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Defense Intelligence Reference Document Ultracapacitors As Energy And Power Storage Devices

Defense Intelligence Agency · 34 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 1 November 2010, was one of a series of advanced technology reports produced in FY 2010 under the Advanced Aerospace Weapons System Applications (AAWSA) Program. It reviews ultracapacitors as energy and power storage devices. It covers how they work, their materials, their commercial and military uses, and new developments such as carbon nanotubes, thin films and magnetic capacitors. It concludes that the U.S. government must understand and adopt advanced ultracapacitors.

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Figure 2. Operation of an Ultracapacitor. A simple ultracapacitor ut111zes two similar electrodes (typically
carbon) with a separator and electrolyte to create the electrochemical double layer that governs operation. 7
BATTERIES AND ULTRACAPS
For an ultracapacitor, energy is stored within the electrical double layer, which is a
physical storage mechanism. Contrast this with batteries, where charge and discharge
take place through a chemical (Faradaic) reaction. Since charge is stored physically,
there is no direct degradation mechanism that limits cycle life. Side reactions do occur,
which prevents infinite cycle life, but ultracaps can often be cycled tens of millions of
times. 8 Batteries store their energy through chemical reaction; consequently, cycle life
is much shorter and heavily dependent on the depth of discharge. In contrast, there are
no limitations to the discharge depth with an ultracapacitor. Table 1 addresses some of
the general characteristics of batteries and ultracapacitors, which can help to determine
the preferred system for a specified application. The values are based upon 2008 data,
so some numbers are outdated, but the relative values remain consistent. There are
now hybrid devices that blur the boundaries further by introducing a battery-like
electrode to replace one of the two identical electrodes in a traditional ultracapacitor.
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 34 pages are in the text index: search them above, or from the library's search.