7,622 research outputs found

    Study of Network Traffic Analysis and Prediction

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    Network traffic analysis is the way toward chronicle, evaluating and examining system traffic with the end goal of execution, security as well as general system tasks and the executives. Analysis and prediction of network traffic has applications in wide far reaching set of zones and has recently pulled in noteworthy number of studies. Various types of trials are directed and condensed to distinguish different issues in existing PC arrange applications. System traffic examination and forecast is a proactive way to deal with guarantee secure, dependable and subjective system correspondence. Different systems are proposed and tested for analyzing system traffic including neural network based strategies to data mining methods. So also, different Linear and non-linear models are proposed for system traffic prediction. A few intriguing mixes of system examination and forecast strategies are actualized to achieve proficient and compelling outcomes [3]

    A REVIEW ON MODERN TECHNIQUES OF PHARMACEUTICAL ANALYSIS

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    Traditionally, pharmaceutical analysis referred to the chemical analysis of drug molecules. However, over the years, modern pharmaceutical analysis has evolved beyond this to encompass combination techniques, high-throughput technologies, chemometrics, microdosing studies, miniaturization, and nanotechnology. These analytical advances are now being employed in all stages of drug discovery and the focus of this review will be on how these technologies are being employed within this process. With new, improved and evolving technologies, as well as new applications for existing technology, the search for new drugs for the prevention and treatment of human disease

    Mutual Coupling Reduction in Microstrip Patch Antenna Array by simple I-Shaped DGS using Full Wave Electromagnetic Simulator

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    When a number of antennas are placed in an array formation, the mutual coupling between the array elements becomes a critical issue. The Microstrip Patch Antennas are useful in sending the onboard parameters to the ground, under different operating conditions. The main aim is to maintain the mutual coupling suppressing structure to the simplest form, while providing a great amount of reduction in the mutual coupling of patch antennas. The idea is to use a Defected Ground Structure (DGS), placed at the bottom of the substrate. It greatly reduces the mutual coupling between the antenna elements, thereby enhancing the antenna performance. The introduction of DGS does not affect other characteristics of the antenna array. The DGS and the normal patch antenna is simulated using CST (Computer Simulation Technology) antenna simulation software. Once an antenna design is finalized, their operational characteristics remains unchanged during the use. DOI: 10.17762/ijritcc2321-8169.150519

    Advanced Shift Register Design Using PSDRM Reversible Logic

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    Reversible logic is one of the most important issues at the moment, with the different areas like low power CMOS devices, quantum computing, nanotechnology, cryptography, optical computing, DNA Computing, digital signal processing (DSP) etc. This can be achieved using reversible logic. The main purpose for designing reversible logic is to minimize cost and throughput. Reversible logic considered as a computing model in which there is one-to-one scaling between their input and output. Power distribution is considered as one of the most important aspects while designing circuit. Reversible logic has become an encouraging technology in low power circuit design. That's because back logic uses only very less power, thus resulting in reduced power dissipation. In this report, we proposed a new reversible gate, and with the help of this gate we have designed our asserted D flip-flop by using the two reversible gates i.e. by using Fredkin and Feynman Gate. The proposed design is better in terms of the average power consumed, number of gates and garbage output than existing. In Shift Register, we introduce a reversible D flip-flop by using FRG and FG gate in the place of existing D flip-flop which used Sayem Gate. The asserted design consumes less energy compare to traditional circuitry. Here we use Pseudo expressions (PSDRM). By using this technology there is an improvement in the factors, such as number of transistors, garbage output, quantum cost and power

    Analysis and Design of Power Gated Low-Power, High Performance Latch Dynamic Double-Tail Comparator

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    This paper introduces an elite, low power dynamic hook comparator making utilization of energy gating system with the end goal of diminished power. The comparator has dependably been a heart of simple to advanced converters in VLSI circuits. The lessening in power utilization of comparator eventually diminishes the power utilization in ADC squares. The proposed configuration has been recreated on Tanner EDA at 180nm TSMC and accomplished up to 15% diminishment in power and 71% lessening on kickback clamour from the traditional plans and in view of the present outcomes and investigation. A new low power, elite comparator is proposed, where the circuit of a dynamic twofold tail comparator with power gating procedure is altered for low-power and quick operation even in little supply voltages. With no troubles in circuit plan and by including couple of transistors, the positive criticism amid the recovery is reinforced, which brings about amazingly lessened defer time. Post-design re-enactment brings about a 180nm CMOS innovation gave the examination comes about successfully. It is demonstrated that in the proposed dynamic comparator both the power utilization, defer time, kickback noise is altogether decreased

    Physico-chemical Properties of Water Samples from Manipur River System, India

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    Assessment of physico-chemical parameters were carried out during April 2008 to March 2009 from four rivers namely the Imphal, Iril, Thoubal and Manipur located in Manipur, a north-eastern State of India bordering Myanmar. Sites I, IV, V and VI were subjected to various anthropogenic activities of man, passing through the urban residential areas while sites II and III from Manipur river were located in a forested watershed and free from human disturbances. Maxima of TDS 870 mg/l, conductivity 467μS/cm, NO3-N 0.550 mg/l, PO4-P 0.068 mg/l and K 9.00 mg/l were recorded during rainy season while maxima of free CO2 22.3 mg/l, total alkalinity 168.0 mg/l, Chloride 42.63 mg/l and total hardness 136.0 mg/l were observed during summer from the rivers indicating degradation of water quality during rainy season than summer. Values of DO was below the minimum permissible limit (4.43 mg/l) and free CO2 beyond the maximum limit (22.30 mg/l) during summer season at site V .The values of the studied parameters were more during rainy season in Thoubal river followed by Imphal, Iril and Manipur rivers. The results indicated that most of the physico-chemical parameters from Manipur river system were within the WHO limits for drinking water and, therefore, may be suitable for domestic purposes. @ JASEM. J. Appl. Sci. Environ. Manage. December, 2010, Vol. 14 (4) 85 - 8

    Cloud Computing Issues and Benefits Modern Education

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    Cloud computing, a rapidly developing information technology has brought new chang

    Survey of Energy Efficient Clustering Mechanisms in Wireless Sensor Networks

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    Advancements in wireless communications and Micro-Electro-Mechanical structures have enabled the improvement of wireless sensor networks (WSN), which in flip have fostered the emergence of a plethora of programs in diverse fields together with agriculture, healthcare supervision, and transportation systems. However, because of the strength dilemma of battery-powered sensors, these packages nonetheless face a major energy issue that save you their giant adoption. In this thesis, we contributed to conquer this challenge via several contributions. In this paper we've got surveyed the various techniques to power efficient strategies in wi-fi sensor networks
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