1. 定義時間類Time,給出類的成員屬性及構造函數、析構函數及普通方法的定義,利用定義的類定義對象,并對對象的屬性進行訪問; 2. 定義一個類Point,然后定義類Point的派生類Circle,再定義Circle的派生類Cylinder; 3. 通過函數參數類型的不同實現函數重載; 4. 函數模板的定義與使用。
上傳時間: 2013-12-18
上傳用戶:清風冷雨
It may analyze the window structure, the advancement and the window news, has the very greatly auxiliary function to the development work. When we need to study some object, so long as assigns out its search window, drives the detector the indicator to assign the window/to control on to release then. Under, the author on and everybody same place, makes with VC to belong to own Spy++.
標簽: the window advancement structure
上傳時間: 2013-12-31
上傳用戶:ghostparker
This a vhdl programme for realise an electron watch by max-plus II. The function includes time showing and time setting. It may be extended to other functions like alarming clock and so forth.
標簽: programme electron max-plus function
上傳時間: 2013-12-26
上傳用戶:dbs012280
/*系統時鐘采用 Fosc=7.373 定時器方式1的定時時間 Time=(65536-THTL)*2/Fosc,默認5ms 定時器1工作在16位,用作系統時鐘 定時器0工作在16位,作為定時開始采樣用,定時范圍為0.1ms(0xfe8f)-15ms(0x27fe),默認為1ms=0xf19a,可以通過設置命令改變 串行口波特率由內部產生,11.059MHz->BRGR1:0=0x0050=115200Bps,0x00b0=57600Bps 7.373MHz->BRGR1:0=0x0030=115200Bps,0x0070=57600Bps
上傳時間: 2015-12-25
上傳用戶:問題問題
AVR134 Real-Time Clock using the Asynchronous Timer
標簽: Asynchronous Real-Time Clock using
上傳時間: 2015-12-26
上傳用戶:ouyangtongze
設計real time軟件時需要遵循的一些原則和設計方法.是在real time方面很有參考價值的一本書
上傳時間: 2015-12-27
上傳用戶:xzt
Real-time microkernel 小巧靈活的實時微內核,其 C 代碼采用了不少面向對象設計思想
標簽: microkernel Real-time 微內核
上傳時間: 2014-01-23
上傳用戶:壞壞的華仔
Unix/Linux 網絡時間協議版本3 Network Time Protocol Version 3 (NTP) distribution for Unix systems
標簽: Unix distribution Protocol Network
上傳時間: 2015-12-31
上傳用戶:txfyddz
FreeBSD使用大全連載 第1章 引言 第2章 安裝與配置 第3章 系統管理和維護 第4章 網絡配置與使用 第5章 設置和使用X Window 第6章 定制應用軟件與系統內核 第7章 與Windows系統集成 第8章 系統與網絡安全 第9章 設置WWW服務
上傳時間: 2016-01-02
上傳用戶:朗朗乾坤
We present a particle filter construction for a system that exhibits time-scale separation. The separation of time-scales allows two simplifications that we exploit: i) The use of the averaging principle for the dimensional reduction of the system needed to solve for each particle and ii) the factorization of the transition probability which allows the Rao-Blackwellization of the filtering step. Both simplifications can be implemented using the coarse projective integration framework. The resulting particle filter is faster and has smaller variance than the particle filter based on the original system. The convergence of the new particle filter to the analytical filter for the original system is proved and some numerical results are provided.
標簽: construction separation time-scale particle
上傳時間: 2016-01-02
上傳用戶:fhzm5658