The Army's Bandwidth Bottleneck


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Barbarossa 1941


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Featuring original 1: 2,500,000-scale German military maps, this is a beautifully presented atlas of the 1941 Operation Barbarossa campaign. Operation Barbarossa, Germany's surprise assault on the Soviet Union in June 1941, aimed at nothing less than the complete destruction of Communist Russia in a matter of months. It was the one period when the Germans had a chance of achieving victory – but the events of the campaign ultimately reversed the fortunes of the Third Reich. This atlas uses the contemporary daily situation maps produced by the German Army's General Staff to provide a clear historical and geographical picture of one of the pivotal campaigns of World War II. These maps show the configuration of the front line and the locations of major Axis combat formations, as well as the deployments and movements of Soviet combat units as the German military intelligence understood them. The maps are supported by a detailed commentary summarizing and analyzing the operations depicted, tracing the day-to-day progress of the fighting on the Eastern Front.




The Army's Band with Bottleneck


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Over the past decade, the U.S. Army's principal modernization initiative has been its digitization effort, designed to harness the power of the microchip to significantly improve the fighting capabilities of soldiers on the battlefield. But implementing that initiative presents significant challenges. Questions about the size of the info. flow assoc. with digitization & the commun. bandwidth to support it -- that is, the capacity to move info. at sufficient speeds -- have spurred the Army to adopt several large radio & network commun. programs. This study examines the issue of how much bandwidth will be required to achieve the goal of digitization vs. how much bandwidth will be provided by the Army's planned communications programs. Charts & tables.




The Other End of the Spear


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This book looks at several troop categories based on primary function and analyzes the ratio between these categories to develop a general historical ratio. This ratio is called the Tooth-to-Tail Ratio. McGrath's study finds that this ratio, among types of deployed US forces, has steadily declined since World War II, just as the nature of warfare itself has changed. At the same time, the percentage of deployed forces devoted to logistics functions and to base and life support functions have increased, especially with the advent of the large-scale of use of civilian contractors. This work provides a unique analysis of the size and composition of military forces as found in historical patterns. Extensively illustrated with charts, diagrams, and tables. (Originally published by the Combat Studies Institute Press)




Innovations in Army Energy and Power Materials Technologies


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This compendium reports fundamental science and engineering advances of the US Army Research Labratory (ARL) within the area of Energy and Power technologies. Although, in general, ARL's Materials Research encompasses a broad range of materials technologies (e.g.: Photonics, Electronics, Biological and Bio-inspired Materials, Structural Materials, High Strain and Ballistic Materials, and Manufacturing Science), this publication specifically addresses selected energy and power material related work at ARL. While this work includes electrochemical energy storage (batteries and capacitors) and electrochemical energy conversion (fuel cells, photoelectrochemistry, and photochemistry), special emphasis is given on electrochemical energy storage: • Micro Electro-Mechanical Systems (MEMS): Power density, efficiency, and robustness of motors, generators, and actuators while also reducing their life cycle costs. • Energy Storage: Electrical and electrochemical energy storage devices to decrease device size, weight, and cost as well as increase their capabilities in extreme temperatures and operating conditions. • Power Control and Distribution: Tactical, deployable power systems using conventional fuels, alternative fuels, and energy harvested from renewable/ambient sources. • Power Generation/Energy Conversion: Smart energy networks for platforms, forward operating bases, and facilities using modeling and simulation tools as well as new, greater capability and efficiency components. • Thermal Transport and Control: Heat and higher power density systems, advanced components, system modeling, and adaptive or hybrid-cycle technologies. Keywords: Electrochemical Energy Storage, Batteries, Capacitors, Electrochemical Energy Conversion, Fuel Cells, Photoelectrochemistry, Photochemistry, High Voltage Electrolytes, Li-ion Batteries, Li-ion Chemistry, Lithium–Sulphur Batteries, Nuclear Metastables, Pyroelectric Energy Conversion, Charged Quantum Dots, High-Efficiency Photovoltaics, IR Sensing, GaN Power Schottky Diodes, Threshold-Voltage Instability, Reliability Testing, SiC MOSFETs, Power Electronics Packaging, High Voltage 4H-SiC GTOs, Silicon Carbide, Avalanche Breakdown Diode, SiC PiN Diodes, Thyristor Protection, Compact DC-DC Battery Chargers







Air Corps Newsletter


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St-Lo


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