Y04S10/14

SYSTEM FOR CONTROLLING A POWER TRANSMISSION SYSTEM
20170279298 · 2017-09-28 ·

A power transmission system includes a plurality of electrical substations and a plurality of transmission lines arranged to connect the plurality of electrical substations to form a power transmission network; and a controller system arranged to control a power transmission within the power transmission network. The controller system includes: a detection module arranged to detect an occurrence of a fault in at least one faulty electrical substation of the plurality of electrical substations; and a restoration module arranged to at least temporally maintain an output power of the at least one faulty electrical substation; and wherein at least one of the plurality of electrical substations is operable to facilitate maintaining of the output of the at least one faulty electrical substation upon the detection of the occurrence of the fault.

Methods, apparatus and systems for managing energy assets

The apparatuses and methods herein facilitate generation of energy-related revenue for an energy customer of an electricity supplier, for a system that includes an energy storage asset. The apparatuses and methods herein can be used to generate operating schedules for a controller of the energy storage asset. When implemented, the generated operating schedules facilitates derivation of the energy-related revenue, over a time period T, associated with operation of the at least one energy storage asset according to the generated operating schedule. The energy-related revenue available to the energy customer over the time period T is based at least in part on a wholesale electricity market.

SUPPLY OF AUXILIARY POWER TO REMOTE INSTALLATIONS
20170324273 · 2017-11-09 ·

The present disclosure relates to system and method used to transmit power to a remote location. More specifically, the present disclosure relates to a system and method used to independently energize control and monitoring functions of a remote installation prior to and/or during energizing its main circuit.

Grid-tied electric meter adapter and systems for automated power resilience and on-demand grid balancing

A micro grid system comprises an adapter, a power controller, and secondary energy source. The adapter is in communication with an electric grid and configured to connect and disconnect a connection between the electric grid and a micro grid. The power controller is in communication with the adapter and configured to receive first AC power from the electric grid via the adapter, obtain grid information, and control the adapter to connect and disconnect the connection between the electric grid and the micro grid. The power controller controls the adapter to disconnect the connection in response to determining that the electric grid is abnormal based on the grid information. The secondary energy source is in communication with the power controller and is configured to generate DC power and to supply the DC power to the power controller.

INFORMATION PROCESSING DEVICE, INFORMATION PROCESSING SYSTEM, INFORMATION PROCESSING METHOD, AND COMPUTER PROGRAM

Provided are an information processing device, an information processing system, an information processing method, and a computer program capable of visually and easily grasping a state of an energy storage device. An information processing device includes: an acquisition unit configured to acquire information including a state of an energy storage device by communication at predetermined time intervals; a storage processing unit configured to store the acquired information in a storage medium in association with information for identifying the energy storage device; a transmission processing unit configured to transmit screen information of a state screen including an image of a system including the energy storage device and a graphic indicating the state of the energy storage device to a communication terminal device; and an automatic monitor unit configured to update information of the graphic based on latest information stored in the storage medium and periodically transmit the information of the graphic to the communication terminal device.

GRID-TIED ELECTRIC METER ADAPTER AND SYSTEMS FOR AUTOMATED POWER RESILIENCE AND ON-DEMAND GRID BALANCING

A micro grid system comprises an adapter, a power controller, and secondary energy source. The adapter is in communication with an electric grid and configured to connect and disconnect a connection between the electric grid and a micro grid. The power controller is in communication with the adapter and configured to receive first AC power from the electric grid via the adapter, obtain grid information, and control the adapter to connect and disconnect the connection between the electric grid and the micro grid. The power controller controls the adapter to disconnect the connection in response to determining that the electric grid is abnormal based on the grid information. The secondary energy source is in communication with the power controller and is configured to generate DC power and to supply the DC power to the power controller.

Dynamic Computation and Control of Distributed Assets at the Edge of a Power Grid
20210391747 · 2021-12-16 ·

A system enabling localized intelligent control with communication and coordination at local subsections of a power grid with information transfer to utility for supervisory control is disclosed. The disclosure extends the control and communication capability within, at the edge, and outside the edge of the power grid using intelligent and self-aware FACTS devices. Aspects of the disclosure enable control of a distribution network, energy storage systems and generation sources as an integrated system allowing optimization of power grid operation from generation to distribution. This control capability further enables a supervisory utility to implement and manage policy issues, such as standard compliance, carbon emission reduction, right-of-way management, and conformance to environmental regulations, such as EMI compliance, noise reduction, etc. This also allows the supervisory utility to optimize energy cost, network reliability, and asset utilization and life.

Systems and methods for managing energy storing resources of an electrical power grid

The present disclosure pertains to a system that may be configured to operate a power grid, including generation participants, consumers, and electric storage resources (ESRs), by: managing, via the generation participants, a state of charge (SOC) for the ESRs, an operational constraint, minimum and maximum offer parameters, minimum and maximum SOCs, and transition times between charging and discharging, the parameters including charge or discharge time and charge or discharge limits; treating different online modes as a must run commitment status, the modes including discharging, charging, and continuous; and committing an ESR offering an emergency discharge commitment status or an emergency charge commitment status to address a maximum generation emergency condition or a minimum generation emergency condition, respectively.

System for managing distribution network

An embodiment provides system for managing a distribution network, the system including: a plurality of energy routers configured to control the amount of router power flowing between the distribution network and internal resources; and a distribution network management apparatus configured to transmit a command value for the amount of router power, which is produced according to variability of the distribution network, to the energy router while adjusting a communication cycle of the command value depending on a control success rate of the energy router for the command value.

Shared power generation to improve electric grid system reliability

Systems and methods for optimizing energy distribution are disclosed. Exemplary embodiment may: receive a request for separating a grid sub-network from a greater grid network at a grid point of common coupling, and wherein the greater grid network comprises a first set of premises, a first set of energy resources, and a first set of premise points of common coupling; separate the grid sub-network, wherein the grid sub-network comprises a second set of premises, a second set of energy resources, and a second set of premise points of common coupling; distribute energy from the second set of energy resources to the second set of premises of the grid sub-network; receive a request to reintegrate the grid sub-network to the greater grid network; reintegrate the grid sub-network; and distribute energy from the first set of energy resources to the first set of premises of the greater grid network.