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# Daikin Chiller (RTU) Emulator
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This project is an Arduino-based emulator for a Daikin Chiller unit, communicating over Modbus RTU. It is designed to be a flexible template that can be adapted to simulate different types of chillers by modifying the configuration and state logic.
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The emulator operates on a state machine with three core states:
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* **Standby**: The chiller is idle but ready.
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* **Running**: The chiller is active and operational.
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* **Fail**: The chiller has encountered a fault condition.
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## Features
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* **Modbus RTU Communication**: Emulates a Modbus slave device.
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* **State Machine Logic**: Simulates different operational states (Standby, Running, Fail).
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* **Dynamic Value Simulation**: Uses "Strategies" (e.g., PID, Ramp) to generate realistic, changing values for Modbus points.
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* **Configurable Modbus Map**: The entire Modbus register map is defined in a single, easy-to-modify file (`config.h`).
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* **Extensible Design**: The structure allows for the addition of new states and behaviors.
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## Hardware Prerequisites
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The code is written for an ESP8266/ESP32-style microcontroller with WiFi capabilities and at least one hardware serial port for RS485 communication.
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* **Microcontroller**: ESP8266, ESP32, or similar.
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* **RS485 Transceiver**: A module like the MAX485 to interface with the Modbus RTU bus.
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## Software Dependencies
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This project relies on a Modbus library. Ensure you have the correct library installed in your Arduino IDE.
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* **Modbus Library**: The code uses a library that provides `ModbusRTU.h` and optionally `ModbusIP_ESP8266.h`.
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---
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## How to Customize for a New Chiller
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To adapt this template for a new chiller, follow these steps.
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### 1. Configure Device-Specific Parameters (`config.h`)
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Open `CH_Daikin_AWV026B_RTU/config.h`. This is the main file for device-specific settings.
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#### Modbus RTU Settings
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Update the following constants for your device's serial communication setup.
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```c++
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const int BAUDRATE = 19200; // The serial communication speed
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const int RX_PIN = 17; // The GPIO pin for receiving data (RX)
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const int TX_PIN = 16; // The GPIO pin for transmitting data (TX)
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const int RST_PIN = 4; // The GPIO pin for RS485 direction control
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const int MODBUS_ID = 1; // The unique slave ID for this device
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33
src/EPMS/PDU/PDU_Maverick_Power_TCP/README.md
Normal file
33
src/EPMS/PDU/PDU_Maverick_Power_TCP/README.md
Normal file
@@ -0,0 +1,33 @@
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# EQUIPMENT_TYPE MANUFACTURER MODEL TCP
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## Brief Introduction
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Equipment specifc details that make it different from other devices
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## List of Equipmentt
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This cofiguration has been used for these models:
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* **Model**: 09-15-22
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* **Model**: 09-15-23
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* **Model**: 09-15-25
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## Hardware Prerequisites
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The code is written for an ESP8266/ESP32-style microcontroller with WiFi capabilities.
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* **Microcontroller**: [Firebeetle 2 ESP32.](https://www.dfrobot.com/product-2231.html)
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---
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## States and Strategies
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Provide a brief description of what variables and strategies were used in this configuraiton
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### Standby State
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* **Equipment running**: set to 0
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* **Common Alarm**: set to 0
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* **SAT temperature**: set to 85
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### Running State
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* **Equipment running**: set to 1
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* **SAT temperature**: **Ramp Strategy** set to 65 deg setpoint
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### Fail State
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* **Commong Alarm**: set to 1
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* **SAT temperature**: **Ramp Strategy** set to 105 deg setpointset
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502
src/EPMS/PDU/PDU_Maverick_Power_TCP/config.h
Normal file
502
src/EPMS/PDU/PDU_Maverick_Power_TCP/config.h
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@@ -0,0 +1,502 @@
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/**
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* @file config.h
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* @brief Main configuration file for the PDU Maverick Power
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* @author Zach Gutierrez
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* @date 2025-09-02
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*
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* This file contains two important configurations: WiFi network parameters
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* and the Modbus register map for the device.
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*/
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#ifndef CONFIG_H
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#define CONFIG_H
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#include "core.h"
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#include "Equipment/Equipment.h"
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#if defined(USE_MODBUS_IP)
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/**
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* @defgroup ModbusTCPConfig Modbus IP Configuration
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* @brief Parameters for Modbus TCP communication.
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* @{
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*/
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#include <ModbusIP_ESP8266.h>
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const char *ssid = "wifi_name"; /**< @brief The SSID of the WiFi network. */
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const char *password = "wifi_password"; /**< @brief The password for the WiFi network. */
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IPAddress local_IP(192, 168, 1, 234); /**< @brief The static IP address for the device. */
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IPAddress gateway(192, 168, 1, 1); /**< @brief The gateway IP address. */
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IPAddress subnet(255, 255, 255, 0); /**< @brief The subnet mask. */
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ModbusIP mb;
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#else
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/**
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* @defgroup ModbusRTUConfig Modbus RTU Configuration
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* @brief Parameters for serial Modbus RTU communication.
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* @{
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*/
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#include <ModbusRTU.h>
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const int BAUDRATE = 19200; /**< @brief The serial communication speed in bits per second. */
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const int RX_PIN = 17; /**< @brief The GPIO pin used for receiving data (RX). */
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const int TX_PIN = 16; /**< @brief The GPIO pin used for transmitting data (TX). */
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const int RST_PIN = 4; /**< @brief The GPIO pin connected to the RS485 driver's DE/RE pins for direction control. */
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const int MODBUS_ID = 1; /**< @brief The unique slave ID for this device on the Modbus bus. */
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/** @} */
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/** @brief Global instance of the Modbus RTU server. */
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ModbusRTU mb;
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#endif
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/**
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* @defgroup ModbusMapConfig Modbus Map Configuration
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* @brief Defines the Modbus register map and related parameters for the emulator.
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* @{
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*/
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/**
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* @brief The Modbus map for the Equipment device.
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* This array defines all the Modbus points available on the emulated device.
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* The `description` field is crucial as it's used to look up points within the application logic.
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*/
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modbusMap mb_map[] = {
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//***************************************
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// Write Registers (as Input Registers - 3X)
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//***************************************
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// System Status
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{IR_FLOAT, 1, 0, "CB0_V1N" },
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{IR_FLOAT, 3, 0, "CB0_V2N" },
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{IR_FLOAT, 5, 0, "CB0_V3N" },
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{IR_FLOAT, 7, 0, "CB0_I1" },
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{IR_FLOAT, 9, 0, "CB0_I2" },
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{IR_FLOAT, 11, 0, "CB0_I3" },
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{IR_FLOAT, 13, 0, "CB0_L1KW" },
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{IR_FLOAT, 15, 0, "CB0_L2KW" },
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{IR_FLOAT, 17, 0, "CB0_L3KW" },
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{IR_FLOAT, 19, 0, "CB0_L1KVar" },
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{IR_FLOAT, 21, 0, "CB0_L2KVar" },
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{IR_FLOAT, 23, 0, "CB0_L3KVar" },
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{IR_FLOAT, 25, 0, "CB0_L1KVA" },
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{IR_FLOAT, 27, 0, "CB0_L2KVA" },
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{IR_FLOAT, 29, 0, "CB0_L3KVA" },
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{IR_FLOAT, 31, 0, "CB0_L1PF" },
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{IR_FLOAT, 33, 0, "CB0_L2PF" },
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{IR_FLOAT, 35, 0, "CB0_L3PF" },
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{IR_FLOAT, 37, 0, "CB0_V1THD" },
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{IR_FLOAT, 39, 0, "CB0_V2THD" },
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{IR_FLOAT, 41, 0, "CB0_V3THD" },
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{IR_FLOAT, 43, 0, "CB0_I1THD" },
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{IR_FLOAT, 45, 0, "CB0_I2THD" },
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{IR_FLOAT, 47, 0, "CB0_I3THD" },
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{IR_FLOAT, 49, 0, "CB0_I1Kfactor" },
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{IR_FLOAT, 51, 0, "CB0_I2Kfactor" },
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{IR_FLOAT, 53, 0, "CB0_I3Kfactor" },
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{IR_FLOAT, 55, 0, "CB0_I1TDD" },
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{IR_FLOAT, 57, 0, "CB0_I2TDD" },
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{IR_FLOAT, 59, 0, "CB0_I3TDD" },
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{IR_FLOAT, 61, 0, "CB0_V12" },
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{IR_FLOAT, 63, 0, "CB0_V23" },
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{IR_FLOAT, 65, 0, "CB0_V31" },
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{IR_FLOAT, 67, 0, "CB0_TotalKW" },
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{IR_FLOAT, 69, 0, "CB0_TotalKVar" },
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{IR_FLOAT, 71, 0, "CB0_TotalKVA" },
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{IR_FLOAT, 73, 0, "CB0_TotalPF" },
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{IR_FLOAT, 75, 0, "CB0_TotalPFLag" },
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{IR_FLOAT, 77, 0, "CB0_TotalPFLead" },
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{IR_FLOAT, 79, 0, "CB0_TotalKWImport" },
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{IR_FLOAT, 81, 0, "CB0_TotalKWExport" },
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{IR_FLOAT, 83, 0, "CB0_TotalKVarImport" },
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{IR_FLOAT, 85, 0, "CB0_TotalKVarExport" },
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{IR_FLOAT, 87, 0, "CB0_LN_Avg" },
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{IR_FLOAT, 89, 0, "CB0_LL_Avg" },
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// Circuit Breaker 1 (OB01)
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{IR_FLOAT, 101, 0, "CB1_V1N" },
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{IR_FLOAT, 103, 0, "CB1_V2N" },
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{IR_FLOAT, 105, 0, "CB1_V3N" },
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{IR_FLOAT, 107, 0, "CB1_I1" },
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{IR_FLOAT, 109, 0, "CB1_I2" },
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{IR_FLOAT, 111, 0, "CB1_I3" },
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{IR_FLOAT, 113, 0, "CB1_L1KW" },
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{IR_FLOAT, 115, 0, "CB1_L2KW" },
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{IR_FLOAT, 117, 0, "CB1_L3KW" },
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{IR_FLOAT, 119, 0, "CB1_L1KVar" },
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{IR_FLOAT, 121, 0, "CB1_L2KVar" },
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{IR_FLOAT, 123, 0, "CB1_L3KVar" },
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{IR_FLOAT, 125, 0, "CB1_L1KVA" },
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{IR_FLOAT, 127, 0, "CB1_L2KVA" },
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{IR_FLOAT, 129, 0, "CB1_L3KVA" },
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{IR_FLOAT, 131, 0, "CB1_L1PF" },
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{IR_FLOAT, 133, 0, "CB1_L2PF" },
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{IR_FLOAT, 135, 0, "CB1_L3PF" },
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{IR_FLOAT, 137, 0, "CB1_V1THD" },
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{IR_FLOAT, 139, 0, "CB1_V2THD" },
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{IR_FLOAT, 141, 0, "CB1_V3THD" },
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{IR_FLOAT, 143, 0, "CB1_I1THD" },
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{IR_FLOAT, 145, 0, "CB1_I2THD" },
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{IR_FLOAT, 147, 0, "CB1_I3THD" },
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{IR_FLOAT, 149, 0, "CB1_I1Kfactor" },
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{IR_FLOAT, 151, 0, "CB1_I2Kfactor" },
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{IR_FLOAT, 153, 0, "CB1_I3Kfactor" },
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{IR_FLOAT, 155, 0, "CB1_I1TDD" },
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{IR_FLOAT, 157, 0, "CB1_I2TDD" },
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{IR_FLOAT, 159, 0, "CB1_I3TDD" },
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{IR_FLOAT, 161, 0, "CB1_V12" },
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{IR_FLOAT, 163, 0, "CB1_V23" },
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{IR_FLOAT, 165, 0, "CB1_V31" },
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{IR_FLOAT, 167, 0, "CB1_TotalKW" },
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{IR_FLOAT, 169, 0, "CB1_TotalKVar" },
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{IR_FLOAT, 171, 0, "CB1_TotalKVA" },
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{IR_FLOAT, 173, 0, "CB1_TotalPF" },
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{IR_FLOAT, 175, 0, "CB1_TotalPFLag" },
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{IR_FLOAT, 177, 0, "CB1_TotalPFLead" },
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{IR_FLOAT, 179, 0, "CB1_TotalKWImport" },
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{IR_FLOAT, 181, 0, "CB1_TotalKWExport" },
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{IR_FLOAT, 183, 0, "CB1_TotalKVarImport" },
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{IR_FLOAT, 185, 0, "CB1_TotalKVarExport" },
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{IR_FLOAT, 187, 0, "CB1_LN_Avg" },
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{IR_FLOAT, 189, 0, "CB1_LL_Avg" },
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// Circuit Breaker 1 (OB01)
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{IR_FLOAT, 201, 0, "CB2_V1N" },
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{IR_FLOAT, 203, 0, "CB2_V2N" },
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{IR_FLOAT, 205, 0, "CB2_V3N" },
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{IR_FLOAT, 207, 0, "CB2_I1" },
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{IR_FLOAT, 209, 0, "CB2_I2" },
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{IR_FLOAT, 211, 0, "CB2_I3" },
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{IR_FLOAT, 213, 0, "CB2_L1KW" },
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{IR_FLOAT, 215, 0, "CB2_L2KW" },
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{IR_FLOAT, 217, 0, "CB2_L3KW" },
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{IR_FLOAT, 219, 0, "CB2_L1KVar" },
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{IR_FLOAT, 221, 0, "CB2_L2KVar" },
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{IR_FLOAT, 223, 0, "CB2_L3KVar" },
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{IR_FLOAT, 225, 0, "CB2_L1KVA" },
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{IR_FLOAT, 227, 0, "CB2_L2KVA" },
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{IR_FLOAT, 229, 0, "CB2_L3KVA" },
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{IR_FLOAT, 231, 0, "CB2_L1PF" },
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{IR_FLOAT, 233, 0, "CB2_L2PF" },
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{IR_FLOAT, 235, 0, "CB2_L3PF" },
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{IR_FLOAT, 237, 0, "CB2_V1THD" },
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{IR_FLOAT, 239, 0, "CB2_V2THD" },
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{IR_FLOAT, 241, 0, "CB2_V3THD" },
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{IR_FLOAT, 243, 0, "CB2_I1THD" },
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{IR_FLOAT, 245, 0, "CB2_I2THD" },
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{IR_FLOAT, 247, 0, "CB2_I3THD" },
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{IR_FLOAT, 249, 0, "CB2_I1Kfactor" },
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{IR_FLOAT, 251, 0, "CB2_I2Kfactor" },
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{IR_FLOAT, 253, 0, "CB2_I3Kfactor" },
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{IR_FLOAT, 255, 0, "CB2_I1TDD" },
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{IR_FLOAT, 257, 0, "CB2_I2TDD" },
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{IR_FLOAT, 259, 0, "CB2_I3TDD" },
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{IR_FLOAT, 261, 0, "CB2_V12" },
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||||
{IR_FLOAT, 263, 0, "CB2_V23" },
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||||
{IR_FLOAT, 265, 0, "CB2_V31" },
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{IR_FLOAT, 267, 0, "CB2_TotalKW" },
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{IR_FLOAT, 269, 0, "CB2_TotalKVar" },
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{IR_FLOAT, 271, 0, "CB2_TotalKVA" },
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{IR_FLOAT, 273, 0, "CB2_TotalPF" },
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||||
{IR_FLOAT, 275, 0, "CB2_TotalPFLag" },
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||||
{IR_FLOAT, 277, 0, "CB2_TotalPFLead" },
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||||
{IR_FLOAT, 279, 0, "CB2_TotalKWImport" },
|
||||
{IR_FLOAT, 281, 0, "CB2_TotalKWExport" },
|
||||
{IR_FLOAT, 283, 0, "CB2_TotalKVarImport" },
|
||||
{IR_FLOAT, 285, 0, "CB2_TotalKVarExport" },
|
||||
{IR_FLOAT, 287, 0, "CB2_LN_Avg" },
|
||||
{IR_FLOAT, 289, 0, "CB2_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 301, 0, "CB3_V1N" },
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||||
{IR_FLOAT, 303, 0, "CB3_V2N" },
|
||||
{IR_FLOAT, 305, 0, "CB3_V3N" },
|
||||
{IR_FLOAT, 307, 0, "CB3_I1" },
|
||||
{IR_FLOAT, 309, 0, "CB3_I2" },
|
||||
{IR_FLOAT, 311, 0, "CB3_I3" },
|
||||
{IR_FLOAT, 313, 0, "CB3_L1KW" },
|
||||
{IR_FLOAT, 315, 0, "CB3_L2KW" },
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||||
{IR_FLOAT, 317, 0, "CB3_L3KW" },
|
||||
{IR_FLOAT, 319, 0, "CB3_L1KVar" },
|
||||
{IR_FLOAT, 321, 0, "CB3_L2KVar" },
|
||||
{IR_FLOAT, 323, 0, "CB3_L3KVar" },
|
||||
{IR_FLOAT, 325, 0, "CB3_L1KVA" },
|
||||
{IR_FLOAT, 327, 0, "CB3_L2KVA" },
|
||||
{IR_FLOAT, 329, 0, "CB3_L3KVA" },
|
||||
{IR_FLOAT, 331, 0, "CB3_L1PF" },
|
||||
{IR_FLOAT, 333, 0, "CB3_L2PF" },
|
||||
{IR_FLOAT, 335, 0, "CB3_L3PF" },
|
||||
{IR_FLOAT, 337, 0, "CB3_V1THD" },
|
||||
{IR_FLOAT, 339, 0, "CB3_V2THD" },
|
||||
{IR_FLOAT, 341, 0, "CB3_V3THD" },
|
||||
{IR_FLOAT, 343, 0, "CB3_I1THD" },
|
||||
{IR_FLOAT, 345, 0, "CB3_I2THD" },
|
||||
{IR_FLOAT, 347, 0, "CB3_I3THD" },
|
||||
{IR_FLOAT, 349, 0, "CB3_I1Kfactor" },
|
||||
{IR_FLOAT, 351, 0, "CB3_I2Kfactor" },
|
||||
{IR_FLOAT, 353, 0, "CB3_I3Kfactor" },
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||||
{IR_FLOAT, 355, 0, "CB3_I1TDD" },
|
||||
{IR_FLOAT, 357, 0, "CB3_I2TDD" },
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||||
{IR_FLOAT, 359, 0, "CB3_I3TDD" },
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||||
{IR_FLOAT, 361, 0, "CB3_V12" },
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||||
{IR_FLOAT, 363, 0, "CB3_V23" },
|
||||
{IR_FLOAT, 365, 0, "CB3_V31" },
|
||||
{IR_FLOAT, 367, 0, "CB3_TotalKW" },
|
||||
{IR_FLOAT, 369, 0, "CB3_TotalKVar" },
|
||||
{IR_FLOAT, 371, 0, "CB3_TotalKVA" },
|
||||
{IR_FLOAT, 373, 0, "CB3_TotalPF" },
|
||||
{IR_FLOAT, 375, 0, "CB3_TotalPFLag" },
|
||||
{IR_FLOAT, 377, 0, "CB3_TotalPFLead" },
|
||||
{IR_FLOAT, 379, 0, "CB3_TotalKWImport" },
|
||||
{IR_FLOAT, 381, 0, "CB3_TotalKWExport" },
|
||||
{IR_FLOAT, 383, 0, "CB3_TotalKVarImport" },
|
||||
{IR_FLOAT, 385, 0, "CB3_TotalKVarExport" },
|
||||
{IR_FLOAT, 387, 0, "CB3_LN_Avg" },
|
||||
{IR_FLOAT, 389, 0, "CB3_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 401, 0, "CB4_V1N" },
|
||||
{IR_FLOAT, 403, 0, "CB4_V2N" },
|
||||
{IR_FLOAT, 405, 0, "CB4_V3N" },
|
||||
{IR_FLOAT, 407, 0, "CB4_I1" },
|
||||
{IR_FLOAT, 409, 0, "CB4_I2" },
|
||||
{IR_FLOAT, 411, 0, "CB4_I3" },
|
||||
{IR_FLOAT, 413, 0, "CB4_L1KW" },
|
||||
{IR_FLOAT, 415, 0, "CB4_L2KW" },
|
||||
{IR_FLOAT, 417, 0, "CB4_L3KW" },
|
||||
{IR_FLOAT, 419, 0, "CB4_L1KVar" },
|
||||
{IR_FLOAT, 421, 0, "CB4_L2KVar" },
|
||||
{IR_FLOAT, 423, 0, "CB4_L3KVar" },
|
||||
{IR_FLOAT, 425, 0, "CB4_L1KVA" },
|
||||
{IR_FLOAT, 427, 0, "CB4_L2KVA" },
|
||||
{IR_FLOAT, 429, 0, "CB4_L3KVA" },
|
||||
{IR_FLOAT, 431, 0, "CB4_L1PF" },
|
||||
{IR_FLOAT, 433, 0, "CB4_L2PF" },
|
||||
{IR_FLOAT, 435, 0, "CB4_L3PF" },
|
||||
{IR_FLOAT, 437, 0, "CB4_V1THD" },
|
||||
{IR_FLOAT, 439, 0, "CB4_V2THD" },
|
||||
{IR_FLOAT, 441, 0, "CB4_V3THD" },
|
||||
{IR_FLOAT, 443, 0, "CB4_I1THD" },
|
||||
{IR_FLOAT, 445, 0, "CB4_I2THD" },
|
||||
{IR_FLOAT, 447, 0, "CB4_I3THD" },
|
||||
{IR_FLOAT, 449, 0, "CB4_I1Kfactor" },
|
||||
{IR_FLOAT, 451, 0, "CB4_I2Kfactor" },
|
||||
{IR_FLOAT, 453, 0, "CB4_I3Kfactor" },
|
||||
{IR_FLOAT, 455, 0, "CB4_I1TDD" },
|
||||
{IR_FLOAT, 457, 0, "CB4_I2TDD" },
|
||||
{IR_FLOAT, 459, 0, "CB4_I3TDD" },
|
||||
{IR_FLOAT, 461, 0, "CB4_V12" },
|
||||
{IR_FLOAT, 463, 0, "CB4_V23" },
|
||||
{IR_FLOAT, 465, 0, "CB4_V31" },
|
||||
{IR_FLOAT, 467, 0, "CB4_TotalKW" },
|
||||
{IR_FLOAT, 469, 0, "CB4_TotalKVar" },
|
||||
{IR_FLOAT, 471, 0, "CB4_TotalKVA" },
|
||||
{IR_FLOAT, 473, 0, "CB4_TotalPF" },
|
||||
{IR_FLOAT, 475, 0, "CB4_TotalPFLag" },
|
||||
{IR_FLOAT, 477, 0, "CB4_TotalPFLead" },
|
||||
{IR_FLOAT, 479, 0, "CB4_TotalKWImport" },
|
||||
{IR_FLOAT, 481, 0, "CB4_TotalKWExport" },
|
||||
{IR_FLOAT, 483, 0, "CB4_TotalKVarImport" },
|
||||
{IR_FLOAT, 485, 0, "CB4_TotalKVarExport" },
|
||||
{IR_FLOAT, 487, 0, "CB4_LN_Avg" },
|
||||
{IR_FLOAT, 489, 0, "CB4_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 501, 0, "CB5_V1N" },
|
||||
{IR_FLOAT, 503, 0, "CB5_V2N" },
|
||||
{IR_FLOAT, 505, 0, "CB5_V3N" },
|
||||
{IR_FLOAT, 507, 0, "CB5_I1" },
|
||||
{IR_FLOAT, 509, 0, "CB5_I2" },
|
||||
{IR_FLOAT, 511, 0, "CB5_I3" },
|
||||
{IR_FLOAT, 513, 0, "CB5_L1KW" },
|
||||
{IR_FLOAT, 515, 0, "CB5_L2KW" },
|
||||
{IR_FLOAT, 517, 0, "CB5_L3KW" },
|
||||
{IR_FLOAT, 519, 0, "CB5_L1KVar" },
|
||||
{IR_FLOAT, 521, 0, "CB5_L2KVar" },
|
||||
{IR_FLOAT, 523, 0, "CB5_L3KVar" },
|
||||
{IR_FLOAT, 525, 0, "CB5_L1KVA" },
|
||||
{IR_FLOAT, 527, 0, "CB5_L2KVA" },
|
||||
{IR_FLOAT, 529, 0, "CB5_L3KVA" },
|
||||
{IR_FLOAT, 531, 0, "CB5_L1PF" },
|
||||
{IR_FLOAT, 533, 0, "CB5_L2PF" },
|
||||
{IR_FLOAT, 535, 0, "CB5_L3PF" },
|
||||
{IR_FLOAT, 537, 0, "CB5_V1THD" },
|
||||
{IR_FLOAT, 539, 0, "CB5_V2THD" },
|
||||
{IR_FLOAT, 541, 0, "CB5_V3THD" },
|
||||
{IR_FLOAT, 543, 0, "CB5_I1THD" },
|
||||
{IR_FLOAT, 545, 0, "CB5_I2THD" },
|
||||
{IR_FLOAT, 547, 0, "CB5_I3THD" },
|
||||
{IR_FLOAT, 549, 0, "CB5_I1Kfactor" },
|
||||
{IR_FLOAT, 551, 0, "CB5_I2Kfactor" },
|
||||
{IR_FLOAT, 553, 0, "CB5_I3Kfactor" },
|
||||
{IR_FLOAT, 555, 0, "CB5_I1TDD" },
|
||||
{IR_FLOAT, 557, 0, "CB5_I2TDD" },
|
||||
{IR_FLOAT, 559, 0, "CB5_I3TDD" },
|
||||
{IR_FLOAT, 561, 0, "CB5_V12" },
|
||||
{IR_FLOAT, 563, 0, "CB5_V23" },
|
||||
{IR_FLOAT, 565, 0, "CB5_V31" },
|
||||
{IR_FLOAT, 567, 0, "CB5_TotalKW" },
|
||||
{IR_FLOAT, 569, 0, "CB5_TotalKVar" },
|
||||
{IR_FLOAT, 571, 0, "CB5_TotalKVA" },
|
||||
{IR_FLOAT, 573, 0, "CB5_TotalPF" },
|
||||
{IR_FLOAT, 575, 0, "CB5_TotalPFLag" },
|
||||
{IR_FLOAT, 577, 0, "CB5_TotalPFLead" },
|
||||
{IR_FLOAT, 579, 0, "CB5_TotalKWImport" },
|
||||
{IR_FLOAT, 581, 0, "CB5_TotalKWExport" },
|
||||
{IR_FLOAT, 583, 0, "CB5_TotalKVarImport" },
|
||||
{IR_FLOAT, 585, 0, "CB5_TotalKVarExport" },
|
||||
{IR_FLOAT, 587, 0, "CB5_LN_Avg" },
|
||||
{IR_FLOAT, 589, 0, "CB5_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 601, 0, "CB6_V1N" },
|
||||
{IR_FLOAT, 603, 0, "CB6_V2N" },
|
||||
{IR_FLOAT, 605, 0, "CB6_V3N" },
|
||||
{IR_FLOAT, 607, 0, "CB6_I1" },
|
||||
{IR_FLOAT, 609, 0, "CB6_I2" },
|
||||
{IR_FLOAT, 611, 0, "CB6_I3" },
|
||||
{IR_FLOAT, 613, 0, "CB6_L1KW" },
|
||||
{IR_FLOAT, 615, 0, "CB6_L2KW" },
|
||||
{IR_FLOAT, 617, 0, "CB6_L3KW" },
|
||||
{IR_FLOAT, 619, 0, "CB6_L1KVar" },
|
||||
{IR_FLOAT, 621, 0, "CB6_L2KVar" },
|
||||
{IR_FLOAT, 623, 0, "CB6_L3KVar" },
|
||||
{IR_FLOAT, 625, 0, "CB6_L1KVA" },
|
||||
{IR_FLOAT, 627, 0, "CB6_L2KVA" },
|
||||
{IR_FLOAT, 629, 0, "CB6_L3KVA" },
|
||||
{IR_FLOAT, 631, 0, "CB6_L1PF" },
|
||||
{IR_FLOAT, 633, 0, "CB6_L2PF" },
|
||||
{IR_FLOAT, 635, 0, "CB6_L3PF" },
|
||||
{IR_FLOAT, 637, 0, "CB6_V1THD" },
|
||||
{IR_FLOAT, 639, 0, "CB6_V2THD" },
|
||||
{IR_FLOAT, 641, 0, "CB6_V3THD" },
|
||||
{IR_FLOAT, 643, 0, "CB6_I1THD" },
|
||||
{IR_FLOAT, 645, 0, "CB6_I2THD" },
|
||||
{IR_FLOAT, 647, 0, "CB6_I3THD" },
|
||||
{IR_FLOAT, 649, 0, "CB6_I1Kfactor" },
|
||||
{IR_FLOAT, 651, 0, "CB6_I2Kfactor" },
|
||||
{IR_FLOAT, 653, 0, "CB6_I3Kfactor" },
|
||||
{IR_FLOAT, 655, 0, "CB6_I1TDD" },
|
||||
{IR_FLOAT, 657, 0, "CB6_I2TDD" },
|
||||
{IR_FLOAT, 659, 0, "CB6_I3TDD" },
|
||||
{IR_FLOAT, 661, 0, "CB6_V12" },
|
||||
{IR_FLOAT, 663, 0, "CB6_V23" },
|
||||
{IR_FLOAT, 665, 0, "CB6_V31" },
|
||||
{IR_FLOAT, 667, 0, "CB6_TotalKW" },
|
||||
{IR_FLOAT, 669, 0, "CB6_TotalKVar" },
|
||||
{IR_FLOAT, 671, 0, "CB6_TotalKVA" },
|
||||
{IR_FLOAT, 673, 0, "CB6_TotalPF" },
|
||||
{IR_FLOAT, 675, 0, "CB6_TotalPFLag" },
|
||||
{IR_FLOAT, 677, 0, "CB6_TotalPFLead" },
|
||||
{IR_FLOAT, 679, 0, "CB6_TotalKWImport" },
|
||||
{IR_FLOAT, 681, 0, "CB6_TotalKWExport" },
|
||||
{IR_FLOAT, 683, 0, "CB6_TotalKVarImport" },
|
||||
{IR_FLOAT, 685, 0, "CB6_TotalKVarExport" },
|
||||
{IR_FLOAT, 687, 0, "CB6_LN_Avg" },
|
||||
{IR_FLOAT, 689, 0, "CB6_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 701, 0, "CB7_V1N" },
|
||||
{IR_FLOAT, 703, 0, "CB7_V2N" },
|
||||
{IR_FLOAT, 705, 0, "CB7_V3N" },
|
||||
{IR_FLOAT, 707, 0, "CB7_I1" },
|
||||
{IR_FLOAT, 709, 0, "CB7_I2" },
|
||||
{IR_FLOAT, 711, 0, "CB7_I3" },
|
||||
{IR_FLOAT, 713, 0, "CB7_L1KW" },
|
||||
{IR_FLOAT, 715, 0, "CB7_L2KW" },
|
||||
{IR_FLOAT, 717, 0, "CB7_L3KW" },
|
||||
{IR_FLOAT, 719, 0, "CB7_L1KVar" },
|
||||
{IR_FLOAT, 721, 0, "CB7_L2KVar" },
|
||||
{IR_FLOAT, 723, 0, "CB7_L3KVar" },
|
||||
{IR_FLOAT, 725, 0, "CB7_L1KVA" },
|
||||
{IR_FLOAT, 727, 0, "CB7_L2KVA" },
|
||||
{IR_FLOAT, 729, 0, "CB7_L3KVA" },
|
||||
{IR_FLOAT, 731, 0, "CB7_L1PF" },
|
||||
{IR_FLOAT, 733, 0, "CB7_L2PF" },
|
||||
{IR_FLOAT, 735, 0, "CB7_L3PF" },
|
||||
{IR_FLOAT, 737, 0, "CB7_V1THD" },
|
||||
{IR_FLOAT, 739, 0, "CB7_V2THD" },
|
||||
{IR_FLOAT, 741, 0, "CB7_V3THD" },
|
||||
{IR_FLOAT, 743, 0, "CB7_I1THD" },
|
||||
{IR_FLOAT, 745, 0, "CB7_I2THD" },
|
||||
{IR_FLOAT, 747, 0, "CB7_I3THD" },
|
||||
{IR_FLOAT, 749, 0, "CB7_I1Kfactor" },
|
||||
{IR_FLOAT, 751, 0, "CB7_I2Kfactor" },
|
||||
{IR_FLOAT, 753, 0, "CB7_I3Kfactor" },
|
||||
{IR_FLOAT, 755, 0, "CB7_I1TDD" },
|
||||
{IR_FLOAT, 757, 0, "CB7_I2TDD" },
|
||||
{IR_FLOAT, 759, 0, "CB7_I3TDD" },
|
||||
{IR_FLOAT, 761, 0, "CB7_V12" },
|
||||
{IR_FLOAT, 763, 0, "CB7_V23" },
|
||||
{IR_FLOAT, 765, 0, "CB7_V31" },
|
||||
{IR_FLOAT, 767, 0, "CB7_TotalKW" },
|
||||
{IR_FLOAT, 769, 0, "CB7_TotalKVar" },
|
||||
{IR_FLOAT, 771, 0, "CB7_TotalKVA" },
|
||||
{IR_FLOAT, 773, 0, "CB7_TotalPF" },
|
||||
{IR_FLOAT, 775, 0, "CB7_TotalPFLag" },
|
||||
{IR_FLOAT, 777, 0, "CB7_TotalPFLead" },
|
||||
{IR_FLOAT, 779, 0, "CB7_TotalKWImport" },
|
||||
{IR_FLOAT, 781, 0, "CB7_TotalKWExport" },
|
||||
{IR_FLOAT, 783, 0, "CB7_TotalKVarImport" },
|
||||
{IR_FLOAT, 785, 0, "CB7_TotalKVarExport" },
|
||||
{IR_FLOAT, 787, 0, "CB7_LN_Avg" },
|
||||
{IR_FLOAT, 789, 0, "CB7_LL_Avg" },
|
||||
|
||||
// Circuit Breaker 1 (OB01)
|
||||
{IR_FLOAT, 801, 0, "CB8_V1N" },
|
||||
{IR_FLOAT, 803, 0, "CB8_V2N" },
|
||||
{IR_FLOAT, 805, 0, "CB8_V3N" },
|
||||
{IR_FLOAT, 807, 0, "CB8_I1" },
|
||||
{IR_FLOAT, 809, 0, "CB8_I2" },
|
||||
{IR_FLOAT, 811, 0, "CB8_I3" },
|
||||
{IR_FLOAT, 813, 0, "CB8_L1KW" },
|
||||
{IR_FLOAT, 815, 0, "CB8_L2KW" },
|
||||
{IR_FLOAT, 817, 0, "CB8_L3KW" },
|
||||
{IR_FLOAT, 819, 0, "CB8_L1KVar" },
|
||||
{IR_FLOAT, 821, 0, "CB8_L2KVar" },
|
||||
{IR_FLOAT, 823, 0, "CB8_L3KVar" },
|
||||
{IR_FLOAT, 825, 0, "CB8_L1KVA" },
|
||||
{IR_FLOAT, 827, 0, "CB8_L2KVA" },
|
||||
{IR_FLOAT, 829, 0, "CB8_L3KVA" },
|
||||
{IR_FLOAT, 831, 0, "CB8_L1PF" },
|
||||
{IR_FLOAT, 833, 0, "CB8_L2PF" },
|
||||
{IR_FLOAT, 835, 0, "CB8_L3PF" },
|
||||
{IR_FLOAT, 837, 0, "CB8_V1THD" },
|
||||
{IR_FLOAT, 839, 0, "CB8_V2THD" },
|
||||
{IR_FLOAT, 841, 0, "CB8_V3THD" },
|
||||
{IR_FLOAT, 843, 0, "CB8_I1THD" },
|
||||
{IR_FLOAT, 845, 0, "CB8_I2THD" },
|
||||
{IR_FLOAT, 847, 0, "CB8_I3THD" },
|
||||
{IR_FLOAT, 849, 0, "CB8_I1Kfactor" },
|
||||
{IR_FLOAT, 851, 0, "CB8_I2Kfactor" },
|
||||
{IR_FLOAT, 853, 0, "CB8_I3Kfactor" },
|
||||
{IR_FLOAT, 855, 0, "CB8_I1TDD" },
|
||||
{IR_FLOAT, 857, 0, "CB8_I2TDD" },
|
||||
{IR_FLOAT, 859, 0, "CB8_I3TDD" },
|
||||
{IR_FLOAT, 861, 0, "CB8_V12" },
|
||||
{IR_FLOAT, 863, 0, "CB8_V23" },
|
||||
{IR_FLOAT, 865, 0, "CB8_V31" },
|
||||
{IR_FLOAT, 867, 0, "CB8_TotalKW" },
|
||||
{IR_FLOAT, 869, 0, "CB8_TotalKVar" },
|
||||
{IR_FLOAT, 871, 0, "CB8_TotalKVA" },
|
||||
{IR_FLOAT, 873, 0, "CB8_TotalPF" },
|
||||
{IR_FLOAT, 875, 0, "CB8_TotalPFLag" },
|
||||
{IR_FLOAT, 877, 0, "CB8_TotalPFLead" },
|
||||
{IR_FLOAT, 879, 0, "CB8_TotalKWImport" },
|
||||
{IR_FLOAT, 881, 0, "CB8_TotalKWExport" },
|
||||
{IR_FLOAT, 883, 0, "CB8_TotalKVarImport" },
|
||||
{IR_FLOAT, 885, 0, "CB8_TotalKVarExport" },
|
||||
{IR_FLOAT, 887, 0, "CB8_LN_Avg" },
|
||||
{IR_FLOAT, 889, 0, "CB8_LL_Avg" },
|
||||
};
|
||||
//Size of modbus map used in FOR cycles, automatically calculated.
|
||||
|
||||
/**
|
||||
* @brief The total number of entries in the `mb_map` array.
|
||||
* This is calculated at compile time and used for iterating over the map.
|
||||
*/
|
||||
const int map_size = sizeof(mb_map) / sizeof(mb_map[0]);
|
||||
|
||||
/** @brief The main loop update interval in milliseconds. */
|
||||
int interval = 250;
|
||||
/** @} */ // End of ModbusMapConfig group
|
||||
|
||||
#endif // CONFIG_H
|
||||
Reference in New Issue
Block a user