代码搜索结果

找到约 2,916 项符合 Energy 的代码

nspabte.m

function [h,xs,w] = nspabte(data,nyy,min_w,max_w,t0,t1) % The function NSPABTE calculates the spectrum by applying the Teager Energy Operator % to data(n,k), where n is the number of data points a

simu_tfar0.m

function simu_tfar0(MAR, LAR, N, re_im, MM) % function simu_tfar0(MAR, LAR, N, re_im, MM) % This file is part of the TFPM toolbox v1.0 (c) % michael.jachan@tuwien.ac.at and underlies the GPL. % %

simu_tfma1.m

function simu_tfma1(MMA, LMA, N, re_im, mo_no, MM) % function simu_tfma1(MMA, LMA, N, re_im, mo_no, MM) % This file is part of the TFPM toolbox v1.0 (c) % michael.jachan@tuwien.ac.at and underlies

simu_tfma.m

function simu_tfma(MMA, LMA, N, re_im, mo_no, MM) % function simu_tfma(MMA, LMA, N, re_im, mo_no, MM) % This file is part of the TFPM toolbox v1.0 (c) % michael.jachan@tuwien.ac.at and underlies t

dtmf_dec.asm

************************************************************** * (C) COPYRIGHT TEXAS INSTRUMENTS, INC. 1996 * ************************************************************** * Prog

transfer.m

function f=transfer(x0,x1,N,P,mult,E); %> The file integrates the 1D Schrodinger equation %> for an 'arbitrary' potential using the Numerov method. %> It produces the transfer matrix fro

cp0901_muiber_2ppm.m

% % Function 9.3 : "cp0901_MUIBER_2PPM" % % Evaluates the theoretical probability of error % for a 2PPM system in AWGN channels under the % Standard Gaussian Approximation % % 'ebno' is a v

cp0901_muiber_2ppm.m

% % Function 9.3 : "cp0901_MUIBER_2PPM" % % Evaluates the theoretical probability of error % for a 2PPM system in AWGN channels under the % Standard Gaussian Approximation % % 'ebno' is a v

复件 jakes_filter.m

% File: Jakes_filter.m % Software given here is to accompany the textbook: W.H. Tranter, % K.S. Shanmugan, T.S. Rappaport, and K.S. Kosbar, Principles of % Communication Systems Simulation with W

jakes_filter.m

% File: Jakes_filter.m % Software given here is to accompany the textbook: W.H. Tranter, % K.S. Shanmugan, T.S. Rappaport, and K.S. Kosbar, Principles of % Communication Systems Simulation with W