Pengendalian Kualitas Produksi Air Minum dalam Kemasan (AMDK) Menggunakan Diagram Kendali MCUSUM dan MEWMA
DOI:
https://doi.org/10.29303/semeton.v2i2.324Keywords:
AMDK, MCUSUM, MEWMA, ARLAbstract
Quality control in the water production process at PT. X is an essential activity to ensure the quality of packaged drinking water (AMDK) is fit for consumption. Therefore, the water quality of PT. X production must always be closely monitored. To guarantee the safety of drinking water, it must meet microbiological, radioactive, Physical, and chemical requirements according to the regulations stipulated in the Indonesian Ministry of Health Regulation Number 2 of 2023. Quality control is performed using MEWMA and MCUSUM control charts since these control charts can detect shifts in the process mean. The results of applying MCUSUM and MEWMA control charts indicate that the water production quality is statistically out of control. After monitoring, it was found that PH is the most influential variable causing out-of-control situations. An ARL test was conducted to obtain a control chart with the best performance, where a smaller ARL value indicates better sensitivity in detecting shifts in the process mean. The MCUSUM control chart outperforms the MEWMA control chart, with an ARL value of and parameters and , compared to ARL MEWMA of with weighting parameter and .References
Menteri Kesehatan Republik Indonesia, “Peraturan Menteri Kesehatan Republik Indonesia Nomor 32 Tahun 2017 Tentang Standar Baku Mutu Kesehatan Lingkungan Dan Persyaratan Kesehatan Air Untuk Keperluan Higiene Sanitasi, Kolam Renang, Solus Per Aqua dan Pemandian Umum,” Peratur. Menteri Kesehat. Republik Indones., pp. 1–20, 2017.
R. Safitri, “Ketahui Standar Baku Air Bersih di Rumah Anda.” [Online]. Available: https://adikatirtadaya.co.id/ketahu-standar-baku-air-bersih-di-rumah-anda
L. Arsyina, B. Wispriyono, I. Ardiansyah, and L. D. Pratiwi, “Hubungan Sumber Air Minum dengan Kandungan Total Coliform dalam Air Minum Rumah Tangga,” J. Kesehat. Masy. Indones., vol. 14, no. 2, p. 18, 2019, https://doi.org/10.26714/jkmi.14.2.2019.18-23.
A. Masduqi, A and Slamet, Satuan Operasi untuk Pengolahan Air. Surabaya: Jurusan Teknik Lingkungan FTSP ITS, 2009.
R. Astari, R and Iqbal, “Kualitas air dan unit pengolhan di instalasi pengolahan air minum,” 2009.
D. . Montgomery, Introduction To Statistical Quality Control., vol. 10, no. 1. 1985. https://doi.org/10.2307/2988304.
V. A. Ramdani, E. D. Sulistyowati, and L. Harsyiah, “Analisis Lulusan Matematika Fmipa Universitas Mataram Menggunakan Diagram Kontrol Multivariate Exponentially Weighted Moving Average (Mewma,” Eig. Math. J., vol. 6, no. 1, pp. 28–38, 2023, https://doi.org/10.29303/emj.v6i1.148.
N. Nesari, M. Mustafid, and T. Widiharih, “Penerapan Diagram Kontrol Mewma Dalam Pengendalian Kualitas Produksi Keripik Singkong Pada Umkm Di Kota Semarang,” J. Gaussian, vol. 11, no. 3, pp. 355–365, 2023, https://doi.org/10.14710/j.gauss.11.3.355-365.
A. Arinda and M. Abdul Mukid, “PENERAPAN DIAGRAM KONTROL MULTIVARIATE EXPONENTIALLY WEIGHTED MOVING AVERAGE (MEWMA) PADA PENGENDALIAN KARAKTERISTIK KUALITAS AIR (Studi Kasus: Instalasi Pengolahan Air III PDAM Tirta Moedal Kota Semarang),” J. Gaussian, vol. 5, no. 1, pp. 31–40, 2016, https://ejournal-s1.undip.ac.id/index.php/gaussian
H. Maulidiyah, “Penerapan Grafik Pengendali Multivariate Cumulative Sum ( Mcusum ) Dan Kapabilitas Proses Pada Pengendalian Kualitas Air Pdam Penerapan Grafik Pengendali Multivariate Cumulative Sum ( Mcusum ) Dan Kapabilitas Proses,” 2022.
A. Resti, T. Widiharih, and R. Santoso, “GRAFIK PENGENDALI MIXED EXPONENTIALLY WEIGHTED MOVING AVERAGE – CUMULATIVE SUM (MEC) DALAM ANALISIS PENGAWASAN PROSES PRODUKSI (Studi Kasus : Wingko Babat Cap ‘Moel’),” J. Gaussian, vol. 10, no. 1, pp. 114–124, 2021, https://doi.org/10.14710/j.gauss.v10i1.30938.
Downloads
Published
How to Cite
Issue
Section
License

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
