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・ Time-based One-time Password Algorithm
・ Time-based pricing
・ Time-Based Prospective Memory
・ Time-bin encoding
・ Time-bound programmes for the eradication of the worst forms of child labour
・ Time-compressed speech
・ Time-delay combination locks
・ Time-dependent density functional theory
・ Time-dependent gate oxide breakdown
・ Time-dependent neutronics and temperatures
・ Time-dependent variational Monte Carlo
・ Time-dependent viscosity
・ Time-division multiplexing
・ Time-domain harmonic scaling
・ Time-domain reflectometer
Time-domain reflectometry
・ Time-domain thermoreflectance
・ Time-driven priority
・ Time-driven programming
・ Time-driven switching
・ Time-evolving block decimation
・ Time-Flight
・ Time-Gate
・ Time-hopping
・ Time-inconsistent preferences
・ Time-inhomogeneous hidden Bernoulli model
・ Time-invariant system
・ TIME-ITEM
・ Time-Lag Records
・ Time-lapse embryo imaging


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Time-domain reflectometry : ウィキペディア英語版
Time-domain reflectometry

Time-domain reflectometry or TDR is a measurement technique used to determine the characteristics of electrical lines by observing reflected waveforms.〔Furse, Cynthia, Lo, Chet. "(Reflectometry for Locating Wiring Faults )". IEEE Transactions on Electromagnetic Compatibility. February, 2005〕 Time-domain transmissometry (TDT) is an analogous technique that measures the transmitted (rather than reflected) impulse. Together, they provide a powerful means of analysing electrical or optical transmission media such as coaxial cable and optical fiber.
Variations of TDR exist. For example, spread-spectrum time-domain reflectometry (SSTDR) is used to detect intermittent faults in complex and high-noise systems such as aircraft wiring.〔Smth,Paul, Furse, Cynthia and Gunther, Jacob. "Analysis of Spread Spectrum Time Domain Reflectometry for (Wire Fault Location )." IEEE Sensors Journal. December, 2005.〕 Coherent optical time domain reflectometry (COTDR) is another variant, used in optical systems, in which the returned signal is mixed with a local oscillator and then filtered to reduce noise.〔José Chesnoy (ed.), ''Undersea Fiber Communication Systems'', Elsevier Science, 2002, ISBN 0-12-171408-X, p.171 (COTDR)〕
The impedance of the discontinuity can be determined from the amplitude of the reflected signal . The distance to the reflecting impedance can also be determined from the time that a pulse takes to return. The limitation of this method is the minimum system rise time. The total rise time consists of the combined rise time of the driving pulse and that of the oscilloscope or sampler that monitors the reflections.
==Method==
The TDR analysis begins with the propagation of a step or impulse of energy into a system and the subsequent observation of the energy reflected by the system. By analyzing the magnitude, duration and shape of the reflected waveform, the nature of the impedance variation in the transmission system can be determined.

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