This study aims to provide recommendations or policy suggestions in order to improve the quality of the academic information system (SIAKAD) for university operator or management. SIAKAD is a website-based application created to assist the process of managing data related to academics and has uses in managing campus or college management. Policy suggestions are compiled based on the analysis of higher education information system assessments with a comparison of the dimensions of WebQual and the PIECES Framework in measuring the quality of SIAKAD as a guide in improving or developing the quality for the better. The results of the analysis using the WebQual method with a value of 3.50 and the PIECES Framework with a value of 3.97 on the quality of the SIAKAD website produced the same results which were in the Good category with a score of 4 (3.43 - 4.23) based on the assessment criteria. The results of the recommendations in this study are expected to contribute to higher education management as a reference or decision support in improving the quality of the website-based academic information system (SIAKAD) for the better
Power conservation is a vibrant area of research on wireless sensor networks. Several research papers have shown that using mobile sync in the sensor field, which collects data from sensor nodes via single or multi-hop communication, can save significant energy. However, sinks move slowly, which increases sensor network delays, especially in delay-sensitive applications. To address this issue, various rendezvous-based techniques are described in which a subset of sensor nodes are selected from the field as rendezvous points (RPs). The remaining nodes transfer the captured data to the next RP, where the data is buffered. The RP is then used to build a path for the mobile sink to tour and collect the buffered data. This article describes various rendezvous-based techniques and analyzes their strengths and weaknesses in terms of energy savings.
Guerilla marketing atau pemasaran gerilya diperkenalkan oleh Jay Conrad Levinson. Prinsip pemasaran ini membidik target konsumen semaksimal mungkin dengan biaya seminimal mungkin, dengan melakukan promosi di media sosial yang menjangkau banyak viewer. Agar viewer lebih mudah tertarik, promosi harus dibuat sekreatif mungkin. Dalam perkembangannya, seiring dengan makin tingginya penggunaan internet, prinsip pemasaran ini telah menjalar ke ranah online dan disebut dengan istilah guerilla digital marketing. Tujuan dari konsep pemasaran gerilya ini adalah untuk menciptakan sebuah konsep yang interaktif, komunikatif, unik serta menarik orang untuk berpikir. Semua itu dilakukan untuk menghasilkan buzz, mendorong orang untuk lebih banyak terlibat dan orang-orang tersebut secara intens membicarakan tentang merek dan bisnis kita. Penelitian dengan metode literature review ini akan menjelaskan bagaimana peran media sosial dapat mendukung teknik guerilla marketing pada zaman serba digital ini. Misalnya fitur instastory di Instagram secara tidak langsung mendukung guerilla marketing karena ketika pemilik akun mengunggah foto/video tentang makanan/tempat wisata ke instastory kemudian unggahan tersebut dilihat oleh orang banyak, maka akan timbul rasa penasaran untuk membeli makanan tersebut atau untuk mengunjungi tempat wisata tersebut. Orang akan tergerak untuk membicarakan makanan/tempat wisata tersebut sehingga akhirnya pihak restoran/penjual makanan/tempat wisata tersebut ramai dikunjungi orang. Dalam hal ini, pemilik restoran/penjual makanan/pengelola tempat wisata tidak perlu mengeluarkan banyak biaya untuk kegiatan promosinya.
Power conservation is a vibrant area of research on wireless sensor networks. Several research papers have shown that using mobile sync in the sensor field, which collects data from sensor nodes via single or multi-hop communication, can save significant energy. However, sinks move slowly, which increases sensor network delays, especially in delay-sensitive applications. To address this issue, various rendezvous-based techniques are described in which a subset of sensor nodes are selected from the field as rendezvous points (RPs). The remaining nodes transfer the captured data to the next RP, where the data is buffered. The RP is then used to build a path for the mobile sink to tour and collect the buffered data. This article describes various rendezvous-based techniques and analyzes their strengths and weaknesses in terms of energy savings.
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