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Growing Science » Authors » Ali Akbar Shaikh

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Sort articles by: Volume | Date | Most Rates | Most Views | Reviews | Alphabet
1.

A deterministic inventory model for deteriorating items with selling price dependent demand and three-parameter Weibull distributed deterioration Pages 497-510 Right click to download the paper Download PDF

Authors: Asoke Kumar Bhunia, Ali Akbar Shaikh

DOI: 10.5267/j.ijiec.2014.2.002

Keywords: Deterioration, Inventory, Non-linear programming, Partially backlogged shortage, Variable demand, Weibull distribution

Abstract:
In this paper, an attempt is made to develop two inventory models for deteriorating items with variable demand dependent on the selling price and frequency of advertisement of items. In the first model, shortages are not allowed whereas in the second, these are allowed and partially backlogged with a variable rate dependent on the duration of waiting time up to the arrival of next lot. In both models, the deterioration rate follows three-parameter Weibull distribution and the transportation cost is considered explicitly for replenishing the order quantity. This cost is dependent on the lot-size as well as the distance from the source to the destination. The corresponding models have been formulated and solved. Two numerical examples have been considered to illustrate the results and the significant features of the results are discussed. Finally, based on these examples, the effects of different parameters on the initial stock level, shortage level (in case of second model only), cycle length along with the optimal profit have been studied by sensitivity analyses taking one parameter at a time keeping the other parameters as same.
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Journal: IJIEC | Year: 2014 | Volume: 5 | Issue: 3 | Views: 3150 | Reviews: 0

 
2.

A two warehouse deterministic inventory model for deteriorating items with a linear trend in time dependent demand over finite time horizon by Elitist Real-Coded Genetic Algorithm Pages 241-258 Right click to download the paper Download PDF

Authors: A.K. Bhunia, Ali Akbar Shaikh, A.K. Maiti, M. Maiti

DOI: 10.5267/j.ijiec.2013.01.004

Keywords: Deterioration, Finite time horizon, Genetic algorithm, Inventory management, Partial backlogging, Two-storage

Abstract:
This paper deals with a deterministic inventory model developed for deteriorating items having two separate storage facilities (owned and rented warehouses) due to limited capacity of the existing storage (owned warehouse) with linear time dependent demand (increasing) over a fixed finite time horizon. The model is formulated with infinite replenishment and the successive replenishment cycle lengths are in arithmetic progression. Partially backlogged shortages are allowed. The stocks of rented warehouse (RW) are transported to the owned warehouse (OW) in continuous release pattern. For this purpose, the model is formulated as a constrained non-linear mixed integer programming problem. For solving the problem, an advanced genetic algorithm (GA) has been developed. This advanced GA is based on ranking selection, elitism, whole arithmetic crossover and non-uniform mutation dependent on the age of the population. Our objective is to determine the optimal replenishment number, lot-size of two-warehouses (OW and RW) by maximizing the profit function. The model is illustrated with four numerical examples and sensitivity analyses of the optimal solution are performed with respect to different parameters.
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Journal: IJIEC | Year: 2013 | Volume: 4 | Issue: 2 | Views: 3255 | Reviews: 0

 
3.

A deterministic model for deteriorating items with displayed inventory level dependent demand rate incorporating marketing decisions with transportation cost Pages 547-562 Right click to download the paper Download PDF

Authors: A. K. Bhunia, Ali Akbar Shaikh

DOI: 10.5267/j.ijiec.2011.03.004

Keywords: Deterioration, Inventory, Inventory level dependent demand rate, Marketing decision

Abstract:
This paper deals with an inventory model, which considers the impact of marketing strategies such as pricing and advertising as well as the displayed inventory level on the demand rate of the system. In addition, the demand rate during the stock-out period differs from that during the stock-in period by a function varied on the waiting time up to the beginning of the next cycle. Shortage are allowed and partially backlogged. Here, the deterioration rate is assumed to follow the Weibull distribution. Considering all these factors with others, different scenarios of the system are investigated. To obtain the solutions of these cases and to illustrate the model, an example is considered. Finally, to study the effects of changes of different parameters of the system, sensitivity analyses have been carried out with respect to the different parameters of the system.
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Journal: IJIEC | Year: 2011 | Volume: 2 | Issue: 3 | Views: 2602 | Reviews: 0

 

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