結(jié)合單片機(jī)和M a t l a b 兩者的優(yōu)點(diǎn),基于事件驅(qū)動(dòng)的中斷通信機(jī)制,提出一種Matlab 環(huán)境下PC 機(jī)與
單片機(jī)實(shí)時(shí)串行通信及數(shù)據(jù)處理的方法;完成單片機(jī)數(shù)據(jù)采集系統(tǒng)與PC 機(jī)的RS-232/RS-485 串行通
信及其通信數(shù)據(jù)的分析處理、文件存儲(chǔ)、F I R 濾波及圖形顯示;簡(jiǎn)化系統(tǒng)開(kāi)發(fā)流程,提高開(kāi)發(fā)效率。
該方法已成功應(yīng)用于一個(gè)P I C 1 6 F 8 7 6 單片機(jī)應(yīng)用系統(tǒng)實(shí)例之中
Floyd-Warshall算法描述
1)適用范圍:
a)APSP(All Pairs Shortest Paths)
b)稠密圖效果最佳
c)邊權(quán)可正可負(fù)
2)算法描述:
a)初始化:dis[u,v]=w[u,v]
b)For k:=1 to n
For i:=1 to n
For j:=1 to n
If dis[i,j]>dis[i,k]+dis[k,j] Then
Dis[I,j]:=dis[I,k]+dis[k,j]
c)算法結(jié)束:dis即為所有點(diǎn)對(duì)的最短路徑矩陣
3)算法小結(jié):此算法簡(jiǎn)單有效,由于三重循環(huán)結(jié)構(gòu)緊湊,對(duì)于稠密圖,效率要高于執(zhí)行|V|次Dijkstra算法。時(shí)間復(fù)雜度O(n^3)。
考慮下列變形:如(I,j)∈E則dis[I,j]初始為1,else初始為0,這樣的Floyd算法最后的最短路徑矩陣即成為一個(gè)判斷I,j是否有通路的矩陣。更簡(jiǎn)單的,我們可以把dis設(shè)成boolean類型,則每次可以用“dis[I,j]:=dis[I,j]or(dis[I,k]and dis[k,j])”來(lái)代替算法描述中的藍(lán)色部分,可以更直觀地得到I,j的連通情況。
Swfdec still is development software, but has also followed a rigid
no-crashes-allowed policy. I believe it s stable enough now to be
installed as a default plugin for people that can live with occasional
crashes of their browser. But don t blame me if it does crash. File a
bug at https://bugs.freedesktop.org/enter_bug.cgi?product=swfdec
basic.c */
/**//* Project:NeuroBasic, basic package*//**/
/* Survey:This is a simple Basic b-code compiler which*/
/*can be used as a comfortable command shell for */
/* any program. The actual compiler is found in */
/*compiler.c.*/
/*The functions m_fctptr() and user_server()*/
/*build an interface to an
給定兩個(gè)集合A、B,集合內(nèi)的任一元素x滿足1 ≤ x ≤ 109,并且每個(gè)集合的元素個(gè)數(shù)不大于105。我們希望求出A、B之間的關(guān)系。
任 務(wù)?。航o定兩個(gè)集合的描述,判斷它們滿足下列關(guān)系的哪一種:
A是B的一個(gè)真子集,輸出“A is a proper subset of B”
B是A的一個(gè)真子集,輸出“B is a proper subset of A”
A和B是同一個(gè)集合,輸出“A equals B”
A和B的交集為空,輸出“A and B are disjoint”
上述情況都不是,輸出“I m confused!”
This small utility helps to generate seven segment display codes for different I/O connections. For example, AVR/PIC
Port A.0 -> D Segment
Port A.1 -> B Segment ....
Also it can generate Common Cathode or Common Anode table codes..
I Coded it long time ago. I Hope help someone.
Thank you
隨著光伏發(fā)電系統(tǒng)快速發(fā)展,以及電動(dòng)汽車充電樁的普及,傳統(tǒng)的剩余電流保護(hù)器無(wú)法滿足實(shí)際需求。介紹了一款B型剩余電流保護(hù)器,采用磁調(diào)制剩余電流互感器和零序電流互感器采集剩余電流。根據(jù)GB/T 22794—2017標(biāo)準(zhǔn)要求,可識(shí)別1 kHz及以下的正弦交流、帶和不帶直流分量的脈動(dòng)直流、平滑直流等剩余電流信號(hào)。經(jīng)信號(hào)調(diào)理電路將電壓信號(hào)送到單片機(jī)進(jìn)行采集和判斷。通過(guò)試驗(yàn)測(cè)試,該樣機(jī)在測(cè)試精度和速度上均符合國(guó)家標(biāo)準(zhǔn)的相關(guān)要求。The rapid development of photovoltaic power generation systems and the popularity of electric vehicle charging piles make the traditional residual current protective devices unable to meet the actual demand.This paper proposed a type B residual current protective device,which uses the magnetically modulated residual current transformer and the zero sequence current transformer to acquire the residual current.According to the requirements of GB/T 22794—2017,the type B residual current protective device can detect sinusoidal AC residual current of 1kHz and below 1kHz,pulsating DC residual current with and without DC component,smooth DC residual current and so on.The signal processing circuit sends the voltage signal to the MCU for acquisition and judgment.Through experimental tests,the device meets the relevant requirements of national standards in terms of test accuracy and speed.