Claims
- 1. A brake energy balancing system for controlling a wheel brake, said system comprising:
- a wheel brake assembly having a wheel and a wheel brake;
- a brake torquing mechanism for applying brake torque to each said wheel brake;
- a torque signal generator for producing brake torque signals that are a function of the brake torque applied to said wheel brake;
- a command brake torque signal generator for generating a command brake torque signal;
- a torque comparator for generating brake torque difference signals indicative of the difference between said brake torque signals and said command brake torque signal; and
- an energy balancing controller for providing an energy balancing control signal to said brake torquing mechanism in response to said brake torque difference signals.
- 2. The brake energy balance system of claim 1, wherein said command brake torque signal generator comprises autotorque reference generating means for generating a reference torque signal for limiting said command brake torque signal.
- 3. The brake energy balancing system of claim 1, further comprising:
- a wheel velocity signal generator for producing wheel velocity signals that are a function of the rotational speed of said wheel;
- a wheel velocity average generator for generating an average velocity signal based upon said wheel velocity signals;
- an autobrake velocity reference generator for generating a reference velocity signal in response to a deceleration command;
- a comparator for comparing said average velocity signal with said reference velocity signal for generating average velocity error signals indicative of the difference between said average wheel velocity signals and said reference velocity signal; and
- a wheel velocity comparator for comparing said average wheel velocity signals with said reference velocity signal for generating wheel velocity error signals indicative of the difference between said average wheel velocity signals and said reference velocity signal.
- 4. The brake energy balancing system of claim 3, further comprising means for adjusting said brake torque signals.
- 5. A brake energy balancing system for controlling a wheel brake, comprising:
- a wheel brake assembly having a wheel and a wheel brake;
- a brake torquing mechanism for applying braking torque to said wheel brake;
- a wheel velocity signal generator for producing wheel velocity signals that are a function of the rotational speed of said wheel;
- a wheel velocity average generator for generating an average velocity signal based upon said wheel velocity signals for said wheel;
- a command brake torque signal generator for generating a command brake torque signal;
- a torque comparator for generating brake torque difference signals indicative of the difference between said brake torque signals and said command brake torque signal;
- an autobrake velocity reference generator for generating a reference velocity signal in response to a deceleration command;
- a comparator for generating average velocity error signals indicative of the difference between said average wheel velocity signals and said reference velocity signal;
- a torque signal generator for producing brake torque signals that are a function of the braking torque applied to said wheel;
- a wheel velocity comparator for generating individual wheel velocity error signals indicative of the difference between said wheel velocity signals and said reference velocity signal; and
- an energy balancing controller for providing an energy balancing control signal to said brake torquing mechanism in response to said average velocity error signals, said individual wheel velocity error signals, and said brake torque difference signals.
- 6. The brake energy balancing system of claim 5, further comprising means for adjusting said brake torque signals.
- 7. A brake energy balancing system for controlling a wheel brake, said system comprising:
- a wheel brake assembly having a wheel and a wheel brake;
- a brake control valve connected to said wheel brake assembly for applying brake torque to said wheel brake;
- a torque signal generator for producing brake torque signals that are a function of the brake torque applied to said wheel brake;
- a command brake torque signal generator for generating a command brake torque signal;
- a torque comparator for generating brake torque difference signals indicative of the difference between said brake torque signals and said command brake torque signal; and
- a brake pressure wheel modulator driver for providing an energy balancing control signal to said brake control valve to control said brake control valve in response to said brake torque difference signals.
- 8. The brake energy balance system of claim 7, wherein said command brake torque signal generator comprises an autotorque reference generator for generating a reference torque signal for limiting said command brake torque signal.
- 9. The brake energy balancing system of claim 7, further comprising:
- a wheel velocity signal generator for producing wheel velocity signals that are a function of the rotational speed of said wheel;
- a wheel velocity average generator for generating an average velocity signal based upon said wheel velocity signals;
- an autobrake velocity reference generator for generating a reference velocity signal;
- a comparator for generating average velocity error signals indicative of the difference between said average wheel velocity signals and said reference velocity signal; and
- a wheel velocity comparator for comparing said average wheel velocity signals with said reference velocity signal for generating individual wheel velocity error signals indicative of the difference between said average wheel velocity signals and said reference velocity signal.
- 10. The brake energy balancing system of claim 9, further comprising a brake torque signal adjusting circuit for adjusting said brake torque signals.
Parent Case Info
This is a continuation of application Ser. No. 08/594,862, filed Jan. 31, 1996, now U.S. Pat. No. 5,605,387, which is a continuation of Ser. No. Ser. No. 08/318,470, filed Oct. 5, 1994, now U.S. Pat. No. 5,507,568, which is a continuation of Ser. No. 08/157,692, filed Nov. 24, 1993, now U.S. Pat. No. 5,390,990.
US Referenced Citations (21)
Foreign Referenced Citations (8)
Number |
Date |
Country |
231829 A3 |
Aug 1987 |
EPX |
378810 A1 |
Jul 1990 |
EPX |
386939 A1 |
Sep 1990 |
EPX |
426959 A3 |
May 1991 |
EPX |
575936 A1 |
Dec 1993 |
EPX |
445575 A3 |
Dec 1993 |
EPX |
2637231 A3 |
Apr 1990 |
FRX |
42 43 245 A1 |
Jun 1994 |
DEX |
Non-Patent Literature Citations (1)
Entry |
Motohiro Igarashi, et al. Digital Brake Control System for Mag-lev Trains, presented at S'Tech '93 (International Conference on Speedup Technology for Railway and MAGLEV Vehicles), Nov. 1993, Yokohama, Japan. |
Continuations (3)
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594862 |
Jan 1996 |
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318470 |
Oct 1994 |
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157692 |
Nov 1993 |
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