Abstract:
A system and method for generating an optimized operating schedule for a plurality of heterogeneous wireless network appliances managed by a gateway device in a closed area network is disclosed. An amount of energy consumed by each network appliance as well as preassigned operational priority values assigned to each network appliance per time slot over the designated time period is considered. A plurality of proposed operation schedules are iteratively generated, wherein each proposed operation schedule selectively assigns the network appliances to operate at various time slots based on their assigned operational priority values. An optimized schedule is selected which has a determined lowest aggregated total utility cost and a greatest aggregated operations value for the network appliances in the subset. The selected optimized schedule is then implemented by the gateway device to manage operation of the network appliances in the closed area network.
Abstract:
A system, medium and method of managing, via a gateway device, to wirelessly communicate with a plurality of network appliances in a closed local area network is disclosed. A data message is received from a first network appliance configured to communicate data in association with a first application profile. The first application profile is retrieved from a locally stored application profile database upon being identified. A database is accessed at the gateway device containing policy information of the first network appliance and evaluated for one or more policy parameters. A first instruction command is generated at the gateway device based on the accessed policy information, wherein the instruction command conforms with the first application profile to instruct the first network appliance to perform a specified action. The instruction command is wirelessly transmitted from the gateway device to the first network appliance to cause it to perform a specified action.
Abstract:
Systems and methods are disclosed for a policy-based, power consumption management of resources. Power consumption data is relayed to an event management system for conducting a pattern analysis of the resources based on historical values and external factors. The event management system may provide a graphical interface for implement decisions pertaining to resource management and effective policy enforcements. The energy management system is further configured to communicate with a data layer to receive measured values.
Abstract:
This technology provides a sustainable enterprise framework for associated gateways in a network to leverage group level decisions and redistribute allocated energy budget among the associated gateways. The enterprise framework is configured to allocate Gateway Hourly Budget (GHB) as hourly spending limit to the associated gateways, autonomously electing gateway leader from the associated gateways, predicting hourly energy requirement for the associated gateways, calculating energy difference parameter between the allocated GHB and predicted hourly energy requirement, transmitting the hourly energy difference parameter to the autonomously elected gateway leader. The leader further re-computes GHB for the associated gateways for the forthcoming hour and redistributes energy budget by ordering the one or more associated gateways to reset the hourly spending limit with the recomputed GHB, thereby enabling optimal utilization of energy and maximum runtime to the appliances connected to the network.
Abstract:
This technology provides a sustainable enterprise framework for associated gateways in a network to leverage group level decisions and redistribute allocated energy budget among the associated gateways. The enterprise framework is configured to allocate Gateway Hourly Budget (GHB) as hourly spending limit to the associated gateways, autonomously electing gateway leader from the associated gateways, predicting hourly energy requirement for the associated gateways, calculating energy difference parameter between the allocated GHB and predicted hourly energy requirement, transmitting the hourly energy difference parameter to the autonomously elected gateway leader. The leader further re-computes GHB for the associated gateways for the forthcoming hour and redistributes energy budget by ordering the one or more associated gateways to reset the hourly spending limit with the recomputed GHB, thereby enabling optimal utilization of energy and maximum runtime to the appliances connected to the network.
Abstract:
A system and method for generating an optimized operating schedule for a plurality of heterogeneous wireless network appliances managed by a gateway device in a closed area network is disclosed. An amount of energy consumed by each network appliance as well as preassigned operational priority values assigned to each network appliance per time slot over the designated time period is considered. A plurality of proposed operation schedules are iteratively generated, wherein each proposed operation schedule selectively assigns the network appliances to operate at various time slots based on their assigned operational priority values. An optimized schedule is selected which has a determined lowest aggregated total utility cost and a greatest aggregated operations value for the network appliances in the subset. The selected optimized schedule is then implemented by the gateway device to manage operation of the network appliances in the closed area network.
Abstract:
A system, medium and method of managing, via a gateway device, to wirelessly communicate with a plurality of network appliances in a closed local area network is disclosed. A data message is received from a first network appliance configured to communicate data in association with a first application profile. The first application profile is retrieved from a locally stored application profile database upon being identified. A database is accessed at the gateway device containing policy information of the first network appliance and evaluated for one or more policy parameters. A first instruction command is generated at the gateway device based on the accessed policy information, wherein the instruction command conforms with the first application profile to instruct the first network appliance to perform a specified action. The instruction command is wirelessly transmitted from the gateway device to the first network appliance to cause it to perform a specified action.