Abstract:
A system for managing incidents includes an electronic display, an electronic processor coupled to the electronic display, and memory coupled to the electronic processor and storing instructions. The instructions, when executed by the electronic processor, cause the system to display an incident card on the electronic display, display first incident information on a front side of the incident card, receive a first user input indicating to flip to a back side of the incident card, determine user focus information, generate second incident information based on the user focus information, and display a back side of the card responsive to receiving the first user input. The back side includes the second incident information.
Abstract:
A device, system and method for interoperability between digital evidence management systems (DEMS) is provided. A DEMS proxy computing device received, from a requesting device, a search string requesting digital evidence. The proxy provides, to a plurality of separate DEMS devices maintained by separate public safety agencies: corresponding search strings; and identification information identifying one or more of: a public safety role of a user of the requesting device, and a public safety agency membership of the user. The proxy receives, from at least a particular DEMS device, of the plurality of separate DEMS devices, a digital evidence record based on the search string, the digital evidence record describing a piece of digital evidence managed by the particular DEMS device, and including chain-of-custody information. The proxy provides, to the requesting device, the digital evidence record and the chain-of-custody information.
Abstract:
A method is provided that facilitates sidehaul minimization by dropping and reconnecting a mobile device when the mobile device has handed off to a second deployable in a deployable ad hoc communication system. A data session is established for the mobile device utilizing resources in the first deployable. At some point the mobile device hands over to a second deployable in the multiple deployable ad hoc network. The data session at the first deployable remains active and continues to send and receive bearer traffic and control traffic for the mobile device. Upon determining that the mobile device has entered an idle state, the mobile device is dropped from the second deployable and reconnects back to the second deployable. By dropping and reconnecting, the data and bearer sessions are moved from the first deployable to the second deployable, thereby eliminating sidehaul between the first deployable and the second deployable.
Abstract:
A device, system and method to secure deployable access points in a side-haul communication network from a compromised deployable access point is provided. An indication that a second deployable access point is compromised is received at a first deployable access point in a side-haul communication network. The first deployable access point requests, from one or more communication devices, one or more manual confirmation votes indicating whether the second deployable access point is compromised. When a threshold number of the one or more manual confirmation votes received indicate that the second deployable access point is compromised, the first deployable access point implements an action to secure the deployable access points in the side-haul communication network from the second deployable access point.
Abstract:
Devices and methods for dynamic management of incident area deployable communications systems. Deployable base stations implement an ad hoc peer-to-peer or master-slave methods of determining activation states and transmission characteristics of plurality of deployable base stations at an incident area. The methods include receiving incident scene information from the plurality of deployable base stations and determining a coverage region for providing wireless communications coverage to one or more mobile communication devices in the incident area. The methods further include determining the activation states of the plurality of deployable base stations and determining transmission characteristics of the plurality of deployable base stations based on the incident scene information and the coverage region. One or more of the deployable base stations are activated in accordance with the determined transmission characteristics.
Abstract:
A method and apparatus for task-based allocation of services at an incident scene include determining assignments for a plurality of users at the incident scene, each of the plurality of users comprising a mobile device; identifying a group of the plurality of users performing a similar function near one another or at a same area; determining if the group is likely to be separated from a wireless local area network at the incident scene; and, in response to determining that the group is likely to be separated from the local area network, allocating service instances on at least one mobile device associated with the group.
Abstract:
A method and apparatus for spatial Quality of Service (QoS) in a wireless network include determining a relative or absolute location of target devices receiving or requesting a same media stream; determining a group of the target devices within a given proximity of one another utilizing resources from the same wireless access network; for each target device in the group while the resources remain in the wireless network: determining a target device based on relative spatial distance to other target devices in the group with prioritized reception of the media stream; and granting the determined target device prioritized reception of the media stream.
Abstract:
A first mobile station operating on a first network according to a first network protocol receives a proxy request for access to a network resource, by from a second mobile station operating on a second network according to a second network protocol. The proxy request is received according to a third network protocol. The first mobile station determines a priority of the proxy request; accepts or denies the proxy request based on the determined priority of the proxy request; allocates resources to the proxy request, if the proxy request is accepted; and serves as a proxy mobile station for the second mobile station to access the network resource.
Abstract:
One example device includes an electronic processor configured identify, based on an incident type and a role of an object associated with a public safety incident, an uncompleted task that is to be performed by a public safety officer and that is associated with the object associated with the public safety incident. The electronic processor may be configured to identify first data included in a captured data file associated with the public safety incident that was generated at least partially by monitoring the object. The electronic processor may be configured to determine a time period within the captured data file during which the first data is identified to be present, and display an indication of the uncompleted task and at least one of the time period within the captured data file, the first data, and a user-selectable link to allow a user to consume the first data.
Abstract:
A system for managing incidents includes an electronic display, an electronic processor coupled to the electronic display, and memory coupled to the electronic processor and storing instructions. The instructions, when executed by the electronic processor, cause the system to display an incident card on the electronic display, display first incident information on a front side of the incident card, receive a first user input indicating to flip to a back side of the incident card, determine user focus information, generate second incident information based on the user focus information, and display a back side of the card responsive to receiving the first user input. The back side includes the second incident information.