Fuel Cells II
The concept to utilize an ion-conducting polymer membrane as a solid po- mer electrolyte offers several advantages regarding the design and operation of an electrochemical cell, as outlined in Volume 215, Chapter 1 (L. Gubler, G.G. Scherer). Essentially, the solvent and/or transport medium, e.g., H O, 2 + for the mobile ionic species, e.g., H for a cation exchange membrane, is taken up by and con?ned into the nano-dimensional morphology of the i- containingdomainsofthepolymer.Asaconsequence, aphaseseparationinto a hydrophilic ion-containing solvent phase and a hydrophobic polymer ba- bone phase establishes. Because of the narrow solid electrolyte gap in these cells, low ohmic losses reducing the overall cell voltage can be achieved, even at highcurrent densities.
Closing the POWER gap between ASIC & custom : Tools and techniques for low power design
Details design tools and techniques for realizing low power and energy efficiency in a highly productive design methodology.Important topics include: - Microarchitectural techniques to reduce energy per operation / - Power reduction with timing slack from pipelining / - Analysis of the benefits of using multiple supply and threshold voltages / - Placement techniques for multiple supply voltages - Verification for multiple voltage domains / - Improved algorithms for gate sizing, and assignment of supply and threshold voltages / - Power gating design automation to reduce leakage / - Relationships among statistical timing, power analysis, and parametric yield optimization / Design examples illustrate that these techniques can improve energy efficiency by two to three times.
Advances in Control, Signal Processing and Energy Systems : Select Proceedings of CSPES 2018
Covers topics on both theoretical control systems and their applications across engineering domains such as automatic control, robotics, and adaptive controller design. It discusses several signal processing domains such as image, speech, biomedical signal processing and their applications in IOT, control, robotics, power and energy systems. The book emphasizes both conventional and non-conventional energy, environment, and green processes as related to energy and power systems engineering.


