In electricity transmission networks, loads can provide flexible, fast responsive, and decentralized sources for frequency regulation and generation-demand balancing, complementary to generation control. We consider an optimal load control (OLC) problem in a transmission network, when a disturbance in generation occurs on an arbitrary subset of the buses. In OLC, the frequency-insensitive loads are reduced (or increased) in real-time in a way that balances the generation shortfall (or surplus), resynchronizes the bus frequencies, and minimizes the aggregate disutility of load control. We propose a frequency-based load control mechanism and show that the swing dynamics of the network, together with the proposed mechanism, act as a decentrali...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a method to design distributed generation and demand control schemes for primary frequenc...
In electricity transmission networks, loads can provide flexible, fast responsive, and decentralized...
Abstract—In electricity transmission networks, loads can pro-vide flexible, fast responsive, and dec...
Frequency regulation and generation-load balancing are key issues in power transmission networks. Co...
Abstract—We present a systematic method to design ubiqui-tous continuous fast-acting distributed loa...
We present a systematic method to design ubiquitous continuous fast-acting distributed load control ...
We present a systematic method to design ubiquitous continuous fast-acting distributed load control ...
Abstract: Frequency control is traditionally done on the generation side. Recently we have formulate...
The sudden generation-consumption imbalance is becoming more frequent in modern power systems, causi...
We propose a decentralized optimal load control scheme that provides contingency reserve in the pres...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a method to design distributed generation and demand control schemes for primary frequenc...
In electricity transmission networks, loads can provide flexible, fast responsive, and decentralized...
Abstract—In electricity transmission networks, loads can pro-vide flexible, fast responsive, and dec...
Frequency regulation and generation-load balancing are key issues in power transmission networks. Co...
Abstract—We present a systematic method to design ubiqui-tous continuous fast-acting distributed loa...
We present a systematic method to design ubiquitous continuous fast-acting distributed load control ...
We present a systematic method to design ubiquitous continuous fast-acting distributed load control ...
Abstract: Frequency control is traditionally done on the generation side. Recently we have formulate...
The sudden generation-consumption imbalance is becoming more frequent in modern power systems, causi...
We propose a decentralized optimal load control scheme that provides contingency reserve in the pres...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a method to design distributed generation and demand control schemes for primary frequenc...