Title :
Linear-Quadratic Optimal Control of Periodic-Review Perishable Inventory Systems
Author :
Ignaciuk, P. ; Bartoszewicz, A.
Author_Institution :
Inst. of Inf. Technol., Tech. Univ. of Lodz, Lodz, Poland
Abstract :
In this brief, the problem of inventory control in systems with perishable goods is addressed from the control-theoretic perspective. In the analyzed setting, the deteriorating stock used to fulfill unknown, time-varying demand is replenished with delay from a remote supply source. In order to eliminate the threat of the bullwhip effect (amplified demand variations translated to the ordering signal), we propose to use the benefits of linear-quadratic optimal control. In contrast to the earlier approaches to inventory management of perishable goods, mainly based on heuristics and static optimization, we apply formal methodology of discrete-time dynamical optimization, and solve the optimal control problem analytically. This allows us to formulate and strictly prove a number of advantageous properties of the designed controller, e.g., we demonstrate that it ensures full demand satisfaction in the system with arbitrary delay and any bounded demand pattern with unknown statistics. The proposed controller outperforms the classical order-up-to policy in terms of higher service level, smaller holding costs, and smaller order-to-demand variance ratio.
Keywords :
control system synthesis; delays; linear quadratic control; optimisation; periodic control; production control; statistical analysis; stock control; supply chain management; amplified demand variations; arbitrary delay; bounded demand pattern; bullwhip effect threat elimination; control-theoretic perspective; controller design; discrete-time dynamical optimization; formal methodology; heuristics optimization; higher service level; inventory control problem; inventory management; linear-quadratic optimal control; order-up-to policy; ordering signal; periodic-review perishable inventory systems; remote supply source; smaller holding costs; smaller order-to-demand variance ratio; static optimization; stock deterioration; supply chain control; unknown statistics; Aerospace electronics; Closed-form solution; Optimal control; Optimization; Riccati equations; Supply chains; Symmetric matrices; Discrete-time systems; inventory control; optimal control; perishable inventory systems; time-delay systems;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2011.2161086