Generative Adversarial Networks for Scintillation Signal Simulation in EXO-200.
S. LiI. OstrovskiyZ. LiL. YangS. Al KharusiG. AntonI. BadhreesP. S. BarbeauD. BeckV. BelovT. BhattaM. BreidenbachT. BrunnerG. F. CaoW. R. CenC. ChambersB. ClevelandM. CoonA. CraycraftT. DanielsL. DarrochS. J. DaughertyJ. DavisS. DelaquisA. Der Mesrobian-KabakianR. DeVoeJ. DillingA. DolgolenkoM. J. DolinskiJ. EcheversW. Fairbank Jr.D. FairbankJ. FarineS. FeyzbakhshP. FierlingerY. S. FuD. FudenbergP. GautamR. GorneaG. GrattaC. HallE. V. HansenJ. HoesslP. HufschmidtM. HughesA. IversonA. JamilC. JessimanM. J. JewellA. JohnsonA. KarelinL. J. KaufmanT. KoffasR. KrückenA. KuchenkovK. S. KumarY. LanA. LarsonB. G. LenardoD. S. LeonardG. S. LiC. LicciardiY. H. LinR. MacLellanT. McElroyT. MichelB. MongD. C. MooreK. MurrayO. NjoyaO. NusairA. OdianA. PernaA. PiepkeA. PocarF. RetièreA. L. RobinsonP. C. RowsonJ. RungeS. SchmidtD. SinclairK. SkarpaasA. K. SomaV. StekhanovM. TarkaS. ThibadoJ. ToddT. TolbaT. I. TotevR. TsangPublished in: CoRR (2023)
Keyphrases
- signal processing
- social networks
- network design
- high frequency
- data driven
- generative model
- frequency domain
- simulation model
- multi agent
- neural network
- simulation models
- network structure
- complex networks
- mathematical model
- network analysis
- non stationary
- simulation environment
- data sets
- network size
- traffic network