以80c196kb為核心的智能無功補償裝置.doc
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以80c196kb為核心的智能無功補償裝置,以80c196kb為核心的智能無功補償裝置全文47 頁21570字 敘述詳盡摘 要 隨著電力系統(tǒng)負荷的增加,對無功功率的需求也日益增加。由于無功功率在電網(wǎng)中傳輸會造成網(wǎng)絡損耗以及受電端電壓下降,因此大量的無功功率在電網(wǎng)中傳輸必然使電能利用率大大降低且嚴重影響供電質(zhì)量。在電網(wǎng)中的適當位置裝設無功補償裝置成為滿足電網(wǎng)無功需...
內(nèi)容介紹
此文檔由會員 周伯通 發(fā)布以80C196KB為核心的智能無功補償裝置
全文47 頁21570字 敘述詳盡
摘 要
隨著電力系統(tǒng)負荷的增加,對無功功率的需求也日益增加。由于無功功率在電網(wǎng)中傳輸會造成網(wǎng)絡損耗以及受電端電壓下降,因此大量的無功功率在電網(wǎng)中傳輸必然使電能利用率大大降低且嚴重影響供電質(zhì)量。在電網(wǎng)中的適當位置裝設無功補償裝置成為滿足電網(wǎng)無功需求的必要手段。
論文分析了無功補償?shù)脑砗湍康?,針對當前低壓無功補償?shù)那闆r,給出了無功補償?shù)碾x線優(yōu)化方法,并結合輻射狀電網(wǎng)和非輻射狀電網(wǎng)得出相應的補償容量。在實時補償方面,針對不同的負荷狀況,根據(jù)配電網(wǎng)絡電容器組優(yōu)化投切模型,從實時的角度研究電容器組的投切,推導出電容器組實時投切的線性整數(shù)模型以及這種模型的解法。對一些無功變化迅速的負荷,則給出直接以無功功率做控制量的簡單模型。
設計了一套以80C196KB為核心的智能無功補償裝置,該裝置以無功功率最小作為控制策略,以電壓作為約束條件。論文闡述了該控制器的硬件原理及電路圖和軟件框圖。
關鍵詞:無功補償,有功損耗,補償策略,諧波,80C196KB單片機
Abstract
Due to increasing loads of electric power system, demand on reactive power was also increasing. Because transmission of reactive power in electric network can lead to network loss and step-down voltage, transmission of a great deal of reactive power necessarily resulted in reduction of using efficiency of power energy and severely effected voltage quality. It became necessary means that reactive power compensation devices were installed in proper position of electric network.
This paper introduced the principle and objective of var compensation, present the model of reactive power optimization planning about low voltage system. According as radiant or other power system, the compensatory capability was gained. On real time compensation, aimed at different load condition, based the former research. This paper deduced the linear integer model for capacitor switching and gave the resolving. And introduced the simple model direct on reactive power to some load where the reactive power changed rapidly.
An intelligent device was designed for var compensation. The device took the 80C196KB single chip micro-controller as main control chip, took reactive power as control target and took voltage as restricting condition. In this paper, it expounded the principle and electric circuits of hardware and the design of software.
Key words: Var Compensation, Power Loss, Strategy of Compensation, Harmonic Currents,80C196KB Single Chip
目 錄
1 緒論………………………………………………………………………1
1.1 課題背景…………………………………………………………1
1.2 國內(nèi)外對無功功率研究…………………………………………5
1.3 負載無功補償?shù)哪康暮鸵饬x……………………………………6
1.4 目前負荷補償?shù)牟蛔恪?
1.5 本設計的主要工作………………………………………………9
2 低壓終端無功補償?shù)睦碚摵脱a償策略…………………………………10
2.1 負荷無功補償原理………………………………………………10
2.1.1 感性負載端并聯(lián)電容器補償……………………………10
2.1.2 感性負載端并聯(lián)同步補償機……………………………12
2.1.3 感性負載串聯(lián)電容器提高功率因數(shù)進行無功補償……13
2.2 低壓無功補償方式…………………………………………14
2.2.1 線路補償…………………………………………………14
2.2.2 終端補償…………………………………………………15
2.3 低壓無功補償?shù)暮侠砼渲迷瓌t…………………………………17
2.4 低壓無功補償策略研究…………………………………………18
2.4.1 離線補償策略……………………………………………19
2.4.2 實時動態(tài)補償策略………………………………………22
3 控制系統(tǒng)的硬件設計……………………………………………………25
3.1 系統(tǒng)硬件總體結構設計…………………………………………25
3.1.1 80C196KB芯片的特點……………………………………25
3.1.2 控制器存儲空間擴展……………………………………26
3.2 系統(tǒng)硬件的各部分組成及功能…………………………………27
3.2.1 鍵盤電路…………………………………………………27
3.2.2 顯示電路…………………………………………………28
3.2.3 通信接口電路……………………………………………29
3.2.4 數(shù)據(jù)采集通道電路………………………………………30
3.2.5 電容器組投切電路………………………………………32
4 控制系統(tǒng)的軟件設計……………………………………………………35
4.1 系統(tǒng)總體軟件設計………………………………………………35
4.2 鍵盤顯示接口軟件設計…………………………………………36
4.3 通信軟件設計……………………………………………………37
4.4 數(shù)據(jù)采集軟件設計………………………………………………38
4.5 計算部分軟件設計………………………………………………38
5 控制系統(tǒng)的抗干擾設計…………………………………………………40
6 結論………………………………………………………………………42
致謝…………………………………………………………………………43
參考文獻……………………………………………………………………44
參考文獻
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