scholarly journals Workshop Internet-Of-Things untuk Guru dan Siswa Sekolah Menengah di Purwakarta, Jawa Barat, Guna Menunjang Kompetensi Era Industri 4.0

2020 ◽  
Vol 4 (2) ◽  
pp. 39
Author(s):  
Syifaul Fuada ◽  
Ichwan Nul Ichsan ◽  
Hafiyyan Putra Pratama ◽  
Dewi Indriati Hadi Putri ◽  
Galura Muhammad Suranegara ◽  
...  

ABSTRACTInternet of Things (IoT)  is one of the technological paradigms developed in the industrial revolution 4.0. The concept of IoT is an object can transfer data over a network without interaction from human-to-human or from human-to-computer. One of the IoT implementations in the education sector is the attendance system using IoT-based Radio Frequency Identification (RFID).  The attendance machines such as fingerprints and face recognition have a relatively high-cost compared to RFID machines. Hence, if the number of attendance machines within the School is limited, it will be less efficient for a large number of students and vulnerable to queuing. The RFID implementation in the Education sector was socialized through a Workshop with students and teachers of the secondary schools in Purwakarta, West Java, as the participants. To provide additional insight and expertise about the RFID-IoT concept to the workshop participants, this community service activity needs to be done. Several benefits will be obtained through this workshop, including saving paper use and efficiency, because the RFID-based IoT can reduce the teachers’ workload in processing the student attendance lists. Teachers are also invited to this workshop so they can guide their students and pass on the additional skills. Moreover, the invited teacher will teach new knowledge related to workshop material to other students in the School.Keywords: Internet-of-things, RFID, Mesin Kehadiran, Workshop, Purwakarta ABSTRAKInternet of Things (IoT) merupakan salah satu paradigma teknologi yang dikembangkan dalam revolusi industri 4.0. Konsep IoT adalah suatau objek dapat mentransfer data lewat jaringan tanpa adanya interaksi dari manusia ke manusia ataupun dari manusia ke perangkat komputer. Salah satu implementasinya pada bidang pendidikan yaitu sistem kehadiran menggunakan  Radio Frequency Identification (RFID) berbasis teknologi IoT. Mesin kehadiran seperti fingerprint dan face recognition memiliki harga yang relatif mahal dibandingkan mesin RFID. Sementara, jika jumlah mesin kehadiran yang ada di sekolah terbatas, hal ini sedikit kurang efisien untuk jumlah siswa yang sangat banyak dan rentan menimbulkan antrian. Implementasi RFID di bidang Pendidikan ini disosialisasikan melalui sebuah Workshop dengan siswa dan Guru dari sekolah menengah di Purwakarta, Jawa Barat sebagai peserta. Untuk dapat memberikan tambahan wawasan dan keterampilan mengenai mesin kehadiran RFID dengan konsep IoT kepada peserta Workshop, maka pengabdian masyarakat ini perlu dilakukan. Beberapa manfaat akan didapat memalui workshop ini, termasuk menghemat penggunaan kertas dan efisiensi karena RFID berbasis IoT mengurangi beban kerja guru dalam mengolah data kehadiran siswa. Guru turut diundang dalam workshop ini agar mereka dapat membimbing siswanya dan menularkan tambahan keterampilan dan wawasan yang didapat dari kegiatan PKM ini kepada siswa lainnya di sekolah..Kata Kunci: Internet-of-things, RFID, Workshop, Purwakarta

2018 ◽  
Vol 14 (8) ◽  
pp. 155014771879512 ◽  
Author(s):  
Madiha Khalid ◽  
Umar Mujahid ◽  
Muhammad Najam-ul-Islam

Internet of Things is one of the most important components of modern technological systems. It allows the real time synchronization and connectivity of devices with each other and with the rest of the world. The radio frequency identification system is used as node identification mechanism in the Internet of Thing networks. Since Internet of Things involve wireless channel for communication that is open for all types of malicious adversaries, therefore many security protocols have been proposed to ensure encryption over wireless channel. To reduce the overall cost of radio frequency identification enabled Internet of Thing network security, the researchers use simple bitwise logical operations such as XOR, AND, OR, and Rot and have proposed many ultralightweight mutual authentication protocols. However, almost all the previously proposed protocols were later found to be vulnerable against several attack models. Recently, a new ultralightweight mutual authentication protocol has been proposed which involves only XOR and Rotation functions in its design and claimed to be robust against all possible attack models. In this article, we have performed cryptanalysis of this recently proposed ultralightweight mutual authentication protocol and found many pitfalls and vulnerabilities in the protocol design. We have exploited weak structure of the protocol messages and proposed three attacks against the said protocol: one desynchronization and two full disclosure attacks.


Sensors ◽  
2020 ◽  
Vol 20 (4) ◽  
pp. 987
Author(s):  
Luciano Tarricone ◽  
Jasmin Grosinger

Radio frequency identification (RFID) is one of the crucial enabling technologies for the Internet of Things (IoT). This is leading to a continuous augmentation of RFID technologies, in terms of sensing capabilities, energetic autonomy, usability, and cost affordability, and this special issue proposes an overview on such a challenging scenario. The proposed results, in terms of cost reduction, miniaturization, and compatibility with complex systems and technologies, as well as the identification of the relevant criticalities, also pave the way to future steps being taken that go beyond the current IoT.


2013 ◽  
Vol 756-759 ◽  
pp. 4529-4532 ◽  
Author(s):  
Hao Zeng ◽  
Yan Hui Fu ◽  
Xu Chen

Traditional Radio Frequency Identification (RFID) Tag Equipment has some problems like these: it is difficult to realize if the tag is kept out, destroyed, or taken away abnormally. It cant accurately judge where the area the tag had moved to is. Besides, it is difficult to distinguish the right of the tag in the Tag Management. To solve these issues, this paper serves with a method which is based on the Internet of Things (IOT). It mainly includes as the following: the tag is activated in the Controlled Area, the judgment of the tag access the Controlled Area, whether the tag exists in the Controlled Area or not. These methods can reform the problems that the Traditional RFID Tag Equipment has.


2019 ◽  
Vol 4 (5) ◽  
pp. 45-49
Author(s):  
Farouq Eneuma Shaibu ◽  
Tashiwa Emmanuel Ibrahim ◽  
Felix Ale

This project is based on designing of student identification system using RFID i.e. Radio Frequency Identification which is to fulfill broad range of purposes, least being an electronic student identification system focuses on academic and monitoring purposes, more also to address the problem when using the paper as student attendance such as cheating. The work provided the alternative way of interfacing a tag and a reader to get code of student’s card (tag) to compare with the database in Access, which is developed using Visual Basic 6.0 to make the database easier to access. When a student swipes his card on the reader, his information like student’s name, registration number, level, sex, and date of birth will show on interface if the code matched with database.


2021 ◽  
Vol 3 (1) ◽  
pp. 83-91
Author(s):  
Moch Iqbal Tawakal ◽  
Yudi Ramdhani

Tingkat kriminalitas dan keahlian para pencuri khususnya pencurian sebuah rumah elite yang semakin tinggi, membuat penulis memperoleh ide atau gagasan inovasi alat pengaman pintu rumah menggunakan Radio Frequency Identification (RFID) berbasis Internet of Things dengan menggunakan mikrokontroler NodeMcu Lolin V3 yang tentunya dengan sistem pengamanan yang tinggi dan juga dapat terkoneksi pada internet sehingga bisa juga di akses melalui smartphone android. Rancangan keamanan ini tidak mengandalkan mekanik sebagai interfacenya melainkan menggunakan perangkat elektronik yang cukup sulit untuk dibobol karena selain diperlukan pengetahuan mengenai elektronik, para pelaku kriminalitas juga harus memilki pengetahuan dibidang pemrograman dan teknologi informasi. Berbeda dengan kunci mekanik, kunci elektronik pada rancangan keamanan ini menggunakan Radio Frequency Identification (RFID) sebagai pembukanya dan juga dengan memanfaatkan teknologi Internet of Things (IoT) dengan menggunakan wireless yang terhubung pada aplikasi Smartphone Android. Berdasarkan hasil pengujian dapat disimpulkan bahwa simulasi alat pengaman pintu dapat beroperasi dengan baik, sesuai rancangan yang dibuat. RFID reader yang digunakan memiliki keamanan yang lebih terjamin,karena yang mana untuk mendaftarkan e-KTP dengan menggunakan aplikasi Blynk pada Smartphone Android , jadi tidak semua orang bisa mendaftarkan e-KTP, dan juga terdapat buzzer dan lampu LED, buzzer akan mengeluarkan suara dan lampu LED menyala hijau apabila kunci pintu dibuka sesuai dengan frekuensi 13,56MHz yang diletakkan dalam miniatur berbentuk rumah dengan tebal 2mm dapat membaca UID e-KTP dengan jarak maksimal 2.5 cm. Buzzer akan mengeluarkan suara dan lampu LED menyala merah apabila UID e-KTP tidak terdaftar pada alat tersebut. Solenoid Door Lock dapat membuka pengunci pintu apabila UID e-KTP sesuai dengan NodeMcu Lolin V3, solenoid akan mengunci kembali dalam waktu 5 detik.


2018 ◽  
Vol 14 (10) ◽  
pp. 210
Author(s):  
Cheng Huang ◽  
Yongbo Lv

<span style="font-family: 'Times New Roman',serif; font-size: 10pt; mso-fareast-font-family: 'Times New Roman'; mso-fareast-language: DE; mso-ansi-language: EN-US; mso-bidi-language: AR-SA;">This paper aims to build a mobile communication system suitable for different application scenarios of the Internet of Things (IoT). For this purpose, an IoT system was developed based on device-to-device (D2D) communication technology and radio-frequency identification (RFID). The D2D-RFID-based IoT system combines the merits of mobile communication (e.g. 4G) and the RFID. The analysis shows that the proposed system boasts good mobility, stable transmission, short time delay, fixed IP, and no need of a central server. The research findings have a great application potential in different IoT scenarios.</span>


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