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IMPLEMENTATION OF A CLOUD-BASED ACCOUNTING INFORMATION SYSTEM TO IMPROVE FINANCIAL TRANSPARENCY OF MSMES IN TANGERANG REGENCY Sapriyadi; Abu Naim; Purwani Husodo; Annisa Risqi Sulistya Kusuma Wardhani; Siti Fatimatul Zuhro; Rina Ambarwati; Ervina Yennie Permanningrum; Andika Mugi Gumilang; Fery Updi; Adam Zulfahmi
International Journal of Social Science, Educational, Economics, Agriculture Research and Technology (IJSET) Vol. 4 No. 11 (2025): OCTOBER
Publisher : RADJA PUBLIKA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54443/ijset.v4i11.1269

Abstract

The rapid advancement of information technology has significantly influenced the business landscape, including the Micro, Small, and Medium Enterprises (MSME) sector in Tangerang Regency. As key contributors to regional economic growth, MSMEs face the urgent need to adopt digital transformation, particularly in financial management. However, many MSMEs continue to rely on manual or spreadsheet-based systems, which hinder financial transparency, accuracy, and efficiency. This study aims to analyse the implementation of cloud-based accounting information systems (AIS) and their impact on improving MSMEs’ financial transparency in Tangerang Regency. The research employs a quantitative descriptive method, using questionnaires distributed to 100 MSME owners and financial staff who have implemented cloud-based accounting systems. Data were analysed through simple linear regression using SPSS 26 to determine the relationship between the implementation of cloud-based AIS (independent variable) and financial transparency (dependent variable). The results indicate that the implementation of cloud-based AIS has not significantly improved financial transparency among MSMEs in Tangerang Regency, with an R-squared value of 0.003 and a significance level of 0.624 (>0.05). This suggests that only 0.3% of financial transparency variation is explained by the use of cloud-based systems, while 99.7% is influenced by other factors such as digital literacy, infrastructure readiness, and managerial support. Despite the weak statistical correlation, the findings highlight the strategic potential of cloud-based accounting systems to enhance operational efficiency, data accessibility, and stakeholder trust. The study concludes that the success of digital transformation among MSMEs requires not only technological adoption but also government facilitation, training in digital literacy, and policy support to maximise transparency and accountability in financial management.
Analisis Komparatif Performa Latensi dan Stabilitas Koneksi Wemos D1 Mini Vs Esp32-C3 Minipada Sistem Kendali Jarak Jauh Berbasis IoT Supriyade; Annisa Risqi Sulistya Kusuma Wardhani; Fery Updi
Jurnal Publikasi Ilmu Komputer dan Multimedia Vol. 5 No. 2 (2026): Mei: Jurnal Publikasi Ilmu Komputer dan Multimedia
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Abstract: This research conduct a comparative analyisis of connectivity performance between the Esp8266 (Wemos D1 Mini) and the Esp32-C3 Miniwithin internet of things (IoT) remote control systems. The primary problem addressed is the critical need for low latency and high connection stability in real-time difital infrastructure management, where developers often face a trade-off between costt-eficiency and hardware performance. The objective of this study is to empirically evaluate which microcontroller provides supervisor responsiveness. An experimental methode was proposed by measuring two key parameters : Receive Signal Strength Indicator (RSSI) and data transmission latency accros various distances and physical obstacles. The mind findings reveal that the Esp32-C3 Mini, utilizing the RISC-V architecture, demontsrates more consistent signal stability and significantly lower overage latency compared to the Esp8266, particularly in indoor environments with structural interference. In conclusion, the Esp32-C3 Mini is more effective successor to the Esp8266 for moder IoT applications that require high realibility and rapid respons times. Keywords: IoT; Esp8266 Wemos D1 Mini; Esp32-C3; Latency; RSSI; Remote Control;