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ラベル ultracapacitor の投稿を表示しています。 すべての投稿を表示
ラベル ultracapacitor の投稿を表示しています。 すべての投稿を表示

2010/01/11

Researchers see spike in supercapacitor demand

http://www.cleantech.com/news/4576/research-firm-says-demand-supercapa
Cleantech Group - San Jose,CA,USA
Supercapacitors, also termed electrochemical capacitors or ultracapacitors, show promise because their high power density allows fast recharge and bursts of ...


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リチウムイオン電池市場、2017年度に1060億円…富士経済

http://response.jp/issue/2009/0610/article125768_1.html
レスポンス
11分野のうち、二次電池・電力貯蔵システムは、NaS電池、鉛電池、ニッケル水素電池、リチウムイオン電池、電気二重層キャパシタ、ハイブリッドキャパシタを対象と ...



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New York City Department of Sanitation Adds Three Hybrid Garbage Trucks

http://www.trucktrend.com/features/news/2009/163_news090608_new_york_city_department_of_sanitation_adds_three_hybrid_garbage_trucks/index.html
New York City Department of Sanitation Adds Three Hybrid Garbage Trucks
June 8, 2009
June 08, 2009
By Benson Kong
As a part of CALSTART's Hybrid Truck Users Forum Hybrid Refuse Truck Working Group program, three new hybrid garbage trucks were manufactured with funding assistance from the U.S. Army National Automotive Center. The garbage trucks were built by Crane Carrier, include both electric and hydraulic hybrid configurations, and were put into service for the New York City Department of Sanitation.

The electric hybrid's drivetrain was supplied by ISE, and is a series hybrid configuration using a diesel engine to drive a generator providing electricity to an ultracapacitor energy storage pack. The hydraulic hybrid's drivetrain was supplied by Bosch Rexroth. The U.S. Army NAC provided funding for the garbage trucks to encourage the continuous development of commercially viable hybrid drive systems in order to reduce the cost of future hybrid drive systems. Future hybrid drive systems that are more cost-effective than current solutions would prove quite beneficial to the U.S. military.
Image courtesy of CALSTART.
Source: CALSTART

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GM社,米国で最大の車載用電池研究所を開所

http://techon.nikkeibp.co.jp/article/NEWS/20090609/171542/
 米GM社は,米国ミシガン州Warrenにある技術センターのAlternative Energy Cente
r内に,車載用電池の研究開発を手掛ける研究所「Global Battery Systems Battery
Lab」を開所したと発表した。Liイオン2次電池やウルトラキャパシタなど,現在ある
全種類の車載用電池の試験が可能という。(櫛谷 さえ子=日経Automotive Technolo
gy)

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Austin based Graphene Energy raises $500K for Ultracapacitors

http://community2.myfoxaustin.com/_Austin-based-Graphene-Energy-raises-500K-for-Ultracapacitors/BLOG/335959/82263.html
MyFox Austin - USA
Austin, Texas based Graphene Energy has raised $500000 to expand its vision of bringing graphene-based ultracapacitors to market. Capacitors are a class of ...


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Bluecar uses electrodynamic/photovoltaic harvesting



Energy Harvesting Journal - Cambridge,MA,USA
From Spring 2009, Italian car designer Pininfarina and French battery/supercapacitor manufacturer Bolloré have begun accepting orders online for its ...



Countries: France, Italy
Bluecar uses electrodynamic/photovoltaic harvesting

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From Spring 2009, Italian car designer Pininfarina and French battery/supercapacitor manufacturer Bolloré have begun accepting orders online for its four-passenger, five door hatchback Bluecar. The prototype shown at Geneva is a forerunner of the vehicle which will go into production in Italy at Pininfarina starting from 2010 with the first units. Production on an industrial scale will take place between 2011 and 2017, with forecast output by 2015 being about 60,000, according to the partners.

The all-electric vehicle is powered by Bolloré Group Lithium Metal Polymer (LMP) battery technology that is a spin-off of the firm's research and manufacture of polymer films for capacitors, both of which are combined in the Bluecar to enable improved regenerative braking and acceleration and more modest power demands on the LMP battery pack. Part of the car's hood is covered with solar panels which help power some of its equipment. The Bolloré group is also looking into the design of photovoltaic cell panels to be installed in private or public places to allow partial or total recharging of the batteries through solar energy alone. A 50kW electric motor gives the Bluecar a top speed of 130 km/h (80 mph) and 0-to-60 km/h acceleration in 6.3 seconds. Developed in Italy, the car is 3.65 meters length, 1.72 meters width and 1.6 meters height.

Potential customers are required to make a €330 deposit, refundable only during a 7 day cooling off period or if the customer is not allocated a vehicle. The Bluecar will be leased and the deposit deducted from the lease cost. No pricing is available yet, nor whether customers outside of France or Italy will be allocated cars.
Figure: Pininfarina Bolloré Bluecar cross section


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続報---驚異の電気2重層キャパシタは本物か?

http://techon.nikkeibp.co.jp/article/TOPCOL/20090605/171328/
Tech On! (会員登録)
3カ月ほど前の本ブログ欄で,とある企業が超大容量の電気2重層キャパシタ(EDLC)を開発したとして,販売代理店の権利販売で出資を募っているという話を書きまし ...


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Citing budget, Wis. to cut renewable energy fund

http://www.chicagotribune.com/news/chi-ap-wi-renewableenergy-w,0,1291422.story
Chicago Tribune - Chicago,IL,USA
The company is developing an ultra-capacitor to store energy that would be used by utilities to improve the stability of the electric grid to allow for more ...

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カーエレクトロニクスの進化と未来 12 より大容量のリチウムイオン電池 ...

http://journal.mycom.co.jp/series/car-electronics/012/
マイコミジャーナル
電池ではないが、ニチコンが容量1600F(耐圧2.5V)と極めて大きな電気ニ重層コンデンサ「EverCAP」を9本使い、耐圧20Vで容量170Fというキャパシタパックを展示した。 ...


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Waste disposal goes green

http://www.thegreencarwebsite.co.uk/blog/index.php/2009/06/01/waste-disposal-goes-green/
TheGreenCarWebsite.co.uk - Manchester,UK
Its energy storage is a 288 cell ultracapacitor system. Finally, the Kenworth T370 diesel-electric hybrid is the first medium-duty hybrid truck to enter ...

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New York Department of Sanitation Unveils Hybrid Electric Refuse ...

http://www.earthtimes.org/articles/show/new-york-department-of-sanitation,841011.shtml
Earthtimes (press release) - London,UK
The hybrid drive cabinet with ultracapacitor energy storage and overall system controls, together with the engine driven generator assembly, ...


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How to Contact the Quercus Trust

http://www.greentechmedia.com/articles/read/how-to-get-in-touch-with-the-quercus-trust/
Greentech Media - Cambridge,MA,USA
The firm's investment in Graphene Energy, an ultracapacitor company out of the University of Texas, orginated with a paper. The firm has invested in a few ...


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Supercapacitor development improves energy retention

http://dataweek.co.za/article.aspx?pklArticleId=5667&pklCategoryId=31
Dataweek (press release) - Durban,KwaZulu Natal,South Africa
This process helps the supercapacitor to store energy at a faster rate, but doesn't provide resistance from discharging. In the new process suggested by the ...


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2009/10/12

Progress with energy harvesting solutions without batteries

http://www.energyharvestingjournal.com/articles/progress-with-energy-harvesting-solutions-without-batteries-00001429.asp
Energy Harvesting Journal - Cambridge,MA,USA
A 3W transmitter powers the 900MHz sensors in its range, charging the supercapacitor, and when transmission is needed the supercapacitor has enough energy ...

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2009/06/02

Saft signs supercapacitor agreement


http://www.thegreencarwebsite.co.uk/blog/index.php/2009/05/14/saft-signs-supercapacitor-agreement/
TheGreenCarWebsite.co.uk - Manchester,UK
Under the terms of the agreement, Saft will add the new supercapacitor technology to its portfolio of battery technologies. Later this year, the company's ...


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【EVS24】3団体が進めるプラグイン・ハイブリッド車の標準化,車載電池についても議論


http://techon.nikkeibp.co.jp/article/NEWS/20090514/170091/?ST=green_car
2009/05/14 14:50清水 直茂=日経エレクトロニクス

PHEVの標準化

 PHEVを充電インフラなどと接続するためのIECとISOにおける標準化活動は,「IEC/ISO JWG V2G(joint working group vehicle to grid)」と呼ぶ,二つの団体間で意見統一を図る組織で実施している。ここでの取り組みについて,ドイツのエネルギー会社大手RWE AGのIngo Diefenbach氏が講演した(図1)。

 IEC/ISO JWG V2Gには二つのワーキング・グループ(WG)がある。一つが物理的な規格に関するWG1である。具体的には,コネクタやケーブル,これらの保護機能,電源のオン/オフ用基板などについて議論する。例えば争点の多いコネクタに関しては,IEC側が,使用事例として充電装置と自動車を接続することのみを想定し,3相交流で最大電圧500V,最大電流63A,7端子(電力用3個,接地用1個,信号用2個,その他1個)といった内容を提案している。

 もう一つが通信技術に関するWG2である。安全な通信手法や,通信によるサービスについて議論する。特に,使用事例を明確に想定しながら要件を決めていくことや,相互接続性を確保するための通信プロトコルに関する議論が進んでいる。IEC/ISO JWG V2Gでは,2009年内にこうした議論をまとめて提案書を作り,2010年中ごろに投票を開始して2010年末には規格を策定したいという(図3)。ただし,一見IECとISOの意見が合致しているように思えるが,「まだまだ齟齬は大きい」(Ingo Diefenbach氏)のが現状だ。

 一方SAEでの取り組みについて,米国の研究機関Argonne National LaboratoryのTheodore Bohn氏が講演した(図4)。PHEVの標準化についてSAEには大きく二つの規格群がある。PHEVをインフラに接続するための規格群と,PHEVやEVに向けた試験手続きを定めた規格群,である。前者の車両とインフラの接続,いわゆる「V2G」向けでは,コネクタや充電手法,通信プロトコル,使用事例,充電装置などについて規格がある(図5)。例えばコネクタの規定がある「J1772」では,1相交流で最大電圧115V,最大電流15A ,5端子(1相交流用2個,接地用1個,信号用1個,その他1個)といった内容である(図6)。これはIEC/ISO JWG V2Gで議論する内容と大きく異なるが,「お互いに歩み寄っていきたい」(Theodore Bohn氏)という。このため,今後は3相交流として電圧600V,電流600Aまで高める検討などを進めている。

 またSAEでは車両と充電インフラを電力線通信(PLC)用装置で接続することを想定し,将来的に車両情報をWebにアップロードすることを考えている(図7)。「車両とスマートメーターとの連携が非常に重要になるから」(同氏)である。


車載電池の標準化

 電池の標準規格に関して,ベルギーErasmus University College BrusselsのPeter van den bossche氏が現状の取り組みを講演した(図8)。現在,自動車に関係のある電池の標準化については,鉛蓄電池に関するIEC60254や,電池全般に関するIEC61982がある。後者において平均的な消費電力を1km当たり100Whとした車載向け規格IEC61982-3もある。

 こうした規格を基に,2008年からハイブリッド車のLiイオン2次電池を想定した議論が始まっているという。Liイオン2次電池に関しては,ISO TC22 SC21で車両への搭載を前提とした2次電池システムや,IEC TC21で2次電池のセルやモジュールに着目した仕様策定が進んでいる(図9)。「今後は,IECとISOや,その他の団体との間で議論を重ねていく」(Peter van den bossche氏)方針である。さらに将来的にはLiイオンキャパシタについても議論を始めていきたいとした。






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The induction deduction



http://www.eurekamagazine.co.uk/article/18359/The-induction-deduction.aspx
14/05/2009 Email to a friend
The development of green public transportation systems that can do away with large battery packs, overhead wires and live rails. Tom Shelley investigates

Experimental electric trams and buses that pick up power by induction, either from cables beneath the track or from coils beneath where they stop, are being trialled in Germany, New Zealand, Italy and China.

The concept potentially does away with many of the traditional causes of travel delay such as ice on conductor rails or overhead line problems. It would also make tramways less unsightly. The idea itself has been around for years, and is used to power automatic guided vehicles in factories. These can be made in such a way that the pickup coils are very near the floor, or fit around conducting cables.
But, public service vehicles running over rail tracks or highways need to have a larger air gap, so it has taken a time to solve the problems of how to transfer power efficiently. At the present time, there are three separate solutions, but no clear indication of which is best just yet.

The company most established at building inductively powered electric vehicles for factory use is Wampfler, part of the Delachaux Group, with headquarters in Weil am Rhein in Germany. It offers two systems. Both of these operate at around 20kHz and rely on the use of a pair of cables with current travelling through them in opposite directions. The first system has two cables that are held on protrusions extending from a wall. These are suitable for rail mounted vehicles with 'E' shaped 2.5 kW pickups on the vehicles. The other, uses a pair of cables buried in the floor.

But, trams being developed by Austria based Bombardier Transportation use a very different system. The company is reluctant to give details, but it has published diagrams that show cables laid in a series of long loops, with one side buried deep on one side the track, and the other running beneath the tram.
We imagine that the purpose of this is to extend the distance over which a significant magnetic field from the power cable can be picked up by coils in the tram. A 30m long "Flexity" tram equipped with this system is being trialled on a 1km test track in Bautzen, Germany at speeds up to 40 km/h and on gradients of 6%.

"It operates at a frequency higher than 50Hz," says Emma Gallaway, marketing manager at
Bombardier. "However, for Intellectual Property reasons we are unable to give the exact frequency at this stage. Efficiency is the same as a transformer, between 95% and 98%. We have already tested the system against our own signalling products with no adverse effects. However, further testing in a real environment is necessary."

Single cable supply has been used in some guided vehicles but is not presently the norm. One of the striking aspects of the Bombardier system, designated 'Primove', is that the system is rated at 250kW, 500kW peak.

Despite energy being stored in ultracapacitors, the transfer of more than 100kW inductively from a cable is no easy task. Because the frequency has to be a lot higher than 50kHz, there is a strong skin effect so that supply cables have to be made up of bundles of fine wires, known as 'Litz' cables. The ultracapacitor units are made up of a large number of individual 'Boostcap' cells each rated at 3,000 Farads, 2.7V.

Ian Corfield, director and project management at Bombardier plant in Derby, says: "A commercial version of the tram will be available in the second half of the year. And the use of the ultracapacitor units resulted in 30% energy savings."

An institution that has done much to advance the science of using inductive power transfer for buses is the University of Auckland's Power Electronic Research Group in New Zealand, led by Professor John Boys and Professor Grant Covic. This has resulted in the development of five inductively charged bus systems. These use a 20kW charging station to charge the 30, 12V, batteries in each bus in under 20 minutes.

But, Wampfler has also developed a bus charging system that is being used in the Porto Antico area of Genoa, Italy. Three buses with 56, 6V batteries are inductively charged at 60kW for 10 minutes in each hour. And, these buses have to kneel down to no more than 30mm above the primary coils to receive power.

We have also heard of an experimental Chinese bus, that kneels down to inductively receive charge at each bus stop, storing its charge in ultracapacitors. This would allow charging to be undertaken very quickly, but evidently requires the bus stops be fairly close together. Similarly, Bombardier estimate the power stored in its tram and train ultracapacitors is only sufficient to drive around 500m.

The Auckland team are currently developing the technology further and are looking at other possibilities that include the possibility of embedding cables in roads, so that cars could draw power on the move. There was also a European Union project, EVIAC – Electric Vehicle Inductive Automatic Charging – that established that public inductive charger units for electric cars were both viable and safe.

Pointers

* Non contact inductive powering of trams has been demonstrated as practical and is to be offered commercially later this year

* There are inductive charging systems for battery powered buses in use in several locations round the world

* Wide use of inductively charged and/or powered vehicles is also a practicable possibility




Author
Tom Shelley


Supporting Information
http://www.maxwell.com/
http://www.uniservices.co.nz/pageloader.aspx?page=1607d8d0d8...


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Fuel cells finally staged to power the future, thanks to Honda's ...


http://www.canada.com/Fuel+cells+finally+staged+power+future+thanks+Honda+FCXClarity/1590751/story.html
Canada.com - Don Mills,Ontario,Canada
The fuel cell and its 450-volt supercapacitor storage system is capable of putting 154 horsepower to the pavement while delivering a best-in-class system ...


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この時代に年70%成長している電子部品は?・・・ウルトラキャパシタがその


Which product line is growing at 70% in this market?
According to ultracapacitor supplier Maxwell Technology, the answer is yes.
...
http://www.electronicsweekly.com/blogs/parallel-processors/2009/05/which-product-line-is-growing.html


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Saft and ESMA to Cooperate on Supercapacitor Development ...


http://www.earthtimes.org/articles/show/saft-and-esma-to-cooperate-on-supercapacitor-development-production-and-commercialization,819253.shtml
Earthtimes (press release) - London,UK
The agreement enables Saft to add new supercapacitor technology to its portfolio of leading edge battery technologies. The first results will be seen later ...


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