IP Library › Granted Patent US 10,942,210
Granted Patent B2
US 10,942,210 · App. 16/345,694 · Granted Mar 9, 2021

Reflected-wave processing apparatus

Inventors: Song-Ho Sohn (Daejeon, KR); Sang-Cheol Han (Daejeon, KR); Hyung-Suk Yang (Daejeon, KR); Seong-Woo Yim (Daejeon, KR); Yong-June Shin (Seoul, KR); Geon-Seok Lee (Seoul, KR); Su-Sik Bang (Seoul, KR); Yeong-Ho Lee (Seoul, KR); Gu-Young Kwon (Seoul, KR)
Assignee: KOREA ELECTRIC POWER CORPORATION
G01R31/11G01R23/16G01R23/165G01R31/08G01R31/58
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Quick Facts
Patent No.
US 10,942,210
App. No.
16/345,694
Granted
Mar 9, 2021
Kind
B2
Abstract

A reflected-wave processing apparatus according to one embodiment of the present invention may comprise: a reference signal generation unit for applying, to a cable, a first reference signal, the frequency of which increases over time, and a second reference signal, the frequency of which decreases over time; a reflected-signal acquisition unit for acquiring a first reflected signal and a second reflected signal which are reflected from the cable upon applying the first and second reference signals thereto; and a signal analysis unit for analyzing the first and second reflected signals.

Claims (27)

1. A reflected wave processing apparatus, comprising:

a reference signal generation unit providing a first reference signal of which a frequency increases over time, and a second reference signal of which a frequency decreases over time, to a cable;

a reflected-signal acquisition unit acquiring a first reflected signal and a second reflected signal reflected from the cable in accordance with provision of the first reference signal and the second reference signal; and

a signal analysis unit analyzing the first reflected signal and the second reflected signal,

wherein the signal analysis unit obtains an arithmetic mean between the first reflected signal and the second reflected signal, and

wherein the signal analysis unit obtains an arithmetic mean between the first reflected signal and the second reflected signal and calibrates a time delay and a center frequency of each of the first reflected signal and the second reflected signal.

2. The reflected-wave processing apparatus of claim 1 ,

wherein the reference signal generation unit provides the first reference signal and the second reference signal to the cable at different timings.

3. The reflected-wave processing apparatus of claim 1 , wherein the reference signal generation unit is connected to a conducting layer of the cable, and the reflected-signal acquisition unit is connected to a shielding layer of the cable.

4. A reflected-wave processing apparatus, comprising:

a reference signal generation unit providing a reference signal of which a frequency changes over time to a cable;

a reflected-signal acquisition unit obtaining a reflected signal reflected from the cable in accordance with provision of the reference signal; and

a signal analysis unit calculating a Wigner-Ville distribution of the reflected signal using a localized moving window corresponding to a time width of the reference signal, and limiting the calculated Wigner-Ville distribution in accordance with a bandwidth of the reference signal,

wherein the signal analysis unit transforms a reference signal having the time width to a frequency domain, and applies a Gaussian fitting to a reference signal to the frequency domain.

5. The reflected-wave processing apparatus of claim 4 , wherein the signal analysis unit calculates a Wigner-Ville distribution of the reference signal from the localized moving window.

6. The reflected-wave processing apparatus of claim 4 , wherein the signal analysis unit removes a signal in a frequency domain other than a bandwidth of the reference signal.

7. The reflected-wave processing apparatus of claim 4 , wherein the signal analysis unit determines the bandwidth in accordance with a standard deviation of a Gaussian envelope based on the Gaussian fitting.

8. The reflected-wave processing apparatus of claim 7 , wherein the signal analysis unit determines a threefold of the standard deviation as the bandwidth.

9. The reflected-wave processing apparatus of claim 4 , wherein the reference signal generation unit is connected to a conducting layer of the cable, and the reflected-signal acquisition unit is connected to a shielding layer of the cable.

10. A reflected-wave processing apparatus, comprising:

a reference signal generation unit providing a first reference signal of which a frequency increases over time, and a second reference signal of which a frequency decreases over time, to a cable;

a reflected-signal acquisition unit acquiring a first reflected signal and a second reflected signal reflected from the cable in accordance with provision of the first reference signal and the second reference signal; and

a signal analysis unit analyzing the first reflected signal and the second reflected signal,

wherein the reference signal generation unit is connected to a conducting layer of the cable, and the reflected-signal acquisition unit is connected to a shielding layer of the cable.

11. The reflected-wave processing apparatus of claim 10 ,

wherein the reference signal generation unit provides the first reference signal and the second reference signal to the cable at different timings.

12. The reflected-wave processing apparatus of claim 10 , wherein the signal analysis unit obtains an arithmetic mean between the first reflected signal and the second reflected signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2019
From: SOHN, SONG-HO; HAN, SANG-CHEOL; YANG, HYUNG-SUK; YIM, SEONG-WOO; SHIN, YONG-JUNE; LEE, GEON-SEOK; BANG, SU-SIK; LEE, YEONG-HO; KWON, GU-YOUNG
To: KOREA ELECTRIC POWER CORPORATION
Reel/Frame 049015/0344 →
Priority Claims (1)
KR 10-2016-0142899 · Oct 31, 2016 · national
Continuity (1)
Related Publication 20190293706A1 · Sep 26, 2019