IP Library › Granted Patent US 11,196,481
Granted Patent B2
US 11,196,481 · App. 16/704,651 · Granted Dec 7, 2021

EMP-resistant satellite communications system and method

Inventors: George A. Livergood (Rogers, AK); Arthur G. Giftakis (Norwell, MA)
Assignee: John Moroney
H04B7/18515H01Q1/40H01Q21/0006H05K9/006
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Quick Facts
Patent No.
US 11,196,481
App. No.
16/704,651
Granted
Dec 7, 2021
Kind
B2
Abstract

An electromagnetic pulse (EMP) resistant telecommunications system includes core components mounted within and shielded by a Faraday cage. The components include a data source or storage device. An ethernet switch selectively connects the data source or storage device to a primary satellite router and a post-EMP satellite router. Telecommunications signals are output from and input to the core components via low noise blocks (LNBs) and block upconverters (BUCs). A method of resisting EMP interference for a telecommunications system includes the steps of enclosing and shielding core components in a Faraday cage and providing output via LNBs and BUCs to an antenna subsystem.

Claims (66)

1. An electromagnetic pulse (EMP) resistant telecommunications system, which comprises:

a core component subsystem including a data source with a data storage component;

a primary satellite router;

a post-EMP satellite router;

an ethernet switch configured for directing signals from said data source to one of said primary and post-EMP satellite routers;

a Faraday cage enclosing said core component subsystem and configured for resisting EMP interference;

an antenna subsystem connected to said satellite routers;

said antenna subsystem including an antenna receive feed and an antenna transmit feed;

said satellite routers connected to said antenna feeds; and

a close coupled waveguide splitter connected to said LNBs and said antenna receive feed.

2. The telecommunications system according to claim 1 , which includes:

a backup generator selectively connected to said core component subsystem.

3. The telecommunications system according to claim 1 , which includes:

a primary low noise block (LNB) connected to said primary satellite router and said antenna subsystem; and

a post-EMP LNB connected to said primary satellite router and said antenna subsystem.

4. The telecommunications system according to claim 3 , which includes:

a primary block upconverter (BUC) connected to said primary satellite router and said antenna subsystem; and

a post-EMP BUC connected to said post-EMP satellite router and said antenna subsystem.

5. The telecommunications system according to claim 1 , which includes:

said core component subsystem including a power backup relay selectively connected to said satellite routers.

6. The telecommunications system according to claim 5 , which includes:

said backup generator connected to said power backup relay and configured for providing AC power to said telecommunications system in the event of a power outage.

7. An electromagnetic pulse (EMP) resistant telecommunications system, which comprises:

a core component subsystem including a data source with a data storage component;

a primary satellite router;

a post-EMP satellite router;

an ethernet switch configured for directing signals from said data source to one of said primary and post-EMP satellite routers;

a Faraday cage enclosing said core component subsystem and configured for resisting EMP interference;

a backup generator selectively connected to said core component subsystem;

an antenna subsystem connected to said satellite routers;

said antenna subsystem including an antenna receive feed and an antenna transmit feed;

said satellite routers connected to said antenna feeds;

a primary low noise block (LNB) connected to said primary satellite router and said antenna subsystem;

a post-EMP LNB connected to said primary satellite router and said antenna subsystem;

a primary block upconverter (BUC) connected to said primary satellite router and said antenna subsystem; and

a post-EMP BUC connected to said post-EMP satellite router and said antenna subsystem.

8. The telecommunications system according to claim 7 , which includes:

a close coupled waveguide combiner connected to said BUCs and said antenna transmit feed.

9. The telecommunications system according to claim 7 , which includes:

said core component subsystem including a power backup relay selectively connected to said satellite routers.

10. The telecommunications system according to claim 9 , which includes:

a backup generator connected to said power backup relay and configured for providing AC power to said telecommunications system in the event of a power outage.

11. An electromagnetic pulse (EMP) resistant telecommunications system, which comprises:

a core component subsystem including a data source with a data storage component;

a primary satellite router;

a post-EMP satellite router;

an ethernet switch configured for directing signals from said data source to one of said primary and post-EMP satellite routers;

a Faraday cage enclosing said core component subsystem and configured for resisting EMP interference;

an antenna subsystem connected to said satellite routers;

said antenna subsystem including an antenna receive feed and an antenna transmit feed;

said satellite routers connected to said antenna feeds; and

a close coupled waveguide splitter connected to said LNBs and said antenna receive feed.

12. An electromagnetic pulse (EMP) resistant telecommunications system, which comprises:

a core component subsystem including a data source with a data storage component;

a primary satellite router;

a post-EMP satellite router;

an ethernet switch configured for directing signals from said data source to one of said primary and post-EMP satellite routers;

a Faraday cage enclosing said core component subsystem and configured for resisting EMP interference;

a backup generator selectively connected to said core component subsystem;

an antenna subsystem connected to said satellite routers;

said antenna subsystem including an antenna receive feed and an antenna transmit feed;

said satellite routers connected to said antenna feeds;

a primary low noise block (LNB) connected to said primary satellite router and said antenna subsystem;

a post-EMP LNB connected to said primary satellite router and said antenna subsystem;

a primary block upconverter (BUC) connected to said primary satellite router and said antenna subsystem; and

a close coupled waveguide combiner connected to said BUCs and said antenna transmit feed.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Apr 28, 2021
From: NEBRASKA SKY TECHNOLOGIES, INC.
To: MORONEY, JOHN
Reel/Frame 056073/0819 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2020
From: LIVERGOOD, GEORGE A; GIFTAKIS, ARTHUR G
To: NEBRASKA SKY TECHNOLOGIES, INC.
Reel/Frame 052335/0397 →
Continuity (2)
Provisional Application 62775456 · Dec 5, 2018
Related Publication 20210281319A1 · Sep 9, 2021