WO2021097263A1

Dual fallback hardened voip system with signal quality measurement

Abstract

A hardened VoIP system is presented that includes secure push-to-talk voice functionality. Through the addition of encryption, authentication, user filtering, and integration with new and existing LMR systems, a secure voice platform ensures malicious software, unauthorized access and brute force security attacks will not compromise the voice communications of the system. The VoIP system is engineered to ensure graceful system degradation in the event of maintenance activities, natural disasters, and failure modes. The hardened VoIP system offers the functions of a LMR trunking system while utilizing broadband connections. Private calls, group calls, Emergency Alarms with covert monitoring capability, scanning and priority scanning may be incorporated into the system. The system includes a VoIP controller that serves as a trunking controller, manages available VoIP based conference bridges, and assigns them as needed to the parties involved in each voice call. The system includes multiple fallback methods that may be prioritized based on pre-failure analytics.

WO2021097263A1, drawing sheet 1
Sheet 1 of 12

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

19 claims: 2 independent, 17 dependent

  1. 1
    What is claimed is:1. A mobile device [280, 285, 290, 295, 300, 1310, 1320, 1330] having a first primary operational state [710], a secondary primary operational state [740], a first fallback state [600], and a second fallback state [step 630], the mobile device configured in the first primary operational state [710] to receive via a cellular communications system [155 / 1130] a VoIP status signal [step 680] from a VoIP controller [125, 1200], receive from a first land mobile radio system [215-260 / 1290/ 1140, 690] a first Land Mobile Radio (LMR) status signal [690], and provide VoIP communication over the cellular communications system;in the second primary operational state [step 740] to receive via the cellular communications system the VoIP status [step 680] signal from the VoIP controller [125, 1200], receive from a second land mobile radio system [step 720] a second LMR status signal [step 720], and provide VoIP communication over the cellular communications system;in the first fallback state [step 600] to provide voice communication over the first land mobile radio system;in the second fallback state [step 630] to provide voice communication over the second land mobile radio system;and to transition from the first primary operational state [710] to the first fallback state upon failing to receive the VoIP status signal from the VoIP controller [560 580 590 -4 600];to transition from the second primary operational state to the second fallback state upon failing to receive the VoIP status signal from the VoIP controller [560 4 580 4 610 620 ·4 630];and to transition from the first primary operational state [710] to the second primary operational state upon failing to receive the first LMR status signal [560 4 570 4 680 4 690-4 720-4 730-4 740]
  2. 18
    A VoIP controller having a first primary operational state [710], a second primary operational state [740], a first fallback state [600], and a second fallback state [630], the VoIP controller [125, 1200] configured in the first primary operational state [710] to receive via a cellular communications system [155 / 1130] a first VOIP heartbeat signal from a first mobile device [280, 285, 290, 295,300, 1310, 1320, 1330], receive a first Land Mobile Radio (LMR) status signal associated with a first land mobile radio system [215-260 / 1290/ 1140, 690] from the mobile device, maintain a database [130] with a first identifier [475, 480] associating the first mobile device with the cellular communications system and a second identifier [495, 500] associating the first mobile device with the first land mobile radio system;in the second primary operational state [740] to receive via the cellular communications system the first VOIP heartbeat signal from the first mobile device, receive a second LMR status signal associated with a second land mobile radio system from the mobile device, maintain the database [130] with the first identifier associating the first mobile device with the cellular communications system and the second identifier associating the first mobile device with the second land mobile radio system;in the second primary operational state to receive via a cellular communications system the first VOIP heartbeat signal from the mobile device, receive via a second land mobile radio system a second LMR status signal, transmit a first status control signal to the mobile device, and maintain the database [130] with the first identifier associating the first mobile device with the cellular communications system and a third identifier associating the first mobile device with the second land mobile radio system;in the first fallback state to monitor a channel of the first land mobile radio system associated with the mobile device;in the second fallback state to monitor a channel of the second land mobile radio system associated with the mobile device;to transition from the first primary operational state to the first fallback state upon failing to receive the first VoIP heartbeat signal from the mobile device;and to transition from the second primary operational state to the second fallback state upon failing to receive the first VoIP heartbeat signal from the mobile device.