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1

Balassa, Bela. "Politiques agricoles et allocation internationale des ressources". Économie rurale 189, n. 1 (1989): 22–28. http://dx.doi.org/10.3406/ecoru.1989.3948.

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2

Hung, Nguyen Manh. "L’efficacité économique du mode d’allocation des ressources naturelles". Articles 51, n. 3 (15 luglio 2009): 405–19. http://dx.doi.org/10.7202/800630ar.

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Abstract In this paper, the decentralized economic allocation of a common property resource is fully characterized in a dynamic framework. Because of the externalities involved, this mode of allocation is shown to be inefficient. The extent and the causes of this inefficiency are discussed, with special emphasis on a kind of externality herein called the "appropriability". Finally, economic policies involving taxation, subsidy and user charge which purpose to bring about the social optimum are pointed out.
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3

Audibert, Gérard, Hélène Gebel e Michel Hasselmann. "Allocation de ressources médicales rares : enjeux éthiques et citoyens". Revue française d'éthique appliquée N° 12, n. 1 (13 giugno 2022): 171–82. http://dx.doi.org/10.3917/rfeap.012.0171.

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4

FREYENS, BENOÎT PIERRE, e CHRIS JONES. "Efficient Allocation of Radio Spectrum". Journal of Public Economic Theory 16, n. 1 (25 giugno 2013): 1–23. http://dx.doi.org/10.1111/jpet.12045.

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5

Kloeck, Clemens, Holger Jaekel e Friedrich Jondral. "Multi-Agent Radio Resource Allocation". Mobile Networks and Applications 11, n. 6 (dicembre 2006): 813–24. http://dx.doi.org/10.1007/s11036-006-0051-4.

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6

Gamel, Claude. "Comment financer l'allocation universelle? La stratégie de Van Parijs (1995) en question". Recherches économiques de Louvain 70, n. 3 (2004): 287–315. http://dx.doi.org/10.1017/s0770451800010769.

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RésuméDans l'ouvrage que Van Parijs a consacré en 1995 aux fondements philosophiques et économiques du projet d'allocation universelle, le chapitre IV est dédié au problème du financement « soutenable » d'une telle mesure. Les « rentes d'emploi » y sont présentées comme un troisième type de ressources susceptibles d'élargir l'assiette fiscale du financement, à côté des « ressources externes » et des « ressources internes » des individus. Les difficultés d'exploitation de telles rentes légitiment l'exploration d'une stratégie alternative de financement fondée sur la flexibilité « walrassienne » des salaires, laquelle permet de réduire une certaine contradiction entre l'acceptation par Van Parijs de rentes de situation liées à l'emploi et sa volonté ultérieure (chapitre VI) d'« optimiser » le capitalisme. Incidemment, la différence réelle entre allocation universelle et impôt négatif sur le revenu est aussi réexaminée.
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Nkengne, Patrick, e Léonie Marin. "L’allocation des ressources enseignantes en Afrique subsaharienne francophone : pour une meilleure équité des systèmes éducatifs". Éducation et francophonie 45, n. 3 (28 maggio 2018): 35–60. http://dx.doi.org/10.7202/1046416ar.

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Les pays d’Afrique subsaharienne souffrent d’un manque de personnel enseignant, et la forte augmentation de la population d’âge scolaire montre que le problème persistera. Il devient donc crucial pour ces pays d’optimiser l’utilisation de leurs ressources enseignantes en poste en s’assurant qu’elles sont équitablement allouées aux écoles. Or, jusqu’à quel point la répartition des enseignantes et des enseignants entre les écoles d’Afrique subsaharienne est-elle équitable? Comment peut-on améliorer cette allocation? Pour répondre à ces questions, cette étude s’appuie sur deux indicateurs, soit le ratio élèves/maître et le degré d’aléa dans l’allocation des ressources enseignantes aux écoles (1-R2), ainsi que sur des informations recueillies grâce à un « questionnaire pays » auquel ont répondu des acteurs clés des ministères de l’Éducation de pays d’Afrique subsaharienne. Nous avons ainsi eu recours à une approche quantitative et qualitative pour apprécier la situation des pays étudiés relativement à l’allocation des ressources enseignantes aux écoles, mais également pour comprendre les écarts observés en vue d’envisager des remédiations. Un constat majeur se dégage de cette étude : peu de pays francophones d’Afrique subsaharienne parviennent à une allocation équitable de leurs enseignants aux établissements. Le recrutement sur poste et l’automatisation de certains aspects de la gestion du personnel enseignant sont des solutions à considérer.
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Bello, N., e F. O. Edeko. "Designing a Spectrum Allocation Chart for Nigeria". Nigerian Journal of Environmental Sciences and Technology 5, n. 2 (ottobre 2021): 320–28. http://dx.doi.org/10.36263/nijest.2021.02.0277.

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The regulation of the radio spectrum today by government agencies addresses the issue of interference between radio stations by allocating, allotting and registering bands of radio-frequencies. The framework of management is done at the international, regional and national level. With this paper, we present a study of the radio spectrum allocation policies in some leading countries and Nigeria. However, narrowing the study down to the detailed design of spectrum allocation charts. The study used the information in the national table of frequency allocation (NTFA) to design the spectrum allocation chart of Nigeria with Photoshop application. The spectrum allocation chart was designed with high resolution for high zoom capabilities so that researchers can gain a quick overview of the radio services allocated in the radio spectrum in Nigeria.
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9

Sauner-Leroy, Jacques-Bernard. "Allocation de ressources, avantage concurrentiel et performance des petites et moyennes entreprises de l’industrie manufacturière française". Revue internationale P.M.E. 15, n. 1 (16 febbraio 2012): 65–85. http://dx.doi.org/10.7202/1008801ar.

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L’analyse des liens entre la possession de un ou plusieurs avantages concurrentiels et la performance des firmes est un domaine qui a déjà été assez largement abordé dans la littérature de management stratégique. Certains de ces travaux ont cherché plus précisément à mettre en évidence des modes de combinaisons de ressources conduisant à la réalisation de niveaux de performance élevés. Toutefois, leurs champs d’investigation sont demeurés le plus souvent restreints à des domaines d’activité spécifiques, de sorte que les résultats auxquels ils aboutissent ne peuvent être généralisés. Partant de ce constat et s’appuyant sur le modèle de « ressources de base » qui apparaît comme le corpus théorique le plus complet sur cette question, l’objet de cette étude est de mettre en évidence, à partir de l’exploitation de 3049 enquêtes issues de la base de données de la Banque de France sur les comportements économiques et financiers des PME de l’industrie manufacturière française, des profils types de combinaison de ressources et de création d’avantages concurrentiels et de les comparer sur plusieurs critères de performance. Pour ce faire, une analyse typologique est menée. Elle conduit à la mise en évidence de six stratégies types de combinaisons de ressources associées à des avantages concurrentiels différents. Les résultats des tests effectués sur les comparaisons de performance entre ces six groupes indiquent que les entreprises qui obtiennent les meilleurs résultats sont celles qui adoptent un positionnement concurrentiel différencié fondé sur une approche qui situe le client au cœur de leur stratégie et qui utilisent principalement la fonction marketing comme support de création de leurs avantages compétitifs.
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10

Zhang, Pei, Long Xiang Yang e Xu Liu. "Subcarrier Allocation in Cognitive Radio Systems". Applied Mechanics and Materials 195-196 (agosto 2012): 154–58. http://dx.doi.org/10.4028/www.scientific.net/amm.195-196.154.

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In CR systems, resource allocation is very important, which can be operated by different rules, according to the different purposes. In this paper, we focus on subcarrier allocation in CR systems, where primary and CR users co-exist in adjacent bands, while keeping the total interference introduced to the PU band below a certain threshold and the total power allocated to the CR users under a constraint. First, we investigate Max-Rate subcarrier allocation algorithm (MaxR-SAA) which can achieve maximum transmit rate of the CR system. Then, focusing on the fact that the less interference introduced to the PU band, the better the PU can work; we proposed a Min-Interference subcarrier allocation algorithm (MinI-SAA). Further, aiming at achieving fairness among all the SUs, we propose a subcarrier allocation algorithm, which is termed as Fair-Rate subcarrier allocation algorithm (FairR-SAA). Numerical results are obtained for the behaviors and performance of our proposed algorithms.
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11

Li, Yongcheng, Hai Shen e Manxi Wang. "Spectrum Allocation of Cognitive Radio Based on Autonomy Evolutionary Algorithm". Cybernetics and Information Technologies 16, n. 4 (1 dicembre 2016): 87–97. http://dx.doi.org/10.1515/cait-2016-0070.

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Abstract Reasonable and effective allocation of cognitive radio spectrum resource according to user’s requirements is the key task of cognitive radio network. Cognitive radio spectrum allocation problem can be viewed as an optimization problem. This paper analyzes the application of bio-inspired intelligent algorithm in cognitive radio network spectrum allocation, and based on graph theory model of spectrum allocation, proposesaspectrum allocation algorithm based on autonomously evolutionary scheme. Three objective functions: Max-Min-Reward, Max-Sum- Reward and Max-Proportional-Fair are employed to evaluate the proposed algorithm capacity. The simulation result reveals that the proposed method can make the system user to obtain better network benefits and better embody the fairness between cognitive users. In the process of allocation, the proposed method was not restricted by user scale and the number of spectrums.
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12

Xie, Yu Peng, Xue Zhi Tan, Yu Tao Liu, Lin Ma e Hai Yan Wu. "A Spectrum Allocation Algorithm Based on Graph Theory". Applied Mechanics and Materials 157-158 (febbraio 2012): 1065–70. http://dx.doi.org/10.4028/www.scientific.net/amm.157-158.1065.

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In the cognitive radio system allocation algorithm based on graph theory is always research focus at home and abroad. Cognitive radio users choose main users’ spectrum which don’t use spectrum, but the available spectrum is affected on main users’ work state, location, and coverage, with the changing nature of space and time. Therefore, graph theory model analyzes spectrum allocation in the cognitive radio system, which revises constraint conditions and distribution targets of spectrum allocation. This paper summarizes the principle of existing allocation algorithm on graph theory model on cognitive radio system and analyzes some deficiencies and lays a foundation for learning theories in future.
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13

Grandhi, S. A., R. D. Yates e D. J. Goodman. "Resource allocation for cellular radio systems". IEEE Transactions on Vehicular Technology 46, n. 3 (1997): 581–87. http://dx.doi.org/10.1109/25.618182.

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14

Dettmer, R. "Up the revolution [radio spectrum allocation]". IEE Review 51, n. 5 (1 maggio 2005): 44–47. http://dx.doi.org/10.1049/ir:20050506.

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15

Chang, Kun-Nyeong, e Sehun Kim. "Channel allocation in cellular radio networks". Computers & Operations Research 24, n. 9 (settembre 1997): 849–60. http://dx.doi.org/10.1016/s0305-0548(96)00098-6.

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16

Siebert, Patrick, Mustapha Mouloua, Kendra Burns, Jennifer Marino, Lora Scagliola, Lelah Winters, Peter Hancock e Dan Agliata. "The Effects of Telematics on Driver Distraction". Proceedings of the Human Factors and Ergonomics Society Annual Meeting 46, n. 22 (settembre 2002): 1868–70. http://dx.doi.org/10.1177/154193120204602219.

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This study used both cellular phones and analogue radio to measure driver distraction and workload in a low fidelity driving simulator. Thirty-four participants performed a simulated driving task while using either a cell phone or a radio in conjunction with a secondary task assessing their spare attentional capacity. The results showed that more lane deviations were made during the cell phone and radio tuning use than both of the pre-allocation and Post-allocation phases. The secondary task errors were also higher during both the cell phone and radio tuning allocation phase than the pre-allocation and post-allocation phases. These findings indicate the greater workload load levels associated with the use of telemetric devices. These findings have major implications for driver safety and telemetric systems design.
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17

Mahyari, Mohammad Mirtavoosi, Arman Shojaeifard e Mohammad Shikh-Bahaei. "Probabilistic Radio Resource Allocation Over CDMA-Based Cognitive Radio Networks". IEEE Transactions on Vehicular Technology 64, n. 8 (agosto 2015): 3560–65. http://dx.doi.org/10.1109/tvt.2014.2360814.

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18

Destexhe, Alain. "Crise économique et financement de la santé". Politique africaine 28, n. 1 (1987): 53–64. http://dx.doi.org/10.3406/polaf.1987.5131.

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La santé a une dimension économique et la crise actuelle appelle une révision des stratégies sanitaires, dans le sens d’une meilleure allocation des ressources. On se trouve devant une alternative cruelle : ou des services gratuits accessibles à tous mais démunis de tout, ou des services partiellement payants susceptibles de fournir un minimum de prestations.
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19

Ma, Lu, Xiangming Wen, Luhan Wang, Zhaoming Lu, Raymond Knopp e Irfan Ghauri. "A Biological Model for Resource Allocation and User Dynamics in Virtualized HetNet". Wireless Communications and Mobile Computing 2018 (27 settembre 2018): 1–11. http://dx.doi.org/10.1155/2018/1745904.

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Virtualization technology is considered an effective measure to enhance resource utilization and interference management via radio resource abstraction in heterogeneous networks (HetNet). The critical challenge in wireless virtualization is virtual resource allocation on which substantial works have been done. However, most existing researches on virtual resource allocation focus on improving total utility. Different from the existing works, we investigate the dynamic-aware virtual radio resource allocation in virtualization based HetNet considering utility and fairness. A virtual radio resource management framework is proposed, where the radio resources of different physical networks are virtualized into a virtual resource pool and mobile virtual network operators (MVNOs) compete for virtual resources from the pool to provide service to users. A virtual radio resource allocation algorithm based on biological model is developed, considering system utility, fairness, and dynamics. Simulation results are provided to verify that the proposed virtual resource allocation algorithm not only converges within a few iterations, but also achieves a better trade-off between total utility and fairness than existing algorithm. Besides, it can also be utilized to analyze the population dynamics of system.
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20

Shin, Jung-Chae, Seung-Hwa Min, Ho-Shin Cho e Youn-Seon Jang. "Efficient Radio Resource Allocation for Cognitive Radio Based Multi-hop Systems". Journal of Korean Institute of Communications and Information Sciences 37, n. 5A (30 maggio 2012): 325–38. http://dx.doi.org/10.7840/kics.2012.37a.5.325.

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21

Alsenwi, Madyan, Kitae Kim e Choong Seon Hong. "Radio Resource Allocation in 5G New Radio: A Neural Networks Approach". Journal of KIISE 46, n. 9 (30 settembre 2019): 961–67. http://dx.doi.org/10.5626/jok.2019.46.9.961.

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22

Tong, Shiyuan, Yun Liu, Hsin-Hung Cho, Hua-Pei Chiang e Zhenjiang Zhang. "Joint radio resource allocation in fog radio access network for healthcare". Peer-to-Peer Networking and Applications 12, n. 5 (18 dicembre 2018): 1277–88. http://dx.doi.org/10.1007/s12083-018-0707-4.

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23

Almalfouh, S. M., e Gordon L. Stüber. "Interference-Aware Radio Resource Allocation in OFDMA-Based Cognitive Radio Networks". IEEE Transactions on Vehicular Technology 60, n. 4 (maggio 2011): 1699–713. http://dx.doi.org/10.1109/tvt.2011.2126613.

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Ahmad, Ayaz, Sadiq Ahmad, Mubashir Husain Rehmani e Naveed Ul Hassan. "A Survey on Radio Resource Allocation in Cognitive Radio Sensor Networks". IEEE Communications Surveys & Tutorials 17, n. 2 (2015): 888–917. http://dx.doi.org/10.1109/comst.2015.2401597.

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Etner, Johanna. "Allocation optimale des ressources et préférences à la Selden-Kreps et Porteus". Revue économique 49, n. 4 (1998): 967–87. http://dx.doi.org/10.3406/reco.1998.410026.

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Etner, Johanna. "Allocation optimale des ressources et préférences à la Selden-Kreps et Porteus". Revue économique 49, n. 4 (luglio 1998): 967. http://dx.doi.org/10.2307/3502604.

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27

Lajoie, Andrée. "La macro-allocation des ressources et le droit aux services de santé". Revue de droit. Université de Sherbrooke 20, n. 2 (1990): 231–48. http://dx.doi.org/10.17118/11143/13554.

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Etner, Johanna. "Allocation optimale des ressources et préférences à la Selden-Kreps et Porteus". Revue économique 49, n. 4 (1 luglio 1998): 967–87. http://dx.doi.org/10.3917/reco.p1998.49n4.0967.

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Lajoie, Andrée. "LA MACRO-ALLOCATION DES RESSOURCES ET LE DROIT AUX SERVICES DE SANTE". Revue de droit de l'Université de Sherbrooke 20, n. 2 (1990): 231. http://dx.doi.org/10.7202/1108594ar.

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Liu, Jing Xue, Zhi Bo Li e Hong Li. "Dynamic Allocation of Radio Frequency in the Battlefield Environment". Applied Mechanics and Materials 197 (settembre 2012): 496–501. http://dx.doi.org/10.4028/www.scientific.net/amm.197.496.

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Dynamic allocation of Radio Frequency (Hereafter called “RF”) is critical in the battlefield spectrum management. The article analyzes the conventional method of RF dynamic allocation in the battlefield environment, and set up the mathematic model of the RF dynamic allocation by using the results of spectrum detected in battlefield. It designs the algorithms with the combination of Genetic Algorithms and Tabu Search Algorithms. The simulation experiment proves the high efficiency of hybrid algorithms and it suit for solving the RF dynamic allocation problem in the battlefield environment.
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Husar, Andrej, Peter Cepel, Peter Brida e Vladimir Wieser. "Radio Resource Allocation in Mobile Communication Systems". Communications - Scientific letters of the University of Zilina 7, n. 4 (31 dicembre 2005): 66–68. http://dx.doi.org/10.26552/com.c.2005.4.66-68.

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Helmy, Maram, Mohamed S. Hassan e Mahmoud H. Ismail. "Spectrum Allocation Techniques for Cognitive Radio Networks". IEEE Access 10 (2022): 28180–93. http://dx.doi.org/10.1109/access.2022.3157340.

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Zhao, Zhijin, Zhen Peng, Shilian Zheng e Junna Shang. "Cognitive radio spectrum allocation using evolutionary algorithms". IEEE Transactions on Wireless Communications 8, n. 9 (settembre 2009): 4421–25. http://dx.doi.org/10.1109/twc.2009.080939.

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Jain, Madhu. "Channel allocation policy in cellular radio network". Applied Mathematical Modelling 29, n. 1 (gennaio 2005): 65–83. http://dx.doi.org/10.1016/j.apm.2004.07.003.

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Liang, Jui-Chi, e Jyh-Cheng Chen. "Resource Allocation in Cognitive Radio Relay Networks". IEEE Journal on Selected Areas in Communications 31, n. 3 (marzo 2013): 476–88. http://dx.doi.org/10.1109/jsac.2013.130313.

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Zhang, Rui, Ying-chang Liang e Shuguang Cui. "Dynamic Resource Allocation in Cognitive Radio Networks". IEEE Signal Processing Magazine 27, n. 3 (maggio 2010): 102–14. http://dx.doi.org/10.1109/msp.2010.936022.

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Wang, Qinhui, Baoliu Ye, Tianyin Xu, Sanglu Lu e Song Guo. "Approximately Truthful Mechanisms for Radio Spectrum Allocation". IEEE Transactions on Vehicular Technology 64, n. 6 (giugno 2015): 2615–26. http://dx.doi.org/10.1109/tvt.2014.2345418.

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Mishra, Mangala Prasad, Sunil Kumar Singh e Deo Prakash Vidyarthi. "Opportunistic Channel Allocation Model in Collocated Primary Cognitive Network". International Journal of Mathematical, Engineering and Management Sciences 5, n. 5 (1 ottobre 2020): 995–1012. http://dx.doi.org/10.33889/ijmems.2020.5.5.076.

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The growing demand of radio spectrum to facilitate the primary/secondary users in a cellular network is a challenging task. Many channel allocation models, applying cognition, have been proposed to increase the radio spectrum utilization. The proposed model peruses three types of users: primary users (PUs), opportunistic primary users (OPUs), and secondary users (SUs) that use the radio resources in collocated primary base stations. Out of these users, the opportunistic primary users and secondary users may request for handover as per their requirements. The objective of the model is to enhance the radio spectrum utilization by the opportunistic utilization of radio resources by OPUs and by enabling cognitive radio base stations to collect free channel information dynamically. The cognitive radio base station maintains the centralized free channel at collocated primary base stations to facilitate the SUs opportunistically. The proposed channel allocation technique maintains the Quality of Experience (QoE) of the users as well. The performance analysis of the model is done by simulation which diversifies the importance of the proposed model in the view of minimum blocked services.
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de Guise, Jacques. "Langue de diffusion et ressources publicitaires des media". Articles 13, n. 1 (12 aprile 2005): 91–105. http://dx.doi.org/10.7202/055560ar.

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Les mass média prennent une part de plus en plus grande dans la production et la diffusion des œuvres culturelles et de l'information dans notre société. Les ressources financières qui supportent ces média deviennent alors, pour une part de plus en plus importante, les ressources même de la culture. Dans notre système actuel de diffusion, les média vivent d'abord et avant tout de publicité. Certes ils ne vivent pas uniquement de publicité : en radio et en télévision nous avons instauré un système où l'État intervient dans le financement des stations ; dans les journaux, le public lecteur fournit directement à peu près 35% des recettes brutes du médium qu'il achète. Il n'en demeure pas moins que ce sont les commanditaires qui financent la part la plus importante de nos média, au point que sans eux l'existence même de ces derniers serait compromise. Ce sont ces ressources publicitaires qui font l'objet de notre analyse. Nous essayerons de voir quelle est la part faite aux principaux média francophones et anglophones du Canada.
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Razmi, Shirin, e Naser Parhizgar. "Adaptive resources assignment in OFDM-based cognitive radio systems". International Journal of Electrical and Computer Engineering (IJECE) 9, n. 3 (1 giugno 2019): 1935. http://dx.doi.org/10.11591/ijece.v9i3.pp1935-1943.

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Spectrum efficiency of orthogonal frequency division multiplexing (OFDM)-based cognitive radio (CR) systems can be improved by adaptive resources allocation. In resources allocation, transmission resources such as modulation level and transmission power are adaptively assigned based on channel variations. The goal of this paper is maximize the total transmission rate of secondary user (SU). Hence, we investigate adaptive power and modulation allocation to achieve this purpose. For power allocation, we investigate optimal and conventional methods and then introduce a novel suboptimal algorithm to calculate the transmission power of each subcarrier. In addition, for adaptive modulation, we consider two kinds of modulations including multi-quadrature amplitude modulation (MQAM) and multi-phase-shift keying (MPSK). Also, simulation results are indicated the performance of our algorithm.
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Bergeron, Richard. "La restructuration de l’habitat au Burkina-Faso : un moyen pour la révolution". I. Politiques d’État et stratégies de survie : l’enjeu du logement, n. 17 (18 dicembre 2015): 43–53. http://dx.doi.org/10.7202/1034367ar.

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Un des moyens d’implanter la révolution au Burkina-Faso (ancienne Haute-Volta) a consisté à restructurer les secteurs d’habitat spontané de la capitale, Ouagadougou, où loge 60 % de la population. Pour résoudre les problèmes d’habitat des couches populaires, le régime burkinabé a misé sur une approche collective au logement, visant à faire émerger une conscience collective de l’habitat. Mais des blocages ont empêché sa stratégie de se réaliser : blocages au point de vue de l’interprétation des objectifs par les résidants, blocages liés à l’ampleur des ressources humaines, techniques et logistiques nécessaires à l’entreprise, mauvaise allocation des ressources, gaspillage. Plus fondamentalement, c’est le projet collectif d’habitat, l’émergence d’une conscience collective de l’habitat, qui risque de ne pouvoir se réaliser : qu’adviendra-t-il de la révolution burkinabé si elle devait échouer sur une composante aussi critique de sa stratégie ?
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42

Yang, Xiao Long, Lin Ma e Xue Zhi Tan. "Power-Weight Allocation Algorithm for OFDM-Based Cognitive Radio System". Advanced Materials Research 546-547 (luglio 2012): 932–36. http://dx.doi.org/10.4028/www.scientific.net/amr.546-547.932.

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Cognitive Radio (CR) has been proposed as one of the most promising technologies to provide efficient utilization of the limited wireless spectrum. In this paper, we investigate the power allocation for CR system based on orthogonal frequency division multiplexing (OFDM), and an improved allocation algorithm called power-weight algorithm is proposed. This algorithm performs initial allocation via Lagrange multiplier method, and then accomplishes second allocation based on power weight obtained in initial allocation. The analytical results reveal that the total transmission rate of all subcarriers is much closer to the optimal algorithm (i.e. the greedy algorithm) than the water-level algorithm, the Krongold algorithm and adaptive water-filling algorithm, subject to transmit power constraint and bit error rate (BER) constraint. These algorithms are all based on water-filling thought. Finally, simulation results verify our analysis.
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43

Sun, Yaohua, Mugen Peng, Shiwen Mao e Shi Yan. "Hierarchical Radio Resource Allocation for Network Slicing in Fog Radio Access Networks". IEEE Transactions on Vehicular Technology 68, n. 4 (aprile 2019): 3866–81. http://dx.doi.org/10.1109/tvt.2019.2896586.

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44

Han, Bin, Ying Luo, Min Zeng e Hong Jiang. "Spectrum-Efficient Resource Allocation in Multi-Radio Multi-Hop Cognitive Radio Networks". Sensors 19, n. 20 (16 ottobre 2019): 4493. http://dx.doi.org/10.3390/s19204493.

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The multi-hop cognitive radio network (CRN) has attracted much attention in industry and academia because of its seamless wireless coverage by forming multi-hop links and high spectrum utilization of cognitive radio (CR) technology. Using multi-slot statistical spectrum status information (SSI), this work investigates the average spectrum efficiency (SE) of a multi-radio multi-hop (MRMH) CRN where each hop is permitted to use different spectra and long-distance hops can reuse the same idle primary user (PU) spectrum. Faced with the modeled SE problem, which is a complex non-convex fractional mixed integer nonlinear programming (MINLP) problem, the optimal spectrum and power allocation for multi-hop links in multi-slot and multi-channel scenarios can be obtained with the proposed successive multi-step convex approximation scheme (SMCA). As shown through computational complexity and simulation analysis, SMCA can obtain an approximate lower bound of the optimal solution for the modeled SE problem with a lower computational cost. Furthermore, some potential relationships between network performance and spectrum idle rate can be easily discussed with SMCA, which can provide some sensible deployment strategies for the MRMH CRN in future multi-slot scenarios.
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45

Tsiropoulos, Georgios I., Octavia A. Dobre, Mohamed Hossam Ahmed e Kareem E. Baddour. "Radio Resource Allocation Techniques for Efficient Spectrum Access in Cognitive Radio Networks". IEEE Communications Surveys & Tutorials 18, n. 1 (2016): 824–47. http://dx.doi.org/10.1109/comst.2014.2362796.

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46

El Misilmani, H. M., M. Y. Abou-Shahine, Y. Nasser e K. Y. Kabalan. "Recent Advances on Radio-Frequency Design in Cognitive Radio". International Journal of Antennas and Propagation 2016 (2016): 1–16. http://dx.doi.org/10.1155/2016/9878475.

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With the growth of mobile data applications, the spectrum allocation is becoming very scarce. To ease congestion and boost speeds, cognitive radio (CR) is currently seen as a major solution and expected to be the key player in the new wireless technologies. In this paper, we will start by introducing the cognitive radio systems, followed by exploring the challenges in designing RF engine, along with an investigation of its antennas, amplifiers, oscillators, and the components that are expected to operate over a wide range of frequencies.
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47

Yang, Zhou, Wenqian Jiang e Gang Li. "Resource Allocation for Green Cognitive Radios: Energy Efficiency Maximization". Wireless Communications and Mobile Computing 2018 (5 luglio 2018): 1–16. http://dx.doi.org/10.1155/2018/1327030.

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Green cognitive radios are promising in future wireless communications due to high energy efficiency. Energy efficiency maximization problems are formulated in delay-insensitive green cognitive radio and delay-sensitive green cognitive radio. The optimal resource allocation strategies for delay-insensitive green cognitive radio and delay-sensitive green cognitive radio are designed to maximize the energy efficiency of the secondary user. The peak interference power and the average/peak transmit power constraints are considered. Two algorithms based on the proposed resource allocation strategies are proposed to solve the formulated problems. Simulation results show that the maximum energy efficiency of the secondary user achieved under the average transmit power constraint is higher than that achieved under the peak transmit power constraint. It is shown that the design of green cognitive radio should take the tradeoff between its complexity and its achievable maximum energy efficiency into consideration.
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48

Gougeon, Patrick. "Assurance et diversification". L'Actualité économique 63, n. 2-3 (27 gennaio 2009): 187–99. http://dx.doi.org/10.7202/601417ar.

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Résumé Le domaine du risk management se limite traditionnellement aux risques purs, par opposition aux risques spéculatifs qui proviennent des aléas du marché. L’objectif de cet article est de mettre en évidence la perte d’efficience qui peut résulter d’une gestion cloisonnée et indépendante de ces deux catégories de risques. Nous proposons un modèle global, inspiré de l’approche portefeuille, au sein duquel différents types d’actions influençant le niveau de risque de la firme sont envisagées simultanément : allocation des ressources entre plusieurs activités, choix d’une structure financière, achat d’assurance. Ce modèle permet d’étudier les arbitrages entre les différentes modalité de réduction du risque. Des conclusions précises sont énoncées, elles concernent principalement la détermination du budget assurances et son allocation.
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49

R G, Umesh, Sushil Kumar G N, Santhosh K, Suraksha M S e Dr Praveen Kumar K V. "Radio Resource Allocation for 5G Network Using Deep Reinforcement Learning". International Journal for Research in Applied Science and Engineering Technology 11, n. 3 (31 marzo 2023): 677–83. http://dx.doi.org/10.22214/ijraset.2023.49468.

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Abstract: Resource allocation is a critical task in 5Gnetworks that determines how network resources are assigned to different devices and services. Traditional methods rely on predefined rules or heuristics, which may not always be optimal. Deep reinforcement learning (DRL)is a promising approach for radio resource allocation in 5Gnetworks as it can learn to optimize resource allocation based on feedback from the network. In DRL, an agent learns to make decisions based on rewards and penalties received from the environment. In radio resource allocation, the agent would learn to allocate resources, such as frequency bands and power levels, to different devices and services to maximize some performance metric, such asthroughput or energy efficiency. The main challenge in applying DRL to radio resource allocation is designing an appropriate reward function that incentivizes the agent to improve the performance metric while avoiding undesirable behavior. Additionally, the radio resource allocation problem is complex, requiring the agent to consider many variables and constraints, such as channel conditions, interference, and QoS requirements. To address this, researchers have proposed various techniques such as hierarchical RL, multi-agent RL, and curriculum learning. Despite the challenges, DRL has shown promising results inradio resource allocation for 5G networks. It has outperformed traditional methods in some scenarios, especially when network conditions are dynamic and unpredictable. However, further research is necessary to explore the scalability and robustness of DRL-based approaches in practical 5G networks. In this method we suggest an algorithm for voice and data carriers in sub-6 GHz and millimeter wave (mmWave) frequencies respectively. The mmWave ranges between 30GHz to 300GHz
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50

Al-Medhwahi, Mohammed, Fazirulhisyam Hashim, Borhanuddin Mohd Ali, A. Sali e Abdulsalam Alkholidi. "Resource allocation in heterogeneous cognitive radio sensor networks". International Journal of Distributed Sensor Networks 15, n. 7 (luglio 2019): 155014771985194. http://dx.doi.org/10.1177/1550147719851944.

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Cognitive radio sensor networks offer a promising means of meeting rapidly expanding demand for wireless sensor network applications in new monitoring and objects tracking fields. Several challenges, particularly in terms of quality of service provisioning, arise because of the inherited capability-limitation of end-sensor nodes. In this article, an efficient resource allocation scheme, improved Pliable Cognitive Medium Access Protocol, is proposed to tackle multilevel of heterogeneity in cognitive radio sensor networks. The first level is the network’s application heterogeneity, and the second level is the heterogeneity of the radio environment. The proposed scheme addresses scheduling and radio channel allocation issues. Allocation-decision making is centralized, whereas spectrum sensing is distributed, thereby increasing efficiency and limiting interference. Despite the limited capabilities of the sensor’s networks, the effectiveness of the proposed scheme also includes increasing the opportunity to utilize a wider range of the radio spectrum. improved Pliable Cognitive Medium Access protocol is quite appropriate for critical communications that gain attention in the next 5G of wireless networks. Simulation results and the comparison of the proposed protocol with other protocols indicate the robust performance of the proposed scheme. The results reveal the significant effectiveness, with only a slight trade-off in terms of complexity.
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