IP Library Granted Patent US 11,155,362
Granted Patent B2
US 11,155,362 · App. 16/405,053 · Granted Oct 26, 2021

Hybrid air transportation

Inventor: Alexander Uskolovsky (Los Angeles, CA)
B64F1/10B64B1/66B64C39/022B64D9/00B64D27/24B64C39/024
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Quick Facts
Patent No.
US 11,155,362
App. No.
16/405,053
Granted
Oct 26, 2021
Kind
B2
Abstract

Provided is a transportation system comprising (a) a ground-based powered tug vehicle, (b) an airborne vehicle, and (c) a towline with end links connecting the ground-based vehicle and the airborne vehicle. Also provided are methods of transportation utilizing the transportation system. Additionally provided is a transportation system comprising a hybrid vehicle that is propelled on a highway by a linear induction electric motor comprising a stationary motor element (“stator”) and a moving motor element (“rotor”), where the stator is incorporated into a groove in the highway and the rotor is incorporated into the hybrid vehicle and protrudes into the groove in the highway; and where the hybrid vehicle further comprises at least one wing that elevates the hybrid vehicle when propelled to a take-off speed on the highway. Methods of transportation utilizing this hybrid vehicle transportation system are further provided.

Claims (31)

1. A transportation system, comprising:

(a) a ground-based powered tug vehicle;

(b) at least one airborne vehicle; and

(c) a towline with end links connecting the ground-based vehicle and the airborne vehicle;

wherein the ground-based powered vehicle tugs at least one airborne vehicle by the towline with end links wherein said towline can be detached from and reattached to at either end link of said towline.

2. The transportation system of claim 1 , wherein the ground-based vehicle is guided on an elevated long distance highway.

3. The transportation system of claim 1 , wherein the airborne vehicle comprises at least one wing.

4. The transportation system of claim 1 , wherein the ground-based vehicle is unmanned or unpiloted, and the airborne vehicle is unmanned, unpiloted, or piloted.

5. The transportation system of claim 1 , wherein the airborne vehicle contains at least one airbag, configured to be inflated with a compressed gas lighter than air.

6. The transportation system of claim 1 , wherein the ground-based vehicle is driven by a high-speed rail system, a cable system, an electric motor or a combustion engine.

7. The transportation system of claim 1 , wherein the towline with end links can be lengthened or shortened at either end link of said towline.

8. The transportation system of claim 1 , wherein the airborne vehicle or both the airborne vehicle and the ground-based vehicle are configured to transport at least one passenger and/or cargo.

9. The transportation system of claim 1 , wherein the airborne vehicle uses at least one powered propeller wherein the ground-based vehicle has an emergency stop and cannot drive the airborne vehicle intended for an emergency landing.

10. The transportation system of claim 9 , wherein the at least one propeller is powered by electricity coming from the ground-based vehicle, an onboard battery, and/or a ground-based elevated electricity line.

11. The transportation system of claim 9 , wherein the at least one powered propeller is configured in an angled fashion.

12. The transportation system of claim 1 , wherein the ground-based vehicle is coupled to and moved by at least one loop moving cable system, the loop moving cable system comprising:

a moving cable circulating through the loop moving cable system;

and at least one circular pole and/or wheel at the ends of the loop.

13. The transportation system of claim 12 , wherein the cable is moved by at least one rotating powered wheel at an end of the loop and/or at least one linear electrical motor with its stator located along the moving cable and its rotor attached to the moving cable so that the rotor enters in the stator as the cable is moving.

14. The transportation system of claim 1 , wherein the ground-based vehicle is propelled on a route on a highway, wherein the route has a first terminus and a second terminus, wherein the first terminus and second terminus are at a higher elevation than adjacent portions of the route.

15. The transportation system of claim 1 , wherein if the ground-based vehicle cannot move forward, the airborne vehicle can transit to rotational movement around the ground-based vehicle until the ground-based vehicle can move forward, or the airborne vehicle makes an emergency landing.

16. A method of transportation, the method utilizing the transportation system of claim 1 , the method comprising:

(a) loading passengers and/or cargo into the airborne vehicle or both the airborne vehicle and the ground-based vehicle;

(b) raising the airborne vehicle wherein the ground-based vehicle tows the airborne vehicle up to reaching the take-off, lifting, and cruising speed at the route departure and proceeds further to a route destination;

(c) lowering and landing the airborne vehicle wherein the ground-based towing vehicle decreases the tow cruising speed down to landing speed for the airborne vehicle approaching the rout destination; and

(d) unloading passengers and/or cargo from the airborne vehicle or both the airborne vehicle and the ground-based vehicle.

17. A method of transportation, the method utilizing the transportation system of claim 12 , the method comprising:

(a) coupling the ground-based vehicle with the cable of at least one loop moving cable system;

(b) moving the ground-based vehicle through the loop;

(c) switching the ground-based vehicle from one loop to the next loop of the loop moving cable system;

(d) decoupling the ground-based vehicle from the cable of the loop moving cable system.

Continuity (3)
Provisional Application 62669896 · May 10, 2018
Provisional Application 62792429 · Jan 15, 2019
Related Publication 20190344907A1 · Nov 14, 2019
Cited By (1)
US 12,397,926