Difference between revisions of "Time"
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| − | <b> | + | <b>Assured-Positioning, Navigation and Timing (A-PNT) |
| − | </b><br> | + | </b><br>AFCEA International COL Daniel F. Kuntz, USA TRADOC Capabilities Manager Tactical Radios (TCM TR) U.S. Army Cyber Center of Excellence & Fort Gordon|} |
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== <span id="GPS: The Global Positioning System"></span>GPS: The Global Positioning System == | == <span id="GPS: The Global Positioning System"></span>GPS: The Global Positioning System == | ||
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| + | === Assured-Positioning, Navigation and Timing (A-PNT) === | ||
| + | [http://www.youtube.com/results?search_query=Assured+Positioning+Navigation+Timing+PNT+GPS+GNSS+GB-GRAM+INS+CSAC+artificial+intelligence+ai YouTube search...] | ||
| + | [http://www.google.com/search?q=Assured+Positioning+Navigation+Timing+PNT+GPS+GNSS+GB-GRAM+INS+CSAC+artificial+intelligence+ai ...Google search] | ||
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| + | * [http://www.youtube.com/watch?v=NCOcliI-nkM Tactical Radio (TR) A-PNT Overview | COL Daniel F. Kuntz, USA - TRADOC Capabilities Manager Tactical Radios (TCM TR) - U.S. Army Cyber Center of Excellence & Fort Gordon] | ||
| + | * [http://www.curtisswrightds.com/technologies/open-architecture/assured-position-navigation-timing.html A-PNT: Assured Position, Navigation and Timing | Curtiss-Wright] | ||
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| + | <youtube>k2XQQuQrWbw</youtube> | ||
| + | <b>GRCon20 - Software defined radio based Global Navigation Satellite System real time spoofing.... | ||
| + | </b><br>Software defined radio based Global Navigation Satellite System real time spoofing detection and cancellation Presented by Jean-Michel Friedt,, D. Rabus and G. Goavec-Merou at GNU Radio Conference 2020 http://gnuradio.org/grcon20 Global Navigation Satellite Systems (GNSS) -- most significantly the Global Positioning System (GPS) -- have become ubiquitous to most daily activities, from positioning and navigation to long range time synchronization or distributed energy production ("smart grid"). While initially developed as a military system hardly accessible to civilians, the advent of Software Defined Radio jamming and spoofing capabilities emphasize the low security of GNSS weak signals emitted from satellites orbiting the Earth 20000 km away. While a properly spoofing signal cannot be detected after a consumer-grade receiver has decoded the radiofrequency signal, addressing at the radiofrequency wave level the signal integrity provides the solution of identifying spoofing with all satellites appearing at the same direction of arrival. This classical beamforming analysis -- Controlled Reception Pattern Antenna (CRPA) with multiple antenna reception and phase analysis -- is demonstrated using commercial, off the shelf software defined radio platform receivers (Ettus Research B210) running the real-time GNSS decoder gnss-sdr based on GNU Radio running on embedded boards such as the Raspberry Pi4. | ||
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| + | <youtube>STyLD01kZ5g</youtube> | ||
| + | <b>AgilLOC Global Navigation Satellite System (GNSS) Anti-Jamming and Spoofing Capability | ||
| + | </b><br>AgilLOC Antenna Element Compact (AEC) & Resilient Time Source (RTS) provide assured access to Position, Navigation and Timing (PNT) information for mission-critical systems. AEC provides GNSS anti-jam capability under denied environment through adaptive nulling of interference sources. RTS provides add-on GNSS anti-spoof capability and timing resiliency to ensure the integrity of the GNSS. | ||
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| + | ==== <span id="Long Range Navigation (LORAN)"></span>Long Range Navigation (LORAN) ==== | ||
| + | [http://www.youtube.com/results?search_query=Long+Range+Navigation+Loran+artificial+intelligence+ai YouTube search...] | ||
| + | [http://www.google.com/search?q=Long+Range+Navigation+Loran+artificial+intelligence+ai ...Google search] | ||
| + | |||
| + | * [http://www.intelligent-aerospace.com/home/article/14181475/eloran-loran-c-gps-gnss Public-private partnership to launch enhanced LOng RAnge Navigation (eLORAN) technology to back-up and accompany GPS | Jamie Whitney - Intelligent Aerospace] | ||
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| + | <youtube>1wvhWi_9nI8</youtube> | ||
| + | <youtube>5T6v1HK-a6s</youtube> | ||
== <span id="Quantum Sensors in Navigation"></span>[[Quantum]] Sensors in Navigation == | == <span id="Quantum Sensors in Navigation"></span>[[Quantum]] Sensors in Navigation == | ||
Revision as of 22:22, 15 November 2020
YouTube search... ...Google search
- Quantum
- Time ...Coordinated Universal Time UTC ... Clock ...Timekeeping | Wikipedia
- The Very Long and Fascinating History of Clocks | Christopher McFadden - Interesting Engineering
- What Is a Leap Second? | Konstantin Bikos and Anne Buckle - timeanddate.com
- Atomic clocks ...Tide Clock | Amazon
- Cybersecurity
- Crown Sterling ... changing the face of digital security with its non-integer-based algorithms that leverage time, AI and irrational numbers.
- Quantum cryptography ... the infosec industry looks to quantum cryptography and quantum key distribution (QKD)
- Time Series
- Models
- Transformer
- Generative Pre-trained Transformer (GPT)
- Attention Mechanism/Transformer Model
- Transformer-XL
- Sequence to Sequence (Seq2Seq)
- End-to-End Speech
- Neural Turing Machine
- Recurrent Neural Network (RNN)
- (Tree) Recursive Neural (Tensor) Network (RNTN)
- Temporal Difference (TD) Learning
- Time Series Forecasting - Statistical
- Time Series Forecasting - Deep Learning
- Spatial-Temporal Dynamic Network (STDN)
- Transformer
Whenever we have developed better clocks, we’ve learned something new about the world.
- Alexander Smith New Time Dilation Phenomenon Revealed: Timekeeping Theory Combines Quantum Clocks and Einstein’s Relativity - Dartmouth College
The Earth's rotation is so accurate it varies only in milliseconds ...do you feel the Earth rotation slowing down?
Contents
YouTube search... ...Google search
- Robotics
- History of Navigation | Wikipedia
- Navigation Aids | Department of Transportation, Federal Aviation Administration
Navigation is a field of study that focuses on the process of monitoring and controlling the movement of a craft or vehicle from one place to another.[1] The field of navigation includes four general categories: land navigation, marine navigation, aeronautic navigation, and space navigation. Navigation | Wikipedia
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GPS: The Global Positioning SystemYouTube search... ...Google search
GPS receivers that use the L5 band can pinpoint to within 30 centimeters or 11.8 inches. The GPS concept is based on time and the known position of GPS specialized satellites. The satellites carry very stable atomic clocks that are synchronized with one another and with the ground clocks. Any drift from time maintained on the ground is corrected daily. In the same manner, the satellite locations are known with great precision. GPS receivers have clocks as well, but they are less stable and less precise. Each GPS satellite continuously transmits a radio signal containing the current time and data about its position. Since the speed of radio waves is constant and independent of the satellite speed, the time delay between when the satellite transmits a signal and the receiver receives it is proportional to the distance from the satellite to the receiver. A GPS receiver monitors multiple satellites and solves equations to determine the precise position of the receiver and its deviation from true time. At a minimum, four satellites must be in view of the receiver for it to compute four unknown quantities (three position coordinates and clock deviation from satellite time). Global Positioning System | Wikipedia
YouTube search... ...Google search
YouTube search... ...Google search
YouTube search... ...Google search
YouTube search... ...Google search
Time & MusicYouTube search... ...Google search
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