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Title: Neural network utility in nondestructive transuranic waste assay, initial investigations

Conference ·
OSTI ID:135042

The determination of transuranic (TRU) and associated radioactive material quantities entrained in waste forms is a necessary component of waste characterization. Measurement performance requirements are specified in the National TRU Waste Characterization Program quality assurance plan for which compliance must be demonstrated prior to the transportation and disposition of wastes. With respect to this criterion, the existing TRU nondestructive waste assay (NDA) capability is inadequate for a significant fraction of the US Department of Energy (DOE) complex waste inventory. This is a result of the general application of safeguard-type measurement and calibration schemes to waste form configurations. Incompatibilities between such measurement methods and actual waste form configurations complicate regulation. compliance demonstration processes and illustrate the need for an alternate measurement interpretation paradigm. Hence, it appears necessary to supplement or perhaps restructure the perceived solution and approach to the waste NDA problem. The first step is to understand the magnitude of the waste matrix/source attribute space associated with those waste form configurations in inventory and how this creates complexities and unknowns with respect to existing NDA methods. Once defined and/or bounded, a conceptual method must be developed that specifies the necessary tools and the framework in which the tools are used. A promising framework is a hybridized neural network structure. Discussed are some typical complications associated with conventional waste NDA techniques and how improvements can be obtained through the application of neural networks.

Research Organization:
EG and G Idaho, Inc., Idaho Falls, ID (United States); Pacific Northwest National Lab. (PNNL), Richland, WA (United States)
Sponsoring Organization:
USDOE, Washington, DC (United States)
DOE Contract Number:
AC06-76RL01830; AC07-94ID13223
OSTI ID:
135042
Report Number(s):
INEL-95/00263; CONF-9503132-3; ON: DE96002525; TRN: 96:000238
Resource Relation:
Conference: 74. annual Gas Processors Association (GPA) meeting, San Antonio, TX (United States), 13-15 Mar 1995; Other Information: PBD: 1995
Country of Publication:
United States
Language:
English