5 resultados para closely spaced antennas

em Digital Commons at Florida International University


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This work is directed towards optimizing the radiation pattern of smart antennas using genetic algorithms. The structure of the smart antennas based on Space Division Multiple Access (SDMA) is proposed. It is composed of adaptive antennas, each of which has adjustable weight elements for amplitudes and phases of signals. The corresponding radiation pattern formula available for the utilization of numerical optimization techniques is deduced. Genetic algorithms are applied to search the best phase-amplitude weights or phase-only weights with which the optimal radiation pattern can be achieved. ^ One highlight of this work is the proposed optimal radiation pattern concept and its implementation by genetic algorithms. The results show that genetic algorithms are effective for the true Signal-Interference-Ratio (SIR) design of smart antennas. This means that not only nulls can be put in the directions of the interfering signals but also simultaneously main lobes can be formed in the directions of the desired signals. The optimal radiation pattern of a smart antenna possessing SDMA ability has been achieved. ^ The second highlight is on the weight search by genetic algorithms for the optimal radiation pattern design of antennas having more than one interfering signal. The regular criterion for determining which chromosome should be kept for the next step iteration is modified so as to improve the performance of the genetic algorithm iteration. The results show that the modified criterion can speed up and guarantee the iteration to be convergent. ^ In addition, the comparison between phase-amplitude perturbations and phase-only perturbations for the radiation pattern design of smart antennas are carried out. The effects of parameters used by the genetic algorithm on the optimal radiation pattern design are investigated. Valuable results are obtained. ^

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The current mobile networks don't offer sufficient data rates to support multimedia intensive applications in development for multifunctional mobile devices. Ultra wideband (UWB) wireless technology is being considered as the solution to overcome data rate bottlenecks in the current mobile networks. UWB is able to achieve such high data transmission rates because it transmits data over a very large chunk of the frequency spectrum. As currently approved by the U.S. Federal Communication Commission it utilizes 7.5 GHz of spectrum between 3.1 GHz and 10.6 GHz. ^ Successful transmission and reception of information data using UWB wireless technology in mobile devices, requires an antenna that has linear phase, low dispersion and a voltage standing wave ratio (VSWR) ≤ 2 throughout the entire frequency band. Compatibility with an integrated circuit requires an unobtrusive and electrically small design. The previous techniques that have been used to optimize the performance of UWB wireless systems, involve proper design of source pulses for optimal UWB performance. The goal of this work is directed towards the designing of antennas for personal communication devices, with optimal UWB bandwidth performance. Several techniques are proposed for optimal UWB bandwidth performance of the UWB antenna designs in this Ph.D. dissertation. ^ This Ph.D. dissertation presents novel UWB antenna designs for personal communication devices that have been characterized and optimized using the finite difference time domain (FDTD) technique. The antenna designs reported in this research are physically compact, planar for low profile use, with sufficient impedance bandwidth (>20%), antenna input impedance of 50-Ω, and an omni-directional (±1.5 dB) radiation pattern in the operating bandwidth. ^

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In recent years, wireless communication infrastructures have been widely deployed for both personal and business applications. IEEE 802.11 series Wireless Local Area Network (WLAN) standards attract lots of attention due to their low cost and high data rate. Wireless ad hoc networks which use IEEE 802.11 standards are one of hot spots of recent network research. Designing appropriate Media Access Control (MAC) layer protocols is one of the key issues for wireless ad hoc networks. ^ Existing wireless applications typically use omni-directional antennas. When using an omni-directional antenna, the gain of the antenna in all directions is the same. Due to the nature of the Distributed Coordination Function (DCF) mechanism of IEEE 802.11 standards, only one of the one-hop neighbors can send data at one time. Nodes other than the sender and the receiver must be either in idle or listening state, otherwise collisions could occur. The downside of the omni-directionality of antennas is that the spatial reuse ratio is low and the capacity of the network is considerably limited. ^ It is therefore obvious that the directional antenna has been introduced to improve spatial reutilization. As we know, a directional antenna has the following benefits. It can improve transport capacity by decreasing interference of a directional main lobe. It can increase coverage range due to a higher SINR (Signal Interference to Noise Ratio), i.e., with the same power consumption, better connectivity can be achieved. And the usage of power can be reduced, i.e., for the same coverage, a transmitter can reduce its power consumption. ^ To utilizing the advantages of directional antennas, we propose a relay-enabled MAC protocol. Two relay nodes are chosen to forward data when the channel condition of direct link from the sender to the receiver is poor. The two relay nodes can transfer data at the same time and a pipelined data transmission can be achieved by using directional antennas. The throughput can be improved significant when introducing the relay-enabled MAC protocol. ^ Besides the strong points, directional antennas also have some explicit drawbacks, such as the hidden terminal and deafness problems and the requirements of retaining location information for each node. Therefore, an omni-directional antenna should be used in some situations. The combination use of omni-directional and directional antennas leads to the problem of configuring heterogeneous antennas, i e., given a network topology and a traffic pattern, we need to find a tradeoff between using omni-directional and using directional antennas to obtain a better network performance over this configuration. ^ Directly and mathematically establishing the relationship between the network performance and the antenna configurations is extremely difficult, if not intractable. Therefore, in this research, we proposed several clustering-based methods to obtain approximate solutions for heterogeneous antennas configuration problem, which can improve network performance significantly. ^ Our proposed methods consist of two steps. The first step (i.e., clustering links) is to cluster the links into different groups based on the matrix-based system model. After being clustered, the links in the same group have similar neighborhood nodes and will use the same type of antenna. The second step (i.e., labeling links) is to decide the type of antenna for each group. For heterogeneous antennas, some groups of links will use directional antenna and others will adopt omni-directional antenna. Experiments are conducted to compare the proposed methods with existing methods. Experimental results demonstrate that our clustering-based methods can improve the network performance significantly. ^

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The IRS is using various tools to attack the status of various so-called 'outside consultants" being used by hospitality firms. This article will provide some planning tips so that the hospitality firm can minimize its chances of having workers reclassified as employees.

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In his discussion - S Corporations Can Benefit Many Closely-Held Hospitality Firms - by John M. Tarras, Assistant Professor, School of Hotel, Restaurant & Institutional Management at Michigan State University, Assistant Professor Tarras initially offers: “Organization as an S corporation has many advantages for hospitality firms since passage of the Tax Reform Act of 1986. The author discusses those advantages and lists the disadvantages as well.” In the opening paragraphs Tarras alludes to the relationship between hospitality firms, S corporations, and the Tax Reform Act of 1986, and then defines what an S corporation is. “An S corporation is a form of business entity that combines many of the tax advantages of partnerships with the legal attributes of a corporation, including limited liability for its shareholders. Its name is obtained from a subchapter of the Internal Revenue Code. Except for tax purposes, the S corporation is treated in the same manner as any regular corporation. Like a partnership, income and losses for an S corporation are generally passed through directly to shareholders for inclusion on their individual returns. An S corporation thus avoids the double tax problem facing regular corporations.” There are certain criteria to be met and caveats to be avoided in qualifying for S corporation status. Tarras lists and cites these for you. “Due to the complicated nature of S corporations, the election may be inadvertently terminated if the eligibility requirements are violated,” Tarras expands and cites. As the article suggests at the outset, there are advantages and disadvantages to S corporation status; the author outlines some examples for you. “Traditionally, the S corporation has been used by hospitality firms wishing to avoid the "double tax" problem of a regular corporation,” Tarras informs you. “Regular corporations are taxed once at the corporate level, and again at the shareholder level when income is distributed to shareholders in the form of dividends.” Tarras advises you as to why an S corporation is an advantage in this situation. “Since the S corporation generally is not subject to any corporate taxes, it generally makes no difference whether distributions to shareholders of S corporations are characterized as compensation or dividends,” thus the double tax is avoided. This is just one such positive illustration. Assistant Professor Tarras wants you to know: “Perhaps the most important reason to consider the S corporation has to do with the downward revision of tax rates for both individuals and corporations.” He highlights a case study for you. Some of the disadvantages of S corporation affiliation are the caveats alluded to earlier. They include, “the limitation of an S corporation of 35 shareholders,” Tarras cites. “Also, there are limits as to who may own stock in an S corporation.” These are but two of the limitations of an S corporation. Tarras closes with a further glimpse of the down-sides of an S corporation.