Synthesis of Reliable and Cost-Effective Cyber-Physical System Architectures

semanticscholar(2015)

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摘要
Cyber physical system (CPS) are interconnection of computation, networking and physical elements. Modern CPS are distributed, networked and safety-critical systems and architectural design of such systems with fault tolerance and performance constraints is a challenging task. In this thesis, we address the problem of synthesizing safety-critical cyber-physical system architectures to minimize a cost function while guaranteeing the desired reliability. We cast it as an optimization problem with the component cost as the objective and the performance and reliability requirements as the constraints. The challenge is to generate symbolic reliability constraints, which is exponential in the size of the system due to exhaustive enumeration of failure cases on all possible system configuration. We propose two algorithms to overcome this problem that we refer to as Integer-Linear Programming Modulo Reliability (ILP-MR) and Integer-Linear Programming with Approximate Reliability (ILP-AR). ILP-MR solves an easier optimization problem with performance constraints and iteratively introduces redundancy in the system with a background reliability analysis routine. Conversely, ILP-AR solves the problem in one iteration by symbolically representing the reliability constraints computed using an in house developed approximate algebra. We compare the two approaches and demonstrate their effectiveness on the design of aircraft electrical power system architectures.
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