Title :
Resource Allocation of Security-Critical Tasks with Statistically Guaranteed Energy Constraint
Author :
Jiang, Wei ; Jiang, Ke ; Ma, Yue
Abstract :
In this paper, we are interested in resource allocation for energy constrained and security-critical embedded systems. Tasks in such systems need to be successfully executed under certain energy budget and be robust against serious security threatens. Different to former energy minimal scheduling problem, we introduce a new optimization problem for a set of tasks with energy constraint and multiple security choices. We present a dynamic programming based approximation algorithm to minimize the security risk of the system while statistically guaranteeing energy consumption constraints for given energy slack ratio. The proposed algorithm is very efficient in both time and space dimensions, and achieves good solutions. Extensive simulations demonstrate the superiority of our algorithm over other approaches.
Keywords :
approximation theory; dynamic programming; power aware computing; resource allocation; security of data; dynamic programming based approximation algorithm; energy budget; energy consumption constraints; energy minimal scheduling problem; energy slack ratio; optimization problem; resource allocation; security threatens; security-critical embedded systems; security-critical tasks; statistically guaranteed energy constraint; Algorithm design and analysis; Approximation methods; Embedded systems; Energy consumption; Resource management; Security; Silicon;
Conference_Titel :
Embedded and Real-Time Computing Systems and Applications (RTCSA), 2012 IEEE 18th International Conference on
Conference_Location :
Seoul
Print_ISBN :
978-1-4673-3017-6
Electronic_ISBN :
1533-2306
DOI :
10.1109/RTCSA.2012.34