Optimization of electricity surplus is a crucial element for transmission power networks since it leads to reducing costs as well as increasing efficiency across the network as a whole. In this paper, we show how to optimize such network costs using a quantum annealing approach. First, we define the Quadratic Unconstrained Binary Optimization (QUBO) problem for network partitioning. To achieve this, we introduce a method to translate inequality constraints with real-valued coefficients into approximate penalty functions. Next, we test the implementation on purely quantum and quantum-classical hybrid architectures. We then solve the problem using the D-Wave hybrid Constrained Quadratic Model (CQM) solver, the D-Wave hybrid Binary Quadratic M...
142 pagesQuantum computing (QC) is the next frontier in computation and has attracted a lot of atten...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...
Optimization of electricity surplus is a crucial element for transmission power networks since it le...
Optimization of electricity surplus is a crucial element for transmission power networks since it le...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
The digital transformation that Telecommunications and ICT domains are crossing today, is posing sev...
Mixed Integer Linear Programming (MILP) can be considered the backbone of the modern power system op...
Abstract Transport network design problem (TNDP) is a well-studied problem for planning and operatio...
We propose a new kernel that quantifies success for the task of computing a core-periphery partition...
Abstract—This paper presents an evolutionary algorithm based on quantum computation for bid-based op...
Quantum computing has the potential to revolutionize the way hard computational problems are solved ...
142 pagesQuantum computing (QC) is the next frontier in computation and has attracted a lot of atten...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...
Optimization of electricity surplus is a crucial element for transmission power networks since it le...
Optimization of electricity surplus is a crucial element for transmission power networks since it le...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
Matching electricity demand and supply by decentralised generators will be very important in the nea...
The digital transformation that Telecommunications and ICT domains are crossing today, is posing sev...
Mixed Integer Linear Programming (MILP) can be considered the backbone of the modern power system op...
Abstract Transport network design problem (TNDP) is a well-studied problem for planning and operatio...
We propose a new kernel that quantifies success for the task of computing a core-periphery partition...
Abstract—This paper presents an evolutionary algorithm based on quantum computation for bid-based op...
Quantum computing has the potential to revolutionize the way hard computational problems are solved ...
142 pagesQuantum computing (QC) is the next frontier in computation and has attracted a lot of atten...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...
Leveraging the current generation of quantum devices to solve optimization problems of practical int...