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امام زرقانی کی سیرت نگاری کا اُسلوب و منہج تحقیقی جائزہ

Thesis Info

Author

شہناز کوثر

Supervisor

محمد ادریس لودھی

Program

Mphil

Institute

Bahauddin Zakariya University

City

ملتان

Degree Starting Year

2017

Language

Urdu

Keywords

دیگرائمہ و محدثینِ کرام

Added

2023-02-16 17:15:59

Modified

2023-02-19 12:20:59

ARI ID

1676732210837

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ہوائے دید کا چلنا تمھیں مبارک ہو

ہوائے دید کا چلنا تمھیں مبارک ہو
قفس زدوں کا مچلنا تمھیں مبارک ہو

ہمارے ہاتھ لگے ہو خریدیں کیوں نہ تمھیں
نگاہِ ناز پہ بکنا تمھیں مبارک ہو

میں حسن زادہ ہوں، کنعاں وطن سے آیا ہوں
کہ مجھ پہ تہمتیں دھرنا تمھیں مبارک ہو

مرا نصیب کہ مجھ پر نگاہ بھی نہ ہوئی
مرا وہ ہاتھ یوں ملنا تمھیں مبارک ہو

وہ اک نظر کہ شرابوں کے جام جیسی ہے
اب اس سے پینا ، بہکنا تمھیں مبارک ہو

ڈاکٹر اسرار احمد: بیسویں صدی کا عظیم مدرس و داعی قرآن

Dr. Israr Ahmed was a great thinker, intellectual and a reformer. He was diverse scholar and took inspiration from a great and diverse spectrum of sholars like Dr. Allama Iqbal and Dr. Rafiuddin; Abul Aa’la Maoudoodi and Abul Kalam Azad; Hameed uddin Farahi and Amin Ahsan Islahi and Sheikh ul Hind Maulana Mahmood ul Hasan and Shiekh ul Islam Maulana Shabbir Ahmed Usmani. His thought and wisdom was quite influenced by these people. We trace out this remarkable and renowned sholar’s rendered his educational, authorial and religious services. For this purpose Dr. Israr Ahmed started his mission with lecture of Quran. Soon, his lectures were well known throughout the country. He established a great institute namely ‘Markazi Anjuman e Khudaam ul Quran’ in Lahore in order to render educational, authorial and religious services in an organized manner. To spread reformative and preaching services in a better way, he established a party with the name of ‘Tanzeem e Islam Pakistan’In view of his great services, especially in the field of Holy Quran, we may mark him as great scholar of twentieth centur

Fixed Frequency Sliding Mode Control for Power Electronic Converters

In the modern era of industrialization, power electronic converters have gained key importance due to their wide range of applications such as; use in arc furnaces, in duction heating systems, variable speed drives of motors, power supplies of various electronic systems, fluorescent lamps, elevators and cooling systems. Furthermore, the low-cost proliferation of power electronic devices due to the technological de velopments in the semiconductor industry has made them an attractive choice for integrating renewable energy resources. They are the essential and integral part of the systems providing solutions to issues like voltage sag, swell, frequency reg ulation, current sharing among different renewable energy resources, power factor correction and voltage regulation in different types of micro-grids. In all the above-mentioned applications, the robustness of the system under dif ferent load and line conditions depend upon the control algorithm of the power electronic converters. This is why the research in the field of power electronics has been focused on the control of power converters during the last decade. Among different types of control techniques, Sliding Mode Control (SMC) is renowned for its disturbance rejection and parameter invariant nature which makes it an irre sistible choice for controlling such systems. However due to physical constraints of the switching components, ideal condition of infinite frequency cannot be sat isfied. This causes the system to operate at finite but time varying switching frequency which is a serious issue for power electronic converters as they consist of passive components whose size and value depends upon the switching frequency. Moreover, the time varying switching frequency degrades the power quality and causes electromagnetic interference (EMI) issues in case of grid connected power converters. In the first phase of this research, a fixed frequency sliding mode controller uti lizing an integral sliding manifold is designed to improve the dynamic response of the power converter regulating the grid voltage, in the presence of unknown x load condition and uncertain network parameter of the micro-grid. A special purpose test rig is designed to experimentally validate the results in comparison with conventional PI controllers. In the second phase of the research, the power quality issues regarding DC micro grids are addressed. Power quality issues have been widely discussed regarding AC power systems but discussion regarding DC power quality in micro-grids is rare in research community because in past power transmission was carried out using AC systems only. However, in the recent years DC grids and transmission has emerged as an attractive solution to integrate renewable energy resources. Hence, to enhance the power quality, a fixed frequency SMC is proposed with harmonic cancellation and chattering reduction, using a PI type sliding manifold. Experimental results are presented to validate the theoretical derivations using the test rig. Finally, a new method based upon filter extraction of the equivalent control is proposed to fix the switching frequency in power converters controlled by SMC. The technique is implemented on a boost converter and the results are presented in comparison with PWM-SMC. Rigorous mathematical analysis is provided along with experimental results to validate the proposed technique.