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<title>Update an mkinfit model with different arguments — update.mkinfit • mkin</title>


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<meta property="og:title" content="Update an mkinfit model with different arguments — update.mkinfit" />
<meta property="og:description" content="This function will return an updated mkinfit object. The fitted degradation
model parameters from the old fit are used as starting values for the
updated fit. Values specified as 'parms.ini' and/or 'state.ini' will
override these starting values." />
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    <h1>Update an mkinfit model with different arguments</h1>
    
    <div class="hidden name"><code>update.mkinfit.Rd</code></div>
    </div>

    <div class="ref-description">
    <p>This function will return an updated mkinfit object. The fitted degradation
model parameters from the old fit are used as starting values for the
updated fit. Values specified as 'parms.ini' and/or 'state.ini' will
override these starting values.</p>
    </div>

    <pre class="usage"><span class='co'># S3 method for mkinfit</span>
<span class='fu'><a href='https://rdrr.io/r/stats/update.html'>update</a></span>(<span class='no'>object</span>, <span class='no'>...</span>, <span class='kw'>evaluate</span> <span class='kw'>=</span> <span class='fl'>TRUE</span>)</pre>

    <h2 class="hasAnchor" id="arguments"><a class="anchor" href="#arguments"></a>Arguments</h2>
    <table class="ref-arguments">
    <colgroup><col class="name" /><col class="desc" /></colgroup>
    <tr>
      <th>object</th>
      <td><p>An mkinfit object to be updated</p></td>
    </tr>
    <tr>
      <th>...</th>
      <td><p>Arguments to <code><a href='mkinfit.html'>mkinfit</a></code> that should replace
the arguments from the original call. Arguments set to NULL will
remove arguments given in the original call</p></td>
    </tr>
    <tr>
      <th>evaluate</th>
      <td><p>Should the call be evaluated or returned as a call</p></td>
    </tr>
    </table>


    <h2 class="hasAnchor" id="examples"><a class="anchor" href="#examples"></a>Examples</h2>
    <pre class="examples"><div class='input'><span class='co'># \dontrun{</span>
<span class='no'>fit</span> <span class='kw'>&lt;-</span> <span class='fu'><a href='mkinfit.html'>mkinfit</a></span>(<span class='st'>"DFOP"</span>, <span class='fu'><a href='https://rdrr.io/r/base/subset.html'>subset</a></span>(<span class='no'>FOCUS_2006_D</span>, <span class='no'>value</span> <span class='kw'>!=</span> <span class='fl'>0</span>), <span class='kw'>quiet</span> <span class='kw'>=</span> <span class='fl'>TRUE</span>)
<span class='fu'><a href='https://rdrr.io/r/stats/update.html'>update</a></span>(<span class='no'>fit</span>, <span class='kw'>error_model</span> <span class='kw'>=</span> <span class='st'>"tc"</span>)</div><div class='output co'>#&gt; $par
#&gt;     parent_0       log_k1       log_k2        g_ilr    sigma_low     rsd_high 
#&gt; 100.85489822   8.84468217  -2.29693632 -14.95263998   0.00375222   0.06763435 
#&gt; 
#&gt; $objective
#&gt; [1] 19.40656
#&gt; 
#&gt; $convergence
#&gt; [1] 0
#&gt; 
#&gt; $iterations
#&gt; [1] 120
#&gt; 
#&gt; $evaluations
#&gt; function gradient 
#&gt;      144      847 
#&gt; 
#&gt; $message
#&gt; [1] "relative convergence (4)"
#&gt; 
#&gt; $logLik
#&gt; [1] -19.40656
#&gt; 
#&gt; $d_3_message
#&gt;                                                            threestep 
#&gt; "Three-step fitting yielded a higher likelihood than direct fitting" 
#&gt; 
#&gt; $hessian
#&gt;                parent_0        log_k1        log_k2         g_ilr     sigma_low
#&gt; parent_0   3.662473e-01 -2.914408e-16 -7.241561e+01 -3.021629e-08  1.923504e+01
#&gt; log_k1    -2.914408e-16  0.000000e+00 -2.215935e-13 -7.291307e-25  3.416474e-15
#&gt; log_k2    -7.241561e+01 -2.215935e-13  3.127457e+04  6.766544e-06 -1.495826e+04
#&gt; g_ilr     -3.021629e-08 -7.291307e-25  6.766544e-06  3.122099e-09 -1.797429e-06
#&gt; sigma_low  1.923504e+01  3.416474e-15 -1.495826e+04 -1.797429e-06  7.759299e+04
#&gt; rsd_high   3.902119e+00 -1.801019e-16 -1.685343e+02 -3.750713e-07  3.984179e+03
#&gt;                rsd_high
#&gt; parent_0   3.902119e+00
#&gt; log_k1    -1.801019e-16
#&gt; log_k2    -1.685343e+02
#&gt; g_ilr     -3.750713e-07
#&gt; sigma_low  3.984179e+03
#&gt; rsd_high   7.188991e+03
#&gt; 
#&gt; $hessian_notrans
#&gt;                parent_0            k1            k2             g     sigma_low
#&gt; parent_0   3.662473e-01 -3.714445e-19 -7.201669e+02 -3.261485e+01  1.923504e+01
#&gt; k1        -3.714445e-19  0.000000e+00 -4.258512e-15  7.218123e-21  4.355854e-18
#&gt; k2        -7.201669e+02 -4.258512e-15  3.092510e+06  7.263235e+04 -1.456870e+05
#&gt; g         -3.261485e+01  7.218123e-21  7.263235e+04  3.291750e+03 -1.939948e+03
#&gt; sigma_low  1.923504e+01  4.355854e-18 -1.456870e+05 -1.939948e+03  7.759299e+04
#&gt; rsd_high   3.902119e+00 -2.259812e-19 -1.779680e+03 -4.048658e+02  3.984179e+03
#&gt;                rsd_high
#&gt; parent_0   3.902119e+00
#&gt; k1        -2.259812e-19
#&gt; k2        -1.779680e+03
#&gt; g         -4.048658e+02
#&gt; sigma_low  3.984179e+03
#&gt; rsd_high   7.188991e+03
#&gt; 
#&gt; $call
#&gt; mkinfit(mkinmod = "DFOP", observed = subset(FOCUS_2006_D, value != 
#&gt;     0), parms.ini = c(k1 = 0.699298911979803, k2 = 0.0899931270871125, 
#&gt; g = 0.0923391681138686), state.ini = c(parent = 101.948852047129), 
#&gt;     quiet = TRUE, error_model = "tc")
#&gt; 
#&gt; $error_model_algorithm
#&gt; [1] "d_3"
#&gt; 
#&gt; $solution_type
#&gt; [1] "analytical"
#&gt; 
#&gt; $transform_rates
#&gt; [1] TRUE
#&gt; 
#&gt; $transform_fractions
#&gt; [1] TRUE
#&gt; 
#&gt; $reweight.tol
#&gt; [1] 1e-08
#&gt; 
#&gt; $reweight.max.iter
#&gt; [1] 10
#&gt; 
#&gt; $control
#&gt; $control$eval.max
#&gt; [1] 300
#&gt; 
#&gt; $control$iter.max
#&gt; [1] 200
#&gt; 
#&gt; 
#&gt; $calls
#&gt; [1] 3105
#&gt; 
#&gt; $time
#&gt;        User      System verstrichen 
#&gt;      10.251       0.000      10.257 
#&gt; 
#&gt; $mkinmod
#&gt; &lt;mkinmod&gt; model generated with
#&gt; Use of formation fractions $use_of_ff: min 
#&gt; Specification $spec:
#&gt; $parent
#&gt; $type: DFOP; $sink: TRUE
#&gt; Differential equations:
#&gt; d_parent/dt = - ((k1 * g * exp(-k1 * time) + k2 * (1 - g) * exp(-k2 *
#&gt;            time)) / (g * exp(-k1 * time) + (1 - g) * exp(-k2 * time)))
#&gt;            * parent
#&gt; 
#&gt; $observed
#&gt;      name time  value
#&gt; 1  parent    0  99.46
#&gt; 2  parent    0 102.04
#&gt; 3  parent    1  93.50
#&gt; 4  parent    1  92.50
#&gt; 5  parent    3  63.23
#&gt; 6  parent    3  68.99
#&gt; 7  parent    7  52.32
#&gt; 8  parent    7  55.13
#&gt; 9  parent   14  27.27
#&gt; 10 parent   14  26.64
#&gt; 11 parent   21  11.50
#&gt; 12 parent   21  11.64
#&gt; 13 parent   35   2.85
#&gt; 14 parent   35   2.91
#&gt; 15 parent   50   0.69
#&gt; 16 parent   50   0.63
#&gt; 17 parent   75   0.05
#&gt; 18 parent   75   0.06
#&gt; 
#&gt; $obs_vars
#&gt; [1] "parent"
#&gt; 
#&gt; $predicted
#&gt;       name       time        value
#&gt; 1   parent  0.0000000 100.85489822
#&gt; 2   parent  0.7575758  93.45650191
#&gt; 3   parent  1.0000000  91.20560523
#&gt; 4   parent  1.5151515  86.60082860
#&gt; 5   parent  2.2727273  80.24806580
#&gt; 6   parent  3.0000000  74.58828105
#&gt; 7   parent  3.0303030  74.36132158
#&gt; 8   parent  3.7878788  68.90641029
#&gt; 9   parent  4.5454545  63.85165403
#&gt; 10  parent  5.3030303  59.16769870
#&gt; 11  parent  6.0606061  54.82734352
#&gt; 12  parent  6.8181818  50.80538306
#&gt; 13  parent  7.0000000  49.88485755
#&gt; 14  parent  7.5757576  47.07846089
#&gt; 15  parent  8.3333333  43.62493394
#&gt; 16  parent  9.0909091  40.42474681
#&gt; 17  parent  9.8484848  37.45931528
#&gt; 18  parent 10.6060606  34.71141842
#&gt; 19  parent 11.3636364  32.16509858
#&gt; 20  parent 12.1212121  29.80556871
#&gt; 21  parent 12.8787879  27.61912649
#&gt; 22  parent 13.6363636  25.59307475
#&gt; 23  parent 14.0000000  24.67405211
#&gt; 24  parent 14.3939394  23.71564776
#&gt; 25  parent 15.1515152  21.97594287
#&gt; 26  parent 15.9090909  20.36385722
#&gt; 27  parent 16.6666667  18.87002909
#&gt; 28  parent 17.4242424  17.48578345
#&gt; 29  parent 18.1818182  16.20308170
#&gt; 30  parent 18.9393939  15.01447489
#&gt; 31  parent 19.6969697  13.91306051
#&gt; 32  parent 20.4545455  12.89244241
#&gt; 33  parent 21.0000000  12.20428157
#&gt; 34  parent 21.2121212  11.94669362
#&gt; 35  parent 21.9696970  11.07032198
#&gt; 36  parent 22.7272727  10.25823818
#&gt; 37  parent 23.4848485   9.50572628
#&gt; 38  parent 24.2424242   8.80841627
#&gt; 39  parent 25.0000000   8.16225872
#&gt; 40  parent 25.7575758   7.56350125
#&gt; 41  parent 26.5151515   7.00866672
#&gt; 42  parent 27.2727273   6.49453311
#&gt; 43  parent 28.0303030   6.01811471
#&gt; 44  parent 28.7878788   5.57664485
#&gt; 45  parent 29.5454545   5.16755983
#&gt; 46  parent 30.3030303   4.78848399
#&gt; 47  parent 31.0606061   4.43721595
#&gt; 48  parent 31.8181818   4.11171583
#&gt; 49  parent 32.5757576   3.81009336
#&gt; 50  parent 33.3333333   3.53059697
#&gt; 51  parent 34.0909091   3.27160354
#&gt; 52  parent 34.8484848   3.03160906
#&gt; 53  parent 35.0000000   2.98576554
#&gt; 54  parent 35.6060606   2.80921981
#&gt; 55  parent 36.3636364   2.60314433
#&gt; 56  parent 37.1212121   2.41218590
#&gt; 57  parent 37.8787879   2.23523557
#&gt; 58  parent 38.6363636   2.07126576
#&gt; 59  parent 39.3939394   1.91932426
#&gt; 60  parent 40.1515152   1.77852870
#&gt; 61  parent 40.9090909   1.64806147
#&gt; 62  parent 41.6666667   1.52716489
#&gt; 63  parent 42.4242424   1.41513691
#&gt; 64  parent 43.1818182   1.31132694
#&gt; 65  parent 43.9393939   1.21513214
#&gt; 66  parent 44.6969697   1.12599389
#&gt; 67  parent 45.4545455   1.04339454
#&gt; 68  parent 46.2121212   0.96685442
#&gt; 69  parent 46.9696970   0.89592904
#&gt; 70  parent 47.7272727   0.83020652
#&gt; 71  parent 48.4848485   0.76930520
#&gt; 72  parent 49.2424242   0.71287140
#&gt; 73  parent 50.0000000   0.66057741
#&gt; 74  parent 50.7575758   0.61211954
#&gt; 75  parent 51.5151515   0.56721639
#&gt; 76  parent 52.2727273   0.52560719
#&gt; 77  parent 53.0303030   0.48705031
#&gt; 78  parent 53.7878788   0.45132184
#&gt; 79  parent 54.5454545   0.41821430
#&gt; 80  parent 55.3030303   0.38753542
#&gt; 81  parent 56.0606061   0.35910705
#&gt; 82  parent 56.8181818   0.33276409
#&gt; 83  parent 57.5757576   0.30835357
#&gt; 84  parent 58.3333333   0.28573373
#&gt; 85  parent 59.0909091   0.26477320
#&gt; 86  parent 59.8484848   0.24535028
#&gt; 87  parent 60.6060606   0.22735216
#&gt; 88  parent 61.3636364   0.21067432
#&gt; 89  parent 62.1212121   0.19521992
#&gt; 90  parent 62.8787879   0.18089921
#&gt; 91  parent 63.6363636   0.16762901
#&gt; 92  parent 64.3939394   0.15533228
#&gt; 93  parent 65.1515152   0.14393759
#&gt; 94  parent 65.9090909   0.13337879
#&gt; 95  parent 66.6666667   0.12359454
#&gt; 96  parent 67.4242424   0.11452804
#&gt; 97  parent 68.1818182   0.10612662
#&gt; 98  parent 68.9393939   0.09834151
#&gt; 99  parent 69.6969697   0.09112749
#&gt; 100 parent 70.4545455   0.08444266
#&gt; 101 parent 71.2121212   0.07824822
#&gt; 102 parent 71.9696970   0.07250818
#&gt; 103 parent 72.7272727   0.06718920
#&gt; 104 parent 73.4848485   0.06226042
#&gt; 105 parent 74.2424242   0.05769319
#&gt; 106 parent 75.0000000   0.05346100
#&gt; 
#&gt; $rss
#&gt; function (P) 
#&gt; cost_function(P, OLS = TRUE, update_data = FALSE)
#&gt; &lt;bytecode: 0x555558e48258&gt;
#&gt; &lt;environment: 0x55555caa08e0&gt;
#&gt; 
#&gt; $ll
#&gt; function (P, fixed_degparms = FALSE, fixed_errparms = FALSE) 
#&gt; {
#&gt;     -cost_function(P, trans = FALSE, fixed_degparms = fixed_degparms, 
#&gt;         fixed_errparms = fixed_errparms, OLS = FALSE, update_data = FALSE)
#&gt; }
#&gt; &lt;bytecode: 0x555558e47e30&gt;
#&gt; &lt;environment: 0x55555caa08e0&gt;
#&gt; 
#&gt; $start
#&gt;                  value   type
#&gt; parent_0  101.94885205  state
#&gt; k1          0.69929891 deparm
#&gt; k2          0.08999313 deparm
#&gt; g           0.09233917 deparm
#&gt; sigma_low   0.10000000  error
#&gt; rsd_high    0.10000000  error
#&gt; 
#&gt; $start_transformed
#&gt;                value lower upper
#&gt; parent_0  101.948852  -Inf   Inf
#&gt; log_k1     -0.357677  -Inf   Inf
#&gt; log_k2     -2.408022  -Inf   Inf
#&gt; g_ilr      -1.616024  -Inf   Inf
#&gt; sigma_low   0.100000     0   Inf
#&gt; rsd_high    0.100000     0   Inf
#&gt; 
#&gt; $fixed
#&gt; [1] value type 
#&gt; &lt;0 Zeilen&gt; (oder row.names mit Länge 0)
#&gt; 
#&gt; $data
#&gt;    time variable observed   predicted     residual
#&gt; 1     0   parent    99.46 100.8548982  -1.39489822
#&gt; 2     0   parent   102.04 100.8548982   1.18510178
#&gt; 3     1   parent    93.50  91.2056052   2.29439477
#&gt; 4     1   parent    92.50  91.2056052   1.29439477
#&gt; 5     3   parent    63.23  74.5882810 -11.35828105
#&gt; 6     3   parent    68.99  74.5882810  -5.59828105
#&gt; 7     7   parent    52.32  49.8848576   2.43514245
#&gt; 8     7   parent    55.13  49.8848576   5.24514245
#&gt; 9    14   parent    27.27  24.6740521   2.59594789
#&gt; 10   14   parent    26.64  24.6740521   1.96594789
#&gt; 11   21   parent    11.50  12.2042816  -0.70428157
#&gt; 12   21   parent    11.64  12.2042816  -0.56428157
#&gt; 13   35   parent     2.85   2.9857655  -0.13576554
#&gt; 14   35   parent     2.91   2.9857655  -0.07576554
#&gt; 15   50   parent     0.69   0.6605774   0.02942259
#&gt; 16   50   parent     0.63   0.6605774  -0.03057741
#&gt; 17   75   parent     0.05   0.0534610  -0.00346100
#&gt; 18   75   parent     0.06   0.0534610   0.00653900
#&gt; 
#&gt; $atol
#&gt; [1] 1e-08
#&gt; 
#&gt; $rtol
#&gt; [1] 1e-10
#&gt; 
#&gt; $err_mod
#&gt; [1] "tc"
#&gt; 
#&gt; $bparms.optim
#&gt;     parent_0           k1           k2            g 
#&gt; 1.008549e+02 6.937399e+03 1.005665e-01 6.551046e-10 
#&gt; 
#&gt; $bparms.fixed
#&gt; numeric(0)
#&gt; 
#&gt; $bparms.ode
#&gt;           k1           k2            g 
#&gt; 6.937399e+03 1.005665e-01 6.551046e-10 
#&gt; 
#&gt; $bparms.state
#&gt;   parent 
#&gt; 100.8549 
#&gt; 
#&gt; $errparms
#&gt;  sigma_low   rsd_high 
#&gt; 0.00375222 0.06763435 
#&gt; 
#&gt; $df.residual
#&gt; [1] 12
#&gt; 
#&gt; $date
#&gt; [1] "Fri Nov  1 10:10:42 2019"
#&gt; 
#&gt; $version
#&gt; [1] "0.9.49.6"
#&gt; 
#&gt; $Rversion
#&gt; [1] "3.6.1"
#&gt; 
#&gt; attr(,"class")
#&gt; [1] "mkinfit" "modFit" </div><div class='input'># }
</div></pre>
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    <h2>Contents</h2>
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