Discrete-Event Simulation (DES) and Banker, Chames and Cooper Data Envelopment Analysis (BCC-DEA) Models in Improving the Allocation Officers in Outpatient Department

Phang Yook Ngor, Siti Nur Fadhilah Masrom, R. M. Rani
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Abstract

This study aims to propose an improvement model for the queuing system and determine the best and most appropriate allocation suggestion for officers at the outpatient department of a public clinic in Johor. In this study, Arena Simulation Software and Lingo Software were used. Discrete-Event Simulation (DES) and Banker, Chames, and Cooper Data Envelopment Analysis (BCC-DEA) models were used to determine the best improvement model across various alternatives. The Min-Max of officers was suggested as an improvement model. The mathematical formulation has been programmed and tested in the Lingo 19.0 software, and Decision-Making Units (DMU) would be suggested. After that, each DMUs were run in Arena Simulation Software. Then, the input and output of each DMUs were determined. The researcher used BCC Model Input-Oriented to reduce the input required to produce the optimal output. The mathematical formulation has been programmed again and tested in the Lingo 19.0 software. Based on the results, DMU is considered an efficient choice if the value θ_0 is one (θ_0= 1). DMU is considered an inefficient alternative if the value θ_0 is not one (θ_0 ≠ 1). The input-oriented BCC model needs to identify the most effective and efficient DMU because they have multiple DMUs that are rated as efficient. So, the Super Efficiency model was used to identify the most efficient and suitable DMU. The mathematical formulation has been programmed again and tested in the Lingo 19.0 software to identify the Super Efficiency model
离散事件模拟(DES)与Banker、Chames和Cooper数据包络分析(BCC-DEA)模型在改善门诊人员配置中的应用
本研究旨在提出一个改善排队系统的模型,并确定最佳和最适当的分配建议在柔佛州的公立诊所门诊部门的官员。本研究使用Arena Simulation Software和Lingo Software。使用离散事件模拟(DES)和Banker、Chames和Cooper数据包络分析(BCC-DEA)模型来确定各种备选方案中的最佳改进模型。建议将军官最小最大值作为改进模型。在Lingo 19.0软件中对数学公式进行了编程和测试,并提出了决策单元(DMU)。之后,在Arena Simulation Software中运行每个dmu。然后,确定每个dmu的输入和输出。研究者使用BCC模型以投入为导向来减少产生最优产出所需的投入。该数学公式已在Lingo 19.0软件中重新编程并进行了测试。根据结果,如果值θ_0为1 (θ_0= 1),则DMU被认为是一种有效的选择。如果值θ_0不是1 (θ_0≠1),则DMU被认为是一种低效的选择。面向输入的BCC模型需要识别最有效和最高效的DMU,因为它们有多个被评为高效的DMU。因此,采用Super Efficiency模型来确定最有效和最合适的DMU。对数学公式进行了重新编程,并在Lingo 19.0软件中进行了测试,以确定超级效率模型
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