IP Library Granted Patent US 10,367,246
Granted Patent B2
US 10,367,246 · App. 15/570,506 · Granted Jul 30, 2019

Easyly deployable phased antenna for a spacecraft and system of such antennas

Inventors: Saulius Rudys (Vilnius, LT); Juras Banys (Vilnius, LT)
Assignee: VILNIUS UNIVERSITY
H01Q1/1235H01Q1/288H01Q19/04H01Q21/12H01Q3/26
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Quick Facts
Patent No.
US 10,367,246
App. No.
15/570,506
Granted
Jul 30, 2019
Kind
B2
Abstract

An antenna is made from strips of a shape-memory alloy or other resilient material acting as a spring with attached branches that constitute individual monopole antennas. In the folded state, the antenna looks like a strip roll and can be placed on a satellite. When in orbit, the antenna unfolds after the roll retention mechanism is released and orderly unfolds unrolling from a support frame or otherwise extends. The proposed design of monopole branches utilizes conductors of minimum length and achieves maximum directivity. Each monopole branch is connected to the signal receiver/transmitter by signal conduit elements. A system may include at least two such unfolding antennas thus achieving even greater operational effectiveness in regard to signal steerability, interference suppression and reduced moment of the satellite inertia. To prevent problems, additional measures are used that prevent unwinding of inner layers of the roll before the outer layer is extended.

Claims (14)

1. A self-deploying antenna for spacecraft, comprising:

at least one pair of transversal members, each of the transversal members of the at least one pair of transversal members being made of a first self-straightening metal strip;

a mounting chamber for mounting the antenna to the spacecraft, wherein each of the transversal members of the at least one pair of transversal members have a first end and an opposite second end, the first end attached to the mounting chamber and the second end being free; and

a plurality of monopole electric vibrators made of a second self-straightening metal strip and attached to the transversal members of the at least one pair of transversal members,

wherein a first joint angle between one transversal member of the at least one pair of transversal members and at least one of said monopole electric vibrators is close to zero when the antenna is in un-deployed transportation state, and a second joint angle between another transversal member of the at least one pair of transversal members and at least one monopole electric vibrator associated with said another transversal member is close to zero when the antenna is in the un-deployed transportation state,

the first joint angle between the one transversal member and the at least one monopole electric vibrator associated with said one transversal member is greater than zero when the antenna is in a deployed state, and the second joint angle between the another transversal member and the at least one monopole electric vibrator associated with said another transversal member is greater than zero when the antenna is in deployed state, and

wherein monopole electric vibrators associated with said one transversal member and monopole electric vibrators associated with said another transversal member are configured to unbend in different direction respectively.

2. The self-deploying antenna in accordance with claim 1 , wherein the monopole electric vibrators, which are attached to the transverse member, unbend in different directions.

3. The self-deploying antenna in accordance with claim 1 , wherein a member, which is attached to one of the monopole electric vibrators of the transverse member, unbends at an angle to the said monopole vibrator.

4. The self-deploying antenna in accordance with claim 1 , wherein the monopole electric vibrators, which are attached to the transverse member, unbend into different planes.

5. The self-deploying antenna in accordance with claim 1 , wherein the antenna further comprises a guiding element for guided unrolling of the antenna.

6. The self-deploying antenna in accordance with claim 1 , wherein plural of monopole electric vibrators, which are attached to any one transverse member of the pair of transverse members unbend in different directions.

7. The self-deploying antenna in accordance with claim 1 , wherein at least one monopole electric vibrator, which is attached to another monopole electric vibrator of the any one of the pair of transverse members, is at an angle when unbent to said at least one monopole electric vibrator.

8. The self-deploying antenna in accordance with claim 1 , wherein plural of the monopole electric vibrators, which are attached to at least any one transverse member of the pair of transverse members, unbend into different planes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2018
From: RUDYS, SAULIUS; BANYS, JURAS
To: VILNIUS UNIVERSITY
Reel/Frame 044537/0154 →
Priority Claims (1)
LT 2015 034 · Apr 30, 2015 · national
Continuity (1)
Related Publication 20180151938A1 · May 31, 2018
Cited By (1)
US 12,469,962