energy storage leasing service. Like SolarCity or SunRun’s PV leasing service in the U.S., this requires zero upfront payment to homeowners. The company is a joint venture between Orix, NEC and Epco. NEC provides lithium batteries, whose technology is used for Nissan Leaf electric vehicles.

Besides the energy storage leasing service, One Energy also offers “Yanekari (PV rooftop space leasing)” service. A homeowner can lease a storage system with 5.53 kWh of capacity at between ¥3,045 ($31) to ¥5,145 ($52) a month from One Energy while offering the roof-space to One Energy, making a monthly revenue of ¥2,500 ($25). The image below illustrates how a customer could use an energy storage system to offset the high cost of purchasing energy during peak times.




One Energy currently offers this leasing service in the TEPCO region only and is planning to expand to the Kansai region by the second half of this fiscal year and eventually expand nationwide.

NEC started mass production of residential storage systems in February. Besides partnering with One Energy, the company sells home batteries directly to homebuilders and building material distributors with the goal of selling 15,000 units during this fiscal year.

The company stated that PV homeowners will start storing PV electricity in batteries even more as the FIT rate gets lower in the future, creating a more self-sufficient and less grid-dependent environment.

It is declining, but the national government provides upfront, capacity-based rebates (¥15-20/kW) and a net FIT of ¥38/kWh on excess electricity generation for 10 years) for PV home systems. The government also currently provides a subsidy for lithium-ion battery storage for homeowners. The subsidy is one third of the installed system cost or up to ¥1 million ($10,823).

The hot and humid summer is approaching in Japan. Some of the nation’s utilities have just raised electricity rates and many of them will request that consumers limit and/or shift electricity consumption from peak to off-peak to control raising fossil fuel cost caused by the shutdown of nuclear power plants. With PV + battery systems, homeowners are moving to take energy matters into their own hands in defense against rolling blackouts and rising electricity bills.

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