A B C D E F G I K L M N O P Q R S T V Y
DLMtool-package | Data-Limited Methods Toolkit |
avail | What objects of this class are available |
AvC | An MP where the TAC is average historical catch |
BK | Beddington and Kirkwood life-history MP (simple version) |
BK_CC | Beddington and Kirkwood life-history method combined with catch curve analysis |
BK_ML | Beddington and Kirkwood life-history analysis with mean-length estimator of current abundance |
Can | What data-limited methods can be applied to this DLM_data object? |
Cant | What methods can't be applied to this DLM data object |
CC1 | Constant catch management procedure of Geromont and Butterworth (2014) |
CC4 | Constant catch management procedure of Geromont and Butterworth (2014) |
CheckConverg | MSE convergence diagnostic |
ChooseEffort | Manually choose the historical relative fishing effort trajectory. |
ChooseSelect | Manually choose the historical selectivity pattern. |
comp | Comparison plots for individual simulations |
CompSRA | Age-composition-based estimate of current stock depletion given constant Z linked to an FMSY estimate to provide OFL. |
CompSRA4010 | Age-composition-based estimate of current stock depletion given constant Z linked to an FMSY estimate to provide OFL (with a 40-10 rule) |
CSRA | Catch at size reduction analysis |
CSRAfunc | Optimization function for CSRA |
curE | Fishing at current effort levels |
curE75 | Fishing at 75 per cent of current effort levels |
DBSRA | Depletion-Based Stock Reduction Analysis |
DBSRA4010 | Depletion-Based Stock Reduction Analysis paired with 40-10 harvest control rule |
DBSRA_40 | Depletion-Based Stock Reduction Analysis assuming 40 per cent stock depletion |
DBSRA_ML | Depletion-Based Stock Reduction Analysis using mean length estimator of stock depletion |
DCAC | Depletion Corrected Average Catch |
DCAC4010 | Depletion Corrected Average Catch paired with the 40-10 rule |
DCAC_40 | Depletion Corrected Average Catch assuming 40 per cent stock depletion |
DCAC_ML | Depletion-Based Stock Reduction Analysis using mean-length estimator of current depletion |
DD | Delay - Difference Stock Assessment with UMSY and MSY leading |
DD4010 | Delay - Difference Stock Assessment with UMSY and MSY leading coupled with a 40-10 harvest control rule |
DepF | Depletion Corrected Fratio |
DLMdat | Data and Operating model objects |
DLMDataDir | Directory of the installed package on your computer |
DLMtool | Data-Limited Methods Toolkit |
DLM_data-class | Class '"DLM_data"' |
DLM_fease-class | Class '"DLM_fease"' |
DLM_general-class | Class '"DLM_general"' |
DOM | How dominant is an MP? |
DoOpt | Optimization routine for LBSPR methods |
DynF | Dynamic Fratio MP |
EDCAC | Extra Depletion Corrected Average Catch |
Fadapt | An adaptive MP that uses trajectory in inferred suplus production and fishing mortality rate to update a TAC |
Fdem | Demographic FMSY method |
Fdem_CC | Demographic FMSY method using catch-curve analysis to estimate recent Z |
Fdem_ML | Demographic FMSY method that uses mean length data to estimate recent Z |
Fease | MP feasibility diagnostic |
Fleet-class | Class '"Fleet"' |
FMSYref | A reference FMSY method (uses perfect information about FMSY) |
FMSYref50 | A reference FMSY method that fishes at half of FMSY (uses perfect information about FMSY) |
FMSYref75 | A reference FMSY method that fishes at three quarters of FMSY (uses perfect information about FMSY) |
Fratio | An FMSY/M ratio method |
Fratio4010 | An FMSY/M ratio method paired with the 40-10 rule |
Fratio_CC | A data-limited method that uses FMSY/M ratio and a naive catch-curve estimate of recent Z |
Fratio_ML | An FMSY/M ratio MP that uses a mean length estimator of recent Z |
GB_CC | Geromont and Butterworth Constant Catch Harvest Control Rule |
GB_slope | Geromont and Butterworth index slope Harvest Control Rule |
GB_target | Geromont and Butterworth target CPUE and catch MP |
Gcontrol | G-control MP |
getAFC | Calculate age at first capture from length at first capture and growth |
getmov | Optimization function to find a movement model that matches user specified movement characteristics. |
getq | Optimization function that find the catchability (q where F=qE) value required to get to user-specified stock depletion (current biomass / unfished biomass) |
initialize-method | ~~ Methods for Function 'initialize' ~~ |
initialize-methods | ~~ Methods for Function 'initialize' ~~ |
Islope1 | A management procedure that incrementally adjusts the TAC to maintain a constant CPUE or relative abundance index. |
Islope4 | A management procedure that incrementally adjusts the TAC to maintain a constant CPUE or relative abundance index. |
IT10 | Index Target 10 |
IT5 | Index Target 5 |
Itarget1 | A management procedure that incrementally adjusts the TAC (starting from reference level that is a fraction of mean recent catches) to reach a target CPUE / relative abundance index. |
Itarget4 | A management procedure that incrementally adjusts the TAC (starting from reference level that is a fraction of mean recent catches) to reach a target CPUE / relative abundance index. |
ITM | Index Target based on natural mortality rate |
KalmanFilter | Kalman filter and Rauch-Tung-Striebel smoother |
Kplot | KOBE plot: a projection by projection plot of F/FMSY and B/BMSY |
L2A | Length to age conversion |
LBSPR | Apply LBSPR model to time-series of catch-at-length |
LBSPRSim | Per-Recruit Length-Based Spawning Potential Ratio Simulation Model |
LBSPR_ItEff | Length-based SPR model with HCR that iteratively adjusts Effort |
LBSPR_ItSel | Length-based SPR model with HCR that iteratively adjusts Selectivity. |
LBSPR_ItTAC | Length-based SPR model with HCR that iteratively adjusts TAC |
lmmodel-class | Class '"lmmodel"' |
LstepCC1 | A management procedure that incrementally adjusts the TAC according to the mean length of recent catches. |
LstepCC4 | A management procedure that incrementally adjusts the TAC according to the mean length of recent catches. |
Ltarget1 | A management procedure that incrementally adjusts the TAC to reach a target mean length in catches. |
Ltarget4 | A management procedure that incrementally adjusts the TAC to reach a target mean length in catches. |
matlenlim | A data-limited method in which fishing vulnerability is set according to the maturity curve |
matlenlim2 | A data-limited method in which fishing vulnerability is set slightly higher than the maturity curve |
MCD | Mean Catch Depletion |
MCD4010 | Mean Catch Depletion |
ML2D | Depletion and F estimation from mean length of catches |
movfit | Optimization function that returns the squared difference between user specified and calculated movement parameters. |
MRnoreal | An marine reserve in area 1 with no spatial reallocation of fishing effort |
MRreal | An marine reserve in area 1 with full reallocation of fishing effort |
MSE-class | Class '"MSE"' |
NAor0 | Is a value NA or zero. |
Needed | Data needed to get MPs running |
NOAA_plot | National Oceanographic and Atmospheric Administration default plot 1 |
Observation-class | Class '"Observation"' |
OM-class | Class '"OM"' |
OptFun | Objective function for LBSPR methods |
ourMSE | Example MSE object used in the vignette |
ourReefFish | Example data object |
plot-method | ~~ Methods for Function 'plot' ~~ |
plot-methods | ~~ Methods for Function 'plot' ~~ |
plotOFL | A generic OFL plot for NOAA use |
PMs | Built-in Performance metrics |
PorgMSE | Example MSE object used in the vignette |
Pplot | A projection by projection plot of F/FMSY and B/BMSY |
qopt | Internal optimization function that find the catchability (q where F=qE) value required to get to user-specified stock depletion (current biomass / unfished biomass) |
Rcontrol | Harvest Control Rule using prior for intrinsic rate of increase |
Rcontrol2 | MP using prior for intrinsic rate of increase with a quadratic approximation to surplus production |
replic8 | Enlarge (replicate) a DLM data object to create an additional dimension for simulation / sensitivity testing |
Required | What methods need what data |
runInMP | Runs input control MPs on a DLM_data object. |
runMSE | Run a Management Strategy Evaluation |
Sam | Conduct stock assessment |
SBT1 | SBT simple MP |
SBT2 | SBT complex MP |
Sense | Sensitivity analysis |
SetRecruitCycle | Function to calculate cyclic recruitment pattern given user-specified values of period and amplitude. |
SnapMSE | Example MSE object used in the vignette |
SPmod | Surplus production based catch-limit modifier |
SPMSY | Catch trend Surplus Production MSY MP |
SPslope | Slope in surplus production MP |
SPSRA | Surplus Production Stock Reduction Analysis |
SPSRA_ML | Surplus Production Stock Reduction Analysis using a mean-length estimate of current stock depletion |
Stock-class | Class '"Stock"' |
Sub | Subset MSE object by management procedure (MP) or simulation. |
summary-method | ~~ Methods for Function 'summary' ~~ |
summary-methods | ~~ Methods for Function 'summary' ~~ |
TAC | Calculate TAC recommendations for more than one MP |
Tplot | A trade-off plot for an MSE object |
Tplot2 | A trade-off plot for an MSE object that compares long-term yield (LTY: fraction of simulations getting over half FMSY yield in the last ten years of the projection), short-term yield (STY: fraction of simulations getting over half FMSY yield in the first ten years of the projection), variability in yield (VY: fraction of simulations where average annual variability in yield is less than 10 per cent) and biomass level (B10: the fraction of simulations in which biomass stays above 10 percent of BMSY). |
TradePlot | Generic Trade-off Plot |
VOI | Calculate Value Of Information |
YPR | Yield Per Recruit analysis to get FMSY proxy F01 |
YPR_CC | Yield Per Recruit analysis to get FMSY proxy F01 paired to a naive catch curve estimate of recent Z |
YPR_ML | Yield Per Recruit analysis to get FMSY proxy F01 paired with a mean-length estimate of current stock size |