Program implementasi kebijakan Merdeka Belajar Kampus Merdeka (MBKM) dalam pelaksanaannya dimungkinkan akan selalu muncul permasalahan terhadap kebijakan pelaksanaannya. Dari semua kemungkinan permasalahan ini, maka tujuan yang diharapkan adalah ingin mengetahui dampak nyata implementasi kebijakan program MBKM terhadap proses belajar mengajar apabila terapkan dalam lingkungan Program Studi Teknik Elektro Universitas Komputer Indonesia. Hasil analisis dari dampak implementasi ini akan dijadikan rekomendasi penerapan model pembelajaran MBKM sesuai kebutuhan dan kemampuan program studi. Untuk memperoleh ketercapaian hasilnya, maka metode yang digunakan melalui pendekatan metode survei terhadap pelaku dan pengguna kebijakan yaitu mahasiswa, dosen, dan tenaga pendidikan di dalam lingkungan program studi. Hasil penelitian menunjukkan bahwa tingkat pemahaman responden mahasiswa terhadap program MBKM, sebagian besar responden mahasiswa berpendapat pada rentang nilai “Berdampak”, yaitu sebanyak 56% responden. Kesiapan mahasiswa mengikuti program MBKM, sebagian besar responden mahasiswa berada pada rentang skor “Cukup Siap” yaitu sebanyak 45% responden. Responden mahasiswa yang menyatakan kegiatan MBKM berimplikasi pada lama masa studi, didapati 52% responden berpendapat masih dapat lulus tepat waktu. Hanya sebagian kecil responden, yaitu sebanyak 17% responden yang khawatir dapat memperlama masa studi.
ABSTRACT The study of hydropower potential focuses on hydropower development in Sumatra (4,408 MW), Java (4,595 MW), and Sulawesi (3,240 MW) is in line with the actual development of the hydropower industry. These three islands cover 95% of the viable hydropower potential. Meanwhile, the potential of PLTMH is 770 MW and about 30% has been developed. Most of the Microhydro (<1 MW) and Mini hydro (1-10 MW) are targeting rural electrification with the greatest potential in Papua and Sumatra. Therefore, in the concept of optimizing water use and aligning Water Food Energy Nexus, apart from modernizing irrigation, it is also necessary to develop the use of PLTMH in irrigation networks to generate electricity through a Micro Hydro Power Plant (PLTMH). In practice, the use of irrigation networks for the development of PLTMH electrical energy does not interfere with the flow of irrigation water used to serve the needs of the farming community because the MHP technology used as a power plant only utilizes irrigation water flow with a certain volume, both in the waterfall and the aspect of its flow rate. To find out the completeness of the readiness for the utilization of irrigation networks for MHP, it is necessary to conduct an initial assessment of the preparation process has been carried out. One of the assessment methods that can be used for the construction of MHP are to use a standard sustainable hydropower assessment protocol known as the Hydropower Sustainable Assessment Protocol (HSAP). Key words: power plant, micro-hydro, irrigation network, assessment protocol, HSAP ABSTRAK Studi tentang potensi tenaga air menempatkan fokus pada pengembangan tenaga air di Sumatera (4.408 MW), Jawa (4.595 MW), dan Sulawesi (3.240 MW), yang sejalan dengan perkembangan aktual industri tenaga air. Ketiga pulau ini mencakup 95% dari potensi PLTA yang layak. Sementara potensi PLTMH adalah 770 MW dan sekitar 30% sudah dikembangkan. Sebagian besar Mikrohidro (<1 MW) dan Mini hidro (1-10 MW) menargetkan elektrifikasi pedesaan dengan potensi terbesar di Papua dan Sumatera. Oleh karena itu, dalam konsep optimalisasi pemanfaatan air dan penyelarasan Water Food Energy Nexus, selain modernisasi irigasi, juga perlu dikembangkan pemanfaatan PLTMH pada jaringan irigasi sehingga menghasilkan listrik melalui Pembangkit Listrik Tenaga Mikro Hidro (PLTMH). Pemanfaatan jaringan irigasi untuk pengembangan energi listrik PLTMH dalam prakteknya tidak mengganggu aliran air irigasi yang digunakan untuk melayani kebutuhan masyarakat petani sebab teknologi PLTMH yang digunakan sebagai pembangkit listrik, hanya memanfaatkan aliran air irigasi dengan jumlah volume tertentu, baik pada terjunan maupun pada aspek kecepatan alirannya. Untuk mengetahui kelengkapan kesiapan pemanfaatan jaringan irigasi untuk PLTMH, perlu dilakukan penilaian (assessment) awal terhadap proses persiapan yang telah dilakukan. Salah satu metode penilaian yang dapat digunakan untuk pembangunan PLTMH adalah dengan menggunakan standar protokol penilaian tenaga air berkelanjutan atau yang dikenal dengan Hydropower Sustainable Assessment Protocol (HSAP). Kata kunci: Pembangkit listrik, mikrohidro, jaringan irigasi, protocol penilaian, HSAP
In this paper, the system is made to be able to recognize hand patterns to be able to control electronic devices, as a substitute for the conventional remote. This system consists of a computer containing a program with a trained Convolutional Neural Network (CNN) model and an MCU node containing a remote infrared signal database whose function we want to replace. The camera functions as a reader of hand patterns which will be classified using trained CNN models. Each hand gesture represents the infrared pulse in the database program n Node MCU. There are 4 hand patterns that represent commands in this proposed system. To be able to handle much more commands, this proposed system is designed to change mode according to the combination of hand patterns detected by the system algorithm. The changing of mode results in the changing of the infrared pulse which is represented by each hand pattern in the database. Node MCU will transmit infrared pulse corresponds to hand gesture from CNN classification after receiving a command from the computer through TCP/IP communication.
The purpose of this study is to discuss the brain wave system that can move the prosthetic arm based on brain wave activity. The sensor used to detect EEG brainwave activity uses a mobile mind wave sensor. Movement and detection of brainwave signals is carried out in the Lab VIEW application program. Plan this robot to make movements based on brain wave activity, utilizing blinks and attention. This research method through a process carried out to control the prosthetic arm. Where there are 2 modes, the first mode for the selection of movements with a blink of an eye, and the second mode of attention to move the fake arm. Based on research results Prosthetic arms can make movements that are designed for extension, flexion, supination or pronation and increase or depression. The prosthetic arm can make movements based on the subject’s commands by utilizing brain wave activity. With a speed response time of 9.54 seconds to do all the moves. In addition to the advantages of this artificial arm, it can accommodate objects with a diameter of 2.2 cm to 6 cm. With an average percentage success of 6 experiments conducted by 86.67%.
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