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1

Ranky, Paul G. "A generic tool management system architecture for flexible manufacturing systems (FMS)." Robotica 6, no. 3 (1988): 221–34. http://dx.doi.org/10.1017/s0263574700004331.

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SUMMARYConsidering the fact that Flexible Manufacturing Systems (FMS) should be able to accommodate a variety of different parts in random order, tool management at cell level and tool transportation, tool data management, tooling data collection, tool maintenance, and manual and/or robotized tool assembly at FMS system level are very important. Tooling information in FMS is used by several subsystems, including: production planning, process control, dynamic scheduling, part programming, tool preset and maintenance, robotized and/or manual tool assembly, stock control and materials storage.The
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Wen, Xi Qin, Zhong Min Zhao, and Zhi Yu Xie. "Integrated Study of Condition Monitoring and Fault Diagnosis System for Flexible Manufacturing System." Advanced Materials Research 179-180 (January 2011): 678–84. http://dx.doi.org/10.4028/www.scientific.net/amr.179-180.678.

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On the basis of analyzing multiple fault mechanism of the flexible manufacturing system (FMS), the FMS diagnosis system architecture frameworks are built. The FMS status monitoring and fault diagnosis system and software model are especially proposed. The monitoring system structure and hardware composition are discussed, and software structure is also given. Finally, the FMS monitoring and diagnosis system are developed.
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YOSHIKAWA, Hidekazu, Osami WATANABE, Yoji TAKIZAWA, Yukiharu OHGA, and Tadashi OHI. "Flexible Maintenance System (FMS)." Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan 48, no. 7 (2006): 461–83. http://dx.doi.org/10.3327/jaesj.48.461.

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Xu, Yiyang. "Development of flexible manufacturing system." Applied and Computational Engineering 58, no. 1 (2024): 133–47. http://dx.doi.org/10.54254/2755-2721/58/20240709.

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The focus of this project is the development and analysis of a Flexible Manufacturing System (FMS) for the production of a range of tables. Tables are typically used in homes and offices, where different variants are selected for different environments and uses. By implementing a flexible manufacturing system, different versions of tables can be produced in the same factory to fulfil different customer needs and preferences. This project designed and evaluated four different variants in the FMS, demonstrating aesthetic and functional differences while maintaining core similarities; this demons
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Zhang, Han, Rui Feng Guo, Cong Geng, and Xiao Fei Bu. "Architecture Model of FMS Based on Multi-Agent Technology." Applied Mechanics and Materials 462-463 (November 2013): 1087–92. http://dx.doi.org/10.4028/www.scientific.net/amm.462-463.1087.

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The concept of flexible manufacturing system (FMS) has been purposed to improve flexibility and efficiency of manufacture system. Characteristics and operating mechanism of FMS is analyzed in this paper. Fuzziness and distributive of the Multi-agent system can meet the requirements of building FMS platform. On the basis of the theory mentioned above, this paper proposed an architecture model of FMS based on multi-agent technology. At last, the communication between the agents in the system was researched and designed. The introduction of multi-agent technology not only provides a feasible meth
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Bariyyah, Khoirul, Ahmad Hadi, Ni’mawati Sakinah, et al. "TEKNOLOGI FARM MANAGEMENT SYSTEM UNTUK MENDUKUNG BUDIDAYA PERTANIAN BERKELANJUTAN." Jurnal Pertanian Presisi (Journal of Precision Agriculture) 7, no. 1 (2023): 44–58. http://dx.doi.org/10.35760/jpp.2023.v7i1.8337.

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FMS technology is a digital platform designed to collect environmental information on plant growth, microclimate monitoring and automation of fertilization and irrigation of cultivated plants. The FMS application has 4 main functions, namely land digitization, soil nutrient condition monitoring system (agrooscane), climate monitoring system (agrooclimate), monitoring and automation of fertilization and irrigation (agroomation). This study aims to determine the effectiveness of using agroscan, agroclimate, and agroomation tools on cultivated land in Kumendung Village, Muncar District, Banyuwang
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Hidayat, Muhammad Choiril, and Indro Kinoro. "Comparative Efficiency of Fleet Manangement System Versus Transportation Manangement System on Transportation Vehicle Tracking System Efficiency." Management Journal of Binaniaga 8, no. 2 (2023): 171–80. http://dx.doi.org/10.33062/mjb.v8i2.47.

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Fleet management is a relevant operational level activity that companies must face. Along with the development of technology, two systems that are often used to improve visibility and efficiency in tracking activities in the transportation industry are Fleet Management System (FMS) and Transportation Management System (TMS). In describing the advantages and disadvantages of each system, this research uses a qualitative approach with comparative analysis. The comparative analysis highlights the differences in priorities between departments at PT Varia Usaha Fabrikasi, where the Head of Driver M
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Lin, Chun Wei, Yuh Jiuan Parng, and Jung Jye Jiang. "A Dynamic Simulation Approach for Flexible Manufacturing System Design." Applied Mechanics and Materials 635-637 (September 2014): 1813–16. http://dx.doi.org/10.4028/www.scientific.net/amm.635-637.1813.

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Achieving the greatest flexibility is the key objective for a manufacturing enterprise to design and install a Flexible Manufacturing System (FMS). Unfortunately, before the contents of “flexibility” is explicitly defined and commonly accepted within the company, the design effectiveness of an FMS will never be formally justified; not to mention evaluating its production performance once the FMS is implemented. The objective of this paper is twofold: first it presents a practical and quantitative measure of performance for an FMS by introducing the Machine Flexibility (MF) and the subsequent S
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9

Alfarisi, Salman, and Nico Surantha. "Risk assessment in fleet management system using OCTAVE allegro." Bulletin of Electrical Engineering and Informatics 11, no. 1 (2022): 530–40. http://dx.doi.org/10.11591/eei.v11i1.3241.

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The purpose of this study is to use the OCTAVE allegro methodology to identify risks in fleet management system (FMS), determine prioritized risks to be mitigated, provide mitigation recommendations for these prioritized risks, and shows how effective the recommendation is. The result of this study is expected to become an input for FMS service provider of possible risks in FMS services, and risk mitigation approaches that can be used to handle those risks. This risk assessment has successfully identified 6 critical information assets, 10 risks in total, and 4 risks that need to be mitigated,
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Salman, Alfarisi, and Surantha Nico. "Risk assessment in fleet management system using OCTAVE allegro." Bulletin of Electrical Engineering and Informatics 11, no. 1 (2022): 530–40. https://doi.org/10.11591/eei.v11i1.3241.

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The purpose of this study is to use the OCTAVE allegro methodology to identify risks in fleet management system (FMS), determine prioritized risks to be mitigated, provide mitigation recommendations for these prioritized risks, and shows how effective the recommendation is. The result of this study is expected to become an input for FMS service provider of possible risks in FMS services, and risk mitigation approaches that can be used to handle those risks. This risk assessment has successfully identified 6 critical information assets, 10 risks in total, and 4 risks that need to be mitigated,
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11

Wang, Yunpeng, and Zonglin Jiang. "Intelligent Force-Measurement System Use in Shock Tunnel." Sensors 20, no. 21 (2020): 6179. http://dx.doi.org/10.3390/s20216179.

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The inertial vibration of the force measurement system (FMS) has a large influence on the force measuring result of aircraft, especially on some tests carried out in high-enthalpy impulse facilities, such as in a shock tunnel. When force tests are conducted in a shock tunnel, the low-frequency vibrations of the FMS and its motion cannot be addressed through digital filtering because of the inertial forces, which are caused by the impact flow during the starting process of the shock tunnel. Therefore, this paper focuses on the dynamic characteristics of the performance of the FMS. A new method—
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12

Wang, Ji, Yujun Liu, Zhuoshang Ji, Yanping Deng, and Yuanyuan Zheng. "Study of Flexible Scheduling System of the Hull Job Shop Based on OOCPN." Journal of Ship Production 25, no. 03 (2009): 168–73. http://dx.doi.org/10.5957/jsp.2009.25.3.168.

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The hull job shop in a shipyard is a typical flexible manufacturing system (FMS), the flexibility and efficiency of which largely depends on the level of FMS scheduling. In this paper, the Object-Oriented Colored Petri Net (OOCPN) is used to build the FMS model for the hull job shop. A four-step modeling method of FMS has been developed to successfully simulate the scheduling of the hull job shop.
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Setiawan, Ari, and Mikha Elroy. "Perancangan Model Real Time – Shop Floor Control System untuk Flexible Manufacturing System." Jurnal Telematika 15, no. 2 (2021): 93–100. http://dx.doi.org/10.61769/telematika.v15i2.358.

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The ITHB Industrial Engineering Study Program plans to create a Flexible Manufacturing System (FMS) model for the learning process. FMS is a manufacturing system consisting of a workstation, material handling system, storage, or Automatic Storage and Retrieval System (AS / RS), and a computer management system. The workstations in the system studied consist of four CNC machines and two loading/unloading stations for loading and unloading workpieces and attaching workpieces to a fixture. The FMS has a computer control system that makes the system on the model under study run automatically. The
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14

Ramasamy, Subramanian, Roberto Sabatini, Alessandro Gardi, and Trevor Kistan. "Next Generation Flight Management System for Real-Time Trajectory Based Operations." Applied Mechanics and Materials 629 (October 2014): 344–49. http://dx.doi.org/10.4028/www.scientific.net/amm.629.344.

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This paper presents the concept of operations, architecture and trajectory optimisation algorithms of a Next Generation Flight Management System (NG-FMS). The NG-FMS is developed for Four Dimensional (4D) Intent Based Operations (IBO) in the next generation Communications, Navigation, Surveillance and Air Traffic Management system (CNS+A) context. The NG-FMS, primarily responsible for the aircraft navigation and guidance task, acts as a key enabler for achieving higher level of operational efficiency and mitigating environmental impacts both in manned and unmanned aircraft applications. The NG
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15

Azizah, Siti, Dede Apryliasari, and Goh Gerald. "Application of Farm Management System in The Grand Parent Stock Farm of PT. Berdikari Unit Lebak." Jurnal Manajemen dan Inovasi (MANOVA) 6, no. 1 (2023): 38–57. http://dx.doi.org/10.15642/manova.v6i1.1062.

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The research objective was to compare the application of FMS (Farm Management System) and a manual system based on the perception of farm officers at the Grand Parent Stock farm of Berdikari Lebak Unit. This research was conducted from 18 January 2021 to 18 February 2021 at the Grand Parent Stock farm of Berdikari Lebak Unit. Data were obtained by purposive sampling with 30 respondents of Lebak Farm officers, which include the Head of Farm Unit, Farm Officer, and Operators. In addition, data was also obtained from interviews with Berdikari employees in IT Department. This study uses primary da
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16

De Luca, Ing Adriano. "Software tools for FMS and FAS preliminary design: an industrial case study." Robotica 3, no. 4 (1985): 273–77. http://dx.doi.org/10.1017/s0263574700002381.

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SUMMARYA complete industrial case study is presented, including FMS machinery selection, preliminary production planning, layout and transportation design and performance evaluation, after pallets quantity and fixtures mix optimization.The case refers to an actual preliminary design performed to submit an offer for a System to a potential customer.The aim of the paper is to show the impressive help coming to FMS and FAS designers from the use of effective software tools, very easy to deal with, very quick and highly reliable in their quantitative evaluations.
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17

Madan, A. K. "Flexible Manufacturing System and its feasibility in context of Manufacturing Industries." INTERNATIONAL JOURNAL OF ADVANCED PRODUCTION AND INDUSTRIAL ENGINEERING 5, no. 2 (2020): 73–78. http://dx.doi.org/10.35121/ijapie202004249.

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Highly automated machine cell which is based on the principle of Group technology, comprising a group of processing work station for the production is referred to as Flexible Manufacturing System (FMS), where different processes like material handling, storage system, operation, inspection, etc., are interconnected by the automatic control unit. The concept of FMS (system 24) was first introduced in the mid-1960s to form a system that can operate 16 hours a day without any human attendant. The reason behind selecting this area for research is that there are problems like more lead time, ineffi
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18

Arif, Talha, Parvez Alam, and Sanjeev Kumar Sarswat. "Design and Development of a Flexible Manufacturing System." International Journal for Research in Applied Science and Engineering Technology 10, no. 3 (2022): 2117–20. http://dx.doi.org/10.22214/ijraset.2022.41080.

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Abstract: In most organizations, a flexible manufacturing system (FMS) is concerned with the automatic production of different parts in the middle range because it is flexible. In a nutshell, it's a machine that makes everything. FMS relies heavily on the flow of jobs and tools in order to function. The FMS work centre can handle a large number of tasks at once. For FMS facilities, a tool magazine is in use as a means of reducing tool inventory. We present the Jaya method in this work to schedule tasks and tools simultaneously without considering tool transfer delays across machines; this is w
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19

Wang Chengen, Zhu Jianying, and Wei Zhongxin. "An expert system for FMS control." Intelligent Systems Engineering 2, no. 4 (1993): 223. http://dx.doi.org/10.1049/ise.1993.0019.

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20

Mellichamp, Joseph M., and Ahmed F. A. Wahab. "An expert system for FMS design." SIMULATION 48, no. 5 (1987): 201–8. http://dx.doi.org/10.1177/003754978704800504.

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21

Sriram, Ram S. "Accounting information system issues of FMS." Integrated Manufacturing Systems 6, no. 1 (1995): 35–40. http://dx.doi.org/10.1108/09576069510076153.

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22

Mårtensson, L. "FMS — flexibility for man and system." IFAC Proceedings Volumes 20, no. 11 (1987): 43–46. http://dx.doi.org/10.1016/b978-0-08-034800-1.50013-6.

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23

Olig, Gene A. "An Overview of an FMS System." IEEE Transactions on Industry Applications IA-21, no. 2 (1985): 318–23. http://dx.doi.org/10.1109/tia.1985.349651.

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24

Kandavel, V., V. Preethi, and Johnpeter Soosairaj. "Optimization of Flexible Manufacturing Systems Using IoT." BOHR International Journal of Engineering 1, no. 1 (2022): 39–43. http://dx.doi.org/10.54646/bije.008.

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A flexible manufacturing system (FMS) is an automated material handling and integrated workstation that is computer-controlled and used for the automatic random processing of palletized parts. To assess the effectiveness of the FMS design before deployments, computer simulation is a cost-effective method. It is crucial to test this simulation software before usage since they have such a clear influence on the FMS decision-making process. A FMS is a complicated, integrated system that includes a central computer numerical control machining center and an automated material management system. The
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Kandavel, V., V. Preethi, and Johnpeter Soosairaj. "Optimization of flexible manufacturing systems using IoT." BOHR International Journal of Engineering 1, no. 1 (2022): 37–41. http://dx.doi.org/10.54646/bije.2022.08.

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A flexible manufacturing system (FMS) is an automated material handling and integrated workstation that is computer-controlled and used for the automatic random processing of palletized parts. To assess the effectiveness of the FMS design before deployments, computer simulation is a cost-effective method. It is crucial to test this simulation software before usage since they have such a clear influence on the FMS decision-making process. A FMS is a complicated, integrated system that includes a central computer numerical control machining center and an automated material management system. The
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Erbacher, Christoph, Shani Vaknine, Gilli Moshitzky, et al. "Distinct CholinomiR Blood Cell Signature as a Potential Modulator of the Cholinergic System in Women with Fibromyalgia Syndrome." Cells 11, no. 8 (2022): 1276. http://dx.doi.org/10.3390/cells11081276.

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Fibromyalgia syndrome (FMS) is a heterogeneous chronic pain syndrome characterized by musculoskeletal pain and other key co-morbidities including fatigue and a depressed mood. FMS involves altered functioning of the central and peripheral nervous system (CNS, PNS) and immune system, but the specific molecular pathophysiology remains unclear. Anti-cholinergic treatment is effective in FMS patient subgroups, and cholinergic signaling is a strong modulator of CNS and PNS immune processes. Therefore, we used whole blood small RNA-sequencing of female FMS patients and healthy controls to profile mi
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Setiawan, Ari, and Teguh Ersada Natail Sitepu. "Scheduling Flexible Manufacturing System with Stacker Crane Using Coloured Petri Nets." Jurnal Teknik Industri 20, no. 2 (2019): 113. http://dx.doi.org/10.9744/jti.20.2.113-126.

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Scheduling Flexible Manufacturing System (FMS) can increase production speed and accuracy. It because FMS has an ability to process various variety of product at same work station. However, FMS need efficient allocation of resources, for example: allocation of material handling equipment. This paper presents production scheduling FMS modelling to 24 jobs and 4 machines considering stacker crane. Coloured Petri Nets (CP-Nets) is the programming language which used to simulate model because it’s simplicity. This model consists two main model activities. The first one is Physical Activity (PA) wh
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Yuan, Yongping, Xiuying Wang, Verel Benson, and Limei Ran. "An Integrated Multi-Media Modeling System for Regional- to National-Scale Nitrogen and Crop Productivity Assessments." Agriculture 15, no. 10 (2025): 1017. https://doi.org/10.3390/agriculture15101017.

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Excessive nutrients transported from agricultural fields into the environment are causing environmental and ecological problems. This study uses an integrated multi-media modeling system version 1 (IMMMS 1.0) linking air, land surface, and watershed processes to assess corn grain yield and nitrogen (N) losses resulting from changing fertilization conditions across the contiguous United States. Two fertilizer management scenarios (FMSs) were compared and evaluated: 2006 FMS, developed based on the 2006 fertilizer sales data; and 2011 FMS, developed based on 2011 fertilizer sales and manure. Cor
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Te, Matthew Christian L., Joaquin Antonio T. Bautista, Shaquille Michael Edward V. Dimacali, Angelo Victor M. Lood, Marina Graciella M. Pangan, and Alvin Y. Chua. "A Smart IoT Urban Flood Monitoring System Using a High-Performance Pressure Sensor with LoRaWAN." HighTech and Innovation Journal 5, no. 4 (2024): 918–36. https://doi.org/10.28991/hij-2024-05-04-04.

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The Philippines faces frequent flooding and significant loss of life and property. Current flood monitoring systems (FMS) are outdated, causing delays in information distribution and mitigation efforts. Therefore, this study presents the development of a pressure sensor-based system with LoRaWAN capability for continuous, remote flood detection. The FMS PVC housing design was iterated upon by changing lengths, diameters, and mounting systems. Moreover, each of the parts was modeled, simulated, and tested in ANSYS and evaluated with simulated real-world physical and environmental conditions. Th
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Kim, Pyung Soo. "Selective Finite Memory Structure Filtering Using the Chi-Square Test Statistic for Temporarily Uncertain Systems." Applied Sciences 9, no. 20 (2019): 4257. http://dx.doi.org/10.3390/app9204257.

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In this paper, a finite memory structure (FMS) filtering with two kinds of measurement windows is proposed using the chi-square test statistic to cover nominal systems as well as temporarily uncertain systems. First, the simple matrix form for the FMS filter is developed from the conditional density of the current state given finite past measurements. Then, one of the two FMS filters, the primary FMS filter or the secondary FMS filter, with different measurement windows is operated selectively according to the presence or absence of uncertainty, to obtain a valid estimate. The primary FMS filt
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31

Abu-Shanab, Emad A., Jumana Samara, and Mohamed Arselene Ayari. "Challenges Facing Faculty Members When Using a Learning Management System." International Journal of Information and Communication Technology Education 16, no. 4 (2020): 35–47. http://dx.doi.org/10.4018/ijicte.2020100103.

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Universities use learning management systems (LMS) to support teaching practices and add value to the educational system. A leading university in the gulf region (XYZ) provides support for faculty members (FMs) through its Center of Excellence in Teaching and Learning (CETL), where experts respond to their enquiries on how to use the LMS features. This study analyzed data available from such interactions and concluded that FMs preferred office (face-to-face) contacting method, assessment is the major generator of FMs enquiries, and also the majority of enquiries were clustered into five major
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32

Chen, Zai Liang, Sheng Tao Wang, Dong Min Wu, and Ji Ne Wang. "The Modeling and Simulation of Sheet Metal Flexible Manufacturing System Based on eM-Plant." Applied Mechanics and Materials 44-47 (December 2010): 754–57. http://dx.doi.org/10.4028/www.scientific.net/amm.44-47.754.

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The components of sheet metal FMS are abstracted corresponding eM-Plant object, the sheet metal FMS’s automatic guided vehicle system and parts management system are built in eM-Plant. Adjusting the system parameters in the model, several simulations obtained an ideal simulation result. These research show that, using eM-Plant software to build model and simulate for sheet metal FMS can save time, improve simulation result of sheet metal FMS.
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Wang, Shao Sheng, Wan Tao He, Rong Bin Liu, and Jun Ting Cheng. "Optimal Design of Flexible Manufacturing System Based on Optical Measurement Principle." Advanced Materials Research 142 (October 2010): 219–22. http://dx.doi.org/10.4028/www.scientific.net/amr.142.219.

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The material recognition and size measuring cell is very important for the development and practicability of flexible manufacturing system (FMS). However, the existing FMS mostly recognize the two-dimensional shape of the workpiece, measure the one- dimensional shape of the finishing product. This greatly limits the performance of FMS. In this paper, these cells have been optimally designed to identify and measure the three-dimensional shape of the workpiece based on the optical measurement principle. The method has the advantage at robust recognition rate and high recognition quality.
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Chen, Zai Liang, Guang Ju Si, Chuan Yang Wang, and Dian Li Wu. "Parametric Design of Foamed Sheet Die." Advanced Materials Research 201-203 (February 2011): 768–72. http://dx.doi.org/10.4028/www.scientific.net/amr.201-203.768.

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The components of sheet metal FMS are abstracted corresponding eM-Plant object, the sheet metal FMS’s automatic guided vehicle system and parts management system are built in eM-Plant. Adjusting the system parameters in the model, several simulations obtained an ideal simulation result. These research show that, using eM-Plant software to build model and simulate for sheet metal FMS can save time, improve simulation result of sheet metal FMS.
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Fan, C. K., and T. N. Wong. "Agent‐based architecture for manufacturing system control." Integrated Manufacturing Systems 14, no. 7 (2003): 599–609. http://dx.doi.org/10.1108/09576060310491955.

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A flexible manufacturing system (FMS) is a complex manufacturing system and it demands a robust control software for its scheduling, planning and control functions. This paper describes the development of an agent‐based infrastructure for the control of a cellular FMS. The FMS in this project is a flexible assembly cell (FAC), comprising two assembly robots and a conveyor system. The aim is to establish a multi‐agent control system with good expandability and to be able to cope with dynamic changes in the FAC. The proposed agent‐based FAC control system comprises a collection of agents impleme
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Rohrschneider, L. R., and D. Metcalf. "Induction of macrophage colony-stimulating factor-dependent growth and differentiation after introduction of the murine c-fms gene into FDC-P1 cells." Molecular and Cellular Biology 9, no. 11 (1989): 5081–92. http://dx.doi.org/10.1128/mcb.9.11.5081-5092.1989.

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A system has been established for analyzing the functions of the c-fms/macrophage colony-stimulating factor (M-CSF) receptor gene product in hematopoietic growth and differentiation. The murine c-fms gene was introduced into the factor-dependent murine hematopoietic cell line FDC-P1 by retroviral infection, and conversion to M-CSF-dependent growth was assayed in agar cultures. Expression of the c-fms gene in FDC-P1 cells, which normally do not express this gene, resulted in the conversion of resultant FD(c-fms) cells to M-CSF-dependent growth. Stimulation of FD(c-fms) cells by M-CSF led to the
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Rohrschneider, L. R., and D. Metcalf. "Induction of macrophage colony-stimulating factor-dependent growth and differentiation after introduction of the murine c-fms gene into FDC-P1 cells." Molecular and Cellular Biology 9, no. 11 (1989): 5081–92. http://dx.doi.org/10.1128/mcb.9.11.5081.

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A system has been established for analyzing the functions of the c-fms/macrophage colony-stimulating factor (M-CSF) receptor gene product in hematopoietic growth and differentiation. The murine c-fms gene was introduced into the factor-dependent murine hematopoietic cell line FDC-P1 by retroviral infection, and conversion to M-CSF-dependent growth was assayed in agar cultures. Expression of the c-fms gene in FDC-P1 cells, which normally do not express this gene, resulted in the conversion of resultant FD(c-fms) cells to M-CSF-dependent growth. Stimulation of FD(c-fms) cells by M-CSF led to the
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38

Lv, You Long, Gong Zhang, Jie Zhang, and Yi Jun Dong. "Integrated Scheduling of the Job and AGV for Flexible Manufacturing System." Applied Mechanics and Materials 80-81 (July 2011): 1335–39. http://dx.doi.org/10.4028/www.scientific.net/amm.80-81.1335.

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Job scheduling and AGV scheduling in FMS are regarded as two independent problems by most researchers. Their isolation ignores AGV’s use conflicts in the job scheduling and leads to low average equipment utilization. We point out the necessity for the job scheduling to integrate with AGV scheduling through analyzing scheduling problem of a specific type of FMS with single AGV and single buffer area. Then a corresponding mathematic model for integrated scheduling is presented based on the problem description and constraints for scheduling. A specific FMS is adopted to validate this integrated s
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SAINI, SHANTI, RAJESH ASIJA, and ANIL GOYAL. "FLOATING MICROSPHERE AS GASTRO RETENTIVE DRUG DELIVERY SYSTEM: AN UPDATED REVIEW." Tropical Journal of Pharmaceutical and Life Sciences 9, no. 2 (2022): 21–29. https://doi.org/10.61280/tjpls.v9i2.80.

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Floating drug delivery system is anticipated to float in long lasting way when come in contact with the gastric contents and subsequently to improve the drugs bioavailability. The different floating formulations which include powders, tablets, pills, capsules, granules and films are presently under research and development. Floating microspheres (FMs) are particularly getting importance because of their varied applicability for drug targeting to stomach. These gastro retentive FMs are systems having less density have the potential to float and distributed evenly through the entire gastric flui
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Sanz, Alfredo, Ignacio Gonzalez, Gabriel Angulo, and Justo Ureña. "A First Approach to the Development of a Control Subsystem on a Hybrid (Real/Virtual) Flexible Manufacturing System." Key Engineering Materials 615 (June 2014): 157–62. http://dx.doi.org/10.4028/www.scientific.net/kem.615.157.

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This paper shows a first approach to incorporate virtual elements (based on virtual reality) in an existing Flexible Manufacturing System (FMS). It suggests the main methodological ideas to develop a control system for a hybrid FMS where both, virtual and real elements, can work together. The paper starts from an existing FMS named CFF-ETSIA and implanted in the Aerospace Engineering School. A modular design is proposed towards the independence between the FMS elements so that the system flexibility increases. Virtual devices are created in order to reproduce the behavior of their real-homonym
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41

Sumit, Kumar, Singh Netrapal, Aziz Abdul, and Anil Aggarwal Dr. "ANALYSIS AND MODELING OF FLEXIBLE MANUFACTURING SYSTEM." International Journal of Advances in Engineering & Scientific Research 1, no. 2 (2014): 37–49. https://doi.org/10.5281/zenodo.10720140.

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<strong>ABSTRACT</strong> <strong>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</strong><strong>&nbsp;</strong> <em>Analysis and modeling of flexible manufacturing system (FMS) consists of scheduling of the system and optimization of FMS objectives. Flexible manufacturing system (FMS) scheduling problems become extremely complex when it comes to accommodate frequent variations in the part designs of incoming jobs. This research focuses on scheduling of variety of incoming jobs into the system efficiently and maximizing system utilization and
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42

Chen, Xue, Fang Wang, Panxiang Cao, et al. "Fusion Gene Map of Acute Myeloid Leukemia Revealed By Transcriptome Sequencing of a Consecutive Cohort of 400 Cases in a Single Center." Blood 136, Supplement 1 (2020): 33. http://dx.doi.org/10.1182/blood-2020-141144.

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Introduction Fusion genes (FGs) are major molecular biological abnormalities in acute leukemia and have been used as molecular markers for the diagnosis, classification, risk stratification and targeted therapy of leukemia. We previously reported common FGs were presented in approximately 41% of acute myeloid leukemia (AML) cases (Chen X et al., Leuk Lymphoma 2019). The rapid development of sequencing technology and the decline of sequencing costs in recent years have made whole transcriptome sequencing (WTS) more accessible, which can not only analyze known FGs, but also has unique advantages
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43

Vierck, Charles J. "A Mechanism-Based Approach to Prevention of and Therapy for Fibromyalgia." Pain Research and Treatment 2012 (October 2, 2012): 1–12. http://dx.doi.org/10.1155/2012/951354.

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Fibromyalgia syndrome (FMS) is characterized by pain referred to deep tissues. Diagnosis and treatment of FMS are complicated by a variable coexistence with regional pain, fatigue, sleep disruption, difficulty with mentation, and depression. The widespread, deep pain of FMS can be a consequence of chronic psychological stress with autonomic dysregulation. Stress acts centrally to facilitate pain and acts peripherally, via sympathetic vasoconstriction, to establish painful muscular ischemia. FMS pain, with or without a coexistent regional pain condition, is stressful, setting up a vicious circl
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44

Ramasamy, Subramanian, Manoj Sangam, Roberto Sabatini, and Alessandro Gardi. "Flight Management System for Unmanned Reusable Space Vehicle Atmospheric and Re-Entry Trajectory Optimisation." Applied Mechanics and Materials 629 (October 2014): 304–9. http://dx.doi.org/10.4028/www.scientific.net/amm.629.304.

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The design and trajectory computation algorithms of an innovative Flight Management System (FMS) for Unmanned Reusable Space Vehicle (URSV) are presented. The proposed FMS features a number of common functionalities with modern aircraft FMS that enable flight planning in non-segregated airspace, as well as specific features for optimal trajectory generation and space segment monitoring of the flight mission. The general avionics architecture of URSV is presented and the specific FMS algorithms are developed to cope with the flight vehicle optimal trajectory planning and monitoring. Simulation
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45

Krishnan, M., T. Karthikeyan, T. R. Chinnusamy, and A. Murugesan. "An Evolutionary Hybrid Algorithm for Layout Planning in Flexible Manufacturing System." Advanced Materials Research 984-985 (July 2014): 444–51. http://dx.doi.org/10.4028/www.scientific.net/amr.984-985.444.

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The layout of a flexible manufacturing system (FMS) involves distributing different resources for achieving maximum efficiency. To provide a variety of products to customers the FMS has created a significant set of operational changes. Among this, layout planning is more important in achieving productivity of FMS. The problem of this type is combinatorial in nature and found to be Non-deterministic Polynomial (NP) complete. This paper focuses the loop layout planning of an FMS with the aim of minimizing the transportation distance and the backtracking distances of the Automated Guided Vehicles
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46

De, Ananya, Ashi Gupta, and Dr A. K. Madan. "Need and Scope of Flexible Manufacturing Systems." International Journal for Research in Applied Science and Engineering Technology 10, no. 5 (2022): 496–97. http://dx.doi.org/10.22214/ijraset.2022.42121.

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Abstract: The flexible manufacturing system (FMS) is a type of system which consists of several integrated parts, a computer control system and an automated numerical control system to increase the flexibility of industrial processes. Automation and Industry 4.0 are key parameters for the future and FMS is a step in the right direction to achieve due to its capabilities, capacity and advantages. To stay competitive, there is a constant demand for greater output and manufacturing quality, as well as an urgent need to improve overall manufacturing system efficiency. This research shows the need
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ALY, A. A., and M. SUBRAMANIAM. "Design of an FMS decision support system." International Journal of Production Research 31, no. 10 (1993): 2257–73. http://dx.doi.org/10.1080/00207549308956856.

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48

Chiu, K. F., L. K. Chu, and D. Sculli. "Modular generic software system for cellular FMS." International Journal of Production Research 39, no. 12 (2001): 2545–66. http://dx.doi.org/10.1080/00207540110051888.

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49

Shanping, Li, Yao Yuming, and Xu Yuliang. "FORCADS: A FMS Oriented graphic simulation system *." IFAC Proceedings Volumes 24, no. 14 (1991): 220–24. http://dx.doi.org/10.1016/s1474-6670(17)69357-1.

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50

He, Yongyi, and Xizhang Guo. "A control system of material handlingin FMS." Journal of Shanghai University (English Edition) 1, no. 1 (1997): 55–58. http://dx.doi.org/10.1007/s11741-997-0044-y.

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