Metadata-Version: 2.4
Name: signal_ICT_MeetSenjaliya_92510133027
Version: 1.0.0
Summary: A Python package for fundamental signal processing operations
Home-page: https://github.com/Meet57a/signal_ICT_MeetSenjaliya_92510133027
Author: Meet Senjaliya
Author-email: meet.senjaliya138082@marwadiuniversity.ac.in
Classifier: Development Status :: 4 - Beta
Classifier: Intended Audience :: Education
Classifier: Intended Audience :: Science/Research
Classifier: Operating System :: OS Independent
Classifier: Programming Language :: Python :: 3
Classifier: Programming Language :: Python :: 3.7
Classifier: Programming Language :: Python :: 3.8
Classifier: Programming Language :: Python :: 3.9
Classifier: Programming Language :: Python :: 3.10
Classifier: Programming Language :: Python :: 3.11
Classifier: Topic :: Scientific/Engineering :: Information Analysis
Classifier: Topic :: Education
Requires-Python: >=3.7
Description-Content-Type: text/markdown
License-File: LICENSE
Requires-Dist: numpy>=1.19.0
Requires-Dist: matplotlib>=3.3.0
Provides-Extra: dev
Requires-Dist: pytest>=6.0; extra == "dev"
Requires-Dist: pytest-cov>=2.0; extra == "dev"
Requires-Dist: black>=21.0; extra == "dev"
Requires-Dist: flake8>=3.8; extra == "dev"
Dynamic: author
Dynamic: author-email
Dynamic: classifier
Dynamic: description
Dynamic: description-content-type
Dynamic: home-page
Dynamic: license-file
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# Signal Processing Package - ICT Department

A comprehensive Python package for fundamental signal generation and operations, developed for the Programming with Python course (01CT1309) at Marwadi University, Faculty of Engineering and Technology.

## 📋 Package Overview

This package demonstrates core concepts of Signals and Systems through three modular components:

- **Unitary Signals**: Unit step, impulse, and ramp signal generation
- **Trigonometric Signals**: Sine wave, cosine wave, and exponential signal generation  
- **Signal Operations**: Time shifting, scaling, addition, and multiplication operations

## 🏗️ Package Structure

\`\`\`
signal_ICT_MeetSenjaliya_92510133027/
├── __init__.py                # Package initialization and exports
├── unitary_signals.py         # Unit step, impulse, and ramp signals
├── trigonometric_signals.py   # Sine, cosine, and exponential signals
├── operations.py              # Signal manipulation operations
├── main.py                    # Demonstration script
├── setup.py                   # Package setup and distribution
└── README.md                  # This documentation file
\`\`\`

## 🚀 Installation

### Method 1: Install from Wheel (Recommended)

\`\`\`bash
# Install from local wheel file
pip install dist/signal_ICT_MeetSenjaliya_92510133027-1.0.0-py3-none-any.whl
\`\`\`

### Method 2: Install from TestPyPI

\`\`\`bash
# Install from TestPyPI (after upload)
pip install -i https://test.pypi.org/simple/ signal_ICT_MeetSenjaliya_92510133027
\`\`\`

## 📦 Dependencies

- **NumPy** (>=1.19.0): For numerical array operations
- **Matplotlib** (>=3.3.0): For signal visualization and plotting

## 🎯 Usage Examples

### Basic Signal Generation

\`\`\`python
import numpy as np
from signal_ICT_MeetSenjaliya_92510133027 import unit_step, sine_wave

# Generate unit step signal
n = np.arange(-10, 10)
step_signal = unit_step(n)

# Generate sine wave
t = np.linspace(0, 1, 1000)
sine_signal = sine_wave(A=2, f=5, phi=0, t=t)
\`\`\`

### Signal Operations

\`\`\`python
from signal_ICT_MeetSenjaliya_92510133027 import signal_addition, time_shift

# Add two signals
result = signal_addition(signal1, signal2)

# Time shift a signal
shifted = time_shift(signal, k=5)
\`\`\`

### Complete Demonstration

\`\`\`python
# Run the complete demonstration
python main.py
\`\`\`

## 🔧 Module Documentation

### 1. unitary_signals.py

**Functions:**
- `unit_step(n)`: Generates unit step signal u[n]
- `unit_impulse(n)`: Generates unit impulse signal δ[n]  
- `ramp_signal(n)`: Generates ramp signal r[n]

### 2. trigonometric_signals.py

**Functions:**
- `sine_wave(A, f, phi, t)`: Generates sine wave with amplitude A, frequency f, phase phi
- `cosine_wave(A, f, phi, t)`: Generates cosine wave with specified parameters
- `exponential_signal(A, a, t)`: Generates exponential signal A*e^(at)

### 3. operations.py

**Functions:**
- `time_shift(signal, k)`: Shifts signal by k units in time
- `time_scale(signal, k)`: Scales signal in time by factor k
- `signal_addition(signal1, signal2)`: Adds two signals point-wise
- `signal_multiplication(signal1, signal2)`: Multiplies two signals point-wise
