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Power Budget Automation System Team #40 Hai Vo, Ho Chuen Tsang, Vi Tran ECE 445 Senior Design April 30 st, 2013
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Outline Introduction Objective Design Overview Requirement and Verification Functional tests Successes & Challenges Future Work Questions
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Introduction Low cost home automatic and remote system Energy optimization
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Features Access control Monitor power & energy usage Switching power based on occupation & energy limit Energy Priority Setting*
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Design overview Hub (controller) Sensors
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Design overview START Transmit command Input Receive command Processing Relay Energy usage Transmit data Receive data Display Detection memory NO YES Processing
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Design overview Hub(controller) unit Micro-controller Transceiver Battery User I/O
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Design overview Hub(controller) unit Power Supply (battery) Micro- Controller Transceiver User I/O (LCD)
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Design overview Sensor unit Motion sensor PIR Transceiver Microcontroller Power Measurement Relay Power supply AC/DC converter
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Design overview Sensor unit Transceiver Micro- Controller Relay PIR AC/DC converter Power Supply Power measurement
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Requirement & Verification Verification 1. - observe frequency and duty cycle 2. - Use spectrum analyze, software (data), configuration 3. - Confirm using voltmeter and oscilloscope. Requirement 1. Microcontroller - Processing function 2. Transceiver - Transmit/receive data - Implementation 3. Power Supply -±15V, 5V, 3.3V - ripple under 1%
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Requirement & Verification Verification 4. - Observe output signal at different placement. 5. - Confirm LCD response after pressing button 6. - Use oscilloscope to check waveform Requirement 4. PIR Sensor - sense human motion 5. User Input/Output - Display correct function 6. Power Measurement - ripple less than 20mV p-p - Power detection range 0W- 200W
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Microcontroller TI MSP430G2553 (Launchpad) Serial interface, 250uA at active operation 10bit ADC, 14 I/O ports Requirement Voltage required 3.3V Speed 16Mhz
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Wire connection Internal clock is 1kHz Communication speed 0.2s Use 2 wires connection
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Power Supply AC/DC Converter
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Power Supply (Rectifier) Waveform after rectifier
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Power Supply
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Power Measurement
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Power measurement
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Shunt resistor: 0.15Ω Detect range: 0W-267W Voltage/Watt Ratio: ~15mV/W R shunt, V/W
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Power measurement Slope: ~14mV/W Range: 0W-230W Linear slope up to 170W
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Power measurement Slope: 15mV/W Range: 0W-176W Linear slope
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Power measurement R load (Ω)P circuit (W)I load (A)V out (V)P measure (W) 50030.30.20.4530 25059.60.50.8859 16789.70.71.3390 12511811.75118 1001471.22.22145 831751.42.65173 Max error: <±2%
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Power measurement Without RC filter V out Ripple is ~49mV
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Power measurement With filter C=100uF, Ripple is ~49mV
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Power measurement With filter C=1mF, Ripple is ~8.4mV
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Communication RF Anaren A11LR09x – CC110L transceiver Protocol series, frequency 906Mhz – 915Mhz Low data rates and lower power consumption
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Communication Requirement Voltage required 3.3V Communicate between units less than 2s in 915Mhz Correctly sent and receive data bit value 1% error Distance of communication Is 20 meters indoor Implementation with circuit design
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Communication Frequency signal Current measurement
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Communication Signal Strength Process Voltage required 3.3V Communicate between units less than 2s in 915Mhz Correctly sent and receive data bit value 1% error Distance of communication Is 20 meters indoor Implementation with circuit design
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Occupancy detection PIR sensor -20mA active -detect 15ft away Requirement correct output high/low signal with 3-5V power supply 1k PIR 2N2222 3V
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Occupancy detection Verification Different displacement Oscilloscope: waveform
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Software Function Menu 1.Automation On/Off 2.Manually Control Power 3.Display Power & Energy Usage 4.Setting Energy limit 5.Look back Energy Usage history
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User I/O
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Duty cycle of input button
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User I/O Screen display system function
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Energy Priority Concept Combination of occupation, enery limit and memory Store and extract information Different setting Challenge: software
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Successes Basic Functionality (power measurement, detection, energy usage history etc.) High accuracy power measurement Reliable control Well designed PCB
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Challenges Hardware Limit (Suggestion: ARM-CORTEX) Energy Priority Budget
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Solution and Future work Time management (hardware) - Develop more robust wireless communications Software Memory implementation
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Thanks Prof. Paul Scott Carney Igor Fedorov (Teaching Assistant) Kevin James Colravy (Power lab) Mark Smart and Waltham Smith (ECE part shop)
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Questions
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