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Includes Proceedings Vol. 7821
Includes Proceedings Vol. 7821
Includes Proceedings Vol. 7821
The changes in intelligence, surveillance, and reconnaissance (ISR) and processing, exploitation, and dissemination (PED) capabilities over the past two decades have led to ever-increasing demand from warfighters. Commanders, planners, and operators across the U.S. Air Force (USAF) ISR enterprise face difficult decisions about how to best meet ISR needs at the strategic, operational, and tactical levels. Yet USAF currently lacks a consistent, quantitative, empirically grounded method of assessing the value that the service's airborne ISR provides-which is essential to good resourcing decisions. This report presents an approach to ISR assessments that seeks to articulate the costs and benefits of USAF airborne ISR in specific operational contexts. Though aspects of this may be applicable across different USAF ISR organizations, this work focused primarily on the Distributed Common Ground System and the operational theaters it does or could support. The assessment methodology is designed to be flexible enough to support ISR resourcing decisions at different echelons, yet consistent enough to foster feedback, standardize data collections, and make use of empirical analysis methodologies.
The Navy has put forth a new construct for its strike forces that enables more effective forward deterrence and rapid response. A key aspect of this construct is the need for flexible, adaptive command, control, communications, computers, intelligence, surveillance, and reconnaissance (C4ISR) systems. To assist development of this capability, the Navy asked the NRC to examine C4ISR for carrier, expeditionary, and strike and missile defense strike groups, and for expeditionary strike forces. This report provides an assessment of C4ISR capabilities for each type of strike group; recommendations for C4ISR architecture for use in major combat operations; promising technology trends; and an examination of organizational improvements that can enable the recommended architecture.