Claims
- 1. A vehicle based independent tracking system comprised of:
- An object orientation and positioning system comprising an inertial measurement means and a global positioning system means capable of determining real-time dynamic space, position and time information solutions of a vehicle from ground operation through geosyncronous orbit mission phases, including high dynamic environments in the vicinity of five thousand meters per second in velocity, 10 g in acceleration, and 10 g per second in differential acceleration during all mission phases nominal or not, said inertial measurement means and global positioning system means being located aboard said vehicle;
- said global positioning system means and inertial measurement means connected with a microcontroller system means providing power and data flow orchestration within said vehicle based independent tracking system, said microcontroller system means containing gravity software algorithms and switches to autonomously detect life and property threatening non-nominal vehicle performance, and send appropriately responsive destruct commands to said vehicle upon said vehicle's crossing of pre-determined three dimensional time, space and position information range safety limit lines residing in software, said microcontroller system means containing memory survivable in high dynamic impact scenarios in the vicinity of 100 g, said microcontroller system means also connected with a power means, a mission specific array of application sensor means, a checkout and monitoring system means, a telemetry transmission means, and a radiating antenna system means, said radiating telemetry transmission means communicating with a telemetry receiver means off-board said vehicle, said telemetry receiver means connected with a user data terminal means, whereby a user can remotely monitor and respond to real-time flight profile parameters of said vehicle during all mission phases.
- 2. A tracking system as claimed in claim 1 wherein said system will provide nominally accurate time, space and position information under errant flight conditions with extremely high roll, pitch and yaw rates in the vicinity of three hundred sixty degrees per second.
- 3. A tracking system as claimed in claim 2 wherein an additional complement of telemetry transmission means connected with said microcontroller system means via a delay buffer means for providing backup data to said user in the event of real time data flow impairment.
- 4. A tracking system as claimed in claim 3 wherein said system functions independently of said user at said user data terminal means, allowing said microprocessor to maintain full control of said vehicle's destruct decisions and implementation, and post impact backup data availability.
- 5. A tracking system as claimed in claim 4 wherein said system is additionally a stand-alone or redundant navigation system on-board said vehicle.
- 6. A tracking system as claimed in claim 5 wherein said system is functionally adaptable to any said vehicle regardless of said vehicle's dimensions, weight, electrical and environmental characteristics.
BACKGROUND--CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of Ser. No. 08/425,929 filed Apr. 20, 1995, now abandoned. The contents thereof are incorporated by reference herein. The underlying concepts of this patent were first publicly disclosed 1 Aug. 1994 in a proprietary proposal to the United Space Researcher's Association Student Explorer Demonstration Initiative (STEDI) program.
US Referenced Citations (4)
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
425929 |
Apr 1995 |
|