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SAE technical paper series, Volume 2006-01-3022.
With increased use of Lithium-Ion (Li-ion) batteries in military and space applications, it is important to understand individual cell performance... 
Lithium | Engines
eJournal
SAE technical paper series, Volume 981246.
.... However, the SOA cells fail to meet certain requirements necessary for various future NASA missions, such as good low temperature performance... 
Lithium | Energy storage systems
eJournal
SAE technical paper series, Volume 1999-01-1386
...% DOD in 18650 cells. Full scale 40 Ah cell data predicts ∼ 4000 cycles for 60% DOD and above 100,000 cycles for 20 and 30% DOD. 
Auxiliary power units | Life cycle analysis | Lithium | Tests and Testing
eJournal
SAE technical paper series, Volume 1999-01-1391
.... Under an Interagency program, lithium-ion cells of varying capacity are being developed for NASA and DOD applications... 
Auxiliary power units | Life cycle analysis | Lithium | Vehicle performance | Energy storage systems
eJournal
SAE technical paper series, Volume 1999-01-2462
.... Given the nature of the lithium-ion cell chemistry the low temperature performance of the cells may not be very good... 
Auxiliary power units | Electromagnetic compatibility | Lithium | Vehicle performance | Energy storage systems | Simulation and modeling | Alternative fuels | Refueling
eJournal
SAE technical paper series, Volume 2002-01-1976.
...), on the development of the Li-Ion technology for HEV application. Saft's high power Li-Ion cells exhibit outstanding characteristics in power, energy, cold cranking capability, and cycle and calendar life... 
Fuel cells | Thermal management | Lithium | Energy storage systems | Electric motors
eJournal
SAE technical paper series, Volume 981248.
This paper is a summation of past, present and future work with Li-Ion cells. Direct emphasis will be placed upon the development of cycle life and related components... 
Life cycle analysis | Lithium | Energy storage systems
eJournal
SAE technical paper series, Volume 1999-01-1387
A summary of the past and present activities of EPT in the quest to develop the lithium-ion technology for spacecraft applications is presented. Specific... 
Auxiliary power units | Satellites | Spacecraft | Lithium | Vehicle performance | Energy storage systems
eJournal
SAE technical paper series, Volume 2016-01-1199.
This paper begins with a baseline multi-objective optimization problem for the lithium-ion battery cell... 
Lithium-ion batteries | Design processes
eJournal
SAE technical paper series, Volume 2016-01-1194.
...) tests on commercial lithium-ion cells. Charging at high rates caused performance decline in the cells... 
Lithium-ion batteries | Electric vehicles | Vehicle charging
eJournal
SAE technical paper series, Volume 981250.
...) Li ion cells for use in aircraft and spacecraft. The effort initially explored the graphite/LiCoO2 chemistry packaged in both cylindrical and prismatic... 
Lithium | Product development | Energy storage systems
eJournal
SAE technical paper series, Volume 2013-01-1537.
.... In this work electrical tests on lithium-ion cells in different States-of-Health are performed and used to extract model parameters such as open-circuit-voltage and impedance... 
Lithium-ion batteries | Simulation and modeling
eJournal
SAE technical paper series, Volume 2013-01-1537.
.... In this work electrical tests on lithium-ion cells in different States-of-Health are performed and used to extract model parameters such as open-circuit-voltage and impedance... 
Lithium-ion batteries | Simulation and modeling
eJournal
SAE technical paper series, Volume 2000-01-3668.
eJournal
SAE technical paper series, Volume 2013-01-1544.
The lithium iron phosphate (LFP) cell chemistry is finding wide acceptance for energy storage on-board hybrid electric vehicles (HEVs... 
Lithium-ion batteries | Simulation and modeling
eJournal
SAE technical paper series, Volume 2013-01-1544.
The lithium iron phosphate (LFP) cell chemistry is finding wide acceptance for energy storage on-board hybrid electric vehicles (HEVs... 
Lithium-ion batteries | Simulation and modeling
eJournal
SAE technical paper series, Volume 1999-01-1388
Li-ion cells were cycled as part of a program to assess commercial technologies for space applications... 
Auxiliary power units | Satellites | Life cycle analysis | Lithium | Tests and Testing
eJournal
SAE technical paper series, Volume 1999-01-2639
.... Each battery consists of twelve cells (6-7 Ah), combined in three parallel strings of four cells (16 V... 
Auxiliary power units | Electromagnetic compatibility | Lithium | Vehicle performance | Energy storage systems | Simulation and modeling | Alternative fuels | Refueling
eJournal
SAE technical paper series, Volume 1999-01-2638
.... This application will require two lithium-ion batteries, each being 28 V (eight cells), 25 Ah and 8 kg. In addition to the requirement of being able to supply at least 200... 
Auxiliary power units | Electromagnetic compatibility | Lithium | Vehicle performance | Energy storage systems | Simulation and modeling | Alternative fuels | Refueling
eJournal
Journal of materials chemistry. A, Materials for energy and sustainability, ISSN 2050-7496, 2015, Volume 3, Issue 3, pp. 936 - 958
.... In this review, we start with a brief discussion on fundamentals of Li–S batteries and key challenges associated with conventional liquid cells... 
Physical Sciences | Chemistry | Materials Science | Technology | Materials Science, Multidisciplinary | Chemistry, Physical | Energy & Fuels | Science & Technology | ENERGY STORAGE | solid electrolyte | lithium-sulfur batteries | batteries | electrical energy storage
Journal Article
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