Claims
- 1. A method for reducing sensed physical variables comprising:
a) sensing a plurality of physical variables; b) generating a first sensed signal as a function of the sensed physical variables; c) generating a first control command signal as a function of the first sensed signal; d) constraining a kth component of the first control command signal; e) calculating a residual resulting from the application of the constrained kth component; f) generating a second control command signal in response to the residual; and g) generating a compensating force as a function of the constrained kth component and the second control command signal.
- 2. The method according to claim 1, wherein said step d) further includes the steps of:
comparing components, including the kth component, to a maximum threshold; and scaling the kth component by a constant based upon the kth component exceeding the maximum threshold.
- 3. The method according to claim 2 further including the steps of:
generating the constrained kth component (ui,k)new in said step d), where (u1,k)new=Cui,k and C=|(ui)k|/Umax, and Umax is the maximum threshold; calculating a change in the kth component in the control command signals as a function of Δui,k=(ui,k,)new−ui−1,k; and calculating the residual as a function of: (zi−1)new=(zi−1)+T Δu1,k.
- 4. The method according to claim 1, further comprising:
generating a controller weighting matrix; generating a constrained control component (Wu,new k,k) as a function of: Wu,new k,k=Wu k,k+A, where A is a constant that greatly exceeds the magnitude of Wu k,k.
- 5. The method according to claim 4, further comprising:
calculating a new command change (Δu1,new) as a function of Δui,new=Dnew(Wu,new ui−1+TTWz(Zi−1)new) and where: Dnew=−(TT WzT+Wu,new+WΔu)−1
- 6. A method for actively controlling vibration including the steps of:
a. measuring ambient vibration; b. generating a first command signal based upon said vibration measured in said step a; c. constraining a first component of the first command signal; d. determining a residual vibration resulting from the constraint of the first component; e. generating a second command signal based upon said residual vibration.
- 7. The method of claim 6 further including the steps of:
f. activating a plurality of force generators based upon said constrained first component and said second command signal.
- 8. The method of claim 7 wherein said step c. further includes the step of comparing said first component of the first command signal to a maximum allowable command signal.
- 9. The method of claim 8 wherein said step c. further includes the step of reducing the first component to the maximum allowable command signal.
- 10. An active control system comprising:
A plurality of sensors for measuring ambient vibration; A control unit generating a first command signal based upon said vibration measured by said plurality of sensors, constraining a first component of the first command signal, determining a residual vibration resulting from the constraint of the first component and generating a second command signal based upon said residual vibration; A plurality of force generators activated based upon said first command signal, said second command signal and said constrained first component.
- 11. The active control system of claim 10 wherein the control unit compares said first component of said first command signal to a maximum allowable command signal.
- 12. The active control system of claim 12 wherein the control unit reduces the first component to not exceed the maximum allowable command signal.
- 13. A computer readable medium storing a computer program, which when executed by a computer performs the steps of:
a. generating a first command signal based upon measured vibration; b. constraining a first component of the first command signal; c. determining a residual vibration resulting from the constraint of the first component; d. generating a second command signal based upon said residual vibration.
- 14. The computer readable medium of claim 13 which when executed by a computer further performs the steps of:
e. activating a plurality of force generators based upon said first command signal, said constrained first component and said second command signal.
- 15. The computer readable medium of claim 13 which when executed by a computer said step b. further includes the step of comparing said first component of the first command signal to a maximum allowable command signal.
- 16. The computer readable medium of claim 15 wherein said step c. further includes the step of reducing the first component to the maximum allowable command signal.
Parent Case Info
[0001] This application claims priority to U.S. Provisional Application Serial No. 60/271,792, Filed Feb. 27, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60271792 |
Feb 2001 |
US |