Multi-dimensional State Space Collapse in Non-complete Resource Pooling Scenarios

Author:

Cardinaels Ellen1ORCID,Borst Sem1ORCID,van Leeuwaarden Johan S.H.2ORCID

Affiliation:

1. Eindhoven University of Technology, Eindhoven, Netherlands

2. Tilburg University, Tilburg, Netherlands

Abstract

We establish an explicit multi-dimensional state space collapse (SSC) for parallel-processing systems with arbitrary compatibility constraints between servers and job types. This breaks major new ground beyond the SSC results and queue length asymptotics in the literature which are largely restricted to complete resource pooling (CRP) scenarios where the steady-state queue length vector concentrates around a line in heavy traffic. The multi-dimensional SSC that we establish reveals heavy-traffic behavior which is also far more tractable than the pre-limit queue length distribution, yet exhibits a fundamentally more intricate structure than in the one-dimensional case.

Funder

VICI

Netherlands Organization for Scientific Research

Publisher

Association for Computing Machinery (ACM)

Reference7 articles.

1. On the Optimal Design of a Bipartite Matching Queueing System

2. On a unifying product form framework for redundancy models

3. Heavy-Traffic Universality of Redundancy Systems with Assignment Constraints

4. Multi-dimensional State Space Collapse in Non-complete Resource Pooling Scenarios

5. K. Gardner, S. Zbarsky, S. Doroudi, M. Harchol-Balter, E. Hyytiä, and A. Scheller- Wolf. Queueing with redundant requests: Exact analysis. Queueing Syst., 83(3--4):227--259, 2016.

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