Start Time:2023-10-30 16:00(Asia/Shanghai)
Duration:60min
Session:P The FIRST Interdisciplinary Conference 2023 »
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Optimization techniques are widely used to allocate limited resources in communication networks. The speaker will start by showing the well-known Transport Control Protocol (TCP) as a distributed solution to achieve the optimal bandwidth allocation. Unfortunately, factors such as multiple grades of service, variable transmission power, and tradeoffs between communication and computation often make the optimization problem for resource allocation non-convex. New distributed solutions are needed to solve these problems.
As an example, the speaker will consider in-network data processing in sensor networks where data are aggregated along the way as they are transferred toward the end user. Finding the optimal solution is NP-hard, but for specific settings, the problem can lead to a distributed framework for achieving the optimal tradeoff between communications and computation costs.
For the afore-mentioned problems, gradient-based iterative algorithms are commonly used as a solution technique. Much research focuses on improving the iteration convergence. However, when the system parameters change, it requires a new solution from the iterative methods. The speaker will present a new machine-learning method by using two Coupled Long Short-Term Memory (CLSTM) networks to quickly and robustly produce the optimal or near-optimal solutions to non-convex, constrained optimization problems over a range of system parameters. Numerical examples for allocation of network resources will be presented to confirm the validity of the proposed method.
IEEE Fellow; Professor of Electrical and Electronic Engineering, and Computing Departments, Imperial College London
Oct 30
2023
Oct 31
2023
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