My current physical modelling workflow

Описание к видео My current physical modelling workflow

In this video, I'm building a setup, that fits best into my daily sound design workflow. Starting from a basic comb filter and a simple exciter we end up in a system of coupled strings without the complexity presented in my earlier videos.



Timestamps:
00:00 Intro
00:10 Phyiscal modelling - my concerns with this term
01:15 What we build in this video
01:40 Basic comb filter
03:00 Exciter
03:18 MIDI note trigger
04:05 Pitch to delay time
04:25 Feedback parameter
05:00 Testing the comb filter
05:17 Filtering the trigger
06:15 Creating patching helper inputs and outputs
07:00 Duplicating the comb
07:28 Tune modification using division
08:25 Tune parameter
08:31 Testing the 2 combs
09:35 Rearranging the outputs of the comb filter
10:30 Introducing the 'state' input and output
11:32 Connecting the states is coupling - circular comb filter
12:07 Controlling the position of the 1 sample delay
12:45 Sum bus
13:15 Renaming and rearranging inputs and outputs
14:19 Testing
14:51 Adding the 3rd coupled resonator
15:30 Adding a 4th coupled resonator
15:50 Using the delay bus
16:13 Damping
16:43 Tweaking stuff randomly (some notes got really loud, sorry)
17:27 Exciter diffusion
17:58 Testing the patch
19:13 Compensation for the 1 sample delay
20:50 Introducing gain for each comb filter
21:27 Controlling the gains with a ‘Mixer 4 lin’ node
22:00 Inverting
22:16 Final thoughts, possibilities
23:56 Patch on Discord, subscribe, leave a comment
24:00 Bye
Our Discord server:   / discord  


We are developing Alpha Forever Modular, a modular VST plugin, and sound design tool.


My latest release made using Alpha Forever sounds only:    • 9b0 - Sine (Official Video)  


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Know more about Alpha Forever Modular:


https://afmodular.com

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