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                  <text>VOL 6 NO 5 (2022)</text>
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                <text>Vehicle Detection Monitoring System using Internet of Things</text>
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                <text>Congestion, IHCM, Internet of Things, Vehicle detection, Web monitoring</text>
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                <text>The overcapacity of vehicle numbers is one of the significant causes of the traffic congestion problem on Indonesia roadway. &#13;
The government applies a One-way system (SSA) as one proposed solution to unravel the congestion. However, several &#13;
congestion points are still found during the SSA implementation. Thus, this research offers an alternative method to detect &#13;
congestion using IoT technology. The system automatically enumerates the number, classifies the type, and computes the speed &#13;
averages of vehicles to identify the severity of congestion based on the Indonesian Highway Capacity Manual (IHCM) &#13;
published by the Ministry of Public Works 2014. We utilize ultrasonic sensors to detect the vehicles and send the data to the &#13;
server in real-time. The research successfully develops an IoT system for traffic congestion detection. Communication between &#13;
nodes and API can be done well. Data exchange involving encryption and decryption with AES-256 is successfully done. &#13;
Website application developed in this research is successfully show the severity level of the congestion and their vehicle &#13;
numbers. The average accuracy of the system is 78,97%. The system detected more vehicles than actual numbers due to the &#13;
misreading value of the sensors.</text>
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                <text>Yani Nurhadryani1&#13;
, Wulandari2*&#13;
, Muhammad Naufal Farras Mastika3</text>
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                <text>IPB University</text>
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                <text>31-10-2022</text>
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                <text>Fajar bagus W</text>
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                <text>Indonesia</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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            <description>A name given to the resource</description>
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                <text>Diagnosis of Asthma Disease and The Levels using &#13;
Forward Chaining and Certainty Factor</text>
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          <element elementId="49">
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                <text>: Asthma Disease, Certainty Factor, Expert System, Forward Chaining</text>
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            <description>An account of the resource</description>
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                <text>Diagnosis of Asthma Disease and The Levels using &#13;
Forward Chaining and Certainty Factor</text>
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                <text>Mohamad Irfan1&#13;
, Pebri Alkautsar2&#13;
, Aldy Rialdy Atmadja3&#13;
, Wildan Budiawan Zulfikar4</text>
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                <text>UIN Sunan Gunung Djati Bandung, Indonesia</text>
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                <text>Fajar bagus W</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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      <description>A resource consisting primarily of words for reading. Examples include books, letters, dissertations, poems, newspapers, articles, archives of mailing lists. Note that facsimiles or images of texts are still of the genre Text.</description>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
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                <text>Texture Feature Extraction in Grape Image Classification Using &#13;
K-Nearest Neighbor</text>
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          <element elementId="49">
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            <description>The topic of the resource</description>
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                <text>KNN, GLCM, grape, classification</text>
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          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
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                <text>Indonesian Grapes are a vine. This fruit is often found in markets, shops, roadside. Along with the development of computer &#13;
technology today, computers can solve problems by classifying objects and objects. How to apply GLCM and K-NN methods &#13;
for classification of grapes. The purpose of this study is to apply the GLCM and K-NN methods in the classification of grapes. &#13;
The dataset used from kaggle.com sources, the data tested are 3 types of grapes, the number of images is 2624. The fruit that &#13;
will be used for data collection and classification process is limited to three types of grapes, namely grape blue, grape pink &#13;
and grape white. How to apply GLCM and K-NN methods for classification of grapes. The feature extraction of GLCM used &#13;
in this study is the feature contrast, energy, correlation, and homogeneity. From testing the test data, the highest accuracy&#13;
value is 99.5441% with k = 2 at level 8, while the lowest accuracy value is 24.924% at each k level 2. The GLCM level value &#13;
is very influential on the accuracy results, namely the higher the GLCM level value, the higher the GLCM value. accuracy is &#13;
getting better</text>
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            <description>An entity primarily responsible for making the resource</description>
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                <text>Pulung Nurtantio Andono1&#13;
, Siti Hadiati Nugraini2</text>
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            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
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                <text>Universitas Dian Nuswantoro Semarang</text>
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            <name>Date</name>
            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
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            <description>An entity responsible for making contributions to the resource</description>
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                <text>Fajar bagus W</text>
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            <name>Language</name>
            <description>A language of the resource</description>
            <elementTextContainer>
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                <text>Indonesia</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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                <text>Time Series Forecasting of Significant Wave Height using GRU, &#13;
CNN-GRU, and LSTM</text>
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                <text>wave height, pelabuhan ratu, cnn-gru, long short-term memory, gated recurrent unit</text>
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            <description>An account of the resource</description>
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                <text>Predicting wave height is essential to reduce significant risks for shipping or activities carried out at sea. Waves inherit a &#13;
stochastic nature, mainly generated by wind and propagated through the ocean, making them challenging to forecast. In this &#13;
paper, we design time series wave forecasting using a deep learning model, which is a hybrid Convolutional Neural Network &#13;
(CNN)-Gated Recurrent Unit (GRU) or CNN-GRU. We use two time series of wave data sets, i.e., reanalysis data from ERA5 &#13;
by ECMWF and GFS from NOAA. As a study area, we choose Pelabuhan Ratu, located in the south of West Java which is &#13;
connected to the open Indian Ocean. Moreover, we also compare the results by using other deep learning models, i.e., the Long &#13;
Short-Term Memory (LSTM) and GRU. We evaluated these models to forecast 7, 14, and 30 days. Models' performance is &#13;
assessed using RMSE, MAPE, and Correlation Coefficient (CC). For predicting 30 days, using the ERA5 data, the CNN-GRU &#13;
model produces relatively accurate results with an RMSE value of 1.8844 and CC of 0.9938, whereas for the GFS data, results &#13;
in RMSE value of 1.8852 and CC of 0.9915.</text>
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                <text>Cornelius Stephanus Alfredo1&#13;
, Didit Adytia2</text>
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            <description>An entity responsible for making the resource available</description>
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                <text>Telkom University</text>
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                <text>Fajar bagus W</text>
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            <name>Language</name>
            <description>A language of the resource</description>
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                <text>Indonesia</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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                <text>Disease Detection in Banana Leaf Plants using DenseNet and Inception &#13;
Method</text>
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                <text>Deep learning, Disease Detection, DenseNet, Inception</text>
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                <text>Diseases that attack banana plants can affect the growth and productivity of the fruit produced. The disease can be identified &#13;
by looking at changes in the pattern and color of the leaves. Infected leaves will experience an increased transpiration process &#13;
and the photosynthesis process is almost non-existent. Furthermore, disease on banana leaves can cause yield losses of up to &#13;
50%. Therefore, early detection is needed so that diseases on banana leaves can be overcome as soon as possible by using &#13;
deep learning. This study aims to compare the performance of DenseNet and Inception methods in detecting disease on banana &#13;
leaves. DenseNet is a transfer learning architecture model with fewer parameters and computations to achieve good &#13;
performance. Inception, on the other hand, is a transfer learning architectural model that applies cross-channel correlation, &#13;
executes at lower resolution inputs, and avoids spatial dimensions. In conducting the test, this study uses several data handling &#13;
schemes to test the two methods, namely without data handling, under-sampling, and oversampling. Furthermore, the data is &#13;
separated into training data and test data with a ratio of 80:20. The result is that the model using the DenseNet method with&#13;
an oversampling scheme is superior to other models with a percentage value of 84.73% accuracy, 84.80% precision, 84.73% &#13;
recall, and 84.62% f1 score. In addition, the machine learning model using the DenseNet method in all schemes is also superior &#13;
to the machine learning model using the Inception method.</text>
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                <text>Andreanov Ridhovan1&#13;
, Aries Suharso2&#13;
, Chaerur Rozikin3</text>
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                <text>University of Singaperbangsa Karawang</text>
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                <text>Fajar bagus W</text>
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                <text>Indonesia</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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                <text>Integration of AHP and TOPSIS Methods for Small and Medium &#13;
Industries Development Decision Making</text>
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                <text>Decision Making, AHP, TOPSIS, Criteria, SMIs</text>
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                <text>Financial problems are one of the reasons why small and medium-sized industries (SMIs) in West Kutai have not developed &#13;
optimally. Government assistance programs are one of the solutions. This program must be appropriate, so a decision-making &#13;
tool is needed to help choose the right SMIs to be assisted later. The weight of the criteria was determined using the Analytical &#13;
Hierarchy Process (AHP) technique, and the priority of the SMIs as the preferred proposal for the recipients of development &#13;
assistance was determined using the Technique for Other Reference by Similarly to Ideal Solution (TOPSIS) approach. Labor, &#13;
investment, production capacity, production value, and raw materials were used to determine the priorities of SMIs&#13;
beneficiaries. Furthermore, TOPSIS prioritizes the development of alternative small and medium-sized industries with types of &#13;
handicraft commodities. Integration of AHP and TOPSIS methods has been successfully used in the IKM Development Priority &#13;
Determination Application, with 83.3% precision and 96.4% accuracy achieved by using a confusion matrix so that the IKM &#13;
ranking can be known. The results of the study found that integration of the two methods was successfully used for Small and &#13;
Medium Industries Development Decision Making</text>
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                <text>Anton Yudhana1&#13;
, Rusdi Umar2&#13;
, Aldi Bastiatul Fawait3</text>
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                <text>Universitas Ahmad Dahlan, Yogyakarta, Indonesia</text>
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                <text>Fajar bagus W</text>
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            <description>A language of the resource</description>
            <elementTextContainer>
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                <text>Indonesia</text>
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                  <text>VOL 6 NO 5 (2022)</text>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
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              <elementText elementTextId="99134">
                <text>Surrogate Model-based Multi-Objective Optimization in Early Stages of &#13;
Ship Design</text>
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            <description>The topic of the resource</description>
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                <text>ship design, multi-objective optimization, surrogate model, neural network, particle swarm optimizer</text>
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                <text>The abstract isthe early stages of ship design, the decision of the ship's main dimensions significantly impacts the ship's &#13;
performance and the total cost of ownership. This paper focuses on an optimization approach based on surrogate models at &#13;
the early stages of ship design. The objectives are to minimize power requirements and building costs while still satisfying the &#13;
constraints. We compare three approaches of surrogate models: Kriging, BPNN-PSO (Backpropagation Neural Network�Particle Swarm Optimizer), and MLP (Multi-Layer Perceptron) in two multi-objective optimization algorithms: MOEA/D &#13;
(Multi-Objective Evolutionary Algorithm Decomposition) and NSGA-II (Non-Dominated Sorting Genetic Algorithm II). The &#13;
experimental results show that MLP surrogate models get the best performance with MAE 6.03, and BPNN-PSO gets the &#13;
second position with MAE 7.2. BPNN-PSO and MLP with MOEA/D and NSGA-II improve the design with around 58% smaller &#13;
adequate power and 6% less steel weight than the original design. However, BPNN-PSO and MLP have lower hypervolume &#13;
than Kriging for both optimization algorithms MOEA/D and NSGA-II. On the other hand, Kriging has the most inadequate &#13;
model accuracy performance, with an MAE of 22.2, but produces the highest hypervolume, lowest computational time, and far &#13;
lower objective values than BPNN-PSO and MLP for both optimization algorithms, MOEA/D and NSGA-II. Nevertheless, the &#13;
three surrogate model approaches can significantly improve ship design solutions and reduce work time in the early stages of &#13;
design</text>
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            <description>An entity primarily responsible for making the resource</description>
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                <text>Nanda Yustina1&#13;
, Ari Saptawijaya2</text>
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            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="99138">
                <text>Universitas Indonesia,</text>
              </elementText>
            </elementTextContainer>
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            <name>Date</name>
            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
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                <text>31-10-2022</text>
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            <name>Contributor</name>
            <description>An entity responsible for making contributions to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99140">
                <text>Fajar bagus W</text>
              </elementText>
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            <name>Format</name>
            <description>The file format, physical medium, or dimensions of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99141">
                <text>PDF</text>
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            </elementTextContainer>
          </element>
          <element elementId="44">
            <name>Language</name>
            <description>A language of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99142">
                <text>Indonesia</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="51">
            <name>Type</name>
            <description>The nature or genre of the resource</description>
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  <item itemId="9241" public="1" featured="1">
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              <description>A name given to the resource</description>
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                  <text>VOL 6 NO 5 (2022)</text>
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            <name>Title</name>
            <description>A name given to the resource</description>
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                <text>Memory-based Collaborative Filtering on Twitter Using &#13;
Support Vector Machine Classification</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
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                <text>Recommender System, User-based, Item-based, Collaborative Filtering, Support Vector Machine</text>
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          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
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                <text>Nowadays, watching films at home is one of people's entertainment. Netflix is a service provider for watching films and provides &#13;
many types of film genres. However, of the many films available, it makes users confused to choose which film to watch first.&#13;
The solution to the problem is a system that provides recommendations for the best films to watch based on user ratings. Twitter &#13;
is still people's favorite social media to express their feelings, thoughts, and criticisms. In this system, tweets serve as input &#13;
data that will be processed into data with rating values. This research implemented a recommendation system based on user &#13;
ratings from tweets using collaborative filtering combined with Support Vector Machine (SVM) classification and implemented &#13;
it on user-based and item-based. The test results in this study show that Collaborative Filtering gets the best RMSE value &#13;
results on item-based 0.5911 and 0.8162 on user-based. The Support Vector Machine (SVM) classification algorithm using &#13;
hyperparameter tuning produces item-based values with a precision of 85.03% and recall of 90.71%, while user-based values &#13;
with a precision of 87.75% and recall of 88.95%</text>
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            <name>Creator</name>
            <description>An entity primarily responsible for making the resource</description>
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              <elementText elementTextId="99165">
                <text>Anang Furkon Rifai1&#13;
, Erwin Budi Setiawan2</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="45">
            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="99166">
                <text>Telkom University</text>
              </elementText>
            </elementTextContainer>
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          <element elementId="40">
            <name>Date</name>
            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99167">
                <text>: 01-10-2022</text>
              </elementText>
            </elementTextContainer>
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          <element elementId="37">
            <name>Contributor</name>
            <description>An entity responsible for making contributions to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99168">
                <text>Fajar bagus W</text>
              </elementText>
            </elementTextContainer>
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            <name>Format</name>
            <description>The file format, physical medium, or dimensions of the resource</description>
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              <elementText elementTextId="99169">
                <text>PDF</text>
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          <element elementId="44">
            <name>Language</name>
            <description>A language of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99170">
                <text>Indonesia</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="51">
            <name>Type</name>
            <description>The nature or genre of the resource</description>
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              <elementText elementTextId="99171">
                <text>Text</text>
              </elementText>
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              <name>Title</name>
              <description>A name given to the resource</description>
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                  <text>VOL 6 NO 5 (2022)</text>
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    <itemType itemTypeId="1">
      <name>Text</name>
      <description>A resource consisting primarily of words for reading. Examples include books, letters, dissertations, poems, newspapers, articles, archives of mailing lists. Note that facsimiles or images of texts are still of the genre Text.</description>
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    <elementSetContainer>
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        <name>Dublin Core</name>
        <description>The Dublin Core metadata element set is common to all Omeka records, including items, files, and collections. For more information see, http://dublincore.org/documents/dces/.</description>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99181">
                <text>Improving AI Text Recognition Accuracy with Enhanced OCR For &#13;
Automated Guided Vehicle</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99182">
                <text>: OCR, AGV, AI, Image Processing, Computer Vision</text>
              </elementText>
            </elementTextContainer>
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          <element elementId="41">
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            <description>An account of the resource</description>
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                <text>AGV (Automated Guided Vehicle) with artificial intelligence (AI) is expected to change the industry's development in Indonesia, &#13;
this artificial intelligence robot uses a mini-computer to operate it and uses mechanical movement like a four-wheeled vehicle &#13;
with a 2WD drive system. In this article, a control strategy of the AGV robot will be shown and implemented to detect the &#13;
location. This research Uses OCR (Optical Character Recognition) for the OpenCV library itself which has been &#13;
enhanced/modified. This enhanced OCR is the main library used in text recognition. This research produces very accurate text &#13;
detection compared to the default OCR that was previously used on the AGV robot in our university. After the process of &#13;
reading this text is passed, it will produce text previously read through the camera which will then provide output in the form &#13;
of text where the AGV robot is located. After the reading is validated, the AGV robot will move to the next point until it returns &#13;
to its starting point. Based on hardware implementation through testing in the AGV laboratory with artificial intelligence, it &#13;
can work according to the algorithm and minimize reading errors with a 95% success rate.</text>
              </elementText>
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          <element elementId="39">
            <name>Creator</name>
            <description>An entity primarily responsible for making the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99184">
                <text>Florentinus Budi Setiawan*, 2Farrel Adriantama, 3Leonardus Heru Pratomo, 4Slamet Riyadi</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="45">
            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="99185">
                <text>Universitas Katolik Soegijapranata, Indonesia</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="40">
            <name>Date</name>
            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99186">
                <text>: 01-10-2022</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="37">
            <name>Contributor</name>
            <description>An entity responsible for making contributions to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99187">
                <text>Fajar bagus W</text>
              </elementText>
            </elementTextContainer>
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            <name>Format</name>
            <description>The file format, physical medium, or dimensions of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="99188">
                <text>PDF</text>
              </elementText>
            </elementTextContainer>
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