Abstract:
Mobile devices, systems, and methods for end-user transparent utilization of computational, storage, and network capacity of mobile device are described herein. A communication interface may be responsive to a request for a resource from a network of mobile devices. A database may store mobile device information and, in response to the request, identify at least one mobile device having the resource. A virtual machine dispatcher may generate a command to a virtual machine dispatch agent of the at least one mobile device to create a virtual machine to perform the resource.
Abstract:
Technologies for managing congestion of a communication channel includes a network device for receiving a network packet from a computing device destined for another computing device, analyzing network traffic flows over a communication channel established between the network device and an upstream network device, and determining whether the communication channel is congested as a function of the network traffic flows. Such technologies may also include storing the received packet in a local storage in response to determining that the communication channel is congested, transmitting an acknowledgement packet to the computing device in response to storing the received network packet local storage, and transmitting the stored network packet to the upstream network device in response to determining that the communication channel is no longer congested.
Abstract:
A network interface device (NID) may determine whether the received data units of the computer system are to be compressed before transmitting the data units. The NID may determine the compression energy value consumed to compress the first K1 data units and a second transmission energy value to transmit the compressed first K1 data units. The NID may then estimate a first transmission energy value that may be consumed by the NID to transmit uncompressed first K1 data units using the second transmission energy value. The NID may then use the first and second transmission energy value and the compression energy value to determine if the remaining (N−K1) data units of the first data stream.
Abstract:
A network interface device (NID) may determine whether the received data units of the computer system are to be compressed before transmitting the data units. The NID may determine the compression energy value consumed to compress the first K1 data units and a second transmission energy value to transmit the compressed first K1 data units. The NID may then estimate a first transmission energy value that may be consumed by the NID to transmit uncompressed first K1 data units using the second transmission energy value. The NID may then use the first and second transmission energy value and the compression energy value to determine if the remaining (N-K1) data units of the first data stream.
Abstract:
Mobile devices, systems, and methods for end-user transparent utilization of computational, storage, and network capacity of mobile device are described herein. A communication interface may be responsive to a request for a resource from a network of mobile devices. A database may store mobile device information and, in response to the request, identify at least one mobile device having the resource. A virtual machine dispatcher may generate a command to a virtual machine dispatch agent of the at least one mobile device to create a virtual machine to perform the resource.
Abstract:
Mobile devices, systems, and methods for end-user transparent utilization of computational, storage, and network capacity of mobile device are described herein. A communication interface may be responsive to a request for a resource from a network of mobile devices. A database may store mobile device information and, in response to the request, identify at least one mobile device having the resource. A virtual machine dispatcher may generate a command to a virtual machine dispatch agent of the at least one mobile device to create a virtual machine to perform the resource.
Abstract:
A network interface device (NID) may determine whether the received data units of the computer system are to be compressed before transmitting the data units. The NID may determine the compression energy value consumed to compress the first K1 data units and a second transmission energy value to transmit the compressed first K1 data units. The NID may then estimate a first transmission energy value that may be consumed by the NID to transmit uncompressed first K1 data units using the second transmission energy value. The NID may then use the first and second transmission energy value and the compression energy value to determine if the remaining (N−K1) data units of the first data stream.
Abstract:
Technologies for managing congestion of a communication channel includes a network device for receiving a network packet from a computing device destined for another computing device, analyzing network traffic flows over a communication channel established between the network device and an upstream network device, and determining whether the communication channel is congested as a function of the network traffic flows. Such technologies may also include storing the received packet in a local storage in response to determining that the communication channel is congested, transmitting an acknowledgement packet to the computing device in response to storing the received network packet local storage, and transmitting the stored network packet to the upstream network device in response to determining that the communication channel is no longer congested.
Abstract:
Mobile devices, systems, and methods for end-user transparent utilization of computational, storage, and network capacity of mobile device are described herein. A communication interface may be responsive to a request for a resource from a network of mobile devices. A database may store mobile device information and, in response to the request, identify at least one mobile device having the resource. A virtual machine dispatcher may generate a command to a virtual machine dispatch agent of the at least one mobile device to create a virtual machine to perform the resource.
Abstract:
Technologies for managing congestion of a communication channel includes a network device for receiving a network packet from a computing device destined for another computing device, analyzing network traffic flows over a communication channel established between the network device and an upstream network device, and determining whether the communication channel is congested as a function of the network traffic flows. Such technologies may also include storing the received packet in a local storage in response to determining that the communication channel is congested, transmitting an acknowledgement packet to the computing device in response to storing the received network packet local storage, and transmitting the stored network packet to the upstream network device in response to determining that the communication channel is no longer congested.