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A Symbolic SAT-based Algorithm for Almost-sure Reachability with Small Strategies in POMDPs

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arxiv 1511.08456 v1 pith:XDTWAKTQ submitted 2015-11-26 cs.AI

classification cs.AI
keywords problemstrategiessymbolicalgorithmalmost-surefirstpomdpsreachability
verification ladder T0 review T1 audit T2 compute T3 formal
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POMDPs are standard models for probabilistic planning problems, where an agent interacts with an uncertain environment. We study the problem of almost-sure reachability, where given a set of target states, the question is to decide whether there is a policy to ensure that the target set is reached with probability 1 (almost-surely). While in general the problem is EXPTIME-complete, in many practical cases policies with a small amount of memory suffice. Moreover, the existing solution to the problem is explicit, which first requires to construct explicitly an exponential reduction to a belief-support MDP. In this work, we first study the existence of observation-stationary strategies, which is NP-complete, and then small-memory strategies. We present a symbolic algorithm by an efficient encoding to SAT and using a SAT solver for the problem. We report experimental results demonstrating the scalability of our symbolic (SAT-based) approach.

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