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INOVASI MESIN PEMBELAH BAMBU KARYA MAHASISWA SEBAGAI SOLUSI PENINGKATAN PRODUKTIVITAS UMKM ANYAMAN DI DESA SEKETI, SIDOARJO Aris Purwanto; Handini Novita Sari; Akhmad Hafizh Ainur Rasyid; Aris Ansori; Iskandar Iskandar
Community Development Journal : Jurnal Pengabdian Masyarakat Vol. 7 No. 4 (2026): Vol. 7 No. 4 (2026)
Publisher : Universitas Pahlawan Tuanku Tambusai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31004/cdj.v7i4.57435

Abstract

UMKM anyaman bambu di Desa Seketi, Sidoarjo, menghadapi kendala utama pada tahap pembelahan bambu yang masih dilakukan secara manual, sehingga berdampak pada rendahnya produktivitas dan kualitas hasil yang tidak seragam. Kondisi ini menjadi hambatan dalam meningkatkan kapasitas produksi serta memenuhi permintaan pasar yang terus meningkat. Oleh karena itu, kegiatan pengabdian kepada masyarakat ini bertujuan untuk meningkatkan produktivitas melalui penerapan mesin pembelah bambu sederhana yang sesuai dengan kebutuhan UMKM. Metode pelaksanaan meliputi identifikasi kebutuhan mitra, perancangan dan pembuatan mesin, pelatihan penggunaan, serta evaluasi kinerja sebelum dan sesudah implementasi. Hasil kegiatan menunjukkan bahwa penggunaan mesin mampu menurunkan waktu pembelahan dari ±10 menit menjadi ±3 menit per batang serta meningkatkan kapasitas produksi dari ±20 batang menjadi ±60 batang per hari. Selain itu, kualitas hasil pembelahan menjadi lebih seragam dan kebutuhan tenaga kerja lebih efisien. Temuan ini menunjukkan bahwa penerapan teknologi tepat guna berbasis mesin sederhana memiliki peran penting dalam meningkatkan produktivitas dan daya saing UMKM anyaman bambu secara berkelanjutan
Optimizing Performance of Electric Vehicle Charging Systems Using Solar PV Tree Models Aris Ansori; Priyo Heru Adiwibowo; Indra Herlamba Siregar; Grummy Wailanduw; Saiful Anwar; Edy Herianto Majlan
Research in Education, Technology, and Multiculture Vol 5, No 3 (2026): Research in Education, Technology, and Multiculture
Publisher : Institute of Multidisciplinary Research and Community Service

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61436/rietm/v5i3.pp280-292

Abstract

The transition to electric vehicles in the transportation sector has had a positive impact on reducing carbon emissions. However, the availability of electricity from renewable energy sources to charge electric vehicles (EVs) remains very limited in both rural and urban areas. The abundant potential of renewable energy sources, such as solar energy, presents challenges in their application as a power source for charging electric vehicles. This study aims to design and analyze the performance of electric vehicle charging using a solar PV tree model. The solar PV installation uses a 152.4 mm diameter iron pipe, with four solar PVs installed in a circle at 90° intervals and a tilt angle of 15°. Eight solar PV trees are installed in a row on the side of the road in the city of Surabaya, geographically located at latitude south 7°9′-7°21′ and longitude east 112°36′-112°54′. The solar PV tree performance measurement method uses IEC 61724-1. The measured electrical parameters consist of voltage, current, power, and solar PV energy efficiency. Electrical energy measurement is divided into two measurements: electrical energy directly used to charge electric vehicles using a kWh meter, and electrical energy stored in energy storage batteries. Solar PV performance testing uses two types of EV loads: an electric car with a charging capacity of 37.9 kWh and an electric bicycle with a charging capacity of 1.75 kWh. Solar PV testing with a tree model can increase sunlight capture with a leaf-like installation model, and it is easy to place in a park or along the roadside. A solar PV system with a capacity of 8 kWp can produce an average of 18.9718 kWh/day, with an efficiency of 2.63% when the sky is clear and sunlight lasts 8 hours. This solar power plant can charge electric bicycles with 1.22 kWh from a full capacity of 1.75 kWh, and electric cars with 14.31 kWh from a full capacity of 37.9 kWh, with an energy loss of approximately 11.5% during charging. Meanwhile, in terms of economic feasibility, with an electricity price of IDR 2,950/kWh, charging electric vehicles (EVs) is economically feasible with a Benefit Cost Ratio (BCR) of 1.23. The solar power plant's investment capital will be returned in eleven years and two months.Keywords: Solar PV trees, EV charging, Electric vehicles, Renewable energy.