搜索资源列表
Q版缓冲区溢出教程
- 缓冲区溢出的原理,利用方法,深入浅出,很适合入门学习。
Q.921
- Q.921协议
q
- bezier曲线绘图算法以及相应的程序开发-bezier curve drawing algorithm and the corresponding development
CplusplusQandA
- 作者通过问与答的形式,以趣味的话语道出C++语言的博大精深-Author Q & A of the form through to interesting words out C++ language, profound
mmse_eq
- Here we design the minimum mean-squared error (MMSE) equalizer coefficients {q[k]}assuming that the input symbols {a[n]} and the noise { ˜ w[k]} are white random sequencesthat are uncorrelated with each other.-Here we design the minimum mean-squa
q511
- Q.511 standard in pdf format
q722
- Q.722 standard in PDF ofrmrat
q691
- Q.691 standard in PDF format
FAQ(MT500)
- weinview触屏用法问答,使用MT500第列触摸屏的使用有较大帮助。-Q & A weinview touch screen usage, the use of MT500 first out of the use of touch-screen more help.
PAPROFDM1
- semilogy PAPR OFDM with Q-AM modulation.
qam8_nograycode
- An 8-QAM communications channel simulation in Simulink, constructed from a 16-QAM model and using an I,Q correlation receiver. QAM (quadrature amplitude modulation) is a method of combining two amplitude-modulated (AM) signals into a single chan
Q-learning
- 关于Q学习的资料,并且证明了Q学习的收敛性-Information on the Q learning, and prove the convergence of Q learning
Atado-a-ti
- examenes resueltos de ccna 2 para todos los q quieran verlos aqui esta
QPSK_OQPSK
- 使用数值仿真和电路实验的方法,对Q PSK ( quadrature phase shift key ing)和OQ PSK ( off2 set quadrature phase shift keying)调制信号通过功率放大器后的频谱扩散问题进行了探讨。-Numerical simulation and circuit experiment using the method of Q PSK (quadrature phase shift key ing) and OQ PSK (off
J-Link
- J-Link用户指南 一、J-Link ARM JTAG 仿真器简介 二、J-LINK 驱动安装 三、J-LINK(JLINK)在各个主流开发环境下的设置 四、J-FLASH ARM 使用设置 五、F.A.Q 附录一、使用 jlink 的 GDBserver 附录二、J-Flash ARM 命令行使用说明 -J-Link ARM JTAG
SC-FDE-with-OQPSK-Type-Schemes-ICCCN09-
- This paper considers frequency-domain receiver design for OQPSK type schemes. Since the IQ Interference can lead to significant performance degradation we propose an FDE Design where there is no i-q interference in the sampling instants for the predo
On-the-Design-of-Frequency-Domain-Equalizers-for-
- This paper considers frequency-domain receiver design for OQPSK signals (Offset Quaternary Phase Shift Keying). It is shown that conventional QPSK receivers are not suitable to OQPSK schemes since they lead to significant interference between
On-the-Design-of-Linear-Receivers-for-SC-FDE-Sche
- This paper considers the design of linear frequency-domain receivers with oversampling for OQPSK (Offset Quaternary Phase Shift Keying) signals. Based on a receiver structure able to eliminate the residual interference between in-phase (I) an
Q-function-and-error-function
- The document shows the definitions and properties of Q function and error function
Pd-using--q-function
- Probability Detection Using Q Function