Package jline.solvers.mam.handlers
package jline.solvers.mam.handlers
Handlers for SolverMAM.
This package contains event and result handlers for Matrix Analytic Methods, managing solver execution and output processing.
- Since:
- LINE 2.0
- See Also:
-
ClassesClassDescriptionResult of BMAP/MAP/1 queue analysis.Background modulating chain of a mixed network: the continuous-time Markov chain of the closed-class population vector, with the open classes present only through the server capacity they leave free.Solved background chain.Lumps the background modulating chain onto the number of closed jobs held by one station, giving the Markovian environment that the open classes at that station see.Lumped environment of one station.Groups closed chains by similarity of their per-station SERVICE DEMAND, for the aggregation
Solver_mam_bgchainapplies to the chains it is not carrying exactly.Open classes of one station, solved as a level-dependent QBD MODULATED by the background chain: level = number of open jobs held by the station, phase = (arrival MAP phase, environment state, service phase).Solved open station.Decides if a station matches the M/M/c/K assumptions.Outcome of the M/M/c/K detection.Arrival-weighted phase-type mixture of the per-class service laws at a station, as the service descriptor accepted byQsys_mapg1kandQsys_mmapg1k.The mixture, kept as its two blocks plus the aggregated arrival process.Finite-buffer marginal for MMAP[K]/PH[K]/1/FCFS.Outcome of the finite-buffer truncation.Result of MAP/BMAP/1 queue analysis.Analysis result indicating priority configuration support level.Legacy entry point; the algorithm lives inDa_traffic_superpos.Top-level dispatcher for the MAM/MMAP fork-join decomposition.Closed-network wrapper aroundSolver_mam_basic_mmap_inner.MAM/MMAP fork-join decomposition algorithm parameterised by per-class arrival rates LAMBDA.Mixed-network solver that treats the CLOSED classes as a background modulating chain and the OPEN classes as matrix-analytic queues driven by it.Solver for single-class two-station queueing networks using a Level-Dependent QBD.LD-QBD block construction, flattening and metric mapping.Per-(station,class) mean metrics derived from a flat LD-QBD distribution.Flattened generator together with the queue level of each flat state.Block-tridiagonal LD-QBD representation plus the parameters the avg mapping needs.MAP/BMAP/1 Queue Solver using GI/M/1 type analysis with ETAQA.FJ-aware traffic solver extending solver_mam_traffic with mmap_max synchronization at join points.Container for transient QBD analysis results.