6 research outputs found

    Building Management System for Supporting the repaired Building

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    Energy storage for updating of a new building represents an opportunity to estimate the costs that this issue should be considered in efficient buildings. Most old buildings have a lot of energy dissipations due to inappropriate control system and building components. According to the sustainable and durable development, repair of the buildings reduces energy consumption and improves the overall condition of the building. To attract the long-term saving of money and convenience of residents, technical innovation has been enhanced as a potential solution of this issue for many years and only computer tools are collected and their information is provided for required examinations. This paper explains improvement in the control and supervision of building services in Building Management System (BMS) and Building Information Modeling (BIM)

    Building Management System for Supporting the repaired Building

    Get PDF
    Energy storage for updating of a new building represents an opportunity to estimate the costs that this issue should be considered in efficient buildings. Most old buildings have a lot of energy dissipations due to inappropriate control system and building components. According to the sustainable and durable development, repair of the buildings reduces energy consumption and improves the overall condition of the building. To attract the long-term saving of money and convenience of residents, technical innovation has been enhanced as a potential solution of this issue for many years and only computer tools are collected and their information is provided for required examinations. This paper explains improvement in the control and supervision of building services in Building Management System (BMS) and Building Information Modeling (BIM)

    Self-Healing in LTE networks with unsupervised learning techniques

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    Recently the cellular networks are getting more complex in maintenance and network management, and rapidly growing in the number of users so that repairing and maintenance of the system are becoming more challenging and expensive. To solve the problems and maintain the system, operators depend on their experience but by increasing in type and density of the networks, this way will not operate as before. So Self-organizing network (SON) has been used in this study to solve these issues

    Self-Healing in LTE networks with unsupervised learning techniques

    Get PDF
    Recently the cellular networks are getting more complex in maintenance and network management, and rapidly growing in the number of users so that repairing and maintenance of the system are becoming more challenging and expensive. To solve the problems and maintain the system, operators depend on their experience but by increasing in type and density of the networks, this way will not operate as before. So Self-organizing network (SON) has been used in this study to solve these issues

    Design method for two-Stage CMOS operational amplifier applying load/miller capacitor compensation

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    CMOS operational amplifiers (Op-amp) are present integral components in various analog circuit systems. Adding frequency compensation elements is the only critical solution for avoiding Op-amp instability. This article presents a designed two-stage CMOS Op-amp using a miller capacitor, a nulling resistor, and a common-gate current buffer for compensation purposes. All the design parameters of the proposed Op-amp were determined based on the corresponding equations of gain, slew rate, phase margin, power dissipation, etc. In order to verify the parameter values, the developed Op-amp circuit was simulated in HSPICE, possessing two critical characteristics: Op-amp with miller capacitor and a robust bias circuit. Afterwards, the expected values from the theoretical section were compared with simulation results thus proving that the advanced method in this paper was validly designed and implemented. This technique promises a real-world scale Op-amp with high unity-gain, excessive input common-mode range voltage, reasonable gain bandwidth, and a practicable slew rate
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