613 lines
16 KiB
Protocol Buffer
613 lines
16 KiB
Protocol Buffer
syntax = "proto3";
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import "stationLayoutGraphics.proto";
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import "common_data.proto";
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import "request.proto";
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package state;
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option java_package = "club.joylink.bjrtss.ats.verify.protos";
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option java_outer_classname = "DeviceStateProto";
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option go_package = "joylink.club/bj-rtsts-server/dto/state_proto";
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//状态定义面向物理层即只定义物理状态,不定义逻辑层状态
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//区段类型
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enum SectionType{
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Any = 0;
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//计轴区段
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Axle = 1;
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//逻辑区段
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Logic = 2;
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//物理区段
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Physic = 3;
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}
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//相邻端点定义的link的状态
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message LinkState{
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//link索引
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uint32 id = 1;
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//link上的列车id列表
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repeated string trainId = 2;
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}
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//区段状态
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message SectionState{
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//区段索引
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uint32 id = 1;
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//区段占用
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//true-占用;false-出清
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bool occupied = 3;
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//计轴故障
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bool axleFault = 4;
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}
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//道岔状态
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message SwitchState{
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//道岔索引
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uint32 id = 1;
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//道岔处于定位(表示)
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bool normal = 2;
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//道岔处于反位(表示)
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bool reverse = 3;
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//道岔处于定位(实际)
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bool dw = 4;
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//道岔处于反位(实际)
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bool fw = 5;
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// 道岔设置参数
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request.PointsParam param = 6;
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// 定操驱动
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bool qdc = 7;
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// 反操驱动
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bool qfc = 8;
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// 允许操驱动
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bool qyc = 9;
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// 定操采集
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bool dc = 10;
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// 反操采集
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bool fc = 11;
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// 允许操作采集
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bool yc = 12;
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// 是否占用
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bool occupied = 13;
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}
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//信号机状态
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message SignalState{
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//信号机索引
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uint32 id = 1;
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//信号机的灯列表
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Signal.Aspect aspect = 2;
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// 信号机设置参数
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request.SignalParam param = 3;
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// 信号机继电器状态
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map<string, bool> relayStateMap = 4;
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}
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//信号机显示定义
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message Signal {
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//信号机显示枚举
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enum Aspect {
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//灭灯
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OFF = 0;
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//红
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H = 1;
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//绿灯亮
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L = 2;
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//黄
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U = 3;
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//红黄
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HU = 4;
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//白
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B = 5;
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//蓝
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A = 6;
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}
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}
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//站台状态
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message PlatformState{
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//站台索引
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uint32 id = 1;
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// EMP继电器状态
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bool empj = 2;
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// SPKS继电器状态
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repeated ReplyState spksState = 3;
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// 门控箱继电器状态
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MkxJState mkxJState = 4;
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}
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//车站状态
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message StationState{
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//车站索引
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uint32 id = 1;
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}
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//列车状态
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message TrainState{
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//列车索引
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string id = 1;
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//列车初始link运行方向
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bool up = 2;
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// 列车初始速度
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float speed = 3;
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//列车长度,1=1mm
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int64 trainLength = 4;
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//列车是否显示
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bool show = 5;
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// 列车车头所在设备ID
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uint32 headDeviceId = 6;
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// 列车车头所在设备偏移量
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int64 headOffset = 7;
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// 设备端口
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string devicePort = 8;
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// 运行方向指向(区段:A-B,道岔:-> 岔心)
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bool pointTo = 9;
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// 运行上下行(公里标 上行:小 -> 大,下行:大 -> 小)
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bool runDirection = 10;
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// 列车车头方向
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bool headDirection = 11;
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// 动力学信息
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TrainDynamicState dynamicState = 12;
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// 半实物信息
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TrainVobcState vobcState = 13;
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// 所在公里标
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int64 trainKilometer = 14;
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// 控制响应延时
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int64 controlDelayTime = 15;
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// 列车轮径
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int32 wheelDiameter = 16;
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//列车动力学配置
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common.TrainDynamicConfig trainDynamicConfig = 17;
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//列车A端
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common.TrainEndsState trainEndsA = 18;
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//列车B端
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common.TrainEndsState trainEndsB = 19;
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}
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// 动力学列车状态
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message TrainDynamicState {
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// 生命信号 每个周期+1
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int32 heartbeat = 1;
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//车头所在link的索引
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string headLinkId = 2;
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//车头所在link内的偏移量,单位为mm
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int64 headLinkOffset = 3;
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//车尾所在link的索引
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string tailLinkId = 4;
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//车尾所在link内的偏移量,单位为mm
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int64 tailLinkOffset = 5;
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//列车所占用的link的索引的列表
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//顺序为从车头到车尾
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repeated string occupiedLinkIndex = 6;
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//列车所在位置坡度值,1=1‰
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int32 slope = 7;
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//列车所在位置坡度走势,1=上坡true,0=下坡false
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bool upslope = 8;
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//列车当前运行方向,1 =上行true 0 =下行false
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bool runningUp = 9;
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//实际运行阻力(总)(N)totalResistance,1=1KN
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float runningResistanceSum = 10;
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//阻力1(空气阻力)(N)airResistance,1=1KN
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float airResistance = 11;
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//阻力2(坡道阻力)(N)slopeResistance,1=1KN
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float rampResistance = 12;
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//阻力3(曲线阻力)(N)curveResistance,1=1KN
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float curveResistance = 13;
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//列车运行速度(m/s)speed,1=1km/h
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int32 speed = 14;
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//头车速传1速度值(m/s)headSpeed1,1=1km/h
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int32 headSensorSpeed1 = 15;
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//头车速度2速度值(m/s)headSpeed2,1=1km/h
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int32 headSensorSpeed2 = 16;
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//尾车速传1速度值(m/s)tailSpeed1,1=1km/h
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int32 tailSensorSpeed1 = 17;
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//尾车速度2速度值(m/s)tailSpeed2,1=1km/h
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int32 tailSensorSpeed2 = 18;
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//头车雷达速度值(m/s)headRadarSpeed,1=1km/h
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int32 headRadarSpeed = 19;
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//尾车雷达速度值(m/s)tailRadarSpeed,1=1km/h
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int32 tailRadarSpeed = 20;
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// 通讯中断
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bool udpInterruption = 21;
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// 加速
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float acceleration = 22;
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}
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// vobc发过来的列车信息
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message TrainVobcState {
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// 生命信号 每个周期+1
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int32 lifeSignal = 1;
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// TC1激活状态 1=激活
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bool tc1Active = 2;
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// TC2激活状态 1=激活
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bool tc2Active = 3;
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// 列车方向向前 1=方向向前
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bool directionForward = 4;
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// 列车方向向后 1=方向向后
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bool directionBackward = 5;
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// 列车牵引状态 1=牵引
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bool tractionStatus = 6;
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// 列车制动状态 1=制动
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bool brakingStatus = 7;
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// 列车紧急制动状态 1=紧急制动
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bool emergencyBrakingStatus = 8;
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// 列车折返状态(AR) 1=折返
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bool turnbackStatus = 9;
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// 跳跃状态 1=跳跃
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bool jumpStatus = 10;
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// ATO模式 1=ATO模式
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bool ato = 11;
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// FAM模式 1=FAM模式
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bool fam = 12;
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// CAM模式 1=CAM模式
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bool cam = 13;
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// 牵引安全回路 1=牵引安全切除
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bool tractionSafetyCircuit = 14;
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// 停放制动状态 1=停放施加
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bool parkingBrakeStatus = 15;
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// 保持制动状态 1=保持制动施加
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bool maintainBrakeStatus = 16;
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// 列车牵引力 100=1KN
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int64 tractionForce = 17;
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// 列车制动力 100=1KN
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int64 brakeForce = 18;
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//【列车载荷 100=1ton
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int64 trainLoad = 19;
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// 列车开左门指令 1=开门
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bool leftDoorOpenCommand = 20;
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// 列车开右门指令 1=开门
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bool rightDoorOpenCommand = 21;
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// 列车关左门指令 1=关门
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bool leftDoorCloseCommand = 22;
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// 列车关右门指令 1=关门
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bool rightDoorCloseCommand = 23;
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// 整列车门关好 1=门关好
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bool allDoorClose = 24;
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// 通讯中断
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bool udpInterruption = 25;
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// 更新时间
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int64 updateTime = 26;
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}
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// 发给前端的列车状态
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message TrainMapState{
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//列车索引
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string id = 1;
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//列车初始link运行方向
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bool up = 2;
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// 列车初始速度
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float initialSpeed = 3;
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//列车长度,1=1mm
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int64 trainLength = 4;
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//列车是否显示
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bool show = 5;
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// 列车车头所在设备ID
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uint32 headDeviceId = 6;
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// 列车车头所在设备偏移量
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int64 headOffset = 7;
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// 设备端口
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string devicePort = 8;
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// 运行方向指向(区段:A-B,道岔:-> 岔心)
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bool pointTo = 9;
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// 运行上下行(公里标 上行:小 -> 大,下行:大 -> 小)
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bool runDirection = 10;
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// 列车车头方向
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bool headDirection = 11;
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// 所在公里标
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int64 trainKilometer = 12;
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// 控制响应延时
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int64 controlDelayTime = 13;
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// 列车轮径
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int32 wheelDiameter = 14;
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// 动力学信息
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// 生命信号 每个周期+1
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int32 dynamicHeartbeat = 15;
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//车头所在link的索引
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string headLinkId = 16;
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//车头所在link内的偏移量,单位为mm
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int64 headLinkOffset = 17;
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//车尾所在link的索引
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string tailLinkId = 18;
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//车尾所在link内的偏移量,单位为mm
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int64 tailLinkOffset = 19;
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//列车所占用的link的索引的列表
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//顺序为从车头到车尾
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repeated string occupiedLinkIndex = 20;
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//列车所在位置坡度值,1=1‰
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int32 slope = 21;
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//列车所在位置坡度走势,1=上坡true,0=下坡false
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bool upslope = 22;
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//列车当前运行方向,1 =上行true 0 =下行false
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bool runningUp = 23;
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//实际运行阻力(总)(N)totalResistance,1=1KN
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float runningResistanceSum = 24;
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//阻力1(空气阻力)(N)airResistance,1=1KN
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float airResistance = 25;
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//阻力2(坡道阻力)(N)slopeResistance,1=1KN
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float rampResistance = 26;
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//阻力3(曲线阻力)(N)curveResistance,1=1KN
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float curveResistance = 27;
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//列车运行速度(m/s)speed,1=1km/h
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int32 speed = 28;
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//头车速传1速度值(m/s)headSpeed1,1=1km/h
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int32 headSensorSpeed1 = 29;
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//头车速度2速度值(m/s)headSpeed2,1=1km/h
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int32 headSensorSpeed2 = 30;
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//尾车速传1速度值(m/s)tailSpeed1,1=1km/h
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int32 tailSensorSpeed1 = 31;
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//尾车速度2速度值(m/s)tailSpeed2,1=1km/h
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int32 tailSensorSpeed2 = 32;
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//头车雷达速度值(m/s)headRadarSpeed,1=1km/h
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int32 headRadarSpeed = 33;
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//尾车雷达速度值(m/s)tailRadarSpeed,1=1km/h
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int32 tailRadarSpeed = 34;
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// 通讯中断
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bool dynamicInterruption = 35;
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// 加速
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float acceleration = 36;
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// 半实物信息
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// 生命信号 每个周期+1
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int32 vobcLifeSignal = 37;
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// TC1激活状态 1=激活
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bool tc1Active = 38;
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// TC2激活状态 1=激活
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bool tc2Active = 39;
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// 列车方向向前 1=方向向前
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bool directionForward = 40;
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// 列车方向向后 1=方向向后
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bool directionBackward = 41;
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// 列车牵引状态 1=牵引
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bool tractionStatus = 42;
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// 列车制动状态 1=制动
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bool brakingStatus = 43;
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// 列车紧急制动状态 1=紧急制动
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bool emergencyBrakingStatus = 44;
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// 列车折返状态(AR) 1=折返
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bool turnbackStatus = 45;
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// 跳跃状态 1=跳跃
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bool jumpStatus = 46;
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// ATO模式 1=ATO模式
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bool ato = 47;
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// FAM模式 1=FAM模式
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bool fam = 48;
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// CAM模式 1=CAM模式
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bool cam = 49;
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// 牵引安全回路 1=牵引安全切除
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bool tractionSafetyCircuit = 50;
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// 停放制动状态 1=停放施加
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bool parkingBrakeStatus = 51;
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// 保持制动状态 1=保持制动施加
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bool maintainBrakeStatus = 52;
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// 列车牵引力 100=1KN
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int64 tractionForce = 53;
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// 列车制动力 100=1KN
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int64 brakeForce = 54;
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//【列车载荷 100=1ton
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int64 trainLoad = 55;
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// 列车开左门指令 1=开门
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bool leftDoorOpenCommand = 56;
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// 列车开右门指令 1=开门
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bool rightDoorOpenCommand = 57;
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// 列车关左门指令 1=关门
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bool leftDoorCloseCommand = 58;
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// 列车关右门指令 1=关门
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bool rightDoorCloseCommand = 59;
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// 整列车门关好 1=门关好
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bool allDoorClose = 60;
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// 通讯中断
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bool vobcInterruption = 61;
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//列车动力学配置
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TrainDynamicConfigMqtt trainDynamicConfig = 62;
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//列车A端
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TrainEndsStateMqtt trainEndsA = 63;
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//列车B端
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TrainEndsStateMqtt trainEndsB = 64;
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}
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//动力学相关参数返回数据,因golang float类型数据序列化后丢失精度故使用string
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//此类型需要与 common_data 中的 TrainDynamicConfig类型属性保持一致
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message TrainDynamicConfigMqtt{
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//基本阻力参数A 原本数据:float
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string davisParamA=1;
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// 基本阻力参数B 原本数据:float
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string davisParamB=2;
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// 基本阻力参数C 原本数据:float
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string davisParamC=3;
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//曲线阻力参数R1 原本数据:float
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string curveResistanceParamR1=4;
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// 曲线阻力参数R2 原本数据:float
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string curveResistanceParamR2=5;
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// 曲线阻力参数R3 原本数据:float
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string curveResistanceParamR3=6;
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// 曲线阻力参数R4 原本数据:float
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string curveResistanceParamR4=7;
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//旋转质量参数 原本数据:float
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string revolvingMassParam=8;
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//是否跳跃
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bool jump=9;
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//打滑(%) 原本数据:float
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string slip=10;
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//前溜/后溜(m/s)(正数前溜,负数后溜)
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int32 slide = 11;
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//过标/欠标(mm)(正数过标,负数欠标)
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int32 stopSign=12;
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//空转 %
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string idling =13 ;
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}
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//列车一端的状态
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message TrainEndsStateMqtt{
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//速度传感器
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bool speedSensorEnableA = 1;
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bool speedSensorEnableB = 2;
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//雷达是否有效
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bool radarEnable = 3;
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//雷达测速差值(米/秒) 原本数据:float
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string radarCheckSpeedDiff = 4;
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//雷达检测时间(秒)
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int32 radarCheckTime = 5;
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}
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// 继电器状态
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message ReplyState {
|
||
// 继电器索引
|
||
uint32 id = 1;
|
||
// 继电器吸合状态
|
||
bool xh = 2;
|
||
// 继电器编号
|
||
string code = 3;
|
||
// 是否强制
|
||
bool force = 4;
|
||
}
|
||
|
||
// 按钮状态
|
||
message ButtonState {
|
||
uint32 id = 1;
|
||
bool down = 2;
|
||
bool active = 3; // 带灯的按钮
|
||
}
|
||
|
||
// 警铃状态
|
||
message AlarmState {
|
||
uint32 id = 1;
|
||
bool active = 2;
|
||
}
|
||
|
||
// 灯状态
|
||
message LightState {
|
||
uint32 id = 1;
|
||
bool active = 2;
|
||
}
|
||
|
||
// 屏蔽门状态
|
||
message PsdState {
|
||
uint32 id = 1; //屏蔽门的id
|
||
repeated AsdState asdStates = 2; //滑动门状态
|
||
bool mgj = 3; //屏蔽门整体的关闭(继电器)状态
|
||
}
|
||
|
||
//滑动门状态
|
||
message AsdState {
|
||
int32 code = 1; //滑动门的编号
|
||
bool kmdw = 2; //开门到位(实际位置)
|
||
bool gmdw = 3; //关门到位(实际位置)
|
||
bool mgj = 4; //门关继电器
|
||
}
|
||
|
||
// 钥匙状态
|
||
message KeyState {
|
||
uint32 id = 1;
|
||
int32 gear = 2;
|
||
}
|
||
|
||
// 战场图门控箱继电器状态
|
||
message MkxJState {
|
||
string code = 1;
|
||
repeated ReplyState replyState = 2;
|
||
}
|
||
|
||
// 应答器状态
|
||
message BaliseState {
|
||
uint32 id = 1;
|
||
graphicData.KilometerSystem km = 2; //当前公里标
|
||
string fixedTelegram = 3; //固定报文
|
||
string fixedUserTelegram = 4; //固定用户报文
|
||
}
|
||
|
||
////////////////////////////////////////////////////////////////////////////
|
||
|
||
//仿真运行时状态变化量,当前时刻与上一时刻比较得到
|
||
message VariationStatus{
|
||
//新增或变化的列车的状态
|
||
repeated TrainMapState updatedTrain = 1;
|
||
//移除的列车的索引
|
||
repeated string removedTrainId = 2;
|
||
//状态发生变化的道岔
|
||
repeated SwitchState updatedSwitch = 3;
|
||
//状态发生变化的区段
|
||
repeated SectionState updatedSection = 4;
|
||
//状态发送变化的继电器
|
||
repeated ReplyState updatedReply = 5;
|
||
}
|
||
|
||
//仿真运行时的所有设备的状态
|
||
message AllDevicesStatus{
|
||
// 所有列车状态
|
||
repeated TrainMapState trainState = 1;
|
||
// 所有道岔状态
|
||
repeated SwitchState switchState = 2;
|
||
// 所有类型区段状态
|
||
repeated SectionState sectionState = 3;
|
||
// 所有继电器状态
|
||
repeated ReplyState replyState = 4;
|
||
// 所有信号机状态
|
||
repeated SignalState signalState = 5;
|
||
// 按钮状态
|
||
repeated ButtonState buttonState = 6;
|
||
// 警铃状态
|
||
repeated AlarmState AlarmState = 7;
|
||
// 灯状态
|
||
repeated LightState LightState = 8;
|
||
// 屏蔽门状态
|
||
repeated PsdState psdState = 9;
|
||
// 钥匙状态
|
||
repeated KeyState KeyState = 10;
|
||
// 站场图站台状态
|
||
repeated PlatformState platformState = 11;
|
||
// 应答器状态
|
||
repeated BaliseState baliseState = 12;
|
||
}
|
||
|
||
//服务器端向前端推送的设备状态信息
|
||
message PushedDevicesStatus{
|
||
//true-全量设备状态信息,此时allStatus有效;
|
||
//false - 增量设备状态消息,此时varStatus有效
|
||
bool all = 1;
|
||
//增量设备状态消息
|
||
VariationStatus varStatus = 2;
|
||
//全量设备状态信息
|
||
AllDevicesStatus allStatus = 3;
|
||
}
|
||
|
||
// 仿真信息状态
|
||
message SimulationStatus {
|
||
|
||
enum SimulationState {
|
||
PAUSE = 0;
|
||
START = 1;
|
||
ERROR = 2;
|
||
DESTROY = 3;
|
||
}
|
||
|
||
string simulationId = 1;
|
||
|
||
SimulationState state = 2;
|
||
|
||
string description = 3;
|
||
}
|
||
|
||
// 仿真在用的第三方接口状态列表
|
||
message SimulationThirdPartyApiService {
|
||
enum Type {
|
||
// 未定义
|
||
Undefined = 0;
|
||
// 与动力学接口服务
|
||
Dynamics = 1;
|
||
// 与半实物列车接口服务
|
||
SemiPhysicalTrain = 2;
|
||
}
|
||
// 服务状态
|
||
enum State {
|
||
// 服务正常
|
||
Normal = 0;
|
||
// 服务异常
|
||
Error = 1;
|
||
}
|
||
|
||
// 服务列表
|
||
repeated SimulationThirdPartyApiServiceState states = 1;
|
||
}
|
||
|
||
// 仿真第三方接口状态
|
||
message SimulationThirdPartyApiServiceState {
|
||
// 接口服务类型
|
||
SimulationThirdPartyApiService.Type type = 1;
|
||
// 服务状态
|
||
SimulationThirdPartyApiService.State state = 2;
|
||
}
|