System and method for producing a directional output signal
A system and method of producing a directional output signal is described including the steps of: detecting sounds at the left and rights sides of a person's head to produce left and right signals; determining the similarity of the signals; modifying the signals based on their similarity; and combining the modified left and right signals to produce an output signal.
1. A method of producing a directional output signal including the steps of:
detecting sounds at the left and rights sides of a person's head to produce left and right signals;
determining the similarity of the signals on each side of the head to determine left and right directional filter weights, wherein determining left and right directional filter weights comprises either comparing the left and right signals' cross-power and auto-power by adding the cross-power to the auto-power and dividing the cross-power by the result, or comparing the left and right signals' cross-correlation and auto-correlation by adding the cross-correlation to the auto-correlation and dividing the cross-correlation by the result;
modifying both the left and right signals by way of a filter block using the left and right directional filter weights respectively; and
combining the modified left and right signals to produce an output signal.
2. A method according to claim 1 further including the step of processing the right or left signals prior to determining their similarity to thereby control the direction of the directional output signal.
3. A method according to claim 2 wherein the step of processing includes the step of applying an inverse head-related transfer function.
4. A method according to claim 1 wherein the step of detecting sounds at the left and right sides of the head is carried out using directional microphones, or directional microphone arrays.
5. A method according to claim 4 wherein the direction of the left and right directional microphones or microphone arrays is directed outwardly from the frontal direction.
6. A method according to claim 1 wherein the degree of modification that takes place during the step of modifying is smoothed over time.
7. A method according to claim 1 wherein the step of modifying further includes the step of further enhancing the similarities between the signals.
8. A system for producing a directional output signal including: detection devices for detecting sounds at the left and rights sides of a person's head to produce left and right signals;
a determination device determining the similarity of the signals;
a modifying device for modifying the signals based on their similarity; and
a combining device for combining the modified left and right signals to produce an output signal;
wherein the determination device is arranged to determine the similarity of the signals on each side of the head to determine left and right directional filter weights, wherein determining left and right directional filter weights comprises either comparing the left and right signals' cross-power and auto-power by adding the cross-power to the auto-power and dividing the cross-power by the result, or by comparing the left and right signals' cross-correlation and auto-correlation by adding the cross-correlation to the auto-correlation and dividing the cross-correlation by the result; and
wherein the modifying device includes a filter block which is arranged to both the left and right signals by way of the filter block using the left and right directional filter weights respectively.
9. A system according to claim 8 wherein each detection device includes at least one microphone.
10. A system according to claim 8 wherein the determination device includes a computing device.