Loudspeaker Positions Remapping
Thanks to its measurement probe with 4 capsules, the Optimizer determines in 3D the relative position of each loudspeaker. From the Input Format setting, the Optimizer knows the reference loudspeaker positions defined by the standard for the target system, for example ITU 775. The Optimizer computes the remapping matrix that must be applied to the input signal to create the same acoustic field that would be obtained if the speakers were positioned correctly.
	
		
			
		
		
	
								Thanks to its measurement probe with 4 capsules, the Optimizer determines in 3D the relative position of each loudspeaker. From the Input Format setting, the Optimizer knows the reference loudspeaker positions defined by the standard for the target system, for example ITU 775. The Optimizer computes the remapping matrix that must be applied to the input signal to create the same acoustic field that would be obtained if the speakers were positioned correctly.

 
				 
 
		
 
 
		 
					
				 
						
					 
 
		 
 
		 
 
		


 
 
		 
 
		 
 
		 
					
				 
 
		 Det har stått mellom den mye rimeligere flex + dirac løsningen og en trinnov, i mitt akustisk utfordrende usymmetriske rom (stua), og valget falt ned på en trinnov, som er på vei as we speak
 Det har stått mellom den mye rimeligere flex + dirac løsningen og en trinnov, i mitt akustisk utfordrende usymmetriske rom (stua), og valget falt ned på en trinnov, som er på vei as we speak 

 
 
 
		 (Uansett preset)
 (Uansett preset)


