Claims
- 1. An acoustic simulation apparatus, comprising:
a model having a prescribed acoustic space; a substantially nondirectional loud speaker having a piezoelectric acoustic element and arranged at a prescribed position within the acoustic space; a driving device for driving the piezoelectric acoustic element in accordance with a prescribed driving signal; a sound receiving device arranged at a prescribed position within the acoustic space for receiving a response acoustic signal generated in the acoustic space due to the driving of the piezoelectric acoustic element; and a signal analyzing device for analyzing the response acoustic signal received by the sound receiving device.
- 2. An acoustic simulation apparatus, comprising:
a model having a prescribed acoustic space; a substantially nondirectional loud speaker arranged at a prescribed position within the acoustic space; a driving device for driving the loud speaker in accordance with a prescribed driving signal; a sound receiving device arranged at a prescribed position within the acoustic space for receiving a response acoustic signal generated in the acoustic space due to the driving of the loud speaker; and a signal analyzing device for analyzing the response acoustic signal received by the sound receiving device, wherein the loud speaker includes a polyhedric cabinet and a plurality of piezoelectric acoustic elements mounted on prescribed faces of the polyhedric cabinet.
- 3. The acoustic simulation apparatus according to claim 2, wherein some or all of the plural piezoelectric acoustic elements are electrically connected to each other in parallel.
- 4. The acoustic simulation apparatus according to claim 1, wherein the piezoelectric acoustic element comprises:
a piezoelectric ceramic thin plate; a reinforcing plate attached to the piezoelectric ceramic thin plate; and a case having the piezoelectric ceramic thin plate and the reinforcing plate housed therein and provided with a sound releasing port at a prescribed position.
- 5. The acoustic simulation apparatus according to claim 1, wherein the driving device is a class D amplifier.
- 6. The acoustic simulation apparatus according to claim 2, wherein the piezoelectric acoustic element comprises:
a piezoelectric ceramic thin plate; a reinforcing plate attached to the piezoelectric ceramic thin plate; and a case having the piezoelectric ceramic thin plate and the reinforcing plate housed therein and provided with a sound releasing port at a prescribed position.
- 7. The acoustic simulation apparatus according to claim 2, wherein the driving device is a class D amplifier.
- 8. An acoustic simulation method for analyzing the acoustic characteristics of the acoustic space, comprising the steps of:
preparing a model having a prescribed acoustic space; arranging a substantially nondirectional loud speaker having a plurality of piezoelectric acoustic elements at a prescribed position within the acoustic space; arranging a sound receiving device for receiving a response acoustic signal generated in the acoustic space due to the driving of the substantially nondirectional loud speaker at a prescribed sound receiving point within the acoustic space; and analyzing by using a signal analyzing device the response acoustic signal received by the sound receiving device when the plural piezoelectric acoustic elements are driven by a prescribed driving signal.
- 9. The acoustic simulation method according to claim 8, wherein a time stretched pulse is used as the driving signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2001-316273 |
Oct 2001 |
JP |
|
Parent Case Info
[0001] This application is a U.S. National Phase Application under 35 USC 371 of International Application PCT/JP02/10621 filed Oct. 11, 2002.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP02/10621 |
10/11/2002 |
WO |
|