The Performance Testing Analysis Of Electric Wheelchair Batteries Under Various Operational Conditions

  • Rani Pratiwi Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
  • Solly Aryza Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
  • Amani Darma Tarigan Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
Keywords: electric wheelchair, battery performance, load cell calibration

Abstract

An electric wheelchairs are vital mobility aids for individuals with mobility impairments or special needs. These wheelchairs rely on electric motors powered by batteries to provide the necessary propulsion. The accuracy and reliability of battery power measurement in electric wheelchairs are crucial for maintaining balance, stability, and ensuring a safe and comfortable user experience. One critical component in electric wheelchairs is the load cell, which measures the applied load such as user weight or additional loads. Over time, load cells may experience changes in their characteristics, such as sensitivity alterations or drift, potentially affecting load measurement accuracy. Therefore, calibration of load cell loads in electric wheelchairs becomes essential. Calibration ensures that load measurements remain accurate and consistent over time by comparing the output produced by the load cell with accurately known loads, and then adjusting the scale or resetting load cell parameters to achieve accurate measurements. This research aims to analyze the impact of load cell calibration on the performance of electric wheelchair batteries. The research questions include evaluating the effects of calibration on load measurement accuracy, identifying factors influencing load cell performance, and developing effective calibration methods. The study focuses on assessing how load cell calibration influences the performance of electric wheelchairs, with particular attention to measurement accuracy and stability aspects. The objective of this research is to enhance load measurement accuracy in electric wheelchairs through proper load cell calibration. The benefits include improving safety and comfort for wheelchair users by providing accurate load measurements, ensuring wheelchair balance and stability, and reducing the risk of injury or failure. Additionally, the findings contribute to the development of better electric wheelchair technology and enhance the quality of life for users.

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References

Adiyasa, I. W. (2022). Improvisasi Torsi Dan Efisiensi Pada Redesain Motor Brushless DC Hoverboard Berdaya Dasar 350W. Jurnal Pendidika Vokasi Otomotif, 5(1), 27-42.
Aryza, S., Efendi, S., & Sihombing, P. (2024). A ROBUST OPTIMIZATION TO DYNAMIC SUPPLIER DECISIONS AND SUPPLY ALLOCATION PROBLEMS IN THE MULTI-RETAIL INDUSTRY. Eastern-European Journal of Enterprise Technologies, (3).
Ac, M. N. (2022). Rancang Bangun Controller BLDC Berbasis Mikrokontroler STM32 Blue Pill Pada Kendaraan Listrik Urban Agnijaya Weimana. Jurnal Spektrum, 9(3).
Annirohman, S. (2023). Rancangan Kursi Roda Elektrik Dengan Remot Dan Tuas. Jurnal Teknik, 12(1).
Chigondo, M., & Chigondo, F. (2016). Recent Natural Corrosion Inhibitors for Mild Steel: An Overview. J. Chem, 1–7. https://doi.org/10.1155/2016/6208937
Elmer, T. J. (2021). Kontrol Himpunan Panel Surya dengan Penyesuaian Diri Otomatis Menggunakan Aktuator dengan Dua Derajat Kebebasan. Jurnal Teknik ITS, 10(2), B177- B182.
Ferdiansyah, D., & Susanto, A. (2020). Rancang Bangun Prototype Kursi Roda Menggunakan Arduino R3 Berbasis Android. GATOTKACA Journal (Teknik Sipil, Informatika, Mesin Dan Arsitektur), 1(2).
Ikhsan, M. W. (2022). Pengaruh Pembebanan Dan Pengaturan Kecepatan Motor BLDC 1 kW Pada Sepeda Motor Listrik. Jurnal Edukasi Elektro, 6(2), 149-156.
Mawardi, M., & Lianda, J. (2018, November). Rancang Bangun Kursi Roda Elektrik Menggunakan Joystick. In Seminar Nasional Industri dan Teknologi (pp. 67-74).
Nursab, T. H. (2020). Rancang Bangun Kursi Roda Dengan Head Motion Control Menggunakan Sensor Gyroscope Untuk Penyandang Disabilitas.
Ramadeanto, L. H. (2018). Performansi EDFA Di Setiap Bit Rate Yang Dikirimkan Dari Transmitter Ke Receiver Pada Jarak 50 Km Pada Sistem. eProceedings of Engineering, 5(3).
Risdiyono, E. (2020). Perancangan dan Pengembangan Desain Kursi Roda Elektrik dengan Fitur Berdiri untuk Penyandang Disabilitas.
Z. Lubis. Aryza. S. & Alam, H. (2023). Analisis Hybrid PLTA dan PLTS Sebagai Energi Listrik Alternatif Pengganti Energi PLN. JET (Journal of Electrical Technology), 8(3), 119-127.
Published
2024-10-01
How to Cite
Rani Pratiwi, Solly Aryza, & Amani Darma Tarigan. (2024). The Performance Testing Analysis Of Electric Wheelchair Batteries Under Various Operational Conditions. Jurnal Scientia, 13(04), 1432-1442. Retrieved from http://seaninstitute.org/infor/index.php/pendidikan/article/view/2627

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