997 resultados para Cooperative agricultural
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Cooperatives differ from other businesses in that they are owned by their patrons and net margins are distributed to patrons on the basis of use instead of capital investment. For financing, cooperatives often rely on allocated equities from retained patronage refunds. Retained patronage refunds are noncash allocations of net margins reinvested in a cooperative by patrons. Under an ideal program of equity formation, equity is held by patrons in proportion to patronage. Each patron’s share of financing the cooperative is equal to the share of benefits received. Equities of former patrons are retired as active patrons take on more of the responsibility of financing the organization.
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Recent progress in microelectronic and wireless communications have enabled the development of low cost, low power, multifunctional sensors, which has allowed the birth of new type of networks named wireless sensor networks (WSNs). The main features of such networks are: the nodes can be positioned randomly over a given field with a high density; each node operates both like sensor (for collection of environmental data) as well as transceiver (for transmission of information to the data retrieval); the nodes have limited energy resources. The use of wireless communications and the small size of nodes, make this type of networks suitable for a large number of applications. For example, sensor nodes can be used to monitor a high risk region, as near a volcano; in a hospital they could be used to monitor physical conditions of patients. For each of these possible application scenarios, it is necessary to guarantee a trade-off between energy consumptions and communication reliability. The thesis investigates the use of WSNs in two possible scenarios and for each of them suggests a solution that permits to solve relating problems considering the trade-off introduced. The first scenario considers a network with a high number of nodes deployed in a given geographical area without detailed planning that have to transmit data toward a coordinator node, named sink, that we assume to be located onboard an unmanned aerial vehicle (UAV). This is a practical example of reachback communication, characterized by the high density of nodes that have to transmit data reliably and efficiently towards a far receiver. It is considered that each node transmits a common shared message directly to the receiver onboard the UAV whenever it receives a broadcast message (triggered for example by the vehicle). We assume that the communication channels between the local nodes and the receiver are subject to fading and noise. The receiver onboard the UAV must be able to fuse the weak and noisy signals in a coherent way to receive the data reliably. It is proposed a cooperative diversity concept as an effective solution to the reachback problem. In particular, it is considered a spread spectrum (SS) transmission scheme in conjunction with a fusion center that can exploit cooperative diversity, without requiring stringent synchronization between nodes. The idea consists of simultaneous transmission of the common message among the nodes and a Rake reception at the fusion center. The proposed solution is mainly motivated by two goals: the necessity to have simple nodes (to this aim we move the computational complexity to the receiver onboard the UAV), and the importance to guarantee high levels of energy efficiency of the network, thus increasing the network lifetime. The proposed scheme is analyzed in order to better understand the effectiveness of the approach presented. The performance metrics considered are both the theoretical limit on the maximum amount of data that can be collected by the receiver, as well as the error probability with a given modulation scheme. Since we deal with a WSN, both of these performance are evaluated taking into consideration the energy efficiency of the network. The second scenario considers the use of a chain network for the detection of fires by using nodes that have a double function of sensors and routers. The first one is relative to the monitoring of a temperature parameter that allows to take a local binary decision of target (fire) absent/present. The second one considers that each node receives a decision made by the previous node of the chain, compares this with that deriving by the observation of the phenomenon, and transmits the final result to the next node. The chain ends at the sink node that transmits the received decision to the user. In this network the goals are to limit throughput in each sensor-to-sensor link and minimize probability of error at the last stage of the chain. This is a typical scenario of distributed detection. To obtain good performance it is necessary to define some fusion rules for each node to summarize local observations and decisions of the previous nodes, to get a final decision that it is transmitted to the next node. WSNs have been studied also under a practical point of view, describing both the main characteristics of IEEE802:15:4 standard and two commercial WSN platforms. By using a commercial WSN platform it is realized an agricultural application that has been tested in a six months on-field experimentation.
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The objective of the research is to analyze the functioning of the fruit and vegetables cooperatives at regional level (Emilia Romagna), with particular reference to the mutuality purpose that distinguishes them, the institutional structure and the management. On the one hand the research intends to provide a definition and an explanation of the real operation/functioning of the mechanism of the mutualism and governance and on the other hand, to study the internal managerial mechanisms and the levels of functioning of the fruit and vegetable cooperatives with the purpose to provide significant indications on their real economic performance. Following a brief analysis of the market context in which the agricultural cooperatives operate, the works will proceed with a deep analysis of a sample of cooperatives regarding the structure and the forms of organization of the members and those aspects can be connected to the following dynamics: - valorisation of the social contribution (effective levels of internal mutuality); - economic efficiency (and consequent economic-financial trends); - levels of internal efficiency and productivity. The applied methodology is based in a first phase on the reclassification, elaboration and analysis of the balance of the sample enterprises. In this phase the research will give a first insight into the economic-financial and capital investment situation of the fruit and vegetable cooperatives trying to concentrate on the implemented and on the possible financing mechanisms and on the levels of efficiency and effectiveness of the productivity achieved. Subsequently the works will proceed with the realization of a direct survey in form of questionnaires to submit to the responsible persons of the sample cooperatives, in order to highlight/emphasize the critical points in respect to the three main arguments of research: mutuality, governance, management.
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This is LUCER-MC Report #03-11 Published by Lincoln University Cooperative Extension and Research (LUCER) Media Center; 900 Chestnut Street, 301 Allen Hall; Jefferson City, MO 65101.
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This is LUCER-MC Report #04-12 Published by Lincoln University Cooperative Extension and Research (LUCER) Media Center; 900 Chestnut Street, 301 Allen Hall; Jefferson City, MO 65101.
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Volume 1, Issue 3
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Volume 1, Issue 2
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Volume 1, Issue 5
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Volume 1, Issue 4
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Volume 1, Issue 6
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This is LUCER-MC Report #01-14 Published by Lincoln University Cooperative Extension and Research (LUCER) Media Center; 900 Chestnut Street, 301 Allen Hall; Jefferson City, MO 65101.
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Volume 2, Issue 1
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This is LUCER-MC Report #01-2014
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Description based on: 1950.
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Mode of access: Internet.