1. A method for determining a minimum cost maintenance plan for correcting a casualty in a complex machine, comprising:
receiving ambiguity group information comprising a plurality of failure modes of an ambiguity group associated with the casualty, their related probabilities of resolution and related corrective actions for each failure mode of the plurality, wherein a corrective action is one of a repair procedure and an isolation procedure;
determining the lowest cost corrective action within the ambiguity group;
if the lowest cost corrective action is a repair procedure, then sequencing the repair procedure into a maintenance plan sequence of corrective actions;
if the lowest cost corrective action is an isolation procedure, then:
determining if any combination and permutation of all unsequenced repair procedures associated with the ambiguity group have a lower cost than a combined cost of the isolation procedure and its associated repair procedure,
if one of a combination and permutation of all unsequenced repair procedures has the lower cost, then sequencing a first repair procedure in the sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions,
if no combination and permutation of all unsequenced repair procedures has the lower cost, then sequencing the isolation procedure in the maintenance plan sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions; and
repeating the determining the lowest cost corrective action step until all failure mode corrective actions have been sequenced into the maintenance plan sequence.
2. The method of claim 1, wherein the failure mode related probabilities are normalized probabilities.
3. The method of claim 2, wherein the lowest cost corrective action is determined after adjusting a cost of the corrective action by dividing the cost of the corrective action by the normalized related probability of its associated failure mode.
4. The method of claim 1, wherein the unsequenced repair procedures are associated with failure modes that are addressed by the isolation procedure but which have been previously unaddressed.
5. The method of claim 1, further comprising determining failure modes addressed by the last corrective action sequenced that have been previously unaddressed.
6. The method of claim 5, further comprising recalculating the probabilities of resolution related to failure modes that are yet unaddressed.
7. The method of claim 1 wherein a corrective action may resolve multiple failure modes.
8. The method of claim 6 wherein after being sequenced into the maintenance plan sequence, the corrective action remains related to an unaddressed failure mode but with a new probability of resolution that is equal to 100% minus the original probability of resolution of the associated failure mode.
9. A computer readable medium containing instruction recorded thereon that when executed by a computing device carry out acts for determining a minimum cost maintenance plan for correcting a casualty in a complex machine, comprising:
receive ambiguity group information comprising a plurality of failure modes of an ambiguity group associated with the casualty, their related probabilities of resolution and related corrective actions for each failure mode of the plurality, wherein a corrective action is one of a repair procedure and an isolation procedure;
determine the lowest cost corrective action within the ambiguity group;
if the lowest cost corrective action is a repair procedure, then sequence the repair procedure into a maintenance plan sequence of corrective actions;
if the lowest cost corrective action is an isolation procedure, then:
determine if any combination and permutation of all unsequenced repair procedures associated with the ambiguity group have a lower cost than the combined cost of the isolation procedure and its associated repair procedure,
if one of a combination and permutation of all unsequenced repair procedures has the lower cost, then sequence a first repair procedure in the sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions,
if no combination and permutation of all unsequenced repair procedures has the lower cost, then sequence the isolation procedure in the maintenance plan sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions; and
repeat the determining step until all failure mode corrective actions have been sequenced into the maintenance plan sequence.
10. The computer readable medium of claim 9, wherein the failure mode related probabilities are normalized probabilities.
11. The computer readable medium of claim 10, wherein the lowest cost corrective action is determined after adjusting the cost of the corrective action by dividing the cost of the corrective action by the normalized related probability of its associated failure mode.
12. The computer readable medium of claim 9, wherein the unsequenced repair procedures are associated with failure modes that are addressed by the isolation procedure but which have been previously unaddressed.
13. The computer readable medium of claim 9, further comprising instructions to determine failure modes addressed by the last corrective action sequenced that have been previously unaddressed.
14. The computer readable medium of claim 13, further comprising instructions to recalculate the probabilities of resolution related to failure modes that are yet unaddressed.
15. The computer readable medium of claim 9 wherein a corrective action may resolve multiple failure modes.
16. The computer readable medium of claim 14 wherein after being sequenced into the maintenance plan sequence, the corrective action remains related to an unaddressed failure mode but with a new probability of resolution that is equal to 100% minus the original probability of resolution of the associated failure mode.
17. A system for determining a minimum cost maintenance plan for correcting a casualty in a complex machine, comprising:
a database containing ambiguity group information comprising a plurality of failure modes associated with the casualty, their related probabilities of resolution and related corrective actions for each failure mode of the plurality, wherein a corrective action is one of a repair procedure and an isolation procedure; and
a processor in operable communication with the database, the processor executing instructions to:
receive ambiguity group information from the database;
determine the lowest cost corrective action within the ambiguity group;
if the lowest cost corrective action is a repair procedure, then sequence the repair procedure into a maintenance plan sequence of corrective actions;
if the lowest cost corrective action is an isolation procedure, then:
determine if any combination and permutation of all unsequenced repair procedures associated with the ambiguity group have a lower cost than the combined cost of the isolation procedure and its associated repair procedure,
if one of a combination and permutation of all unsequenced repair procedures has the lower cost, then sequence a first repair procedure in the sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions,
if no combination and permutation of all unsequenced repair procedures has the lower cost, then sequence the isolation procedure in the maintenance plan sequence of the one of a combination and permutation into the maintenance plan sequence of corrective actions; and
repeat the determine step until all failure mode corrective actions have been sequenced into the maintenance plan sequence.
18. The system of claim 17, further comprising a network interface.
19. The system of claim 17, wherein the database is a distributed database located on a network.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A pressure gauge with a valve cap wrench comprising:
a housing;
a bore defined in said housing, said bore adapted to accommodate a valve stem cap associated with a body containing a fluid;
a collet adapted to selectively engage and disengage a valve stem cap associated with a body containing a fluid and accommodated in said bore;
a user-operable switch adapted to cause said collet to selectively engage and disengage a valve stem cap associated with a body containing a fluid;
a port defined in said housing, said port adapted to engage and open a needle valve on a valve stem;
a pressure sensor associated with said housing and adapted to measure the pressure of a fluid in said body when said port engages and opens a needle valve on the valve stem.
2. The pressure gauge of claim 1, wherein said pressure gauge is a tire pressure gauge and wherein the body containing the fluid comprises a tire.
3. The pressure gauge of claim 1, wherein said pressure sensor is positioned within said housing.
4. The pressure gauge of claim 1, wherein said housing further comprises:
a display on said housing; said display displaying a numerical value indicative of the measured pressure.
5. The pressure gauge of claim 1, wherein said collet further comprises:
a plurality of arms; and
a ramp,
wherein an inward depression of said ramp causes said plurality of arms to contract concentrically, and
wherein an outward release of said ramp causes said plurality of arms to expand concentrically.
6. The pressure gauge of claim 5, wherein said collet is positioned within said bore.
7. The pressure gauge of claim 5, wherein said ramp comprises a taper which narrows towards said plurality of arms.
8. The pressure gauge of claim 5, wherein said ramp comprises a taper which widens towards said plurality of arms.
9. The pressure gauge of claim 7, further comprising a collar mechanically coupled with said switch, said collar comprising:
a generally cylindrical interior surface having a constant diameter; and
an inwardly protruding circumferential lip, said lip adapted to engage said ramp and to inwardly depress said ramp or to disengage said ramp and outwardly release said ramp.
10. The pressure gauge of claim 9, further comprising a plunger coupled to said collar,
wherein, when said switch is pushed by a user in a first direction along said housing away from said bore, said switch causes said lip of said collar to engage and inwardly depress said ramp, thereby causing said plurality of arms to contract concentrically and establish a generally firm grip over a the valve stem cap accommodated in said bore, and
wherein, when said switch is pushed by a user in a second direction along said housing towards said bore, said switch causes said lip of said collar to disengage and outwardly release said ramp, thereby causing said plurality of arms to expand concentrically and release the generally firm grip over the valve stem cap accommodated in said bore and said switch simultaneously causes said plunger to move in the second direction towards said bore and to push the valve stem cap out from said bore.
11. The pressure gauge of claim 5, further comprising a sleeve positioned along an interior surface defined by said plurality of arms, wherein said sleeve contracts concentrically to establish a generally firm grip on a the valve stem cap accommodated in said bore when said plurality of arms contract concentrically and wherein said sleeve expands concentrically to release the generally firm grip on the valve stem cap accommodated in said bore when said plurality of arms expand concentrically.
12. The pressure gauge of claim 11, wherein said sleeve is made of an elastomeric material.
13. The pressure gauge of claim 11, wherein said sleeve further comprises a plurality of relatively inflexible pads on an interior surface of said sleeve, said plurality of relatively inflexible pads adapted to directly engage the valve stem cap accommodated in said bore and to establish the generally firm grip on the valve stem cap when said sleeve contracts concentrically.
14. The pressure gauge of claim 11, wherein said sleeve comprises a plurality of bending sections interspersed between a plurality of curved sections, wherein said plurality of bending sections is adapted to assist said sleeve regain its original shape when said plurality of arms expand concentrically.
15. The pressure gauge of claim 11, wherein each of said plurality of arms comprises a groove, and wherein said sleeve comprises a plurality of longitudinal tabs, each of said plurality of longitudinal tabs being adapted to engage said groove.
16. The pressure gauge of claim 1, further comprising:
an analog-to-digital converter, said converter receiving an analog signal from said pressure sensor and generating a digital signal indicative of the measured pressure;
a processor, said processor receiving said digital signal and causing a display to display a numerical value indicative of the measured pressure; and
a power source, said power source providing power to said processor and to said display.
17. The pressure gauge of claim 1, wherein said housing has a cross-section proximal to said bore larger than a cross-section proximal to said port.
18. A combined tire pressure gauge and a valve cap wrench comprising:
a housing having a bore and a port, wherein said port is adapted to engage and open a needle valve on a tire valve stem;
a collet, wherein said collet comprises:
a generally cylindrical section defining a plurality of longitudinal slits;
a ramp defined on said generally cylindrical section; and
a plurality of arms extending from said generally cylindrical section, wherein an inward depression of said ramp causes a concentric contraction of said plurality of arms, and an outward release of said ramp causes a concentric expansion of said plurality of arms,
a sleeve positioned along an interior surface defined by said plurality of arms, said sleeve adapted to contract and expand concentrically, responsive to concentric contraction and expansion of said plurality of arms respectively, thereby establishing and releasing a generally firm grip over a tire valve stem cap accommodated in said bore respectively;
a collar having an inwardly protruding circumferential lip, said collar positioned generally concentrically with said collet, and said lip adapted to engage said ramp to either inwardly depress said ramp or to outwardly release said ramp;
a user-operable switch coupled to said collar and disposed on the housing, said switch adapted to cause said collar to slide about said collet and cause said lip to inwardly depress or outwardly release said ramp, thereby selectively causing said plurality of arms and said sleeve to either concentrically contract and establish a generally firm grip over a tire valve stem cap accommodated in said bore or to concentrically expand and release a generally firm grip over a tire valve stem cap accommodated in said bore;
a pressure sensor, adapted to be in fluidic communication with a fluid in a tire when said port engages and opens the needle valve on the tire valve stem and to measure the pressure of the fluid in the tire.
19. The combined tire pressure gauge and cap wrench of claim 18, wherein said housing is an elongated housing, wherein said port is defined at a first end of said housing and wherein said bore is defined at a second end of said housing.
20. The combined tire pressure gauge and cap wrench of claim 19, further comprising an angled ball part disposed at said first end, wherein said port is defined by said angled ball part.