Kode Mata Kuliah | EL3016 / 3 SKS |
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Penyelenggara | 132 - Electrical Engineering / STEI |
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Kategori | Lecture |
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| Bahasa Indonesia | English |
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Nama Mata Kuliah | Sistem Komunikasi | Communication System |
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Bahan Kajian | - Modulasi/Demodulasi Amplitudo
- Modulasi Analog: Modulasi/Demodulasi Frekuensi
- Modulasi Analog: Modulasi/Demodulasi Fasa
- Derau pada sistem komunikasi analog: penerima AM dan FM
- Fungsi autokorelasi, kerapatan daya spektral
- Penerima optimum untuk transmisi data biner: Prosedur ortogonalisasi Gram_Schmidt, representasi signal space, implementasi receiver, dan probabilitas bit error.
- Amplitude-shift keying (BASK), Binary phase-shift keying (BPSK), dan Binary frequency-shift keying (BFSK)
| - Amplitude modulation / demodulation (full AM, double sideband - suppressed carrier, single sideband, vestigial sideband)
- Analog modulation : frequency modulation / demodulation
- Analog modulation : phase modulation / demodulation
- Noise in analog communication system : noise in AM receiver (using coherent detection, and envelope detection), and noise in FM receiver
- Autocorrelation function, power spectral density, and white Gaussian noise.
- Optimum receiver for binary data transmission : Gram_Schmidt orthogonalization procedure, signal space representation, receiver implementation (using correlator, and matched filter), and probability of bit error.
- Digital bandpass transmission : binary amplitude-shift keying (BASK), binary phase-shift keying (BPSK), and binary frequency-shift keying (BFSK).
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Capaian Pembelajaran Mata Kuliah (CPMK) | - Mahasiswa dapat memahami konsep dasar dan menerapkan formulasi matematis dalam proses modulasi dan demodulasi pada sistem komunikasi analog.
- Mahasiswa dapat menerapkan teori probabilitas pada sistem komunikasi.
- Mahasiswa dapat melakukan analisis sistem komunikasi digital menggunakan konsep optimum receiver, Gram-Schmidt orthogonalization procedure, dan representasi signal space.
- Mahasiswa dapat merancang implementasi optimum receiver menggunakan correlator atau matched filter.
- Mahasiswa dapat melakukan analisis performansi sistem komunikasi analog (Signal to Noise Ratio), dan sistem komunikasi digital (probability of bit error).
- Menerapkan sistem komunikasi dan menguji kinerjanya
| - Students can understand basic concepts and apply mathematical formulations in the modulation and demodulation processes in analog communication systems.
- Students can apply probability theory to communication systems.
- Students can analyze digital communication systems using the optimum receiver concept, Gram-Schmidt orthogonalization procedure, and signal space representation.
- Students can design the optimal implementation of a receiver using a correlator or matched filter.
- Students can analyze the performance of analog communication systems (Signal to Noise Ratio) and digital communication systems (probability of bit error).
- Implement communication systems and test their performance
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Metode Pembelajaran | Ceramah, Diskusi, Studi Kasus, Praktikum, Belajar Mandiri | Lectures, Discussions, Case Study, Labwork, Independent Study |
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Modalitas Pembelajaran | Luring, Daring, Bauran | Offline, Online, Hybrid |
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Jenis Nilai | ABCDE |
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Metode Penilaian | PR, Kuis, Ujian | Homework, Quiz, Exam |
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Catatan Tambahan | | |
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