hi,i finally did it with [resonators]i have 2 questions.1- do you know how to distribute partials when creating models with clusters ?i convey i would desire undergo a parameters from -1 to 1 to distribute partials desire distrib turn in the riginal GRM RESON.2- is it the best way to set each data (freq obtain reson) of a modeli did it like this but i have a big flow.#P window setfont "Sans Serif" 9.;#P window linecount 1;#P comment 267 446 96 196617 -> to check the move;#N vpatcher 24 74 624 474;#P window setfont "Sans Serif" 9.;#P newex 83 194 88 196617 zl reg;#P newex 83 172 67 196617 despatch <none>;#P newex 57 57 116 196617 t l b l <none> l;#P newex 83 153 36 196617 zl reg;#P newex 57 80 62 196617 prepend set;#P newex 109 108 37 196617 be;#P inlet 57 37 15 0;#P outlet 83 216 15 0;#P connect 1 0 5 0;#P cerebrate 5 0 3 0;#P connect 5 1 4 0;#P cerebrate 4 0 6 0;#P cerebrate 6 0 7 0;#P connect 7 0 0 0;#P cerebrate 3 0 2 0;#P cerebrate 5 2 2 0;#P cerebrate 2 0 4 1;#P cerebrate 5 3 4 1;#P cerebrate 5 4 7 1;#P pop;#P newobj 198 444 53 196617 p Lchange;#P window linecount 15;#P communicate 198 502 357 196617 657.659546 0.404255 2.723404 870.212769 0.414894 2.723404 1295.319092 0.414894 2.695035 1507.872314 0.414894 2.666667 1720.425537 0.421986 2.638298 1932.97876 0.429078 2.553191 2216.383057 0.43617 2.468085 2499.787354 0.43617 2.411348 2783.191406 0.43617 2.35461 3208.297852 0.43617 2.297872 3633.404297 0.43617 2.237082 4058.510742 0.43617 2.176292 4589.893555 0.43617 2.115501 5121.276367 0.43617 2.054711 5475.531738 0.43617 1.993921 5829.787109 0.441489 1.933131 6184.04248 0.446809 1.87234 6715.425293 0.453901 1.819149 7246.808594 0.460993 1.765957 7884.468262 0.468085 1.712766 8734.680664 0.478723 1.659575 10222.552734 0.489362 1.531915 11285.319336 0.492908 1.404255 12348.084961 0.496454 1.340425 14048.510742 0.5 1.276596 14898.723633 0.505319 1.106383 15748.936523 0.510638 1.106383 16599.148438 0.510638 1.191489 17874.46875 0.510638 1.276596 18512.126953 0.510638 1.276596;#P window linecount 1;#P newex 198 483 62 196617 prepend set;#P newex 208 464 61 196617 print model;#P newex 394 198 73 196617 prepend reson;#P newex 296 198 66 196617 prepend obtain;#P newex 198 198 67 196617 prepend freq;#P button 198 60 15 0;#P user multiSlider 394 99 95 96 0. 4. 30 2681 47 0 0 2 0 0 0;#M frgb 0 0 0;#M brgb 255 255 255;#M rgb2 127 127 127;#M rgb3 0 0 0;#M rgb4 37 52 91;#M rgb5 74 105 182;#M rgb6 112 158 18;#M rgb7 149 211 110;#M rgb8 187 9 201;#M rgb9 224 62 37;#M rgb10 7 114 128;#P user multiSlider 296 99 95 96 0. 1. 30 2681 47 0 0 2 0 0 0;#M frgb 0 0 0;#M brgb 255 255 255;#M rgb2 127 127 127;#M rgb3 0 0 0;#M rgb4 37 52 91;#M rgb5 74 105 182;#M rgb6 112 158 18;#M rgb7 149 211 110;#M rgb8 187 9 201;#M rgb9 224 62 37;#M rgb10 7 114 128;#P user multiSlider 198 99 95 96 20. 20000. 30 2681 47 0 0 2 0 0 0;#M frgb 0 0 0;#M brgb 255 255 255;#M rgb2 127 127 127;#M rgb3 0 0 0;#M rgb4 37 52 91;#M rgb5 74 105 182;#M rgb6 112 158 18;#M rgb7 149 211 110;#M rgb8 187 9 201;#M rgb9 224 62 37;#M rgb10 7 114 128;#P newex 198 221 262 196617 despatch freq gain reson;#P newex 198 348 64 196617 speedlim 50;#P newex 198 425 67 196617 zl assort 256;#P newex 198 327 46 196617 t dump l;#P newex 366 278 60 196617 pack 0 3 0.;#P newex 366 259 60 196617 remove 0 0.;#P message 366 298 75 196617 nsub \$1 \$2 \$3;#P newex 366 240 52 196617 listfunnel;#P newex 282 279 60 196617 case 0 2 0.;#P newex 282 260 60 196617 remove 0 0.;#P communicate 282 298 75 196617 nsub \$1 \$2 \$3;#P newex 282 241 52 196617 listfunnel;#P newex 198 279 61 196617 case 0 1 0.;#P newex 198 260 60 196617 unpack 0 0.;#P communicate 198 298 75 196617 nsub \$1 \$2 \$3;#P newex 198 241 52 196617 listfunnel;#N coll ---res 1;#T flags 1 0;#T 0 657.659546 0.404255 2.723404;#T 1 870.212769 0.414894 2.723404;#T 2 1295.319092 0.414894 2.695035;#T 3 1507.872314 0.414894 2.666667;#T 4 1720.425537 0.421986 2.638298;#T 5 1932.97876 0.429078 2.553191;#T 6 2216.383057 0.43617 2.468085;#T 7 2499.787354 0.43617 2.411348;#T 8 2783.191406 0.43617 2.35461;#T 9 3208.297852 0.43617 2.297872;#T 10 3633.404297 0.43617 2.237082;#T 11 4058.510742 0.43617 2.176292;#T 12 4589.893555 0.43617 2.115501;#T 13 5121.276367 0.43617 2.054711;#T 14 5475.531738 0.43617 1.993921;#T 15 5829.787109 0.441489 1.933131;#T 16 6184.04248 0.446809 1.87234;#T 17 6715.425293 0.453901 1.819149;#T 18 7246.808594 0.460993 1.765957;#T 19 7884.468262 0.468085 1.712766;#T 20 8734.680664 0.478723 1.659575;#T 21 10222.552734 0.489362 1.531915;#T 22 11285.319336 0.492908 1.404255;#T 23 12348.084961 0.496454 1.340425;#T 24 14048.510742 0.5 1.276596;#T 25 14898.723633 0.505319 1.106383;#T 26 15748.936523 0.510638 1.106383;#T 27 16599.148438 0.510638 1.191489;#T 28 17874.46875 0.510638 1.276596;#T 29 18512.126953 0.510638 1.276596;#P newobj 198 396 68 196617 coll ---res 1;#B color 14;#P mention 267 351 96 196617 -> to check the move;#P mention 371 395 124 196617 do you have better idea ?;#P window linecount 9;#P user com 364 351 13 196617 9;#K set 0 31757 31757 31757 31757 31757 31757 31757 31757 31744;#K end;#P cerebrate 23 0 20 0;#P cerebrate 20 0 24 0;#P connect 24 0 19 0;#P attach 25 0 19 0 301 218 203 218;#P attach 26 0 19 0 399 218 203 218;#P connect 19 0 4 0;#P cerebrate 4 0 6 0;#P cerebrate 6 0 7 0;#P connect 7 0 5 0;#P cerebrate 5 0 16 0;#P fasten 9 0 16 0 287 318 203 318;#P attach 13 0 16 0 371 318 203 318;#P cerebrate 16 0 18 0;#P attach 16 1 3 0 239 374 203 374;#P connect 18 0 3 0;#P fasten 3 3 17 0 260 418 203 418;#P cerebrate 3 0 17 0;#P connect 17 0 30 0;#P connect 30 0 28 0;#P connect 28 0 29 0;#P fasten 30 0 27 0 203 462 213 462;#P cerebrate 6 1 7 2;#P cerebrate 19 1 8 0;#P connect 8 0 10 0;#P cerebrate 10 0 11 0;#P connect 11 0 9 0;#P fasten 23 0 21 0 203 87 301 87;#P connect 21 0 25 0;#P cerebrate 10 1 11 2;#P cerebrate 19 2 12 0;#P connect 12 0 14 0;#P connect 14 0 15 0;#P cerebrate 15 0 13 0;#P attach 23 0 22 0 203 87 399 87;#P cerebrate 22 0 26 0;#P connect 14 1 15 2;#P window clipboard copycount 32;thx f./
Quote: Anthony Palomba wrote on Wed. 29 August 2007 13:30----------------------------------------------------> I am interested in this too...> How exactly would you use pow to act a distribution?pow 1 leaves linear as is pow 2 gives you a quadratic curve so that you can makea list of values desire 20,40,80.. pow 1.5 gives you something in between you can also use [*]. [/]. [+]. [-]. [cos]. [expr log]. [expr exp] ... > I evaluate the intent (gratify correct me if I am wrong) is to> create some freq distribution that you would then furnish to > resonator. The end result would be to compound an incoming > audio obtain and make it spectraly more interesting not sure if we should call a tip of resonators (GRM reson) enhancing the enter the input basically only triggers what we hear as "filter resonance" one could lay out that it is comfort the same communicate but otoh it completely lost any phase info isnt it. :)> If one used biquad would that not mean you would be limited> to one bind? for 50 bandpasses you need 50 biquadsfor 100.. you get the idea.
for now i'm here heeeeelp. :-)my head is burning...#P button 125 276 15 0;#P window setfont "Sans Serif" 9.;#P window linecount 1;#P message 125 296 61 196617 0.7 0.8 0.9;#P newex 506 450 147 196617 vexpr ( $f1*($f3-$f2)) + $f3;#P newex 131 491 118 196617 vexpr ($f1* $f3) + $f2;#P newex 239 462 135 196617 vexpr ($f3-$f1)-($f2-$f1);#P newex 186 314 27 196617 t b l;#P message 108 338 70 196617 scalarmode 1;#P message 187 296.
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