IP Library Granted Patent US 11,601,861
Granted Patent B2
US 11,601,861 · App. 16/759,466 · Granted Mar 7, 2023

Unmanned aerial vehicle control method and apparatus

Inventor: Wei Hong (Beijing, CN)
Assignee: Beijing Xiaomi Mobile Software Co., Ltd.
H04W36/32B64C39/024G05D1/0016G05D1/101G08G5/003H04W36/0016H04W36/08H04W36/38B64C2201/146H04W92/20
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Quick Facts
Patent No.
US 11,601,861
App. No.
16/759,466
Granted
Mar 7, 2023
Kind
B2
Abstract

A method and apparatus for controlling a UAV are provided. The method is applied to a base station, and includes: receiving flight path information transmitted by a UAV controller, wherein the flight path information represents a flight path set by the UAV controller for a UAV controlled by the UAV controller; determining the flight path based on the flight path information; and determining a next base station to which the UAV is to move based on the flight path, and performing a handover preparation for the next base station. Therefore, the present disclosure improves the mobility of the UAV and can also reduce the latency of handover between base stations.

Claims (33)

1. An apparatus for controlling an unmanned aerial vehicle (UAV), being applied to a base station, and comprising:

a processor; and

a memory storing instructions executable by the processor;

wherein the processor is configured to:

acquire flight path information, wherein the flight path information represents a flight path set by a UAV controller for the UAV controlled by the UAV controller;

determine the flight path based on the flight path information; and

determine a next base station to which the UAV is to move based on the flight path, and perform a handover preparation for the next base station,

wherein the processor is further configured to:

acquire the flight path information from a first radio resource control (RRC) signaling transmitted by the UAV controller after establishing an RRC connection with the UAV controller, wherein the first RRC signaling comprises user equipment assistance information; or

acquire the flight path information from a second RRC signaling transmitted by the UAV after establishing the RRC connection with the UAV controlled by the UAV controller, wherein the second RRC signaling comprises the user equipment assistance information;

wherein the processor is further configured to:

transmit the flight path information to at least one adjacent base station corresponding to the base station through an X2 interface, such that the at least one adjacent base station determines itself as a base station to which the UAV is to move based on the flight path information, then determines another next base station to which the UAV is to move based on the flight path information, and performs a handover preparation for the another next base station.

2. The apparatus according to claim 1 , wherein the flight path information further comprises an identifier of the UAV controlled by the UAV controller.

3. An apparatus for controlling an unmanned aerial vehicle (UAV), being applied to a UAV controller, and comprising:

a processor; and

a memory storing instructions executable by the processor;

wherein the processor is configured to:

set flight path information, wherein the flight path information represents a flight path set by the UAV controller for the UAV controlled by the UAV controller; and

transmit the flight path information to a base station that provides a network service for the controlled UAV, such that the base station determines the flight path based on the flight path information,

wherein the processor is further configured to:

transmit the flight path information to the controlled UAV, such that the controlled UAV transmits the flight path information to the base station; or

transmit the flight path information to the base station through a first radio resource control (RRC) signaling after establishing an RRC connection with the base station, such that the base station acquires the flight path information from the first RRC signaling, wherein the first RRC signaling comprises user equipment assistance information.

4. The apparatus according to claim 3 , wherein the flight path information further comprises an identifier of the UAV controlled by the UAV controller.

5. An apparatus for controlling an unmanned aerial vehicle (UAV), being applied to the UAV, and comprising:

a processor; and

a memory storing instructions executable by the processor;

wherein the processor is configured to:

receive flight path information transmitted by a UAV controller, wherein the flight path information represents a flight path set by the UAV controller for the UAV controlled by the UAV controller; and

transmit the flight path information to a base station that provides a network service for the UAV, such that the base station determines the flight path based on the flight path information,

wherein the processor is further configured to:

add the flight path information to a radio resource control (RRC) signaling after establishing an RRC connection with the base station, wherein the RRC signaling comprises user equipment assistance information; and

transmit the RRC signaling with the flight path information to the base station, such that the base station acquires the flight path information from the RRC signaling.

6. The apparatus according to claim 5 , wherein the flight path information further comprises an identifier of the UAV controlled by the UAV controller.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2020
From: HONG, WEI
To: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.
Reel/Frame 052500/0575 →
Continuity (1)
Related Publication 20200344661A1 · Oct 29, 2020
Cited By (4)
US 12,367,778 US 12,449,530 US 12,520,217 US 12,701,485