IP Library Granted Patent US 12,010,601
Granted Patent B2
US 12,010,601 · App. 17/317,881 · Granted Jun 11, 2024

VoIP and native carrier call integration

Inventors: Steven Paul Papa (Windham, NH); Rajesh Kumar Mishra (Westford, MA); Kaitki Agarwal (Westford, MA)
Assignee: Parallel Wireless, Inc.
H04W40/02H04W4/16H04W4/18H04W88/16
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Quick Facts
Patent No.
US 12,010,601
App. No.
17/317,881
Granted
Jun 11, 2024
Kind
B2
Abstract

Systems, methods and computer software are disclosed for providing a Diameter multifold message. In one embodiment a method is disclosed, comprising: providing a multifold-command Attribute Value Pair (AVP), the multifold-command AVP including an AVP code, a set of VMP flags, an AVP length and a vendor ID; including the AVP in a Capabilities Exchange Request (CER) command for a Diameter stack supporting multiplexing of commands in one message; and using the AVP to combine messages from multiple applications running on a single Diameter node and multiple commands from a single application.

Claims (28)

1. A method for providing local breakout for data traffic in a wireless network, comprising:

identifying first and second packet data at a radio access network (RAN) node within a cellular network for latency reduction, wherein the cellular network is at least one of a 4G cellular network or a 5G cellular network, wherein the cellular network further includes a core network node;

providing a first local breakout node and a second local breakout node, each of the first and the second local breakout nodes communicatively coupled to the cellular network;

routing the first packet data for latency reduction to a first destination via the first local breakout node, thereby bypassing a cellular core network gateway as an intermediate node; and

routing the second packet data for latency reduction to a second destination via the second local breakout node, thereby also bypassing the cellular core network gateway as the intermediate node.

2. The method of claim 1 wherein the network is a 4G network having an integrated 4G control plane and 4G user plane.

3. The method of claim 1 wherein the network is a 4G network having a separated 4G control plane and 4G user plane.

4. The method of claim 1 wherein the network is a 5G network having a separated 5G control plane and 5G user plane.

5. The method of claim 1 wherein data identified as not requiring latency reduction are sent to a centralized core.

6. A non-transitory computer-readable medium containing instructions for providing local breakout, which, when executed, cause a system to perform steps comprising:

identifying first and second packet data at a radio access network (RAN) node within a cellular network for latency reduction, wherein the cellular network is at least one of a 4G cellular network or a 5G cellular network, wherein the cellular network further includes a core network node;

providing a first local breakout node and a second local breakout node, each of the first and the second local breakout nodes communicatively coupled to the cellular network;

routing the first packet data for latency reduction to a first destination via the first local breakout node, thereby bypassing a cellular core network gateway as an intermediate node; and

routing the second packet data for latency reduction to a second destination via the second local breakout node, thereby also bypassing the cellular core network gateway as the intermediate node.

7. The computer readable medium of claim 6 , further including instructions wherein the network is a 4G network having an integrated 4G control plane and 4G user plane.

8. The computer readable medium of claim 6 , further including instructions wherein the network is a 4G network having a separated 4G control plane and 4G user plane.

9. The computer readable medium of claim 6 , further including instructions wherein the network is a 5G network having a separated 5G control plane and 5G user plane.

10. The computer readable medium of claim 6 , further including instructions wherein data identified as not requiring latency reduction are sent to a centralized core.

11. A system for providing local breakout, comprising:

a wireless network including a cellular core network gateway, wherein the wireless network is at least one of a 4G network or a 5G network;

a radio access network (RAN) node at an edge of the wireless network and in communication with the cellular core network gateway;

a first local breakout node communicatively coupled with the RAN node and with an Internet; and

a second local breakout node also communicatively coupled with the RAN node and with an Internet;

wherein first and second data are identified within a network requiring latency reduction, wherein the first and the second data requiring latency reduction are routed to the Internet from a first source and a second source via the first local breakout node and the second local breakout node, respectively, thereby bypassing the cellular core network gateway as an intermediate node.

12. The system of claim 11 wherein the network is a 4G network having an integrated 4G control plane and 4G user plane.

13. The system of claim 11 wherein the network is a 4G network having a separated 4G control plane and 4G user plane.

14. The system of claim 11 wherein the network is a 5G network having a separated 5G control plane and 5G user plane.

15. The system of claim 11 wherein data identified as not requiring latency reduction are sent to the cellular core.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jul 12, 2022
From: VENTURE LENDING & LEASING IX, INC.; WTI FUND X, INC.
To: PARALLEL WIRELESS, INC.
Reel/Frame 060900/0022 →
SECURITY INTEREST Recorded Mar 1, 2022
From: PARALLEL WIRELESS, INC.
To: VENTURE LENDING & LEASING IX, INC.; WTI FUND X, INC.
Reel/Frame 059279/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2021
From: PAPA, STEVEN PAUL; MISHRA, RAJESH KUMAR; AGARWAL, KAITKI
To: PARALLEL WIRELESS, INC.
Reel/Frame 056217/0184 →
Continuity (7)
Continuation In Part 16736380 · Jan 7, 2020
Continuation 15706663 · Sep 15, 2017
Continuation In Part 15678104 · Aug 15, 2017
Provisional Application 63023236 · May 11, 2020
Provisional Application 62395354 · Sep 15, 2016
Provisional Application 62375341 · Aug 15, 2016
Related Publication 20210266813A1 · Aug 26, 2021