EP1901488A2

Network system and audio signal processor

Abstract

An audio network system (1) that performs transport of audio signals among nodes by cascading a plurality of nodes (2) each including two sets of transmission I/Fs (34, 32) and reception I/Fs (31, 33), and circulating among the nodes in each fixed period an audio transport frame (100) generated by a master node (M), is configured such that the master node (M) generates the audio transport frame in an S-th period based on the audio transport frame in an (S - k)-th period, and each of the other nodes delays the audio signals written by another node after the audio transport frame (100) is generated by the master node (M) until the audio transport frame (100) is transmitted to the self node, by k period(s) with respect to the other audio signals, for use in signal processing.

EP1901488A2, drawing sheet 1
Sheet 1 of 26

Term

1 yearto projected expiry

Projected expiry 12 September 2027, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

4 claims: 1 independent, 3 dependent

  1. 1
    A network system (1) configured such that a plurality of nodes (2) each comprising receivers (31, 33) and transmitters (34, 32) are connected in series by communication cables to form a loop transmission route along which an audio transport frame (100) periodically circulates in a single direction, said audio transport frame (100) generated by a master node (M) in said plurality of nodes (2), said audio transport frame (100) including a plurality of storage regions (103) for audio signals, wherein each of said nodes (2) other than said master node (M) of said network system (1) comprises:a wordclock generator (42) that generates a wordclock based on a reception timing (Tr1, Tr2) of the audio transport frame (100) received by said receiver (31,33), a signal processor (320) that processes audio signals in synchronization with the wordclock generated by said wordclock generator (42);a reader that reads out, when said receiver (31) receives an audio transport frame (100), audio signals from a predetermined storage region (103) of the audio transport frame (100), and supplies the audio signals to said signal processor (320), and/or a writer that writes audio signals in an S-th period supplied from said signal processor (320) into a predetermined storage region (103) of the audio transport frame (100) in the S-th period received by said receiver (31);and a transmission controller that supplies the audio transport frame (100) in the S-th period from/to which reading-cut by said reader and/or writing by said writer have been performed, to said transmitter (32) after a lapse of a predetermined time from the reception of the audio transport frame (100) by said receiver (31), and controls said transmitter (32) to transmit the audio transport frame (100), wherein said master node (M) comprises: a buffer (16) that stores the audio transport frame (100) received by said receiver (31);a wordclock generator (42) that generates a wordclock at constant period;a signal processor (320) that processes audio signals in synchronization with the wordclock generated by said wordclock generator (42);an audio transport frame generator that generates the audio transport frame in the S-th period based on the audio transport frame in an (S - k)-th period earlier than the S-th period by k period(s) (where k is an integer of 1 or more) stored in said buffer (16) at said constant period;a transmission controller that supplies the audio transport frame (100) generated by said audio transport frame generator to said transmitter (32), and controls said transmitter (32) to transmit the audio transport frame (100) in synchronization with the wordclock;and a reader that reads out, when said receiver (31) receives an audio transport frame in the (S - k)-th period, audio signals from a predetermined storage region (103) of the audio transport frame (100),or an audio transport frame in the S-th period generated by said audio transport frame generator based on the received audio transport frame, and supplies the audio signals to said signal processor (320), and/or a writer that writes audio signals in the S-th period supplied from said signal processor (320) into a predetermined storage region (103) of the audio transport frame in the (S - k)-th period or the audio transport frame in the S-th period;and wherein said reader of said each node delays, if the audio signals read out from the storage region (103) of the audio transport frame in the S-th period received by said receiver (31) are written by another node in the transmission route from said master node (M) to the node, the audio signals by k period(s) and does not delay, if the audio signals read out are not written by another node in the transmission route, the audio signal before supplying the audio signal to said signal processor (320).