IP Library Granted Patent US 12,524,730
Granted Patent B2
US 12,524,730 · App. 18/085,230 · Granted Jan 13, 2026

Methods and node apparatus for adaptive node communication within a wireless node network

Inventor: Ole-Petter Skaaksrud (Germantown, TN)
Assignee: Federal Express Corporation
G06Q10/0833G06Q10/087G06Q30/0639H04B17/3913H04H20/71H04L1/0006H04W4/029H04W8/183H04W8/24H04W28/0231H04W52/223H04W52/40H04W40/02
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Quick Facts
Patent No.
US 12,524,730
App. No.
18/085,230
Granted
Jan 13, 2026
Kind
B2
Abstract

Methods and apparatus are described for enhanced node communication within a wireless node network having nodes and a server. The method begins with a first node associating with a second node, and the first node capturing relevant node information. When the first node is in a first connectivity mode, the relevant node information is transmitted to the server via the second node operating as an intermediary for indirect communication with the server. When the first node is in a second connectivity mode, the first node transmits the relevant node information to the server without using the second node as the intermediary or bridge to the server. Each of the first node and second node may be wireless transceiver-based nodes and respectively implemented as integrated circuits.

Claims (82)

1 . A method for enhanced node communication within a wireless node network having a plurality of nodes and a server, the method comprising:

(a) associating, by a first of the nodes, the first of the nodes with a second of the nodes according to a server tracked logical connection authorized by the server;

(b) capturing, by the first of the nodes, relevant node information;

(c) transmitting, when the first of the nodes is operating in a first connectivity mode, the relevant node information to the server via the second of the nodes operating as an intermediary for indirect communication with the server; and

(d) transmitting, by the first of the nodes when operating in a second connectivity mode in the wireless node network, the relevant node information to the server without using the second of the nodes as the intermediary to the server by having the first of the nodes

(i) generate a message for the server, the message including the relevant node information and formatted for a longer range communication path when compared to a shorter range communication path used to communicate between the first of the nodes and at least another of the nodes in the wireless node network, and

(ii) broadcast the message on the longer range communication path to the server while avoiding the need to first send the message to the second of the nodes during transit to the server.

2 . The method of claim 1 , wherein the relevant node information further comprises at least one of profile data, security data, association data, shared data, and sensor data.

3 . The method of claim 2 , wherein the sensor data comprises data collected from one or more sensors in communication with the first of the nodes.

4 . The method of claim 1 , wherein steps (c) and (d) further comprises:

determining a desired communication path for the message including the relevant node information, the desired communication path comprising at least one of the shorter range communication path and the longer range communication path, wherein the shorter range communication path includes the second of the nodes operating as the intermediary for indirect communication with the server and the longer range communication path not including the second of the nodes operating as the intermediary for indirect communication with the server;

formatting the message for the server, the message formatted for the desired communication path;

when the desired communication path is the shorter range communication path, broadcasting the message on the desired communication path to the server according to the first connectivity mode via the second of the nodes operating as an intermediary for indirect communication with the server; and

when the desired communication path is the longer range communication path, broadcasting the message on the desired communication path to the server according to the second connectivity mode while avoiding the need to first send the message to the second of the nodes during transit to the server.

5 . The method of claim 1 , wherein the second of the nodes comprises a wireless transceiver-based node that serves as a bridge to the server for the first of the nodes in the wireless node network when the first of the nodes is operating in the first connectivity mode.

6 . The method of claim 5 , wherein the second of the nodes implements the wireless transceiver-based node as an integrated circuit.

7 . The method of claim 5 , wherein the second of the nodes implements the wireless transceiver-based node as a single chip integrated circuit.

8 . The method of claim 1 , wherein the first of the nodes comprises a wireless transceiver-based node that serves as a bridge to the server for the another of the nodes in the wireless node network when the first of the nodes is operating in the second connectivity mode.

9 . The method of claim 8 , wherein the first of the nodes implements the wireless transceiver-based node as an integrated circuit.

10 . The method of claim 8 , wherein the first of the nodes implements the wireless transceiver-based node as a single chip integrated circuit.

11 . The method of claim 1 , wherein the first of the nodes comprises a wireless transceiver-based node operative to communicate with the another of the nodes in the wireless node network over the shorter range communication path; and

wherein the capturing step further comprises capturing, by the first of the nodes, the relevant node information from a broadcast from the another of the nodes.

12 . The method of claim 11 , wherein the relevant node information comprises data collected from one or more sensors in communication with the another of the nodes.

13 . The method of claim 12 , wherein the data collected from the one or more sensors relates to at least one condition of a package associated with the another of the nodes.

14 . A system for enhanced communication within a wireless node network, comprising:

a server disposed within the wireless node network; and

a plurality of nodes disposed within the wireless node network, the plurality of nodes comprising a first of the nodes and a second of the nodes; and

wherein the first of the nodes being adapted and operative to

associate the first of the nodes with the second of the nodes according to a server tracked logical connection authorized by the server,

capture relevant node information,

transmit, when the first of the nodes is operating in a first connectivity mode, the relevant node information to the server via the second of the nodes operating as an intermediary for indirect communication with the server, and

transmit, when the first of the nodes is operating in a second connectivity mode, the relevant node information to the server without using the second of the nodes as the intermediary to the server by being further adapted and operative to

(i) generate a message for the server, the message including the relevant node information and formatted for a longer range communication path when compared to a shorter range communication path used to communicate between the first of the nodes and another of the nodes in the wireless node network, and

(ii) broadcast the message on the longer range communication path to the server while avoiding the need to first send the message to the second of the nodes during transit to the server.

15 . The system of claim 14 , wherein the relevant node information further comprises at least one of profile data, security data, association data, shared data, and sensor data.

16 . The system of claim 15 , wherein the first of the nodes further comprises one or more sensors that generate the sensor data.

17 . The system of claim 14 , wherein the first of the nodes is adapted and operative to transmit the relevant node information by being further adapted and operative to:

determine a desired communication path for the message including the relevant node information, the desired communication path comprising at least one of the shorter range communication path and the longer range communication path, wherein the shorter range communication path includes the second of the nodes operating as the intermediary to the server and the longer range communication path not including the second of the nodes operating as the intermediary to the server;

format the message for the server, the message formatted for the desired communication path;

when the desired communication path is the shorter range communication path, broadcast the message on the desired communication path to the server according to the first connectivity mode via the second of the nodes operating as the intermediary for indirect communication with the server; and

when the desired communication path is the longer range communication path, broadcast the message on the desired communication path to the server according to the second connectivity mode while avoiding the need to first send the message to the second of the nodes during transit to the server.

18 . The system of claim 14 , wherein the second of the nodes comprises a wireless transceiver-based node that serves as a bridge to the server for the first of the nodes in the wireless node network when the first of the nodes is operating in the first connectivity mode.

19 . The system of claim 18 , wherein the second of the nodes implements the wireless transceiver-based node as an integrated circuit.

20 . The system of claim 18 , wherein the second of the nodes implements the wireless transceiver-based node as a single chip integrated circuit.

21 . The system of claim 14 , wherein the first of the nodes comprises a wireless transceiver-based node that serves as a bridge to the server for the another of the nodes in the wireless node network when the first of the nodes is operating in the second connectivity mode.

22 . The system of claim 21 , wherein the first of the nodes implements the wireless transceiver-based node as an integrated circuit.

23 . The system of claim 21 , wherein the first of the nodes implements the wireless transceiver-based node as a single chip integrated circuit.

24 . The system of claim 14 , wherein the first of the nodes comprises a wireless transceiver-based node operative to communicate with the another of the nodes in the wireless node network over the shorter range communication path; and

wherein the first of the nodes is further adapted and operative to capture the relevant node information from a broadcast from the another of the nodes.

25 . The system of claim 24 , wherein the relevant node information comprises data collected from one or more sensors in communication with the another of the nodes.

26 . The system of claim 25 , wherein the data collected from the one or more sensors relates to at least one condition of a package associated with the another of the nodes.

27 . A system for enhanced communication within a wireless node network, comprising:

a server disposed within the wireless node network; and

a plurality of nodes disposed within the wireless node network, the plurality of nodes comprising a first of the nodes and a second of the nodes; and

wherein the first of the nodes being adapted and operative to

associate the first of the nodes with the second of the nodes according to a server tracked logical connection authorized by the server,

capture relevant node information,

selectively send the relevant node information to the server using one of two connectivity modes, wherein

when the first of the nodes is operating in a first of the two connectivity modes, the relevant node information is sent by the first of the nodes to the server via the second of the nodes operating as an intermediary for indirect communication with the server, and

when the first of the nodes is operating in a second connectivity mode, the relevant node information is sent by the first of the nodes to the server without using the second of the nodes as the intermediary to the server by being further adapted and operative to (a) generate a message for the server, the message including the relevant node information and formatted for a longer range communication path when compared to a shorter range communication path used to communicate between the first of the nodes and another of the nodes in the wireless node network, and (b) broadcast the message on the longer range communication path to the server while avoiding the need to first send the message to the second of the nodes during transit to the server.

28 . The system of claim 27 , wherein the first of the nodes is adapted and operative to selectively send the relevant node information to the server by being further adapted and operative to:

determine a desired communication path for the message including the relevant node information, the desired communication path comprising at least one of the shorter range communication path and the longer range communication path, wherein the shorter range communication path includes the second of the nodes operating as the intermediary to the server and the longer range communication path not including the second of the nodes operating as the intermediary to the server;

format the message for the server, the message formatted for the desired communication path;

when the desired communication path is the shorter range communication path, broadcast the message on the desired communication path to the server according to the first connectivity mode via the second of the nodes operating as the intermediary for indirect communication with the server; and

when the desired communication path is the longer range communication path, broadcast the message on the desired communication path to the server according to the second connectivity mode while avoiding the need to first send the message to the second of the nodes during transit to the server.

29 . An enhanced network node apparatus for enhanced communication within a wireless node network that includes a server disposed within the wireless node network and at least a second node disposed within the wireless node network, the enhanced network node apparatus comprising:

a node processor implemented within an integrated circuit;

a node memory implemented within the integrated circuit and coupled to the node processor, the node memory maintaining control and management code for execution by the node processor; and

a wireless transceiver interface implemented within the integrated circuit and coupled to the node processor, the wireless transceiver interface being operative to communicate with the server and the second node; and

wherein the node processor is operative to execute the control and management code to programmatically control the wireless transceiver interface to:

associate the enhanced network node with the second node according to a server tracked logical connection authorized by the server,

capture relevant node information,

selectively send the relevant node information to the server using one of two connectivity modes, wherein

when the enhanced network node is operating in a first of the two connectivity modes, send the relevant node information to the server via the second node operating as an intermediary for indirect communication with the server, and

when the enhanced network node is operating in a second of the two connectivity modes, send the relevant node information to the server without using the second node as the intermediary to the server by being further adapted and operative to

(a) generate a message for the server, the message including the relevant node information and formatted for a longer range communication path when compared to a shorter range communication path used to communicate between the enhanced network node and at least another node disposed in the wireless node network, and

(b) broadcast the message on the longer range communication path to the server while avoiding the need to first send the message to the second node during transmission to the server.

30 . The enhanced network node apparatus of claim 29 , wherein the node processor is adapted and operative to selectively send the relevant node information to the server by being further adapted and operative to:

determine a desired communication path for the message including the relevant node information, the desired communication path comprising at least one of the shorter range communication path and the longer range communication path, wherein the shorter range communication path includes the second of the nodes operating as the intermediary to the server and the longer range communication path not including the second of the nodes operating as the intermediary to the server;

format the message for the server, the message formatted for the desired communication path;

when the desired communication path is the shorter range communication path, cause the wireless transceiver interface to broadcast the message on the desired communication path to the server according to the first connectivity mode via the second of the nodes operating as the intermediary for indirect communication with the server; and

when the desired communication path is the longer range communication path, cause the wireless transceiver interface to broadcast the message on the desired communication path to the server according to the second connectivity mode while avoiding the need to first send the message to the second of the nodes during transit to the server.

Assignments (2)
MERGER Recorded Jul 23, 2024
From: FEDEX CORPORATE SERVICES, INC.
To: FEDERAL EXPRESS CORPORATION
Reel/Frame 068493/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2022
From: SKAAKSRUD, OLE-PETTER
To: FEDEX CORPORATE SERVICES, INC.
Reel/Frame 062166/0025 →
Continuity (4)
Continuation 16578826 · Sep 23, 2019
Division 14488474 · Sep 17, 2014
Provisional Application 62003566 · May 28, 2014
Related Publication 20230119822A1 · Apr 20, 2023
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